Showing posts with label Green Building. Show all posts
Showing posts with label Green Building. Show all posts

Sustainable Design in the New World Trade Center Buildings

Thirteen years ago today the twin towers were destroyed by terrorists, but from the ashes of that terrible day new green World Trade Center buildings have taken their place. Seven World Trade Center (7 WTC) was completed in 2006 and the much larger One World Trade Center (1 WTC) also known as "Freedom Tower" was completed in 2013. These building are models of sustainable design.

Seven World Trade Center

7 WTC is a pioneer in terms of environmental responsibility, energy efficiency, and quality of life. The building has earned the U.S. Green Building Council's (USGBC) gold status under its Leadership in Energy and Environmental Design (LEED)-rating system. This is the first green commercial office building in New York City to have such certification. It is also part of part of the USGBC Pilot Program for Leadership in Energy and Environmental Design - Core and Shell Development (LEED-CS).

7 WTC green leadership has been recognized by the Environmental Protection Agency (EPA), the Municipal Arts Society of New York, and the American Institute of Architects New York Chapter.

Sustainability concerns were a part of the 7 WTC from its inception, this also included the construction process. With the aim of reducing smog, acid rain and water pollution construction incorporated the Diesel Emissions Reduction Project. This reduced emissions from heavy construction equipment by as much as 90 percent.

Green design features of 7 WTC:

7 WTC offers tenants the ability to provide direct daylight and outside views for more than 90 percent of their regularly occupied space.

Full-height low-iron glass allows tenants to reduce energy costs by installing daylight dimming controls.

One hundred percent of 7 WTC's core-and-shell electricity needs comes from renewable energy.

In a typical business year, electricity costs at 7 WTC will be approximately 35 percent lower than in a generic Manhattan office building, due in part to a power purchase agreement with New York Power Authority.

7 WTC features environmental innovations that exceed those of traditional office buildings, such as:
  • High-efficiency cooling/heating systems (beyond current code requirements), with high-efficiency filters in all A/C units to improve indoor air quality;
  • Use of paints that are low in volatile organic compounds;
  • High-efficiency plumbing systems that will reduce water consumption throughout the building by at least 30 percent;
  • Collection of rainwater from the roof for irrigation of the nearby park and for the cooling tower;
  • Carbon-dioxide sensors throughout the building;
  • No use of ozone-depleting HCFC refrigerants;
  • Building materials that will include post-consumer recycled content (at least 50 percent of the building's wood is certified as sustainably harvested).
One World Trade Center

Seven World Trade Center is dwarfed by One World Trade Center which has also earned Gold status. In addition to a host of robust security measures, 1 WTC is the tallest building in the US and one of the tallest buildings in the world. It is precisely 1,776 feet high, in honor of the year of American independence.

The three billion dollar 1 WTC project is the most environmentally sustainable building of its size in the world. It incorporates new environmental standards and gets 70 percent of its power from green sources.

Green elements of the building and construction:

Fuel cells. 12 United Technologies Corporation (UTC) Power PureCell Model 400 fuel cell stacks have been installed in the building. These fuel cells will provide 4.8 million watts per hour of clean energy when operational, and the combined systems rank as one of the largest fuel cell installations in the world, according to UTC.

Waste steam recycling. Waste heat output from this fuel cell system is recycled and used for hot water and heating in the podium of the building’s structure and the entrances, amounting to 70,000 BTUs of high-grade heat and 500,000 BTUs of low-grade heat. Alternatively, with the addition of an absorption chiller, the system is capable of using the waste heat to produce about 50 tons of cooling for the building, eliminating some need to draw power off the grid for air conditioning.

World-class mass transit. Workers commuting to One World Trade Center have unprecedented access to mass transit service from the new complex. New climate-controlled corridors will connect the Freedom Tower to The World Trade Center Transportation Hub and the new PATH terminal, 11 NYC Transit subway lines and the new Fulton Street Transit Center, the World Financial Center and ferry terminal, underground parking and retail and dining facilities.

Exceeding code. Overall, the building’s energy performance exceeds code requirements by 20 percent.

Recycled rainwater. Rainwater is claimed and re-used for building cooling purposes as well as fire protection, supplemental cooling and irrigation for the complex’s extensive landscaping needs. The rain water – 60 inches annually in New York, making it one of the rainiest of American cities – is stored in new high-efficiency evaporative cooling towers located on-site.

Functional memorial. The large, square reflecting pools which mark the “footprints” of the original World Trade Center twin towers feature 360-degree waterfalls and serve as rain collection systems themselves. The names of those who died on September 11 are inscribed on plaques around the “footprint” waterfalls. The names appear dark during the day and glow with internal light at night.

Central chiller. Air conditioning is supplied, in part, by a highly efficient 12,500-ton Central Chiller Plant (CCP) that uses water from the Hudson River to cool the WTC Transportation Hub, National September 11 Memorial and Museum, retail space and some non-commercial areas. The plant circulates 30,000 gallons of river water every minute.

Landscaping. The new main plaza of the World Trade Center complex features more than 400 trees, all of which were harvested within a 500-mile radius of the city to avoid excessive transportation and limit the amount of greenhouse gas emissions. The trees’ roots help keep temperatures regulated within the museum that lies below.

