Showing posts with label GHG. Show all posts
Showing posts with label GHG. Show all posts

Event - Renewable Energy World International

This event will take place on December 13-15, 2016 in Orlando Florida at the Orange County Convention Center (North and South Halls). Renewable Energy World International tracks are designed to be made horizontally applicable across all technology sectors. Hear from our track champions on what is being covered during these impactful conference sessions.

Building Relationships

Make connections with 20,000 other renewable energy professionals from around the globe. Learn from each other during multiple networking events.

Expand Your Knowledge

Hear from industry experts on topics such as Energy Storage, Distributed Energy Resources, Large Scale Renewables, Global Markets and Utility Integration and more. Conference Tracks CPC Pre-Conference Tracks CEU Training Courses

1,400 Companies to Choose From

Explore the newest technology and see products/services in power generation, renewables, and nuclear. Make deals right from the show floor.

To register click here.

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Solar Innovations are Revolutionizing Energy
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Renewables will Keep Growing Whether Oil Prices are Low or High
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Event - Renewable Energy World Conference & Expo North America 2016

This event will take place from December 13 to December 15, 2016 in Orlando Florida. This BIG PICTURE' conference, will cover the full landscape of renewables. Attendees will hear from several Renewable Energy World International Committee Members about what HOT industry topics are being covered in this years conference.

Become An Exhibiting Company Showcase Your Brand. Get Results.

Why Exhibit? Get in front of 20,000+ industry professionals from 111 countries. Generate quality leads and reach our concentrated group of targeted decision-makers.

Sponsor And Stand Out Accomplish Your Goals.

Bolster your event investment's ROI by working with the sponsorship team. They'll build a customized option based on your company's goals.

For more information and to register click here.

Related
The State of Renewable Energy: Summary of the Key Findings in the REN21 GSR 2016 Report
Solar Innovations are Revolutionizing Energy
Energy Issues and Market Forces in 2016
Big Changes in the Energy Sector in 2015
Market Reaction to COP21 Fossil Fuels Crash Renewables Soar
Renewables are Unstoppable
Why the Corporate World is Embracing Renewable Energy
Renewable Energy Milestones in Germany, Denmark and the US
Renewables will Keep Growing Whether Oil Prices are Low or High
Renewables Decoupled from the Price of Oil
Investments in Renewables Eclipsing Fossil Fuels
Renewable Energy Can Replace Fossil Fuels

Carbon Capture and Storage is Essential Post Paris

Interest in carbon capture and storage (CCS) has intensified in the wake of the Paris Climate Agreement. CCS refers to a suite of technologies that pull CO2 from a smokestack before it escapes into the air. It is then sequestered in some fashion, most commonly by burying it deep underground. CCS is a much needed technology, if for no other reason than the fact that fossil fuels are likely to be with us for years to come.

There have been a number of notable achievements in the area of CCS in recent years. According to Victor Der, executive advisor and acting general manager – the Americas, Global CCS Institute:

"Up to 28 million metric tons of carbon dioxide emissions will be captured by existing operational carbon capture and storage projects this year."

There are now 22 CCS projects that are either operating or under construction in 2016 representing a 100 percent increase in the last ten years and 14 more projects are in the advanced planning stages.

Ion Engineering completed a pilot project using its proprietary technology in 2015. According to the company, Ion's CCS process was able to capture more than 99 percent of the CO2 from a coal fired facility.

Another older carbon capture project in Port Arthur, Texas succeeded in capturing more than one million tons of CO2. This process was able to capture more than 90 percent of the CO2 from two commercial-scale stream methane reformers.

One of the early CCS projects was one by the Midwest Geological Sequestration Consortium (MGSC). In 2011 they started a three year trial to pump more than one million tonnes of CO2 underground.

The Department of Energy has invested and continue to invest significant sums of money into CCS. According to Environmental Leader, so far, DOE projects have stored almost seven and a half metric tons of CO2.

Shell’s Quest carbon capture and storage project is already operating at commercial scale in Alberta, Canada. The Quest project is designed to capture one third of the emissions generated by the refinement of oil sands amounting to one million tons per year.

Recently, the world’s first steel plant with large-scale CCS launched in Abu Dhabi. The project is a joint venture between Masdar and the Abu Dhabi National Oil Company (ADNOC), and it will sequester 800,000 metric tons of CO2 annually.

