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Brookfield Renewable Energy Likely To Vote Against Western Wind Management in Proxy Battle

Written By empapat on Selasa, 18 September 2012 | 09.40

The transaction was seen as a signal that Brookfield intends to bid at least C$2.25 for Western Wind in its upcoming sale, and so the company's stock has been trading for slightly more than C$2.25 since the announcement.

Despite this, the Brookfield/Goodman transaction may not prove to be a good deal for Western Wind's other shareholders.  Goodman had not said how it intended to vote in the upcoming proxy battle between Western Wind's management and 4.78% owner Savitr Capital.  The main issue in this proxy battle is which team is best suited to manage the process of selling the company.

Because the purchase comes with a promise from Brookfield to compensate Goodman if Western Wind is sold for more than C$2.25 in the next year, the transaction only makes sense if Brookfield intends to use its newly acquired votes to influence the vote in its favor.  As a likely bidder in the sale, Brookfield's incentive is to vote for the management team which it believes will accept the lowest offer for Western Wind.  Savitr has stated that Western Wind management made a mistake rejecting Algonquin Power and Utilities Corp.'s (TSX:AQN, OTC:AQUNF) 2011 offer of C$2.50 a share, so it's clear that Savitr is willing to accept less for the company than management.

Other shareholders  will want to sell the company for as much as possible.  They should vote for the team they think is best able to interest the broadest range of possible buyers in the company, and best able to advance its Yabucoa solar project and increase the company's value in the meantime.   I personally think current management has the best team for these two jobs, and will be voting my yellow proxy in favor of management's nominees on September 25th.

While Brookfield's stock purchase has been good news for Western Wind shareholders in the short term, if Brookfield casts the decisive vote in the proxy battle, it may well mean that we will end up with less for our shares that we would have gotten otherwise.

Brookfield must think so, or they would not have bothered striking the deal with Goodman.

Disclosure: Long WND, BRP-UN, AQN.

This article was first published on the author's Forbes.com blog, Green Stocks.

DISCLAIMER: Past performance is not a guarantee or a reliable indicator of future results.  This article contains the current opinions of the author and such opinions are subject to change without notice.  This article has been distributed for informational purposes only. Forecasts, estimates, and certain information contained herein should not be considered as investment advice or a recommendation of any particular security, strategy or investment product.  Information contained herein has been obtained from sources believed to be reliable, but not guaranteed.

Lead image: Vote against via Shutterstock

19 Sep, 2012


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Four Charts Provide Distributed Solar Lessons from California

A new study for the California Public Utilities Commission explores the "Technical Potential for Local Distributed Photovoltaics in California."  Basically, it's one of the more in-depth analyses of local solar power in the country, suggesting that California has the capacity to add 15 gigawatts (GW) of local solar (20 megawatts and smaller) to its grid by 2020.  The study pushes the boundaries of distributed generation by assuming that local solar can be installed sufficient to meet 100% of local demand, far beyond the conservative "15% rule" that utilities typically apply.

There are the usual caveats about the technical limitations of the current grid, but a few graphics from the report provide a glimpse into the implications of a distributed generation future.

This first chart shows supply curves for various types of distributed solar under their 15-GW scenario.  What I find interesting is that the biggest chunk of distributed solar is not on the ground or on commercial roofs, it's residential rooftops.  Half of the state's distributed solar potential is on residential rooftops.

This next chart illustrates the cost and benefits of residential solar PV for a PG&E substation in Fresno, CA.  What I find interesting is that 6-7 cents of the levelized cost of solar (which includes the federal tax credit) are offset by electric system benefits and greenhouse gas reductions.  Energy provides another 5-6 cents.  Presumably, state incentives (the CSI, net metering, etc.) fill the gap.

This next chart of interconnection costs for distributed solar has two interesting findings.  First, interconnection costs (for the utility) are lower for residential solar than for other small-scale (< 1 MW) distributed solar.  Costs fall off as projects increase in size to a sweet spot of 3-5 MW and then rise again.  Divided over the projected output over 25 years, however, these costs are in the hundredths of a cent per kilowatt-hour.