Waste material recycling. Construction at the building site has been recycled about 80 percent of waste materials generated at the site, exceeding its own target by about 20 percent.

Recycled building materials.  Everything from the facility’s gypsum boards to ceiling tiles contains a minimum of 75 percent post-industrial recycled content. This reduces the environmental footprint, not only on-site, but reduces the stress on the natural resources and energy needed to produce them.

Taking a pass on cement. The construction of One World Trade Center used so-called “Green Concrete,” – what some believe to be more environmentally responsible than traditional cement – which will save about 12 million pounds of carbon dioxide emissions, 8 million kWh of energy and 30,000 gallons of fresh water. (It does, however, contain coal fly ash, which comes with some environmental challenges of its own.)

Clean diesel. During construction, contractors were required to use only ultra-low sulfur diesel fuels, or “clean diesel” to reduces nitrogen oxide and particulate emissions in and around the construction area. In addition, all construction vehicles are equipped with extra particulate filters to further reduce their environmental impact on air quality.

No VOCs. Any use of materials that contain VOCs – volatile organic compounds, or chemicals that leach from building materials in gaseous form and cause health problems – has been banned from the entire reconstructed World Trade Center complex.

Preventing a “sick” green building. Indoor air quality is continually monitored with a high-tech system. Carbon dioxide monitors control ventilation and make the building healthier and improve indoor air quality. If the monitors sense more carbon dioxide than is healthy, they send a signal to the air handler software, telling it more fresh air is needed in that space. The system then automatically increases the fresh air mix in the area. The buildings contain over 3,000 points of monitoring, according to Eduardo Del Valle, Director of Design Management at One World Trade Center.

Daylighting. The buildings uses a green feature called “daylighting,” which means that on bright, sunny days when a large amount of natural daylight is coming into the windows, dimmers automatically lower the interior lights to reduce energy consumption. Every space within 15 feet of the building’s facade is equipped with dimming devices. In addition, the buildings’ windows are constructed of ultra-clear glass, which will allow a maximum amount of light in while blocking excess heat from entering.

Green port-a-potties. During construction, workers used composting toilets in place of the familiar, chemical portable toilets. In composting toilets waste mixes with other decaying biological products and creates nutrient-rich soil. Human waste was fully processed, more than 90 percent of it is re-used, eliminating the need to constantly empty and re-plenish the water in traditional portable toilets.

Low-water bathrooms.  The building includes high-efficiency plumbing systems designed to save thirty percent on water consumption over a typical building of its size. To achieve this, builders installed low-flow toilets and devices to limit water use for hand washing.

Save the ozone. Builders barred the use of ozone-depleting HCFC refrigerants in the building’s mechanical systems.

Sustainable wood. Fully fifty percent of wood used in the buildings of the new World Trade Center was sourced from Forest Stewardship Council-certified (FSC) sustainable harvested forests. FSC certification mandates that the wood used in a building project came from responsible sources and not from endangered trees or forests.

1 WTC and 7 WTC do more than conserve valuable resources. These buildings have set the bar for green design which other buildings are sure to follow.

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Event - Smart and Sustainable Campuses Conference

The Smart and Sustainable Campuses Conference will take place on March 3 - 4, 2014, in Baltimore, MD. The sharing economy: no place is this more evident than on our campuses. Students are rethinking vehicle ownership, swapping clothes, trading books, and participating in MOOCs. In other words, finding ways to make their limited funds go further. Campuses must also find opportunities to conserve limited resources, make college more affordable, and make our communities more resilient to economic and environmental change. A sharing economy is leading to more sustainable consumption, operations, services, and lifestyles in our communities and on our campuses.

Smart and Sustainable 2014 (SSCC) provides the time and space for dialogue on experiences and challenges in an open and collaborative environment. They have moved beyond show-and-tell presentations towards skill building, rich discussions and deep dives into the challenges and solutions facing our institutions.

For more information click here.

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The UK's University of Bradford Wins Recognition for Sustainable Building

Despite stiff competition, the UK's University of Bradford has won recognition for its sustainable building programme. Although there were many excellent projects entered into the competition, the University won the 'Carbon Champion of the Year,' award for 2012. The award is given out by the Chartered Institution of Building Services Engineers (CIBSE).

Because green buildings educate while at the same time reducing their environmental impact, schools are the perfect place to lead the green building revolution.

As noted in the awards programme for the event: "The Higher Education sector is in a unique position to make a positive contribution in meeting one of the challenges in our global society. The University of Bradford has embarked on a journey of embedding sustainable development across the whole of the University. It is an ambitious and visionary programme which is creating systemic change across everything they do."

The CIBSE programme judges commented of the award: "The University has a comprehensive programme which has not only reversed the previous trend of rising energy use and emissions, but reduced them by 8% since the start of the programme in 2005. The length of the programme and the commitment of the University to deliver improved building performance marked them out as the 2012 CIBSE Carbon Champion of the Year."

Vice Chancellor of the University, Professor Mark Cleary, said: "It doesn't get much bigger than this in terms of recognition from the Industry of exceptional work in sustainable and environmentally friendly development. As the CIBSE judges said, this award is not for a 'one-year -wonder' but recognises the culmination of the best part of a decade of determined work by the University to produce world-class facilities for our students to live and learn in. We are bucking a trend across the sector as we now seeing our carbon emissions levels falling, and will continue our good progress by opening our Sustainable Enterprise Centre building in 2012."