In 2016 Aker Solutions announced a carbon capture project at a waste-to-energy plant in Norway which the company expects will capture 90 percent of the CO2 emitted.

CCS is an integral part of mitigation planning. Countries like the United States, Europe and Canada are counting on CCS to enable them to meet their INDC pledges. The European Commission's 2030 climate and energy policy framework depends on CCS and Canadian reports indicated that CCS is essential. .Although the US Environmental Protection Agency has also offered some guidance on the subject,  it has yet to be demonstrated cost effectively.

A CO2 Solutions project at Salaberry-de-Valleyfield, Québec came in a cost of $28/metric ton, the lowest demonstrated cost in the industry. However, the real-world reality at present puts the cost of CCS on a coal plant at around $100/ton.

While no one denies that carbon capture is technologically possible, the major obstacle has always been cost. This view is eloquently rendered in a 2016 article by Mike Barnard titled, "Carbon Capture Is Expensive Because of Physics"

"Carbon capture and sequestration is expensive because it has three components, each with its own expensive challenges: capture, distribution, and sequestration."

In March 2015 the Global CCS Institute said:

"The next 18-24 months will see CCS deployed across a range of industries and storage types. A further two large-scale CCS power projects are in construction in the US - the Kemper County Energy Facility in Mississippi and the Petra Nova Carbon Capture Project in Texas. Both projects are expected to be operational in 2016. Also in the US, the Illinois Industrial CCS project slated for launch later this year will capture CO2 from the Archer Daniels Midland corn-to-ethanol plant in Decatur, Illinois for storage in an onshore deep saline formation."

As explained in a December, 2015 report titled Closing the Gap on Climate: Why CCS is a Vital Part of the Solution, governments need to enact supportive policies.

This report indicates that CSS is essential to keep us within the 2 degrees Celsius upper threshold limit. Governments need to pass laws, support regulations and provide incentives to help advance CCS. Governments will likely provide incentives for sequestration in the form of tax credits on a per-ton basis.

We currently have 22 CCS facilities but we will need thousands around the world to make a difference.

Related
Ambient Air Carbon Capture (Video)
Innovations that Sequester Carbon and Combat the Climate Crisis (Videos)
The Failure of Clean Coal
The Farce of Canada's Carbon Capture
Canada is Banking on Carbon Capture to Offset Tar Sands

Carbon Air Capture and Storage (Videos)

We need technologies that draw carbon dioxide from the air and either re-use or store it. While we must curtail our carbon emissions we must also find ways to reduce existing levels of atmospheric carbon. Climate change is caused by the buildup of greenhouse gases in the atmosphere, especially carbon. Prior to the dawn of the industrial revolution atmospheric carbon levels were below 300 ppm, they are currently above 400 ppm and climbing.
In 2009 Columbia University Physicist Peter Eisenberger claimed to have invented a machine that could clean carbon from the air. As explained in MIT Technology Review, his company called Global Thermostat uses chemicals called amines rather than sodium hydroxide.

"Negative emissions are definitely needed to restore the atmosphere given that we’re going to far exceed any safe limit for CO2, if there is one," says Daniel Schrag, director of the Harvard University Center for the Environment.

Reducing the emissions that we produce is essential but we need to think about a post-sustainability world. Our current INDC pledges are inadequate as they will not reduce emissions enough to keep up from breaching the 2 Celsius upper threshold limit. We must begin thinking about technologies that will enable us to actively remove carbon from the air.

Carbon Engineering is working on the industrial-scale capture of CO2 from ambient air. This video explains the technology and the rationale behind direct capture of CO2 from the atmosphere and what Carbon Engineering is doing to commercialize air capture.


Below you will find a Carbon Talk, by Dr. Richard Adamson, President of Carbon Management Canada Research Institutes. This video explores the need and the state of  industrial-scale air capture technology development.

Dr. Naoko Ellis, Professor of Chemical Engineering at UBC, introduced the audience to some of the innovative technologies currently under development, including different methods for carbon capture from the air such as amine scrubbers, sorbents, and metal-organic frameworks. She also discussed engineering new forms of hydrocarbon combustion that do not release CO2 and the need to commodify CO2. Following the presentation, discussion during the dialogue touched on the role of technology in creating climate solutions and how carbon pricing can drive economic innovation.