This chart shows what it will mean to have a significant amount of solar on the grid.  It will effectively shift the peak demand period on the electricity system from the mid-afternoon to the early evening (when solar PV no longer produces much electricity).  This could have interesting implications for net metering customers who count on high peak prices to pay off their PV investment.

The last item of interest is their cost projection for maximizing local solar power.  Reaching the 15-GW distributed solar potential would increase the state's renewable energy supply from 33% in 2020 to 48%.  The marginal cost is about $6 billion, or about $0.15 per kWh.  That's not bad when the avoided cost (e.g. "market price referent") in California is around $0.12 per kWh, especially when we're talking about 2.5 GW of additional local solar power with $750 million in economic benefits and new jobs.

This post originally appeared on ILSR's Energy Self-Reliant States blog.

Lead image: Solar panels on roof via Shutterstock

18 Sep, 2012


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Source: http://www.renewableenergyworld.com/rea/blog/post/2012/09/four-charts-provide-distributed-solar-lessons-from-california?cmpid=rss
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Distributed Generation Will Make Electric Grids More Secure, Expand Access

As our society continues to become more wired, the impact of a sudden power outage – such as what occurred in India in early August – becomes increasingly severe and disruptive. With more and more businesses – including mission critical facilities like hospitals, military bases, and water treatment plants – reliant upon access to large amounts of electricity and the Internet, blackouts can significantly damage a country's economy, public health and safety.

At the same time, there are regions of the world – particularly in emerging nations – where entire villages remain without access to power because it is simply too expensive to build the infrastructure needed to transport electricity to the rural areas. According to a 2010 International Energy Agency report, the lack of access to electricity hinders social and economic development and exacerbates major health problems such as hunger, sanitation and access to clean water. As a recent New York Times headline simply put it, energy access is vital to abolishing the worst poverty in the world.

A solution to both of these problems – increasing vulnerability to a power outage in developed areas and lack of access to electricity in developing areas – can be found in distributed generation. Traditionally, electricity is generated in large, centralized facilities, and for the most part these facilities run on fossil fuels. Distributed generation instead allows electricity to be generated from many small, de-centralized sources, such as rooftop solar or a small solar farm.

For developed areas, this method of electricity generation offers far greater grid security than traditional generation in centralized facilities. Generating power through several independent generation stations rather than a handful of major power plants dramatically decreases the impact of one power plant unexpectedly shutting down. The presence of several generation stations allows some to ramp up their production to account for the unexpected loss of others, keeping the grid stable even as power generation fluctuates.

For areas currently without access to electricity, distributed generation facilities bypass the onerous cost of developing infrastructure to transport electricity long distances from enormous power plants and delivers the power they so badly need.

The technology to both develop power grids using more and more distributed generation and integrate distributed generation into large electric grids is getting more advanced each year. Companies are already developing solar-powered thermal power plants designed specifically for off-grid applications and solar community cooking systems to reduce fossil fuels use. Others are supporting the development of solar-powered toilets that require no running water and produce no pollutants.

Other solutions include local wind generators – small wind turbines – that can power homes and small businesses. And as the use of home-based solar panels increases, each individual household or business will create more and more of its own electricity, increasing energy security, reducing reliance on fossil fuels and netting an economic benefit.

As nations overhaul their grids in response to the recent blackout in India and work to provide electricity access to their most remote areas, distributed generation should be part of the solution.

Lead image: Power lines via Shutterstock

18 Sep, 2012


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Source: http://www.renewableenergyworld.com/rea/blog/post/2012/09/distributed-generation-will-make-electric-grids-more-secure-expand-access?cmpid=rss
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The Big Question: What Can We Expect over the Next 12 Months?

Maria van der Hoeven, Executive Director, International Energy Agency

Renewable energy continues to grow in the face of both economic crisis and subsidy reductions in key markets. The technology portfolio is expanding, with generation from wind, solar PV and bioenergy growing in double digits year-on-year. Hydropower continues to grow steadily and remains the largest renewable source in absolute terms. Even geothermal and ocean energy are growing. That growth is being driven by emerging and developing markets outside the OECD - and we expect this contribution to accelerate.

