There are a number of green entrepreneurs popping up in Africa. One such entrepreneur is Addosolar, this company offers portable solar products for the people of Ghana. Their goal is to help address the need for light due to daily power outages in the nation, thereby enhancing the quality of life for all residents.
Addosolar offers the finest quality in portable solar products, including the Nokero® light bulb. These bulbs are rainproof and easy-to-recharge. They eliminate the need for candles and kerosene lamps, which are dangerous and more expensive to use.
Additional products include their unique solar phone charger for cell phones and small electronic devices.
© 2011, Richard Matthews. All rights reserved.
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Showing posts with label solar power. Show all posts
Showing posts with label solar power. Show all posts
Sunday, November 20, 2011
Thursday, November 10, 2011
South Africa and the Rise of Renewable Energy on the Continent
Two of the largest renewable energy projects ever attempted are being built on the African continent. The World Bank’s Board of Executive Directors have approved $250 million in funding for the Eskom Renewables Energy Support Project (ERSP) to help implement major solar and wind power projects in South Africa. The new financing complements the US$260 million provided to Eskom to implement the Upington and Sere renewable energy projects included in the $3.75 billion Eskom Investment Support Project approved in April 2010.
South Africa's Power Sector Integrated Resource Plan began in 2010 and by 2030 the country aims to meet 42% of its national demand for power using renewable energy sources.
The Upington Project will be a one hundred megawatt, utility-scale, concentrating solar power plant to be located in Northern Cape province. Emission savings are estimated at about 9-million tons of CO2 equivalent over a 20-year life span.
The construction of the Upington project will create a significant number of jobs. As a whole the solar market has the potential to be a major employer in South Africa. The Spanish PV market created 28,000 jobs between 2001 and 2010 to account for slightly more than 3,000MW of PV. South Africa is planning to build 8,400MW of PV, with another 1,000MW of concentrated solar power (CSP) technology. Extrapolating from these numbers the whole solar energy industry in South Africa could provide in excess of 60,000 jobs. The infrastructure required for massive solar parks in the Northern Cape will require infrastructure that could create up to 100,000 jobs.
The Upington project is estimated to cost a total of R150 billion (US21.3 billion) and it is expected to start operating in 2012.
The Sere Project will be a one hundred megawatt wind power project located 300 kilometers (190 mi) north of Cape Town. The project will create at least 140 direct jobs during the construction phase and 10 permanent jobs once the plant is operational. It is targeted to reduce South Africa's CO2 emissions by 5 million tons during its first 20 years. Evaluating and reassessing existing studies in 2003, a South African renewable energy strategy formulation team from the Department of Minerals and Energy estimated the total wind generation potential for the entire nation to be 60 TWh per annum.
The Sere project is estimated to cost R2.689 billion ($375 million)and Eskom has stated that the plant will be commissioned by 2012 and expects the plant to be fully operational by summer 2013.
The Clean Technology Fund is providing the loan for these pioneering and innovative projects which will go to South Africa’s power utility, Eskom. The Clean Technology Fund promotes scaled-up financing for demonstration, deployment and transfer of low-carbon technologies with significant potential for long-term greenhouse gas emissions savings.
These two projects are important not only for South Africa but for the entire continent. They make an important point about the viability of renewable energy in the developing world.
“Africa is rich in sources of renewable energy, and broadening the existing mix to include renewables is essential for sustainable development of the energy sector,” said Jamal Saghir, World Bank Director for Sustainable Development for the Africa Region. “Once implemented, these pioneering energy projects will provide powerful demonstrator effects for the benefit of Africa’s largest economy and beyond.”
The fact that only 31 percent of Africa’s population has access to energy, is both a challenge and an opportunity. The challenge comes from meeting the continent's energy needs. The opportunity comes from renewable energy development that skips the industrial world's large scale reliance on energy derived from fossil fuels.
These projects underscore the World Bank’s development strategy for Africa which emphasizes competitiveness and employment by harnessing technology and innovation from the private sector.
“We are very pleased to assist South Africa launch these ambitious flagship renewable energy projects,” said Ruth Kagia, World Bank Country Director for South Africa. “They will help South Africa to fulfill its commitments on lowering emissions while demonstrating the viability of large-scale renewable energy projects undertaken in Africa.”
The South African economy is one of the most carbon-intensive in the world, however, investment in large scale renewable energy projects are helping to position the country as a leader in clean energy.
Renewable energy is not only benefiting South Africa, the development of renewable sources of energy has the potential to transform a continent burdened by poverty.
© 2011, Richard Matthews. All rights reserved.
