羊皮纸论坛

羊皮纸论坛

分享让知识传播,阅读让心灵成长, 创作让文化传承,让我们共同努力。
  • 禁止广告文
  • 知识传播
  • 阅读
  • 心灵成长
  • 创作
  • 文化传承
羊皮纸论坛目录 / 能源科技 / 太阳能 / 科技新知 /

太阳能电池转换效率破 40%

发表新主题
随机主题
上个主题
下个主题
|
太阳能电池转换效率破 40%

New World Record Achieved in Solar Cell Technology
http://www.energy.gov/news/4503.htm

New Solar Cell Breaks the “40 Percent Efficient” Sunlight-to-Electricity Barrier

WASHINGTON, DC – U.S. Department of Energy (DOE) Assistant Secretary for Energy Efficiency and Renewable Energy Alexander Karsner today announced that with DOE funding, a concentrator solar cell produced by Boeing-Spectrolab has recently achieved a world-record conversion efficiency of 40.7 percent, establishing a new milestone in sunlight-to-electricity performance.  This breakthrough may lead to systems with an installation cost of only $3 per watt, producing electricity at a cost of 8-10 cents per kilowatt/hour, making solar electricity a more cost-competitive and integral part of our nation’s energy mix.

“Reaching this milestone heralds a great achievement for the Department of Energy and for solar energy engineering worldwide,” Assistant Secretary Karsner said.  “We are eager to see this accomplishment translate into the marketplace as soon as possible, which has the potential to help reduce our nation’s reliance on imported oil and increase our energy security.”

Attaining a 40 percent efficient concentrating solar cell means having another technology pathway for producing cost-effective solar electricity.  Almost all of today’s solar cell modules do not concentrate sunlight but use only what the sun produces naturally, what researchers call “one sun insolation,”  which achieves an efficiency of 12 to 18 percent.  However, by using an optical concentrator, sunlight intensity can be increased, squeezing more electricity out of a single solar cell.

The 40.7 percent cell was developed using a unique structure called a multi-junction solar cell.  This type of cell achieves a higher efficiency by capturing more of the solar spectrum. In a multi-junction cell, individual cells are made of layers, where each layer captures part of the sunlight passing through the cell.  This allows the cell to get more energy from the sun’s light.

For the past two decades researchers have tried to break the “40 percent efficient” barrier on solar cell devices.  In the early 1980s, DOE began researching what are known as “multi-junction gallium arsenide-based solar cell devices,” multi-layered solar cells which converted about 16 percent of the sun’s available energy into electricity.  In 1994, DOE’s National Renewable Energy laboratory broke the 30 percent barrier, which attracted interest from the space industry.  Most satellites today use these multi-junction cells.

Reaching 40 percent efficiency helps further President Bush’s Solar America Initiative (SAI) goals, which aims to win nationwide acceptance of clean solar energy technologies by 2015.  By then, it is intended that America will have enough solar energy systems installed to provide power to one to two million homes, at a cost of 5 to 10 cents per kilowatt/hour.  The SAI is also key component of President Bush’s Advanced Energy Initiative, which provides a 22 percent increase in research and development funding at DOE and seeks to reduce our dependence on foreign sources of oil by changing the way we power our cars, homes and businesses.

For more information, visit the Solar America Initiative website at: http://www1.eere.energy.gov/solar/solar_america/.

美国能源部 Energy Efficiency and Renewable Energy 助理次长(Assistant Secretary)Alexander Karsner 今日宣布,在 DOE 的资助下,由 Boeing-Spectrolab 所制造的聚太阳能电池(concentrator solar cell)已经达到 40.7% 的转换效率(目前台电火力发电的转换效率约为 36.8%,传统核能电万约 30%,新式则可以达到 42-57%,混合动力引擎约 32%,一般太阳能电池则约在 15%-30% 之间。)。

这项突破可以让系统安装费用降至美瓦特只要 3 美元,每千瓦/小时的发电成本只要 8-10 美分,让太阳能电池更成为不可或缺的能源。

  • 关键字 : solar, percent, energy, Energy, which, electricity, multi, sunlight, junction, efficiency, Solar, today, concentrator, cells, Secretary, Renewable, Karsner, Initiative, Assistant, America
0 0
2009-08-14T07:36:26+0000


  • 当您未登入羊皮纸时,可以利用脸书 Facebook 登入来发表回响。若使用羊皮纸会员身份发表回响则可获得经验值及虚拟金币,用来参加羊皮纸推出的活动。
发表回响
 
验证字串