One striking trend is the geographic spread of renewable energy projects, often to totally new markets. Just a few years ago, only a handful of countries hosted significant solar, wind, or bioenergy projects — but renewable energy projects are now taking root across Asia, in Latin America, and in Africa and the Middle East.

While we see growth across renewable technologies, of course the trends for each vary. Solar PV is particularly striking. Stagnating economies and electricity demand, combined with feed-in tariff reductions and other support limitations, are slowing down European PV growth. But that is compensated for by increases in China, the US, Japan and India, and also driven by a rapid fall in component costs. And with falling costs comes intensified global competition. A consequent shake-up of the industry should ultimately bode well for its long-term health. Companies surviving the current consolidation are restructuring and successfully transitioning from subsidized markets to new and potentially more competitive market segments.

Finally, although wind and solar often grab headlines, hydropower remains the largest renewable source by a wide margin. And despite its more sedate image, hydro's growth continues at a healthy pace, driven by the need for baseload capacity in emerging economies, and by increasing pumped storage demands in countries seeking to integrate more variable renewables.

With an outlook marked by growth and driven by emerging economies, these trends are likely to continue and accelerate into the medium term.                      

Birger T. Madsen, Director, Navigant's BTM Consult APS

The global wind market has undergone a dramatic transformation over the past two decades. In 2011, it defied the fragile Western economic climate with a record level of global installations (around 42 GW). There is no doubt that although much of the IP and highest ranking turbine OEMs reside in Europe, the balance of power has shifted to Asia and specifically China, the number one market in the world. 

The wind industry was largely unaffected by the credit crisis, but now is feeling its hangover. It is faced with an overcapacity of turbines and some core components, limited credit availability, high material prices, shortages in skilled labor, continuing low U.S. gas prices and Chinese turbine and core component suppliers producing at lower costs than western competitors. This has resulted in Western companies reducing prices and profit margins, resulting in a strategic rethink of their earlier ambitious targets and aggressive investment decisions made during the boom of 2008. Despite this, the investment level available to the wind industry remains high, but there has been a marked evolution in the shape and face of the investment vehicles available, most notably in the offshore sector.

Looking ahead over the next 12 months, the Chinese market will still constitute the lion's share of global installations despite a drop in annual installations, with Europe seeing a flat level of growth and the US seeing a spike as companies seek to capitalize on the PTC before it expires at the end of 2012.

It is, however, the Latin American, Indian, Eastern European and European offshore markets which are expected to provide the main impetus in installations moving forward.

It's crucial that transmission capacity is improved in time to facilitate the expected offshore progress in northern Europe. Furthermore, it is expected that there will be a continued shift towards the use of direct drive technology and an increasing interest in two-bladed wind turbines.              

Andrew Beebe, CCO, Suntech

Rumors of our industry's death have been greatly exaggerated. Yes, it's true that upstream module oversupply is thinning margins and eroding profitability. But the global solar market will still grow in 2012, just not at the pace we're used to. Although it's a tough time to be a solar manufacturer, it's a great time to be a solar consumer. That's what matters. 

For the first and last time, the price of solar modules has breached the US$1/W mark, a harbinger of cost-competitive solar. We have finally reached the tipping point. New markets are emerging, and the potential for growth is astounding. 

Of course, to achieve this growth, solar companies will need to endure a market that is slowly digesting excess capacity and ensuring that only the most efficient producers survive. As the industry moves through this consolidation phase, we expect bankability to separate the wheat from the chaff. We are witnessing a 'flight to quality', where customers are looking for a reliable and trustworthy brand that can uphold its end of the promised 25-year relationship.

In addition, innovation will define future leaders. In previous years cost reductions came from both technology improvements and declines in key material prices; in coming years innovation will take centre stage. Companies that have a technology heritage and have invested heavily in R&D will be able to innovate ways to redesign cells and modules, to effectively use cheaper ingredients and to scale higher conversion efficiencies.

Despite the skepticism of critics, we can expect the industry to continue on a moderate growth trajectory in 2012 and to accelerate into 2013. The consumer's good fortune bodes well for the industry as our ultimate goal is to make solar power a viable and affordable energy choice.