South Africa's Power Sector Integrated Resource Plan began in 2010 and by 2030 the country aims to meet 42% of its national demand for power using renewable energy sources.
The Upington Project will be a one hundred megawatt, utility-scale, concentrating solar power plant to be located in Northern Cape province. Emission savings are estimated at about 9-million tons of CO2 equivalent over a 20-year life span.
The construction of the Upington project will create a significant number of jobs. As a whole the solar market has the potential to be a major employer in South Africa. The Spanish PV market created 28,000 jobs between 2001 and 2010 to account for slightly more than 3,000MW of PV. South Africa is planning to build 8,400MW of PV, with another 1,000MW of concentrated solar power (CSP) technology. Extrapolating from these numbers the whole solar energy industry in South Africa could provide in excess of 60,000 jobs. The infrastructure required for massive solar parks in the Northern Cape will require infrastructure that could create up to 100,000 jobs.
The Upington project is estimated to cost a total of R150 billion (US21.3 billion) and it is expected to start operating in 2012.
The Sere Project will be a one hundred megawatt wind power project located 300 kilometers (190 mi) north of Cape Town. The project will create at least 140 direct jobs during the construction phase and 10 permanent jobs once the plant is operational. It is targeted to reduce South Africa's CO2 emissions by 5 million tons during its first 20 years. Evaluating and reassessing existing studies in 2003, a South African renewable energy strategy formulation team from the Department of Minerals and Energy estimated the total wind generation potential for the entire nation to be 60 TWh per annum.
The Sere project is estimated to cost R2.689 billion ($375 million)and Eskom has stated that the plant will be commissioned by 2012 and expects the plant to be fully operational by summer 2013.
The Clean Technology Fund is providing the loan for these pioneering and innovative projects which will go to South Africa’s power utility, Eskom. The Clean Technology Fund promotes scaled-up financing for demonstration, deployment and transfer of low-carbon technologies with significant potential for long-term greenhouse gas emissions savings.
These two projects are important not only for South Africa but for the entire continent. They make an important point about the viability of renewable energy in the developing world.
“Africa is rich in sources of renewable energy, and broadening the existing mix to include renewables is essential for sustainable development of the energy sector,” said Jamal Saghir, World Bank Director for Sustainable Development for the Africa Region. “Once implemented, these pioneering energy projects will provide powerful demonstrator effects for the benefit of Africa’s largest economy and beyond.”
The fact that only 31 percent of Africa’s population has access to energy, is both a challenge and an opportunity. The challenge comes from meeting the continent's energy needs. The opportunity comes from renewable energy development that skips the industrial world's large scale reliance on energy derived from fossil fuels.
These projects underscore the World Bank’s development strategy for Africa which emphasizes competitiveness and employment by harnessing technology and innovation from the private sector.
“We are very pleased to assist South Africa launch these ambitious flagship renewable energy projects,” said Ruth Kagia, World Bank Country Director for South Africa. “They will help South Africa to fulfill its commitments on lowering emissions while demonstrating the viability of large-scale renewable energy projects undertaken in Africa.”
The South African economy is one of the most carbon-intensive in the world, however, investment in large scale renewable energy projects are helping to position the country as a leader in clean energy.
Renewable energy is not only benefiting South Africa, the development of renewable sources of energy has the potential to transform a continent burdened by poverty.
© 2011, Richard Matthews. All rights reserved.
Lesotho's Renewable Energy Projects One of the Largest in Africa
One of the largest energy projects in Africa is being built in the tiny mountain kingdom of Lesotho. This renewable energy project will make power from wind and water. The Lesotho highlands power project (LHPP) will cost $15bn (£9bn) and will generate 6,000 megawatts (MW) of wind power and 4,000MW of hydropower.
It will also create 25,000 jobs over 15 years including 1,500 technicians and engineers. This is a major boon for Lesotho, because as one of the world's poorest countries in the world, where nearly half the population struggles to live on less than $1.25 a day.
Lesotho, officially the Kingdom of Lesotho, is a landlocked country and enclave, surrounded by the Republic of South Africa. It is just over 30,000 km (11,583 sq mi) in size with a population of approximately 2,067,000. Its capital and largest city is Maseru.
Lesotho's energy efficiency policies and regulations are contained in the National Initiative for an Energy Efficiency Program in Lesotho's Water Sector: Barrier Analysis Report. Lesotho is focused on energy efficiency through its Energy Management Plan - Lesotho Water Sector.
Lesotho gets it electricity primarily from hydro power and since 2000 it has been able to supply its own power needs. Going forward, Lesotho's large scale renewable energy projects will make the nation a net exporter of energy to South Africa. This project will help to sate South Africa's growing energy appetite and reduce its reliance on coal.
