Showing posts with label battery. Show all posts
Showing posts with label battery. Show all posts

Energy Storage Market Overview and Forecasts

The stored energy market has grown exponentially but this is nothing compared to what we can expect to see in the coming years. Massive growth is expected all around the world and this will contribute to an exponential increase in distributed power in developed nations. This will also allow developing nations to forego the need for a expensive investments in grid infrastructure.

The combination of increasing-efficiency and decreasing-cost will keep driving demand for energy storage in 2017 and beyond.

Lithium-ion

Lithium-ion technologies accounted for more than 95 percent of new energy-storage deployments in 2015. There is no reason to believe that this trend will not continue. Given all the options on the table lithium-ion batteries have proven to be the most suitable type of storage for EVs and stationary energy across the grid, from large utility-scale installations to residential systems.

Although most insiders suggest that the battery storage space will continue to be dominated by lithium-ion technologies there is still the very real possibility that some novel storage configuration will emerge.

As explained by Matt Roberts, executive director of the ESA, "Global trends are feeding into that…partly because major applications of today lend themselves to batteries. Equally, lithium-ion dominates on account of cost; but it has reached that cost because of demand driving production."

Cost

Affordable storage is the missing link in intermittent renewable power. The cost per kilowatt-hour  (kWh) is currently around $300 but it was $1,000 in 2010. According to some estimates costs could be $160 per kWh or less by 2025 and even cheaper thereafter.

As reported in a Renewable Energy World review of the storage market, Bloomberg New Energy Finance expects battery technology to fall to $120 per kWh by 2030.

We are seeing decreasing costs and increasing density in both the stationary energy storage sector and EVs. The release of the Model 3 is a signal that this trend will continue to drive growth. A report in Ward’s Auto says EV battery prices are falling faster than expected and could be lower than $100 per kWh by 2020.

Global

In 2014 NEC Energy Solutions predicted that energy storage would be worth $20 billion by 2020.  Others expect the lithium-ion battery sector will be worth $54 billion by 2024.

Alex Eller, a research analyst at Navigant Research says that in 2017 he expects to see the global market grow 47 percent over the record set in 2016. Through 2020, Navigant forecasts over 29.4 GW of new storage capacity to be deployed worldwide across all sectors, and a compound annual growth rate of 60 percent.

According to a McKinsey article titled, "The new economics of energy storage" global opportunity for storage could reach 1,000 gigawatts in the next 20 years. The large-scale deployment of energy storage is expected to radical alter electricity markets.

US

According to a report from the Energy Storage Association (ESA), deployed non-hydro energy storage reached 2,276 MW by the start of 2016. Last year we saw 284 percent growth in the US energy storage market as measured by megawatt-hours. The ESA anticipates that this record setting growth will continue in 2017.

Greentech Media cites a report by KEMA that indicates that a record-setting 221 megawatts of storage capacity was installed in the US in 2015 , more than three times as much as in 2014. The US market alone is expected to be worth $2.5 billion by 2020. That is six times as much as in 2015.

The biggest growth is expected to be in distributed storage and grid integration of renewables. Even without tax incentives the KEMA report predicts that we will see 820 megawatts to facilitate integration of renewables.

A Massachusetts energy storage report titled, State of Charge, claims the cost of procuring 1.7 GW of energy storage will be between $970 million and $1.35 billion. However, the report also suggests that this could yield $2.3 billion in system benefits to ratepayers and $1.1 billion in market revenue to the resource owners.

UK

The latest Energy Entrepreneurs report from SmartestEnergy suggests that UK battery capacity could grow by as much as 100 times by 2020. In 2016 there were only 20 megawatts of commercial batteries in operation but 578 megawatts of capacity is scheduled to come online by 2020. The combined capacity may be as high as 2.3 gigawatts.

The UK is investing £246m in battery technology as part of a project called the "Faraday Challenge" This initiative, which includes a competition, seeks to establish the UK as world leader in battery technology.

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Event - California Energy Storage: Cost Effectiveness and Beyond

California Energy Storage: Cost Effectiveness and Beyond will take place on Thursday, April 17, 2014, 1:00pm - 3:30pm PST/ Streamed Panel Discussion 1:30pm - 3:00pm PST/ 4:30pm - 6:00pm EST. Meeting in San Francisco.