We knew that solar manufacturers would have to go through this ultra-competitive "Valley of Death". Consolidation is maturation. Amidst unfounded political skepticism of our industry's long-term health and potential, we must stay focused on what matters.

Andrew Oldfield, Head of Cleantech, Mercia Fund Management

There is still a lot of work to do to move UK climate chief Lord Stern's central thesis (that the true cost of not acting on environmental issues is far greater than the cost of investing in alternative technologies) into the political mainstream. It is being questioned whether green is compatible with growth, when in fact it should be synonymous. Community led cleantech companies offer a viable approach, commercializing disruptive innovations without the heavy investment the sector has demanded in the past. 

In solar, for example, new business models will be enabled by technology advances bringing existing low-cost industries into the supply chain. This will require equity finance to build some exciting early stage SMEs [small and medium-sized enterprises] in a capital efficient manner. The financial backdrop is not healthy: for example, seed stage venture investment in the UK has dropped every year from 2006 (about &pound;400 million [US$620 million]) to last year (about &pound;10 million [$16 million]). This is seriously affecting the ability of UK cleantech entrepreneurs to get their ventures funded.

There is a perception that early stage ventures do not offer an attractive risk-reward profile. The reality is that seed stage investment has often been through publicly backed funds with significant restrictions on follow-on investment. These funds have therefore shouldered the operational risk inherent in backing early stage, high growth companies - some of which do fail - without being able to invest in the winners that do eventually emerge. This negatively skews the true value of early stage investing on average. 

The UK urgently needs to re-seed its early stage venture capital market, with substantial funds going into cleantech sectors. A fully functioning seed fund will do 80 per cent of its deals in seed, but 80 per cent of the money goes into later rounds. Community-led cleantech will help returns, but government help is needed to correct the perception that early stage is not an attractive place to invest. Once corrected, the market will take over the job. 

In the end the sector needs to stand on its own feet. Ironically this requires more early stage funding so the financing of disruptive innovation can be shown to be attractive and therefore self-sustaining.

Sven Teske, Renewable Energy Director, Greenpeace International            

The renewables industry's circumstances have changed fundamentally over the past five years. Renewables became mainstream, economic, and grew out of their sometimes wild teenage years. And even faster growth across all renewable energy technologies is more important than ever.

A certain amount of climate change is now "locked" based on the amount of CO2 and other greenhouse gases emitted into the atmosphere since industrialization began. On the 25th anniversary of the Chernobyl catastrophe yet another nuclear incident underlined the urgent need to rethink global energy strategies. The Fukushima disaster sparked a surge in global renewable energy and made at least some governments reconsider their energy approach. At the same time, the poor state of the global economy has resulted in decreasing carbon prices, some governments reducing support for renewables, and a stagnation of overall investment, particularly in the OECD. Rising oil demand is putting pressure on supply, causing prices to rise and making possible increased exploration for "marginal and unconventional" oil resources, such as regions of the Arctic newly accessible due to retreating polar ice, and environmentally destructive tar sands in Canada.

For almost a decade it looked as if nothing could halt the growth of the renewables industry. But the economic crisis and its continuing aftermath slowed growth and dampened demand. While the industry is slowly recovering, increased competition, particularly in the solar PV and wind markets, has driven down prices and shaved margins to the point where most manufacturers are struggling to survive. PV prices fell more than 60 per cent in the past two years, with costs not always following. More production capacity - not only for PV - is a must to get to the market size needed to save the climate and supply enough energy to growing economies such as China and India.

A renewable energy market of around 200 GW by 2020 is required. The big question is whether governments around the world will provide the reliable policy framework needed, and if infrastructure will be adapted to renewables not the other way round. 

Lead image: Question marks via Shutterstock

18 Sep, 2012


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Source: http://www.renewableenergyworld.com/rea/news/article/2012/09/the-big-question-what-can-we-expect-over-the-next-12-months?cmpid=rss
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Suntech Reducing Solar Cell Production Capacity

Suntech gained 6.6 percent to 93 cents an American depositary receipt (ADR) at the close in New York, the most since Sept. 11. Each ADR represents one ordinary share.