Panelists: -- Richard Adamson, President, CMC Research Institutes -- Naoko Ellis, Professor, Department of Chemical and Biological Engineering at the University of British Columbia


Related
Innovations that Sequester Carbon and Combat the Climate Crisis (Videos)
The Failure of Clean Coal
The Farce of Canada's Carbon Capture
Canada is Banking on Carbon Capture to Offset Tar Sands

The Allure of Low Carbon Investment Opportunities

Investors are waking up to the opportunities afforded by the low carbon economy. The benefits of emissions reduction extend far beyond averting a climate catastrophe. Decreasing our GHG emissions will help create jobs, alleviate poverty, improve public health and even provide greater food security.

The math supports climate action and the economics are becoming harder to refute. Market forces are driving a steady flow of capital and investors are finding it impossible to ignore the return potential of low carbon technologies.

We have never confronted such a portentous and daunting challenge as the climate crisis, nor have we ever seen such a stellar opportunity. This is a unique investment that offers phenomenal returns, while fostering socio-economic growth.

The case for a low carbon economy is getting stronger and concerns that it will bankrupt the economy are proving to be false. Early in 2016 IRENA indicated that doubling the amount of clean energy by 2030 compared to 2010 levels, will increase GDP by $1.3 trillion.

As explained in the background of a EurActiv.com article, the amount of money that needs to be invested to cut emissions to sustainable levels is estimated at between 500 ($568) and 1,500 ($1,705) billion euros per year.

Nations like the US are poised to formally ratify the emissions reduction pledges they made at COP21. Most of the world's leading emitters have already announced plans to massively increase their renewable energy capacities. These commitments are expected to grow over time.

At the beginning of the year, Mindy Lubber and Christiana Figueres wrote,
"The winds of change from Paris are already shifting policy and financial flows towards ever cleaner and renewable energies and sustainable infrastructure."
The size of the opportunity is enormous. US Secretary of State John Kerry said that climate change presents an opportunity that could far surpass the tech boom of the 1990s. The climate crisis is, "a multitrillion-dollar market with billions of users worldwide." Kerry said. "[C]lean energy is one of the greatest economic opportunities the world has ever seen...There are opportunities literally everywhere you look."

Research from the New Climate Economy corroborates Kerry's claim and finds that low carbon investing in cities alone could generate savings of between $17 and 22 trillion by 2050. For example, New York City has reduced its GHG emissions by 19 percent since 2005, and it plans to reduce emissions 80 percent by 2050.

Clean energy has grown six fold in the last decade and in 2015 we saw big changes in the energy sector. A record 330 billion was invested in new clean energy initiatives. According to Global Trends in Renewable Energy Investment 2016, since 2004, the world has invested $2.3 trillion in renewable energy. This will only grow reaching an astounding $68 trillion in energy investments by 2040. The IEA says that we will need $90 trillion of new energy investment by 2030.

As explained by Lubber and Figueres:
"The actions needed are legion, but so too are the rewards for investors and companies who make the shift early and embed the transition rapidly."
Related
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Renewables are Unstoppable
Renewables will Keep Growing Whether Oil Prices are Low or High
Renewables Decoupled from the Price of Oil
Investments in Renewables Eclipsing Fossil Fuels
Market Reaction to COP21 Fossil Fuels Crash Renewables Soar
Corporate Pledges to Increase Renewable Energy
Why the Corporate World is Embracing Renewable Energy

US Proposals to Cut Methane and Other Pollutants

As an extension of his Climate Action Plan President Obama through the EPA has announced a series of proposals that will reduce methane and other harmful emissions. While there are there are already some voluntary programs to reduce methane emissions, the EPA has proposed new regulations that will significantly reduce methane in the oil and gas sector as well as in landfills.

In June of this year the EPA announced that it was preparing plans to limit methane. On August 18, 2015, the EPA publishes more details of the new rules. The standards are intended for the oil and gas sector. They are designed to reduce methane, VOCs and other toxic air pollutants. Under the proposed regulations the oil and gas industry would have to cut methane emission by 40 to 45 percent from 2012 levels by 2025.