In October, 2013, the California Public Utilities Commission issued the unprecedented Decision requiring the state’s utilities to meet energy storage procurement targets of 1.3 gigawatts of storage by 2020. The Decision is intended to:

1. Assist in optimizing California’s electricity grid, including peak demand reduction, improving reliability, and deferring investments in transmission and distribution upgrades
2. Facilitating integration of renewable energy onto the grid
3. Contributing towards the state’s goal of reducing greenhouse gas emissions to 80 percent below 1990 levels by 2050.

The Decision called for the first procurement by the state’s three largest electric utilities (Pacific Gas and Electric Company, San Diego Gas & Electric Company, and Southern California Edison Company) by March 1, 2014, with the first solicitation by December 1, 2014. Further procurements will occur biennially. California’s Community Choice Aggregators and electric service providers will also be required to procure energy storage equal to 1 percent of their annual 2020 peak load by 2020 with installation no later than 2024. The procurements will be competitive solicitations for offers involving RFO(s) for third-party owned or –aggregated resources.

Each energy storage project must be cost effective on a stand-alone basis, with unique factors such as geographic location and multiple storage applications impacting the relative cost effectiveness of each project. The projects will be defined as either transmission-connected, distribution-connected, or customer-side storage. The decision encourages third party ownership of energy storage facilities by limiting utility ownership of storage resources to 50 percent of cumulative target capacity across all three grid domains. The transmission- and distribution-domain storage projects are to be procured in compliance with the CPUC’s Long Term Procurement Planning procedures. Customer-side storage will be procurable via existing programs such as the Self Generation Incentive Program (SGIP), Permanent Load Shifting (PLS), Demand Response, and Vehicle to Grid services.

Determining the cost effectiveness of each energy storage project requires complex analyses which include specific costs and benefits particular to the given project. Furthermore, as highlighted by DNV GL (formerly DNV Kema), existing modeling tools do not integrate scenarios that include both customersavings/energy use optimization and grid-performance models.

Our panel of experts will examine the most vexing challenges to quantifying the cost effectiveness of energy storage projects on a case-by-case basis.

Some of the issues they will address include:
  • What are the most important aspects of the utility procurement procedures?
  • Which storage projects are most likely to achieve cost effectiveness?
  • What are the key assumptions made when assessing individual energy storage project cost effectiveness? 
  • Which storage applications typically can be combined at one location to increase a project’s cost effectiveness?
  • Should storage be valued for more than cost effectiveness: are there benefits not easily quantified?
  • To what extent can energy storage help mitigate the expected mis-match in late afternoon to early evening hours, when over-generation may occur, followed by potential under-generation when solar power decreases significantly and demand peaks?
The California Independent Service Operator (CAISO) popular “Duck Graph” exemplifies this challenge, but has also created a bit of controversy.

Accepted attendees will be provided the specific location in San Francisco upon confirmed registration.

For more information or to request to join the panel, please contact: ted.howard@agrion.org

To register click here.

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Event - Wind Farm Data Management & Analysis 2013

This event will take place on September 23-25, 2013, at the Radisson Blu Hotel, Hamburg, Germany. Wind Farm Data Management and Analysis 2013 will focus on implementing an effective data management strategy to reduce O&M costs.

Windpower Monthly’s Wind Farm Data Management and Analysis Forum is the ONLY event focused on understanding how to optimise wind data to reduce O&M costs and improve turbine performance.

Topics covered include R&D from leading industry heavyweights including: OWI-Lab, ECN, RWTH Aachen, DTU Wind Energy, Fraunhofer Institut (IWES) & Durham University.

Last year’s event received 100% satisfaction from all attendees. Feedback included:

“Focused and very interesting – really worthwhile!”
- Wind Energy R&D Engineer, Romax Technology Ltd

“Informative and great networking event”
- Researcher Wind Energy Systems, ECN

“Eye opener to what is happening in the field”
- Technology Engineer, ZF WindPower

“Got a good impression of issues and trends”
- Chief Engineer, Siemens WindPower

For more information click here.
To register click here. wind, renewables, renewable energy, power, electricity, solving, solutions, capacity, overview, summary, review, renewable power, clean, green,

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Course - Wind Power Planning School

Course - Wind Energy (WND)

Wind Energy (WND) will take place on Sunday Sep 8, 2013, in Woodbridge, ON at the Living City Campus, Kortright Centre, 9550 Pine Valley Drive. This workshop is designed to introduce participants to the criteria for the selection of a wind energy system.