For more information about the University's Ecoversity programme click here, or the Estates & Facilities Environment website here.

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AltBuild Conference & Expo 2012 (Event)

Presented by the City of Santa Monica and U.S. Green Building Council-Los Angeles (USGBC-LA), the 9th Annual AltBuild Conference & Expo returns May 11-12, 2012. It will take place at the Santa Monica Civic Auditorium, 1855 Main Street, Santa Monica, CA 90401. The event will address: Water efficiency, green building practices, it will involve hands-on workshops, practical skills for professionals and consumers.

AltBuild is considered the largest and most-respected green building and design expo in Southern California, serving top industry professionals such as architects, builders, contractors, engineers and landscapers, as well as a large consumer audience.

Featured programming will include over 40 industry speakers—focuses on practical and often hands-on skills for all attendees, with special focus on water efficiency, saving through green building (developing, brokering and getting rebates), energy savings, and then looking to the future. This year’s enhanced programming is presented by the U.S. Green Building Council-Los Angeles(USGBC-LA), American Institute of Architects Los Angeles (AIA|LA), Building Industry Association(BIA)-LA/Ventura County Chapter, Build It Green, and the City of Santa Monica Water Resources Department.

Tickets are free to the Expo, all Saturday programming and the majority of Friday programming. Parking is $9.00 for cars but there is free bike valet parking.

For general information click here or call 310-390-2930.

© 2012, Richard Matthews. All rights reserved.

Clean Energy Excerpts of President Obama's 2012 State of the Union Speech

Members of the US House and Senate, along with hundreds of distinguished guests, convened at the Capitol on Tuesday, January 24, 2012, at 9 p.m. for President Obama's third State of the Union Address. According to article II, Section 3, Clause 1 of the US Constitution, the President must “give to the Congress Information on the State of the Union and recommend to their Consideration such measures as he shall judge necessary and expedient.” Here are excerpts of the President's speech related to the environment, the green economy and clean energy:

“The differences in this chamber may be too deep right now to pass a comprehensive plan to fight climate change. But there's no reason why Congress shouldn't at least set a clean energy standard that creates a market for innovation.”

“So far, you [Congress] haven't acted. Well tonight, I will. I'm directing my Administration to allow the development of clean energy on enough public land to power three million homes. And I'm proud to announce that the Department of Defense, the world's largest consumer of energy, will make one of the largest commitments to clean energy in history - with the Navy purchasing enough capacity to power a quarter of a million homes a year.”

“In three years, our partnership with the private sector has already positioned America to be the world's leading manufacturer of high-tech batteries. Because of federal investments, renewable energy use has nearly doubled. And thousands of Americans have jobs because of it”.

“Some technologies don't pan out; some companies fail. But I will not walk away from the promise of clean energy. I will not cede the wind or solar or battery industry to China or Germany because we refuse to make the same commitment here.”

“We have subsidized oil companies for a century. That's long enough. It's time to end the taxpayer giveaways to an industry that's rarely been more profitable, and double-down on a clean energy industry that's never been more promising. Pass clean energy tax credits and create these jobs. We can also spur energy innovation with new incentives.”

“I will not back down from making sure an oil company can contain the kind of oil spill we saw in the Gulf two years ago.”

The President also dealt with the issue of energy efficiency, talking specifically about an energy grid that “wastes too much energy,” and he encouraged greener building for businesses.

“Of course, the easiest way to save money is to waste less energy. So here's another proposal: Help manufacturers eliminate energy waste in their factories and give businesses incentives to upgrade their buildings. Their energy bills will be $100 billion lower over the next decade, and America will have less pollution, more manufacturing, and more jobs for construction workers who need them. Send me a bill that creates these jobs.”

The President indicating that he is committed to reducing mercury pollution and making sure that “our food is safe and water is clean.”

© 2012, Richard Matthews. All rights reserved.

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Major Trends in Green Building for 2012

Claire Easley the senior editor at Builder recently published an article about Jerry Yudelson impressions for the green building industry in 2012. Yudelson has more than 25 years of work in sustainability, he has been a member of the U.S. Green Building Council’s board of directors, a LEED national faculty member, and is the co-founder and director of the Green Building Service consulting unit at Portland General Electric. Last year, Wired magazine dubbed him "the godfather of green."

So what does the industry insider have to say about where things are going? "The construction industry is going to have modest growth this year," Yudelson said Tuesday January 17th in a webinar on GreenExpo365. "It seems that most people have figured out that the sky isn’t going to fall in and they are going to get back to doing business … but with an emphasis on what I call ‘frugal green.’ In the past there was a feeling that you could spend money to add green features. I think today the real challenge for construction and design professionals is ‘How do I do this on the same budget?’ and I think that’s the core trend."

As stated by Yudelson, the emphasis on frugality is actually a market driver for green building. "You make money if you go green. If you don’t go green, you’re at a marketplace disadvantage."

