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提高能源效率的主要技术与途径 被引量:5

The technologies and methods for improving energy efficiency
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摘要 与1978年相比,2008年我国电力工业通过降低供减少二氧化硫排放约320万t,为我国节能减排作出了巨大贡献。但未来我国电力工业将随着中国经济的发展而持续增长,其能源消耗量以及二氧化碳、二氧化硫的排放量将呈不断增加的趋势。这将对电力工业的能效提出严峻的挑战。研究提高发电、输电、配电及用电的能效将具有重要的现实意义。介绍了美国发电、输电、配电及用电方面提高能效的先进技术,结合我国发布的行业标准,探讨提高我国发输配用电效率的途径。 Compared with 1978, China' s power industry saved 380 million tce in 2008 by reducing electricity consumption and line loss, reduced 920 million tons of carbon dioxide emissions and reduced 3.2 million tons of sulfur dioxide emissions that made a tremendous contribution for China's energy-saving and emission reduction. However, in future China's electric power industry will increasingly grow with the development of China' s economy. Its energy consumption and carbon dioxide, sulfur dioxide emissions show a rising trend which will make electric power industry face the energy efficiency challenges. To improve energy efficiency of the generation, transmission, distribution and consumption will have important practical significance. The article introduced the U.S. energy efficiency and advanced technology of power generation, transmission and distribution and power consumption. Combined with China's release of industry standards, it discussed the ways to improve the efficiency of electricity transmission and distribution.
作者 方燕平
出处 《电力需求侧管理》 2009年第3期42-43,46,共3页 Power Demand Side Management
关键词 能源效率 节能技术 高温超导技术 储能技术 energy efficiency energy saving technology high-temperature superconductor technology energy storage tech-nology
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  • 1美国总统科技咨询委员会(PCAST)能源效率组.关于能源效率的建议草案[Z].2001. 被引量:1
  • 2国家发展和改革委员会.中华人民共和国电力行业标准:节能技术监督导则[S].2007. 被引量:1
  • 3胡兆光著..综合资源战略规划与需求侧管理 理论方法与实践[M].北京:中国电力出版社,2008:348.

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