Participants will explore the fundamentals of wind energy, its components, and the application of off-grid and grid-tied wind systems. Topics covered will include the various types and sizes of machines, towers and the procedures for installation. The instructor will also be conducting a tour of the seven installed wind turbines along the Kortright Power Trip Trail. Portions of the day will be spent outdoors; participants should dress accordingly. (Lunch is provided).

To register for this workshop click here.

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Wind Energy Storage Solution Employing Concrete Spheres

Offshore wind holds tremendous promise, however the intermittent and unpredictable presence of wind imposes limits on this technology. However a new approach from researchers at MIT may have solved this problem with an approach that stores energy to be used when there is no wind.

This concept employs huge concrete spheres which would anchor wind turbines to the sea floor. When a wind turbine produces more energy than is needed, power would be diverted to drive a pump attached to the underwater structure, pumping seawater from a 30-meter-diameter hollow sphere. Then when there is no wind the water would flow back into the sphere through a turbine attached to a generator, producing energy.

A 25-meter sphere could store up to 6 megawatt-hours of power. One thousand spheres attached to wind turbines could produce as much coal or nuclear plant.

The system could also operate with shore based renewable sources of electricity like solar plants. Preliminary estimates indicate that one such sphere could be built and deployed at a cost of about $12 million but as the spheres are mass produced costs would come down. This could result in an estimated storage cost of about 6 cents per kilowatt-hour.

A 30-inch-diameter prototype was built in 2011 demonstrated the feasibility of the concept. MIT has filed for a patent on the system.

Due to its carbon emissions profile, one of the major problems associated with the concept is the amount of concrete that would be required. To address this problem the concrete spheres could be made, in part, using large quantities of waste fly ash from existing coal plants

The researchers at MIT estimate that these concrete sphere floating wind turbines could create enough capacity to supply one-third of U.S. electricity needs.

Click here to see a full report on the concept published in IEEE Transactions and co-authored by Alexander Slocum, the Pappalardo Professor of Mechanical Engineering at MIT; Brian Hodder, a researcher at the MIT Energy Initiative; and three MIT alumni and a former high school student who worked on the project.

© 2013, Richard Matthews. All rights reserved.

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wind, renewables, renewable energy, power, electricity, solving, solutions, new, novel, innovative, research, battery, storage, capacity,

Harnessing Wind Energy Without Blades

Wind turbines are a large and growing source of energy but the turning blades have led to concerns about sound and impacts on bird populations. People have also complained that such wind turbines are an eye-sore. A new structure designed by Dutch architecture firm Mecanoo and installed at the Delft University of Technology convert wind to energy without any moving parts.

The new technological innovation was developed by the Electrical Engineering, Mathematics and Computer Science faculty at Delft. It uses the movement of electrically charged water droplets to generate power.

The prototype of the EWICON (Electrostatic Wind Energy Converter) is not impacted by traditional wear and tear that limit the life of traditional blade based turbines. As such it requires very little maintenance. Further it makes no noise and casts no shadows.

The new bladeless technology has already been incorporated into the design of a project in Rotterdam.

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Event - Offshore Wind Economics & Finance Europe 2013

Offshore Wind Economics & Finance: Europe 2013 will take place on Wednesday 16 October - Thursday 17 October in London, United Kingdom. ACI’s 2nd Offshore Wind Economics & Finance: Europe will take place on 16-17 October 2013 in London, UK. Bringing together 50-80 of the industry’s leading experts and executives from across the entire value chain (banks, international financing institutions, VC/PE companies, offshore wind farm owners/operators, utility companies, offshore wind farm developers, wind technology suppliers and R&D, government and regulators, lawyers and insurance firms) for two days of interactive discussion, excellent networking opportunities and the very latest updates from project investment activity around Europe, ACI’s 2nd Offshore Wind Economics & Finance: Europe will present you with the knowledge, experience & contacts you need to drive your business forward.

Key Topics

• Investment Activity Update & Forecast
• Investment Risk and Insurance
• National Policy Implementation
• Capital Expenditure Analysis for European Projects
• Operational Expenditure & Cost of Energy
• Private Equity & Venture Capital
• The Impact of Development Bank Financing
• Debt Financing and Offshore Wind
• Project Financing & Economics: Case Study Examples
• Shaping the Future of Offshore Wind Economics: Technology & Strategy

Who Will Attend?