The new standards would reduce methane emissions by between 340,000 and 400,000 short tons. This is equivalent to reducing 7.7 to 9 million metric tons of carbon dioxide. According to EPA estimates the net climate benefits will be worth between $120 and $150 million. In addition to methane the new rule will eliminate as much as 180,000 tons of volatile organic compounds (VOCs).

To achieve these goals the new EPA rules require the oil and gas industry to find and repair leaks, capture gas leaking from fracking wells, as well as limit emissions from pumps and other equipment. Several studies have shown that due to leakages, natural gas has a higher emissions profile than coal.

The new standards also address airborne toxins, including benzene, toluene, ethylbenzene and xylene. Under the plan as much as 2,500 tons of these toxic emissions will be eliminated.

On August 14, 2015 the EPA issued two other proposals that are intended to reduce methane emissions from municipal solid waste landfills which are the third largest source of anthropogenic methane. As part of the proposals landfills would have to reduce methane emissions by almost one third. 

Landfills generate around 18 percent of methane emissions which is the equivalent to 100 million metric tons of carbon dioxide pollution.

The proposed rules are expected to reduce methane emissions by an estimated 487,000 tons a year which is equivalent to reducing 12.2 million metric tons of carbon dioxide.

The EPA estimates the climate benefits of the combined proposals at nearly $750 million in 2025 or nearly $14 for every dollar spent to comply. Combined costs of the proposed rules are estimated at $55 million in 2025.

Related
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Innovations that Sequester Carbon to Combat Climate Change (Videos)

There have been a wide assortment of innovative solutions proposed to combat the climate crisis. While most of these technologies offer low carbon alternatives to existing technologies, others actually remove greenhouse gases (GHGs) like carbon right out of the air.

Some innovations use renewable energy to power traditional technologies like air conditioning and water desalination. Others use structures in novel ways like rotating power-generating buildings and skyscrapers.

Microsoft founder turned philanthropist Bill Gates advocates creative renewable technologies like solar chemical power, in which sunlight converts water into hydrogen fuel. Gates is also a fan of high-altitude wind power, which uses the intense energy of jet stream 20,000 feet above the ground. Another novel approach involves generating electricity with orbiting solar arrays. While these approaches are feasible they are still years away.

We need technologies that can be implemented in the short term. Some agricultural innovations are already a reality like vertical farming. Other innovations are adaptations to a warmer world where we can expect much higher sea levels. This includes things like floating houses and even floating cities.

There can be no doubt that the best way to reduce the amount of GHGs in the atmosphere involves not putting them there in the first place. However, the next best approach seeks out ways of siphoning GHGs directly from the air.

Carbon sequestration is a problem because even if it can be done cost effectively, where to put all the of the CO2 once it’s been captured. Some suggest that we can recycle carbon instead of mining fossil fuels.

One possibly groundbreaking approach was created by a Canadian company called Carbon Engineering. They have created a wall that can suck carbon dioxide straight out of the air and convert it into fuel. As shown in the video below, air flows through the row of fans. They are connected to a carbon dioxide-rich solution, which absorbs carbon compounds out of the air. The solution is purified, with the carbon dioxide within it extracted, and then purified again for reuse.



There are a number of other innovative inventions that remove carbon from the air including tiny silicon capsules that employ bicarbonate (baking soda) to dissolve CO2. This process is called encapsulated liquid sorbents.



Scientists at the University of Southern California, have used a cheap and easy to synthesize polymer called polyethylenimine (PEI) to filter carbon from smokestacks or right out of the air. The polymer coated with a substance called fumed silica can be packed into columns, which can be inserted into flues and chimneys in factories and power plants. Carbon is collected and when it becomes saturated, the PEI device is replaced. When the PEI device is heated above 100 degrees Celsius, it releases the carbon. This is easy way to collect and concentrate carbon dioxide so that it can be reused as fuel.

Graphene is another material capable of sequestering carbon that may indeed prove to be a game changer. Although these technological innovations may prove invaluable, we should realize that forests are by far the most powerful source of carbon sequestration currently existing on earth. Oceans also sequester carbon, although this causes acidification which has a destructive and costly impact on marine ecosystems.  New research reveals that deserts also sequester carbon. 

Related
The Failure of Clean Coal
The Farce of Canada's Carbon Capture
Canada is Banking on Carbon Capture to Offset Tar Sands