Yudelson also shared a list of 10 green trends in green building for 2012, five trends for the US and five trends that are global:

U.S. Trends

1. Green Building Growth to Rebound

LEED project growth was slow in 2011, only gaining 3% for the year. But while LEED certification on new projects may take longer to gain much steam, the program’s retrofitting arm, LEED for Existing Buildings: Operations & Maintenance (LEED-EBOM), is quickly gaining traction. EBOM project registrations were up 18% last year, and the EBOM project area exceeded the cumulative LEED-NC (New Construction) area for the first time, with 675 million square feet of EBOM versus 649 million square feet of NC. "That trend will continue this year," Yudelson says, as more property owners realize that retrofitting to LEED standards is fairly painless when starting with a building that is already Energy Star–rated.

2. Federal Momentum Has Slowed

The Department of Defense recently stipulated that projects can’t spend any extra money on energy program certification, and while "that’s not necessarily a killer," Yudelson says, "it is an indication that there is some backlash for spending extra money on anything." Getting federal funding for green projects will be harder going forward, he says, especially given the recent Solandra scandal and the federal budget crunch. But while state and local governments aren’t faring much better, that’s where the action will be, he says, as existing buildings will need to be upgraded, projects in the pipeline will move forward, and schools—which are funded by bonds—will need to be built.

3. LEED-EBOM Will Gain Momentum

"We’re going to see this move to other sectors," he says, particularly among hotels with strong convention and meeting businesses who want to be able to market their eco-friendliness. Grocery stores, hospitals, and retail centers are moving in the same direction, with features such as solar panels on top of Walmarts or department stores. "Last month, President Obama and former President Clinton announced the Better Buildings Initiative. It’s only $4 billion, so it’s not huge. But still, this is stuff that moves markets. When you have two presidents pushing something, it does get people’s attention. More and more building owners are realizing that they don’t want to be late to the party."

4. Water Issues Grow in Importance

"Even the water-wet areas have water problems brought on by infrastructure problems and population growth," Yudelson says. "Florida doesn’t have a place for a reservoir in the entire state, so even if you have a slight drought, you have big problems." He predicts rainwater capture systems as well as graywater and blackwater on-site treatment capabilities will become more pervasive. "Instead of toilet to tap, we’re going toilet to toilet."

5. Zero-Net-Energy to Gain Traction

"Zero-net-energy needs to be in your future," Yudelson says, adding that it works best on two- to four-story buildings that only use between 30 and 35 kBTU per square foot per year. "If you do a good job with integrated design, you can reach that [30 to 35 kBTU] goal," he says, adding that getting to net-zero should only add between 3% and 5% to building costs.

Global Trends

6. Green Building Movement Will Continue to Grow

There are currently more than 90 national Green Building Councils throughout the world, and LEED projects have been registered in 161 countries, Yudelson says. Last year, 44% of total LEED registrations were outside the U.S. "This is a movement that you have to pay attention to," he says, adding that the "Big Three" energy rating systems—LEED, BREEAM, and Green Star—are already converging toward common carbon metrics and common rating concerns.

7. Performance Disclosure

Already popular in the European Union and Australia, requirements for buildings to disclose their energy use are gaining traction in the U.S. Beginning April 1 of this year, Seattle will require buildings of more than 10,000 square feet to disclose energy usage, and California will begin requiring disclosures starting next year, which Yudelson says will have a market impact, since prospective tenants will be able to compare what their energy costs will be between buildings. "This is going to happen everywhere, particularly in big cities, because it’s the easiest move to take politically. It doesn’t say you have to retrofit the building. It just says you have to disclose."

8. Global Carbon Ratings

Carbon ratings that remain standard across countries are of particular interest to global property management companies. "If your company is committed to sustainability, you’re going to have to report this," he says. It’s also an issue for property investments tied to pension funds. "Anyone that has sustainable interests and wants access to capital will have to deal with this," he says.

9. Solar Power Stalls

"Solar power is kind of slowing down," mostly due to the costs involved, Yudelson says, adding that focus is shifting instead to energy efficiency. "Solar is still happening. Lots of people like solar … because it’s visible and people want to see something for their money." However, for those building new construction today, he suggests that the most responsible move would be to make it "PV ready," so that as solar becomes more cost effective, it will be cheap and easy to install.

10. Building Management Goes Into the Cloud

As buildings get more complex, Yudelson says, "we’re seeing the need for software that allows us to manage buildings out of the cloud." Thanks to wireless sensors and controls, it’s getting increasingly easier to better direct building managers and maintenance people to locate and fix problems, and to do so remotely.

For the original article go to Builder.

© 2012, Richard Matthews. All rights reserved.

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Inhabitat Interview with the Winning Lead Designer of the 2011 Solar Decathlon

Here is an Inhabitat interview with David Gavin the project design lead for the University of Maryland team that won the 2011 Solar Decathlon. Their winning entry was a solar powered, water conservation-focused home called the WaterShed.
________________________

INHABITAT: How did you get involved in the 2011 Solar Decathlon?

David: I became involved in the 2011 Solar Decathlon pretty much the minute I began my graduate degree in architecture at the University of Maryland. When I was applying to graduate schools, I saw that Maryland had presented course options for their Solar Decathlon entry. At that point I knew that Maryland and the Solar Decathlon would be a great fit for me because I wanted my graduate education to go beyond the classroom, and I wanted to get my hands dirty. The Solar Decathlon has been able to provide that, and I feel that it has prepared me very well for the professional world by allowing me to work collaboratively with people from a variety of fields, including the engineering, construction and management disciplines. It has also presented many of the technical and logistical challenges of a real building project.