All ACI’s meetings are strictly end-user focussed and attract a target group of senior level decision makers from the industry.

Delegates will be drawn from:

Banks - MDs, heads of wind & power
International financing institutions - Project finance director
VC/PE companies - Financial managers, partners & directors
Offshore wind farm owners/operators - CFO, CEO
Utility companies - Finance manager, offshore department
Offshore wind farm developers - MDs, project & finance managers
Wind technology suppliers and R&D - Sales and product managers
Government and regulators - Renewable energy officers
Lawyers and insurance firms - Risk and investment consultants

Confirmed Speakers

Kevin Magner, Director - Corporate Finance Advisory, Deloitte
Julian Brown, Country Director UK Wind, AREVA UK
Joanna de Montgros, Head of Practice, Manager UK & Ireland, GL Garrand Hassan
Martin Benatar, Managing Consultant, Benatar and Co. Limited
Christopher Willow, Senior Associate, BVG Associates
Marc Fevre, Partner, Baker & McKenzie
David Guíu, Head of Sales Offshore Europe, Gamesa
Michelle T Davies, Head Of Clean Energy And Sustainability, Eversheds LLP
Michiel Engelaar, Project Finance, European Investment Bank
Alejandro Ciruelos, Vice President, Santander Global Banking & Markets
Allan Baker, MD - Global Head Of Power Advisory & Project Finance, Societe Generale
Stefan Kilgus, Partner, Watson, Farley & Williams
Rolant Stanze, President, PNE Wind AG
Clément Weber, Director, Green Giraffe Energy Bankers UK
David Cripps, Senior Technical Manager, Blade Dynamics Ltd
Aaron Smith, Offshore Wind Program, National Renewable Energy Laboratory (NREL)
Breanne Gellatly, Offshore Wind Accelerator Delivery Manager, The Carbon Trust
Bernard Bulder, Research Coordinator, ECN Wind Energy

For Further Information Contact Dimitri Pavlyk Tel: + 44 (0) 20 3141 0627 / Email: dpavlyk@acieu.net

To register click here.

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Event - Offshore Consenting Conference 2013

The second edition of the Offshore Consenting Conference 2013 will take place on 26 June 2013, in London, United Kingdom. This event encourages industry-wide coordination to optimise processes through consenting regimes. As the first Round 3 projects come closer to being consented, it is important to assess and learn from the challenges that have been encountered throughout the process in order to look forward to consenting future offshore wind schemes.

To see the conference agenda for 2013 click here.

Highlights will include:

  • The latest interpretation of the Habitat Regulations and progress of developments since Defra’s Implementation Review Future-proofing consents – strategies for incorporating R&D unknowns into applications
  • Approaches for defining cumulative impact constraints and best-practice methods for assessments
  • An update of on the Planning Inspectorate’s consenting regime one year on and what challenges the first projects through the system have faced

Who should attend?

Developers, Consultants, Lawyers and Stakeholders:
Consents Manager
Environment & Consents Manager/Consultant
Project Developer/Manager
Planning Manager/Engineer
EIA Manager/Consultant
Stakeholder Manager
Round 3 Manager
Regulatory Policy Manager
Partner
Associate
Offshore Renewables Advisor
Marine Advisor

For more information click here.

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Event - Global Wind Power Finance and Risk

The 4th annual Global Wind Power Finance &  Risk conference and exhibition will take place on 19—20 June 2013, London, United Kingdom. This event is the premier annual wind finance gathering, it brings together c-level representatives from leading utilities, developers, financiers and investors, providing not only outstanding scope for networking with decision-makers, but also targeted and in-depth conference sessions.

Who Attends Global Wind Power finance? Previous attendees have included:

• A word about wind • ABB • ABO Wind • Ackermans & Van Haaren • ADB • Aephoria capital • African Development Bank • Alatec Ingenieros Consultores y Arquitectos • Alstom • Alterra Power Crop • AMSC • ArcLight Energy Marketing • AREVA Energietechnik • Areva Renewables • Argus Media • Augusta & Co • Availon Holding • AWS Truepower • Bank of America Merrill Lynch • Bank ofIreland • Barclays • BBC Chartering • Belwind & InControl • Beten International • BEWAG • Blackrock Lntemational Limited -renewable Power Group • Bloomberg NEF • BNP PARIBAS • Boralex Inc • BTC • California Independent System Operator • Campbell Lutyens & Co • Cape Wind

And many others, for the complete list click here.