Suntech will cut production capacity for solar cells to 1.8 gigawatts, the Wuxi, China-based company said in a statement. The company said it had 2.4 gigawatts of annual capacity in May when it released its first-quarter results. It didn't say when it believes output would increase again.

The company isn't reducing its 2.4 gigawatts of solar-panel production capacity, just temporarily closing the cell production portion of it. The majority of the approximately 1,500 employees affected will be offered other jobs and the rest will be fired, according to the statement.

Prices for solar cells dropped 45 percent in the past year as governments in the U.S. and Europe pared back incentives and demand slowed. Suntech faces possible tariffs in Europe, which was the largest market for the products last year, in addition to anti-dumping duties imposed in the U.S.

The cutback isn't a surprise and more solar manufacturers will probably follow suit, said Alex Morris, a research associate at Raymond James & Associates Inc. in Houston. "Oversupply has sent prices cratering and margins as well. Right now this is just scratching the surface of that overcapacity."

Reducing capacity will lower costs, Suntech's Chief Executive Officer David King said in the statement.

"With these and other initiatives we target to create a sustainable business model and return to positive operating cash flow in 2013," he said.

Copyright 2012 Bloomberg.

Lead image: 

18 Sep, 2012


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"No More Solyndras" Act passes the House

The bill aims to end the loan guarantee program through the U.S. Department of Energy by preventing DOE from issuing loan guarantees on applications received after the end of 2011, and sets new restrictions on existing applications and loans.

The legislation was in response to the shutdown of Solyndra, a solar manufacturer that filed for bankruptcy in September 2012 after receiving a $535 million loan guarantee from the U.S. Department of Energy.

The U.S. House Energy and Commerce Committee Chairman Fred Upton (R-Mich) co-authored the original bill with Oversight and Investigations Subcommittee Chairman Cliff Stearns (R-Fla). The subcommittee voted 29-19 to pass the bill in August.

"Three failed companies is more than enough reason to declare DOE's loan guarantee program a failure and end it," said Energy and Power Subcommittee Chairman Ed Whitfield (R-Ky). "…Instead of handing out billions in loan guarantees to selected companies, we need sound energy policies that allow the public sector to thrive and create jobs. The No More Solyndras Act is a commonsense solution that will protect taxpayers and encourage a more robust energy future."

The bill now moves on to the Senate.

This article was reprinted with permission from Power Engineering magazine as part of the PennWell Corporation Renewable Energy World Network and may not be reproduced without express written permission from the publisher.

Lead image: Capitol Building via Shutterstock

18 Sep, 2012


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Source: http://www.renewableenergyworld.com/rea/news/article/2012/09/no-more-solyndras-act-passes-the-house?cmpid=rss
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Solar: A Solution to Worldwide Electricity Needs

Written By empapat on Senin, 17 September 2012 | 22.40

Currently, 1.3 billion people worldwide are without access to electricity and 1 billion more have only intermittent access, said Richenda Van Leeuwen, executive director, energy and climate for the United Nations Foundation. In addition, 2.8 billion people lack access to clean cooking solutions, she said.

In response, the UN launched the SE4ALL campaign, with an objective to reach three goals by 2030: ensuring universal access to modern energy services, doubling the global rate of improvement in energy efficiency and doubling the share of renewable energy in the global energy mix.

The UN has identified 40 countries as areas of energy need. In many of these countries, solar can be a big part of the solution, Van Leeuwen said. "Solar energy has 25 to 80 times its current potential."

As average PV module prices have fallen by nearly 75 percent in recent years, more developing nations are able to turn to solar, she said.

Xiaoping Wang, senior energy specialist with the World Bank, spoke about the World Bank's efforts to bring funding for electricity to Latin America.

"You have countries in Latin America that have universal access, then you have countries like Haiti that have less than 30 percent access."

Altogether, 34 million people in Latin America are without electricity, Wang said, and 89 million are still using inefficient biomass systems to cook their food. However, Latin American electricity access has expanded tremendously since 1970, when only 51 percent of the continent had access to electricity. In 2010, 94 percent of Latin America had access to electricity.