INHABITAT: What is your favorite part of the WaterShed Home design?

David: My favorite design element of WaterShed is probably the relationship between the constructed wetlands we’ve created inside the house and the bathroom. When one stands in the shower, they realize the impact of their water usage simply through being able to see the water draining into the grey water filtration wetlands just outside the window. The bathroom’s open design and delicate detailing suggest the continuation of the wetlands through the bathroom, thus reinforcing our message of water conservation.

INHABITAT: What do you think it was that pushed your team’s house to the top of the Solar Decathlon pack and allowed you to win the competition?

David: Two of the main things that allowed us to win the 2011 Solar Decathlon were integration and organization. The University of Maryland had a number of different departments and majors working on WaterShed, and our constant communication among all disciplines allowed us to design a truly integrated house. Every component of the house, from structure to envelope to landscape to mechanical, plumbing and electrical components, were all designed with respect to the other disciplines. This minimized conflicts during the construction period, and in the end, allowed WaterShed to function most optimally during the competition. Organization was also key, all of the team leaders were in constant communication and aware of their responsibilities so that we could operate the house with precision and confidence throughout the competition.

INHABITAT: The Team Maryland WaterShed Home was designed in Revit. Was BIM (Building Information Modeling) an important part of your design process? Can you explain how you used it and how it helped you?

David: BIM was very important in the design process of WaterShed. Being able to model WaterShed in three dimensions was very important in the integration of all of the house’s systems. Not only did we model the structure and architecture of the house, but we created all of the engineering systems as well. BIM allowed us to see all of these systems together in one program, which in turn allowed us to design all of the house components in relation to each other so that there were no hot water lines running through light fixtures or ductwork cutting through structural members. This proved to be critical because it minimized the amount of problem solving we had to do in the field during construction. BIM was also great because it allowed us to generate all of our construction documents very efficiently. The 3D model also served as the base for all of the renderings and graphics we used for our communications materials.

INHABITAT: How did BIM technology allow you to do things you might not otherwise have been able to do?

David: One of the great ways BIM was able to help us with WaterShed was being able to see all components of the house in three dimensions. It allowed us to really make sure that everything within the house actually fit and worked before we began construction (in a way that two-dimensional drawings would not have been able to reveal). Being able to explore the 3D model of the house also helped us to resolve many construction details before construction even began. So, BIM really helped us to streamline not only our documentation process, but construction as well. Our use of BIM definitely gave us an edge and probably helped us to win the 2011 Solar Decathlon. Not only did it allow us to efficiently design and build a great house, many of the materials that were generated from the model helped us place in many of the juried categories. The quality of our construction documents was a scoring factor in both the architecture and engineering competitions, and in both we were praised for the completeness and clarity of our documents. Also, the model was the basis for many of our graphics, which were judged in the communications contest. So, our ability to create a great BIM model was definitely a big part of our victory.

INHABITAT: What would you like to do after you graduate from the University of Maryland? What are your goals?

David: After I graduate from University of Maryland, my main goal is to just get a job! I would like to get a job in a smaller architecture firm somewhere along the east coast. I would like to learn how to run a firm and operate a business so that I can one day accomplish my goal of having my own practice specializing in urban design and redevelopment.

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Greenbuild NEXT Opens in Toronto: First Time Outside of the US

Greenbuild NEXT is the first time the US Green Building Council is hosting Greenbuild outside the United States. Greenbuild 2011 is located in Toronto and is taking place between October 4th and 7th. The event celebrates what's new and innovative in green building.

At the opening Plenary on October 5, The event's keynote speakers included, New York Times columnist Thomas Friedman, ABC News political commentator Cokie Roberts, former Prime Minister of Canada Kim Campbell, medical anthropologist and physician Dr. Paul Farmer,

Friedman, a Pulitzer Prize-winner and internationally renowned author, reporter, and columnist, will provide the keynote, then lent his expertise to USGBC's Resiliency Agenda panel.

In his 2008 bestselling book, Hot, Flat, and Crowded: Why We Need a Green Revolution—and How It Can Renew America, Friedman explored the parallels between the climate crisis and the global economic crisis, proposing a national strategy, coined "Geo-Greenism," to make America healthier, richer, more innovative, more productive, and more secure. "I find this set of issues—how we take the lead in the clean-tech revolution and use that to refresh, renew, and revive America—is what animates me most," Friedman has said.

Joining Friedman on the panel was medical anthropologist and physician Dr. Paul Farmer. As Chair of Global Health and Social Medicine at Harvard Medical School and Founder of Partners in Health, Dr. Farmer has written extensively on health, human rights, and the consequences of social inequality. His new book, Haiti: After the Earthquake, makes a thoughtful assessment on what works — and what doesn't — in helping communities recover from disaster.