The senior speaker line-up includes:

  • Chris Hunt, Managing Director, Riverstone
  • Tom Murley, Head of Renewable Energy, HgCapital
  • Rui Teixeira, Chief Financial Officer, EDP Renewables
  • David Jones, Managing Director, Allianz Capital Partners
  • Dima Rifai, Chief Executive Officer, Paradigm Change Capital
  • Robert Mansley, Managing Director, GIB(Green Investment Bank)
  • Cord Landsmann, Chief Financial Officer, E.ON C&R
  • Dominik Thumfart, Managing Director, Infrastructure & Energy Finance, Deutsche Bank
  • Magnus Goodlad, Head of Renewables, Hermes GPE
  • Keiji Okagaki, Vice President, Marubeni Europower
  • Ole Kjems Sørensen, Senior Director - M&A, DONG Energy
  • Ian Berry, Fund Manager – Infrastructure and Renewable Energy, Aviva Investors

Please click here to see the full 40+ c-level speaker line-up.

The agenda for 2013 includes

  • Extended, focused offshore wind finance sessions
  • New sessions on risk and insurance
  • Latest insights into buying and selling wind power projects
  • Utility and developer case studies
  • Unique sessions on new sources of capital beyond bank debt, including leading institutional investor presentations

To register click here

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New Discoveries of Lithium Deposits

There is an increasing demand for Lithium that is putting upward pressure on the cost of this rare earth mineral, but the discovery of new deposits will help address this growing demand. Lithium is an element that powers the modern world. A vast and growing number of portable devices including electronics like phones, tablets and laptops depend on lithium and so do electric and hybrid cars.

Some of the top producing countries for lithium are Chile, Argentina and Bolivia. These three countries are known as the “lithium triangle.” Chile is the world’s leading source of the element, turning out around 40 percent of global supply, however discoveries in Bolivia, (which opened its first lithium pilot plant in January), suggest that the country may have 50 percent of the world’s reserves, which is enough to power 4.8 billion electric cars.

Australia and China are also major sources of lithium. In 2009 worldwide estimates of known lithium reserves totaled 18,000 tonnes.

Currently, the US imports more than 80 percent of the lithium it uses, however, researchers at the University of Wyoming have found a huge deposit containing 228,000 tons of lithium in Rock Springs Uplift. That's enough to meet annual US demand, and almost twice as much as the reserves from the biggest domestic lithium producer (located at Silver Peak, in Nevada).

Although we are discovering new deposits of lithium, it is important to note that the rare earth mineral can also be recycled from old batteries.

© 2013, Richard Matthews. All rights reserved.

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3rd Annual Electric Energy Storage 2013 (Event)

The 3rd Annual Electric Energy Storage will take place on January 8-10, 2013 at the Embassy Suites Biltmore, in Phoenix, AZ. The event is subtitled, "Assessing the Technological and Economic Potential of Electric Storage Operations for Real-Time Applications."

Energy storage technologies have the potential to improve grid efficiency and reliability by optimizing power flows and supporting variable power supplies. However, storage applications are often costly and don’t always produce achievable returns in every grid scenario. Finding a reliable and profitable strategy within electric storage can be a daunting and confusing task, as utilities struggle to understand the tools necessary for accurately determining its economic impact and viability.

The 3rd Annual Electric Energy Storage Conference will be a two and a half-day, industry focused event, specific to those within Energy Storage, Renewable Energy, Regulatory Policy and Planning and Research and Development. This conference will bring together the leading senior executives to discuss technological advances and case studies, while focusing on the tools and strategies necessary to bring energy storage operations into real time energy operations.