Construction is expected to take between 10 and 15 years. The first phase is a 150-megawatt windfarm, set to start next year. South Africa's Harrison and White Investments and its Chinese technology partner, Ming Yang Wind Power, will build wind turbine components factories in South Africa and Lesotho.
The Lesotho energy projects demonstrate that renewable energy can help wean us off destructive fossil fuels and create employment in some of the most impoverished places on earth.
© 2011, Richard Matthews. All rights reserved.
It will also create 25,000 jobs over 15 years including 1,500 technicians and engineers. This is a major boon for Lesotho, because as one of the world's poorest countries in the world, where nearly half the population struggles to live on less than $1.25 a day.
Lesotho, officially the Kingdom of Lesotho, is a landlocked country and enclave, surrounded by the Republic of South Africa. It is just over 30,000 km (11,583 sq mi) in size with a population of approximately 2,067,000. Its capital and largest city is Maseru.
Lesotho's energy efficiency policies and regulations are contained in the National Initiative for an Energy Efficiency Program in Lesotho's Water Sector: Barrier Analysis Report. Lesotho is focused on energy efficiency through its Energy Management Plan - Lesotho Water Sector.
Lesotho gets it electricity primarily from hydro power and since 2000 it has been able to supply its own power needs. Going forward, Lesotho's large scale renewable energy projects will make the nation a net exporter of energy to South Africa. This project will help to sate South Africa's growing energy appetite and reduce its reliance on coal.
Construction is expected to take between 10 and 15 years. The first phase is a 150-megawatt windfarm, set to start next year. South Africa's Harrison and White Investments and its Chinese technology partner, Ming Yang Wind Power, will build wind turbine components factories in South Africa and Lesotho.
The Lesotho energy projects demonstrate that renewable energy can help wean us off destructive fossil fuels and create employment in some of the most impoverished places on earth.
© 2011, Richard Matthews. All rights reserved.
Friday, September 16, 2011
Coca-Cola's Solar Rebuilding in Japanese Schools
Coca-Cola is installing solar panels on Japanese schools to help with the country’s rehabilitation. The Coca-Cola Japan Reconstruction Fund was established under the Coca-Cola Educational & Environmental Foundation. This fund has allocated 1.5 billion yen (US$18.9 million) to integrate solar power into the rebuilding of public elementary and junior high schools damaged by the March 2011 earthquake and tsunami.
Japan’s Cabinet Office estimated last June that damage on the country’s buildings, roads, and ports has reached 16.9 trillion yen, Reuters reported. The World Bank estimated that damage could amount to as much as $235 billion, while rebuilding could take up to five years.
The rebuilding program will be implemented with the support of Japan’s Ministry of Education, Culture, Sports, Science and Technology. Funding for the school rebuilding will be extracted from the overall 2.5 billion yen fund collected for the reconstruction of the affected areas.
Coca-Cola with the ministry, local governments, and other organizational bodies will select the schools that are eligible for the solar reconstruction funding.
Sustainability initiatives are part of Coca-Cola's company wide efforts. Coca-Cola Japan has been working to reduce energy consumption and introduce renewable energy in business practices. The Japan subsidiary has previously been behind novel programs like the introduction of solar-powered "ecoru/Solar" vending machines.
The Coca-Cola Company aims to maintain a water sustainable business on a global scale, so they developed and implemented a water stewardship strategy, with a global goal to safely return to nature and to communities an amount of water equivalent to what they use in their beverages and their production by 2020. Since 2005, with the help of respected partners like WWF and USAID, Coca-Cola has engaged in more than 320 water projects in 86 countries. Projects have focused on watershed protection and conservation, expanding community drinking water, sanitation access, and improving water for productive use.
© 2011, Richard Matthews. All rights reserved.
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Japan’s Cabinet Office estimated last June that damage on the country’s buildings, roads, and ports has reached 16.9 trillion yen, Reuters reported. The World Bank estimated that damage could amount to as much as $235 billion, while rebuilding could take up to five years.
The rebuilding program will be implemented with the support of Japan’s Ministry of Education, Culture, Sports, Science and Technology. Funding for the school rebuilding will be extracted from the overall 2.5 billion yen fund collected for the reconstruction of the affected areas.
Coca-Cola with the ministry, local governments, and other organizational bodies will select the schools that are eligible for the solar reconstruction funding.
Sustainability initiatives are part of Coca-Cola's company wide efforts. Coca-Cola Japan has been working to reduce energy consumption and introduce renewable energy in business practices. The Japan subsidiary has previously been behind novel programs like the introduction of solar-powered "ecoru/Solar" vending machines.