The panel was moderated by Roberts, an Emmy Award-winning journalist, bestselling author and a native of New Orleans, will discuss resiliency and demonstrate how all industries can play a role in community rebuilding efforts in Haiti , New Orleans and around the globe. Roberts serves dually as Senior News Analyst for National Public Radio and Political Analyst for ABC News. An inductee into the Broadcasting and Cable Hall of Fame, Roberts has won countless awards, and was cited as one of the 50 greatest women in the history of broadcasting.

To complete the panel, former Prime Minister of Canada Kim Campbell addressed what she has called "the trifecta of disadvantage" where countries most at-risk from global warming are also among the world's poorest economies and weakest states. In the past, Ms. Campbell has addressed not only the impact of the physical changes of global warming on human societies but also the security risks that can be posed by this global threat as well.

© 2011, Richard Matthews. All rights reserved.

University of Maryland Wins Solar Decathlon

Students at the University of Maryland won the 2011 showcase for innovative and affordable solar powered homes known as the US Energy Department Solar Decathlon. A total of nineteen collegiate teams from as far away as China and New Zealand traveled to Washington to compete in this year’s event, the fifth Solar Decathlon since 2002.

Maryland came in second in the decathlon event in the 2007 and they did not participate in the 2009 competition which gave students and faculty a chance to develop the winning entry this year.

The U-Md. design incorporated everything it had to have to be sustainable. Their winning home, is called "WaterShed," and was inspired by the ecosystem in Chesapeake Bay. It features a green roof that provides insulation and a system that filters sink and shower water, recyling it for use in wetland gardens that run the length of the house.

Judges rated the teams’ entries in 10 categories, including energy efficency, cost effectiveness and aesthetic appeal.

Purdue University took second place overall with a design firmly rooted in the modest homes of Midwest suburbia. A team from New Zealand’s Victoria University of Wellington took third.

The next Solar Decathlon is scheduled for fall 2013.

© 2011, Richard Matthews. All rights reserved.

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Green Building Council's World Green Building Week 2011: Powerful Plants

World Green Building Week takes place between the 19th and the 23rd of September. Green Building Week is a global event organised by the World Green Building Council.

In honor of World Green Building Week 2011, eFIG will be presenting a webinar called Powerful Plants on Friday 23rd September. The webinar will explain how important plants are to our well-being and to the environments in which we work. As they explain on their site, plants are an essential part of any sustainability programme. The webinar explains why every building should have plants indoors as well as outdoors. And how these can contribute to the UK Government's Happiness Index and their targets to reduce absenteeism. The webinar will be hosted by Brighttalk and will be available to view after the event as well.

Check out the UK Green Building Council’s website for more events taking place during the week 19th to the 23rd of September.

For the full schedule of Green Building Week events click here.

© 2011, Richard Matthews. All rights reserved.

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Mississippi State University has the first LEED® Certified Chapter House in the US

Mississippi State is the first university to have a LEED-certified (Leadership in Energy and Environmental Design) chapter house in the US. The 16,000 square foot Pi Beta Phi chapter house maximizes open space, uses indigenous landscaping and bicycle storage. Plumbing and air conditioning systems incorporate water-use reduction features. The use of insulation and window glazing also optimizes energy performance.

Specific design elements used in achieving LEED certification are renewable materials and recycled content in finishes, compact fluorescent lighting, and drought tolerant plants, which minimizes water needs and allows lush green landscaping without the need for irrigation.

“We are extremely proud of our new LEED-certified chapter house at Mississippi State,” said Eileen Grigutis, president of the Fraternity Housing Corporation. “Pi Beta Phi is committed to providing members a safe living environment for their new home.” The house will open its doors for members when they return to school in August.

“We are honored to be among the most elite of properties who have achieved LEED certification. By having third party verification through USGBC, we are confident we have delivered a home that is not only a good steward of the environment, but also provides a healthy atmosphere for future Pi Phi women,” Leah FitzGerald, Assoc AIA, LEED AP, board member of Fraternity Housing Corporation, who managed the project during construction said. “The added distinction of being the First LEED certified sorority in the United States, establishes us as a leader in sustainability, an achievement in which we are extremely proud.”

© 2011, Richard Matthews. All rights reserved.

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The Campus Green Builder Online Portal

The Campus Green Builder (CGB) online portal provides information for academic institutions. this is a one-stop online resource on campus green building that is free and accessible to all higher education institutions. Though the information provided is relevant to all higher education institutions, the CGB is particularly geared towards under-resourced colleges and universities. It aims to level the playing field for all institutions of higher education to gain access to funding and technical resources for green building.

Under-resourced colleges often have financial constraints that make it difficult for them to embrace the shift to green building and sustainability initiatives on their campuses. The goals of the Campus Green Builder are to:

1. Advance green building at colleges and universities so that it becomes “business as usual."

2.Level the playing field for all institutions of higher education in terms of accessing funding, technical resources, and networks for green building.

3. Provide an up-to-date resource on relevant news, events and other opportunities, including grant opportunites.

4. Provide opportunities for under-resourced institutions to share their experiences and learn best practices.

Second Nature, a nonprofit organization advancing sustainability in the higher education sector, launched a strategic outreach and education program, the Advancing Green Building in Higher Education Initiative, to assist under-resourced higher education institutions, such as many Minority-Serving Institutions, community and technical colleges, and small inner-city, rural, or religiously affiliated institutions to “build green” on their campuses. The Campus Green Builder web portal is one of the principal activities within this initiative.