The challenges to bringing electricity to Latin America include the region's difficult topography, high connection costs with low consumption, and consumers' limited access to finance, Wang said. "We estimate to overcome these challenge and reach universal access for Latin America, there would need to be an $8 billion investment."

"The potential in these countries is obviously enormous," said Titus Breeninkmeijer, president, Solgenix, LLC.

In conjunction with the SE4ALL initiative, SEIA has launched The Solar Industry Commitment to Environmental and Social Responsibility, which John Smirnow, vice president, trade & competitiveness, shared during the session.

One of SEIA's top priorities is to help ensure a sustainable solar supply chain globally. In support of this mission, SEIA is taking proactive steps to promote environmental and social responsibility within the industry, Smirnow said. To learn more about SEIA's mission, visit www.seia.org.

Credit: Caro's lines via Flickr

Watch the video below to see more on the conversation about the United Nations's SE4All Initiative.

18 Sep, 2012


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Shortfall in Funding for Solar Training

"Our SWIC program cut the cost of acquiring a trained solar worker in half – from an industry average of up to $30,000 per worker – and reduced the acquisition time from 90 days to 30 days," says Payne. The SWIC project, which ran for four years until June of this year, was an integrated, systematic approach to talent acquisition by identifying, training and placing "the right people for the right jobs at the right time" to meet the specific needs of employers in Silicon Valley's solar, energy efficiency, and electric vehicle industries. The program was funded through a $4 million California Green Innovations Challenge grant, involving three partners: the SolarTech trade association, based in San Jose; Foothill-De Anza Community College District, in Cupertino, Calif.; and NOVA Workforce Development, based in Sunnyvale, Calif.

Over the 18-month grant period, SWIC trained 255 unemployed professionals and, of those who completed the program, 61 percent achieved employment, according to Payne. While SWIC has since wound down, Payne will present a white paper on "Financing the Next Generation of Solar Workers," at the Interstate Renewable Energy Council's (IREC's) Clean Energy Workforce Conference in November in Albany, N.Y. "We've worked up a variety of business models for funding the training of solar workers, although we could wind the SWIC back up," Payne says.

The SWIC worked in conjunction with the North American Board of Certified Energy Practitioners (NABCEP), of Clifton Park, N.J., IREC, of Latham, N.Y., and other organizations to help broaden the base of community colleges involved in solar training. NABCEP now has 300 community colleges, training institutions and other educational institutes credentialed, according to Kristine Reynolds, the applications administrator for the organization.

IREC is now the program administrator for a $4.5 million portion of the five-year U.S. DOE-funded Solar Installer Training Network (SITN), which falls under the DOE SunShot initiative. SITN was launched by DOE in 2009 "to address a critical need for high-quality, local, and accessible training in solar system design, installation, sales, and inspection" with a budget of $10 million.

IREC has particularly sought out community colleges to assist in solar education course building. One of these is Kennebec Valley Community College, of Fairfield, Maine, which was awarded a $1 million SITN grant to help train solar instructors in its region. SunShot also maintains a small fleet of training vehicles that seek to reach educators and code officials in more remote areas.

In June, IREC also released a series of "Best Practices Documents, a compendium of national curriculum models of solar training, education and workforce development curriculum for solar instructors" on a wide range of topics, including solar content coordination. These documents aid SITN's nine regional institutional instructors in training educators.

For more on this topic, you can watch the roundtable discussion on solar training that we conducted last week at Solar Power International.  It's called "Training for a Solar Job: What Do I Need to Know"

Lead image: Solar power workers at a plant via Shutterstock.

18 Sep, 2012


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France Taxing Carbon Emitters in an Effort to Overhaul Consumer Energy Costs

Making more people eligible for so-called "social" utility rates will make energy more accessible, he said in a speech at an environment conference in Paris. Existing law allows for 1 million households to benefit, he said.

The 2013 budget will include a "general tax" on businesses that contribute to air pollution, he said. The government also plans to review the CSPE tax on electricity bills that goes toward paying the higher costs of renewable energy.