The Coca-Cola Company aims to maintain a water sustainable business on a global scale, so they developed and implemented a water stewardship strategy, with a global goal to safely return to nature and to communities an amount of water equivalent to what they use in their beverages and their production by 2020. Since 2005, with the help of respected partners like WWF and USAID, Coca-Cola has engaged in more than 320 water projects in 86 countries. Projects have focused on watershed protection and conservation, expanding community drinking water, sanitation access, and improving water for productive use.
© 2011, Richard Matthews. All rights reserved.
Related Posts
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The Campus Green Builder Online Portal
Organizations and Groups in the USGBC's Center for Green Schools
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The Green Market's Green Schools Series
USGBC's Green School Building Resources
Environmental Revolution: Building and Operations
The Extraordinary Growth of Green Building
Green Building Environmental Benefits
Green Buildings Combat Climate
The Future of Green School Buildings
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Tuesday, September 13, 2011
Princeton is Building the Largest Solar Array of Any University
Princeton University is planning to build a 27-acre solar field consisting of 16,500 photovoltaic panels making it the largest solar field for any US college or university. It will produce enough energy to power 700 households. The EPA estimates that the solar array is equivalent of taking more than 1,200 cars off the road, which translates to a reduction of 3,090 metric tons of carbon dioxide each year.
The solar array is part of Princeton’s 2008 sustainability plan to reduce its carbon emissions to 1990 levels by 2020. SunPower Corp. is buidling the solar array, which will produce at least 8 million kilowatts per year, while powering more than 5 percent of the school's power requirements and reducing energy costs by 8 percent.
Princeton will use New Jersey's Solar Renewable Energy Certificate (SREC) program, to help pay for the cost of the array. Under the program, the state will issue one SREC for every 1,000 kilowatt hours of energy produced by the solar array until 2020. The university will then sell the credits to a utility company.
© 2011, Richard Matthews. All rights reserved.
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The solar array is part of Princeton’s 2008 sustainability plan to reduce its carbon emissions to 1990 levels by 2020. SunPower Corp. is buidling the solar array, which will produce at least 8 million kilowatts per year, while powering more than 5 percent of the school's power requirements and reducing energy costs by 8 percent.
Princeton will use New Jersey's Solar Renewable Energy Certificate (SREC) program, to help pay for the cost of the array. Under the program, the state will issue one SREC for every 1,000 kilowatt hours of energy produced by the solar array until 2020. The university will then sell the credits to a utility company.
© 2011, Richard Matthews. All rights reserved.
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The Extraordinary Growth of Green Building
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Green Buildings Combat Climate
The Future of Green School Buildings
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Green School Buildings Health and Performance Benefits Part 2
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Green School Buildings: The Many Benefits of Ventilation
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Coca-Cola's Solar Rebuilding in Japanese Schools
Australia's National Solar Schools Program
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Mississippi State University has the first LEED® Certified Chapter House in the US
Suffolk University's Green Efforts Include Building Design
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Saturday, June 18, 2011
SolarDay 2011
SolarDay takes place on Saturday June 18 in Canada, the US and the UK (November 19 in Australia). This is the third annual SolarDay event, it celebrates solar energy and its capacity to help protect the planet from global warming. SolarDay includes events by cities, non-profits, companies and the solar industry.SolarDay 2010 events were held in 26 US cities and included municipal proclamations declaring an Official SolarDay. One 2011 SolarDay event in New Orleans involved multiple non-profit organizations working in concert with the city.
Members of the U.S. Congress Supporting SolarDay 2011 include California Senator Dianne Feinstein. Congresswoman Doris Matsui is also supporting SolarDay with letters on the SolarDay website to encourage public participation and awareness of how solar energy can reduce monthly energy bills - while provided much-need "green" jobs for the US economy.
Event organizers see solar as the next step in the "Greening of America" movement that includes driving a hybrid car, shopping for organic and sustainably-farmed foods, doing business with green companies, recycling, saving energy and avoiding, as much as possible the burning of finite and polluting fossil fuels that play a significant role in the production of greenhouse gases and global warming.
Costly fossil fuels are a finite resource that threaten the planet and all its inhabitants. By some estimates, we have 50 years of oil reserves, 200 years of coal reserves and at least 5 billion years of solar energy. It is clear that our energy future is dependent upon the renewable energy we can harvest from the sun.
For more information, or to find local events in your area, visit the SolarDay site.
© 2011, Richard Matthews. All rights reserved.
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