The Advancing Green Building in Higher Education Initiative, in collaboration with The Kresge Foundation, aimed to provide long-term capacity for under-resourced higher education institutions to advance and become leaders in the field of green building and sustainability, while encouraging them to commit to climate neutrality through the American College and University Presidents’ Climate Commitment.

Based on the success of this initiative, Second Nature has recently launched a new phase of its capacity building work. This comprehensive "Education for Sustainability Innovation Program" promotes innovation and leadership among financially strained and minority-serving colleges and universities.

The Education for Sustainability Innovation Program will help ensure that graduates are prepared to lead the changes needed to overcome the interrelated social, environmental and economic challenges of the 21st century by driving innovative approaches to Education for Sustainability (EfS).

The Campus Green Builder offers the following information and opportunities for networking:
  • Links to green building resource websites as well as green building experts’ directories.

  • Case Studies to serve as models and learning resources regarding campus green building at under-resourced colleges and universities.

  • Announcements of green building and campus sustainability events, conferences, workshops, webinars, courses, meetings, summits, etc.

  • Free user accounts in which individuals can save their favorite resources.

  • Campus Green Builder Blog for peer-to-peer networking.

  • Information on other Advancing Green Building activities and projects.

for more information click here.

© 2011, Richard Matthews. All rights reserved.

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Green Training Modules From Green Education Online

Green Education Online provides green educational modules for the adult learner. Here are 21 green training modules:

Green Cleaning Specialist: This module is for the student who wants to focus on a career in the green cleaning industry. A review of green cleaning techniques and practices for business and residential applications or for the homeowner as well. Upon passing the final exam, a certificate of completion will be issued.
Duration: 6 hours
Cost: $299.00


Green Germ Control Specialist: This module provides a Green approach to sanitization methods. The continued impact of MRSA, H1N1, and more that 30 contagious diseases requires a knowledge of how to address this concerns from a cleaning point of view as the first line of defense. Upon completion of the course, the student will receive a certificate of completion.
Duration: 4 Hours
Cost: $149.00


Green Building for Health Care Professionals: Cost: This module delivers information on the impact of green building cleaning practices and the benefits of recycling, renewable energy and waste management. According to the Bureau of Labor Statistics, hospitals and nursing facilities are among the most hazardous work environments. Upon passing the final exam students will receive the GCHCP-GL, a Level One Green Certified Health Care Professional, with the Green Leadership Certification.
Duration: 8 hours
Cost: $399.00


Green Building for Insurance Professionals: This module yet easily is packed with information and links. This course offers an in depth view of green building and what the future will hold for insuring these new types of building systems. We review the importance of renewable energy, commissioning and accountability and how green building materials impact the insurance industry. Upon passing the final exam, insurance industry professionals will receive the GCIP-GL, a Level One, Green Certified Insurance Professional, with the Green Leadership Certification.
Cost: $149.00
Duration: 4 hours


Green Handyman and Weatherization Specialist: This course is for those in construction trades. It provides a basic introduction to making a home Greener, more efficient or sustainable, and reducing the cost of home operation. Some experience with basic construction, simple carpentry skills, and some hands‐on practice in a variety of home improvement items will be an advantage. Knowing how to use a caulking gun, install insulation, and refit a thermostat are simple skills that we anticipate are not new to the student. Upon completion of the course, the student will receive a certificate of completion.
Cost: Cost: $299.00
Duration: 6 hours


Green Landscaping: This course module is designed for the professional landscaper or caring homeowner to teach how to reinvent the way traditional landscaping has been done. Most landscaping processes are anti-green, but this course provides tremendous insight into lawn care, weed control, fertilizer, and irrigation. Special topics covered in this course include prairie reversion, Green roofs, and phyto-remediation offering tremendous insight into the future of landscaping. Upon completion of the course, the student will receive a certificate of completion.
Cost: $149.00
Duration: 4 hours


CSR- Corporate Social Responsibility/Green Business Practices: This module discusses corporate social responsibility. We review green business concepts such as recycling, sustainability and we offer information on renewable energy and a guide for developing a business energy plan. Upon passing the final exam, students will receive the GCBL-GL, a Level One Green Certified Business Leader®, with the Green Leadership Certification.
Cost: $149.00
Duration: 4 hours


Green Government Leader: This module includes a step-by-step guide for developing an energy plan and define a government’s commitment to become more socially responsible. An overview of green fleet management, renewable energy and resources will be defined. Upon passing the final exam, students will receive the GCGL-GL, a Level One Green Certified Government Leader, with the Green Leadership Certification.
Cost: $149.00
Duration: 4 hours


Green Certified Home Inspector: This module introduces the home inspector to green building, renewable energy and energy efficiency. Suggestions are offered on what the home inspector can do to assist homeowners and homebuyers in making informed decisions on future green renovations. Upon passing the final exam, licensed home inspectors will receive the GCHI-GL, a Level One Green Certified Home Inspector, with the Green Leadership Certification.
Cost: $149.00
Duration: 4 hours