Key Topics

Dissect evaluation methodologies and examine appropriate structures for electric storage technologies Determine suitable scenarios and technologies for storage application to minimize cost and operational risk Establish financial support in the current regulatory market to develop storage with long-term viable revenue streams Integrate energy storage technologies for optimal planning, operations and customer solutions Develop storage with long-term viable streams

Attending This Event Will Enable You to: 1. Examine Drexel Universitys grid-level EES project to evaluate the potential of flow batteries and super capacitors 2. Think big, start small: lessons learned from community energy storage initiatives and how they can progress bulk energy storage 3. Classify the market structure to accurately determine the economic feasibility and impact of storage 4. Develop a sustainable policy and regulatory framework for energy storage technology 5. Classify the market structure to accurately determine the economic feasibility and impact of storage 6. Experience highly interactive conference sessions, 10-15 minutes of Q&A time after each presentation, 4+ hours of networking and exclusive online access to materials post-event

With a one-track focus, the 3rd Annual Electric Energy Storage Conference is a highly intensive, content-driven event that includes case studies, presentations and panel discussions over two full days.

Key Speakers
  • Craig Glazer Vice President, Federal Government Policy, PJM Interconnection
  • John Moura Associate Director, Reliability Assessment, NERC
  • Walt Yeager Senior Director, Market Development and Analysis, Midwest ISO
  • Bob Lane Director, FERC, CAISO & Reliability Compliance, San Diego Gas & Electric
  • Henry Durrwachter Director, ERCOT Market Services, Luminant
Pre-Conference Workshops 
  • Pre-Conference Workshop A: Think Big, Start Small: Lessons Learned from Community Energy Storage (CES) Initiatives and How They Can Progress Bulk Energy Storage
  • Pre-Conference Workshop B: Transforming Technology and Large Scale Energy by Utilizing Transporation to Support the Smart Grid.
For more information click here.

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Revolutionary Liquid Energy Storage Technology

Scientists at the Massachusetts Institute of Technology have developed a new inexpensive battery technology that could revolutionize energy storage. This new battery technology could prove to be the holy grail of renewable energy storage, particularly at night when there is no light to power solar cells or when there is no wind to turn turbines. The new storage technology could overcome the obstacle of intermittent supply which is the greatest obstacle facing the widespread adoption of clean energy.

This technology could also significantly reduce the size of electric car battery systems and potentially double the range of electric vehicles.

Initial tests have used batteries the size of a shot glass, a hockey puck, and most recently a six-inch-wide version, with 200 times the power-storage capacity of the initial version.

The new approach to batteries was created by Donald Sadoway, the John F. Elliott Professor of Materials Chemistry at MIT and the senior author of a paper along with MIT Materials Processing Center Research Affiliate David Bradwell MEng and their team. They published their research in the Journal of the American Chemical Society in 2012.

In this revolutionary technology there are two types of this semi-solid liquids one is positively charged, the other is negatively charged. These two liquids are pumped through the system which causes the exchange of lithium ions across a permeable membrane that triggers an external current. All three layers are composed of materials that are abundant and inexpensive (magnesium, magnesium chloride, and antimony) . The battery system operates at a temperature of 700 degrees Celsius, or 1,292 degrees Fahrenheit.

As reported in a Yale Environment article, lead researcher Yet-Ming Chiang says the power-per-unit potential will be 10 times greater than conventional designs.

This affordable storage capacity has greater longevity and lower cost than existing methods of energy storage and could make all the difference in the drive towards clean energy.

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Toronto Greenhouse - Green Cars Event

On July 24, 2012,Toronto Greenhouse will present a Green Cars event in Toronto, Ontario. This event will answer questions like: How sustainable is your vehicle? Should everyone drive electric? Is fuel efficiency the answer? The discussion will be focused on green cars and will include representatives from General Motors, smart Canada (Mercedes-Benz) and Plug'nDrive Ontario.

The panel will be composed of Dan Mepham, Product Manager - Chevrolet Volt - General Motors Canada, Richard Trevisan, Director - smart Canada, a division of Mercedes Benz Canada Inc., Cara Clairman, President and CEO at Plug'nDrive

Ontario Toronto Greenhouse’s mission is to foster the growth of the environmentally-friendly business community. Our signature event is a monthly networking session and speaker series which launched in 2009.

This event brings together green companies and friends of the sector. With over 3000 event attendees, we are the leading environmental business forum in Toronto. Over 90 percent of attendees are business professionals with an interest in sustainability. The majority are sr. within their company.

Tickets are $25 (Early Bird) $35 (Full Price) & processing in advance (Online ticket sales end 3 hours before the event, or sell-out) or $40 at the door (if available).

For more information click here.

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