President Francois Hollande has embarked on a plan to lower France's reliance on nuclear power and overhaul energy costs for consumers. Electricite de France SA and GDF Suez SA, the Paris- based former monopolies, have the rates that they charge households in their home market regulated by the government.

A draft law aimed at boosting energy efficiency and lowering demand would make rules on the tariffs more complex because they will depend on home insulation and revenues.

"I want to encourage moderation in energy use," Ayrault said today. Under the plan, the government wants 1 million homes renovated annually for which financial aid will be available, he said.

Business Costs

"What worries us the most is how much this will cost and who will pay," Laurence Parisot, head of the business organization Medef, said after the conference on the government's energy policies and the planned pollution tax. "We can't keep raising costs for companies without a big impact on jobs and competitiveness."

The government will also start tenders by the end of the year for two offshore wind parks near Le Treport in the Channel and Noirmoutier island off the Atlantic coast, as well as large- scale solar installations, Ayrault said. This will be accompanied by a streamlining of administrative procedures for development of onshore turbines.

EDF and partners including turbine maker Alstom SA won in April a French government tender to build three offshore wind farms, while Iberdrola SA got one. That first round was for almost 2,000 megawatts that will add an estimated 1.1 billion euros to household electricity bills when the wind farms are running, the government has said.

France, which doesn't yet have any offshore wind power, plans to install 6,000 megawatts of offshore wind, tidal and wave power by 2020 to boost clean energy.

Lead image: wind turbines via shutterstock

17 Sep, 2012


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Source: http://www.renewableenergyworld.com/rea/news/article/2012/09/france-taxing-carbon-emitters-in-an-effort-to-overhaul-consumer-energy-costs?cmpid=rss
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Misteri Cinta di Tatapan Mata

Written By empapat on Selasa, 27 Maret 2012 | 00.45

Misteri Cinta di Tatapan Mata Sebagian besar pria menganggap pikiran wanita adalah misteri yang tak terpecahkan, terutama dalam hal perasaan cinta. Permainan menebak-nebak perasaan pun akhirnya dilakukan. Padahal sebenarnya, perasaan wanita sangat tergambar melalui pergerakan mata dan tatapannya.

Tak percaya? Lihat saja hasil analisis Ali Campbell penulis buku "More than Just Sex". Ia mencari tahu bagaimana dan kapan wanita akan tertarik pada seorang pria, dan seberapa besar peluang seorang pria dalam hal mendapatkan cintanya hanya dengan melihat tatapan mata.

Apa yang terjadi pada 45 detik setelah saling menatap, pria bisa langsung mengetahui apakah wanita incarannya juga tertarik atau tidak tertarik. Campbell mengungkap, saat seorang wanita menatap seorang pria, lalu mengalihkan matanya ke arah bawah dan gerakan matanya seperti menyapu lantai, hampir pasti ada ketertarikan.

"Sekilas, ini berarti wanita sedang memeriksa emosi internalnya. Dia sudah tahu kalau dia menyukai pria yang dilihatnya, tapi belum tahu seberapa besar rasa suka tersebut," kata Campbell, seperti dikutip dari MailOnline.

Gerakan mata dan tatapan ini, bisa dijadikan petunjuk efektif bagi pria saat ingin mendekati wanita. Lalu, jika seorang wanita berpaling sampai 45 detik dan kemudian menatap mata pria secara langsung di bagian mata, itu merupakan tanda pasti bahwa dia tertarik. Tatapan langsungnya menunjukkan kalau ia sedang berpikir keras tentang apakah pria yang dilihatnya bisa jadi pasangan yang cocok atau tidak.

"Sebagian besar pria beranggapan, saat mereka melakukan kontak mata dengan wanita lalu matanya berpaling, tandanya si wanita tak tertarik. Padahal itulah yang terjadi juga pada pria, ketika sedang mempertimbangkan perasaan," kata ujar Campbell.

Lalu, bagaimana tatapan mata wanita saat tak tertarik? Yaitu, setelah ditatap seorang pria, mata wanita secara cepat melihat ke arah atas kepala atau menatap arah belakang sang pria. Saat mendapat reaksi ini, sebaiknya pria mundur teratur, karena menurut Campbell merupakan pertanda buruk.
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