Green Building for Mortgage Professionals- Level One Certification: This module offers an overview of green building systems and energy financing products that lenders, loan officers, and underwriters need to understand to assist a homeowner to become more energy efficient. A review of FHA, VA, FANNIE AND FREDDIE guidelines, limitations and ratios are offered. Upon passing the final exam licensed professionals will receive the GCMP-GL, a Level One Green Certified Mortgage Professional, with the Green Leadership Certification.
Cost: $149.00
Duration: 4 hours


Green Building for Real Estate Professionals- Level One Certification: ARELLO approved content, this module offers real estate professionals who want to gain insight on the proper way to guide clients as they begin to show interest in these new types of renovations. Energy ratings, renewable energy, energy mortgage concepts and green certification process are discussed. Upon passing the final exam, students will receive a logo for marketing and the GCREP-GL, a Level One Green Certified Real Estate Professional, with the Green Leadership Certification.
Cost: $149.00
Duration: 4 hours


Waste Management Coordinator: This module offers information on how to develop recycling programs within a company or government entity to initiate and monitor performance. They will be able to supervise waste management efforts,learn about sustainability and the basics of renewable energy. Upon passing the final exam, the student will receive a Waste Management Coordinator certificate of completion at the end of the class.
Cost: $299.00
Duration: 6 hours


Sustainability Planning Specialist: This course for professional development addresses the importance of social responsibility and developing an internal process to monitor organizational sustainability issues. The course guides the student in how to assist a company in developing a plan to have a more sustainable approach in areas such as renewable energy, waste stream management and green building practices, Upon passing the final exam, the student will receive a Sustainability Planning Specialist certificate of completion.
Cost: $299.00
Duration: 6 hours


Certified Sustainability Officer: This course prepares the student for a career within a company or government entity. The course will teach techniques to develop and monitor energy programs and energy consumption. They will be able to supervise waste management efforts. Upon completing a case study/lab project and then passing the final exam, the student will receive an actual national certification from the Green Business League.
Cost: $1595.00
Duration: 35 hours


Introduction to Waste Management Concepts:Businesses in all industries will benefit from the guidance in this course. The student will be introduced to the concepts in waste management and the possibility of the production of revenue streams.
Cost: $69.95

Green Government Leadership and Sustainability: A course for all in the government arena to understand how to organize for a leadership role in their community, Designed for all levels to understand the need for an energy plan, green fleet management and government’s role in the green arena.
Cost: $69.95

Introduction to Energy Efficient Mortgages: This module is a review of green building basics and a look into the energy financing products available for lenders. We define a lenders role and guidelines for loan processing to develop the creation of a new revenue stream.
Cost: $69.95

Understanding Social Responsibility and Green Building for Lenders: This course offers insight into the world of green building and the responsibility the lending profession has in this day and age. We define what green building is and the green rating certification process. Information is offered on the importance of corporate social responsibility, its definition and lender positioning in this arena.
Cost: $69.95

Introduction to Sustainability Planning: A course for any student who wishes to introduce concepts to begin to implement sustainability into a company's business model. We define sustainability principles and offer an actual plan to begin the process of implementation. Upon passing a final exam, a certificate of completion is offered.
Cost: $69.95

Company Branding and Positioning in the Green Economy: This module reviews corporate social responsibility concepts and discusses how to conduct outreach, the power of green purchasing, energy plan design and the importance of green cleaning policies. Understanding these principles will help develop your company’s direction for branding that will have a positive effect on your stakeholders.
Cost: $69.95

Waste Management for the Health Care Industry: This module is for all levels of management and for employees who work in a health care facility. Health care facilities are among the most hazardous work environments and they produce tons of waste per year. Through a review of case studies, the student will understand the possibility of additional revenue streams while producing a healthier indoor environment.
Cost: $69.95

For more information visit the Green Education Online or contact admin@greeneducationonline.com

© 2011, Richard Matthews. All rights reserved.

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The Princeton Review's 2012 Top Green Schools Honor Role

The Princeton Review has released its fourth annual Green Honor Role of colleges and Universities in the U.S. These schools were ranked on a scale of 60 to 99, based on a survey that asked questions about academic offerings, energy use, recycling, food, buildings and transportation.

Some of the universities on the Green Honor Role made the list by attaining zero-waste, maintaining their own forests and wetlands and powering their campuses with alternative energy.

Here is an alphabetized list of the 16 colleges that were awarded the coveted rating of 99, earning them a place on the 2012 Green College Honor Roll:

American University (Washington DC)
Arizona State University (Tempe, Ariz.)
College of the Atlantic (Bar Harbor, Maine)
Dickinson College (Carlisle, Pa.)
Georgia Institute of Technology (Atlanta, Ga.)
Harvard College (Cambridge, Mass.)
Northeastern University (Boston, Mass.)
Oregon State University (Corvallis, Ore.)
San Francisco State University (San Francisco, Calif.)
State University of New York (Binghamton, N.Y.)
University of California (Santa Cruz, Calif.)
University of Maine (Orono, Maine)
University of Washington (Seattle, Wash.)
University of Wisconsin (Stevens Point, Wis.)
Virginia Tech (Blacksburg, Va.)
Warren Wilson College (Asheville, N.C.)

See the Princeton Review's green rating scores for all 768 institutions that were evaluated.

© 2011, Richard Matthews. All rights reserved.

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