"/>

蜜臀av性久久久久|国产免费久久精品99|国产99久久久久久免费|成人精品一区二区三区在线|日韩精品一区二区av在线|国产亚洲欧美在线观看四区|色噜噜综合亚洲av中文无码|99久久久国产精品免费播放器

<cite id="ygcks"><center id="ygcks"></center></cite>
  • 
    
  • <rt id="ygcks"></rt>
    <cite id="ygcks"></cite>
  • <li id="ygcks"><source id="ygcks"></source></li> <button id="ygcks"></button>
  • <button id="ygcks"></button>
    <button id="ygcks"><input id="ygcks"></input></button>
    
    
    <abbr id="ygcks"><source id="ygcks"></source></abbr>
    
    

    Solar surpasses biomass in renewable electricity production in U.S.

    Source: Xinhua    2018-05-10 14:01:51

    HOUSTON, May 9 (Xinhua) -- Electricity generation from solar resources in the United States reached 77 million megawatthours (MWh) in 2017, surpassing annual generation from biomass resources for the first time, the U.S. Energy Information Administration (EIA) said on Wednesday.

    According to the EIA, among renewable sources, only hydro and wind generated more electricity in 2017, at 300 million MWh and 254 million MWh, respectively. Biomass generating capacity has remained relatively unchanged recently, while solar generating capacity has consistently risen.

    Annual growth in solar generation often lags annual capacity additions because generating capacity tends to be added late in the year.

    In 2016, 29 percent of total utility-scale solar generating capacity additions occurred in December, leaving few days for an installed project to contribute to total annual generation. In 2017, December solar additions accounted for 21 percent of the annual total.

    Overall, solar technologies operate at lower annual capacity factors and experience more seasonal variation than biomass technologies.

    Biomass electricity generation comes from multiple fuel sources, such as wood solids, landfill gas, municipal solid waste, and other biogenic and nonbiogenic materials. The amount of biomass generation these fuels accounted for has remained relatively constant in recent years.

    Solar can be divided into three types, solar thermal, large-scale solar photovoltaic (PV), and small-scale solar.

    Generation from solar thermal sources has remained relatively flat in recent years, at about 3 million MWh. In 2017, generation from large-scale solar PV systems increased from 15 million MWh in 2014 to 50 million MWh, and that from small-scale PV systems rose from 11 million MWh in 2014 to 24 million MWh. By the end of 2018, the EIA expects an additional 5,067 megawatts of large-scale PV to come online.

    Editor: ZD
    Related News
    Xinhuanet

    Solar surpasses biomass in renewable electricity production in U.S.

    Source: Xinhua 2018-05-10 14:01:51

    HOUSTON, May 9 (Xinhua) -- Electricity generation from solar resources in the United States reached 77 million megawatthours (MWh) in 2017, surpassing annual generation from biomass resources for the first time, the U.S. Energy Information Administration (EIA) said on Wednesday.

    According to the EIA, among renewable sources, only hydro and wind generated more electricity in 2017, at 300 million MWh and 254 million MWh, respectively. Biomass generating capacity has remained relatively unchanged recently, while solar generating capacity has consistently risen.

    Annual growth in solar generation often lags annual capacity additions because generating capacity tends to be added late in the year.

    In 2016, 29 percent of total utility-scale solar generating capacity additions occurred in December, leaving few days for an installed project to contribute to total annual generation. In 2017, December solar additions accounted for 21 percent of the annual total.

    Overall, solar technologies operate at lower annual capacity factors and experience more seasonal variation than biomass technologies.

    Biomass electricity generation comes from multiple fuel sources, such as wood solids, landfill gas, municipal solid waste, and other biogenic and nonbiogenic materials. The amount of biomass generation these fuels accounted for has remained relatively constant in recent years.

    Solar can be divided into three types, solar thermal, large-scale solar photovoltaic (PV), and small-scale solar.

    Generation from solar thermal sources has remained relatively flat in recent years, at about 3 million MWh. In 2017, generation from large-scale solar PV systems increased from 15 million MWh in 2014 to 50 million MWh, and that from small-scale PV systems rose from 11 million MWh in 2014 to 24 million MWh. By the end of 2018, the EIA expects an additional 5,067 megawatts of large-scale PV to come online.

    [Editor: huaxia]
    010020070750000000000000011100001371694011
    茂名市| 新密市| 博罗县| 苏尼特左旗| 招远市| 尉犁县| 巴彦淖尔市| 大埔县| 额济纳旗| 焉耆| 郧西县| 喀什市| 满洲里市| 临夏县| 米脂县| 鄂温| 调兵山市| 光泽县| 浪卡子县| 康保县| 永平县| 荣成市| 揭阳市| 定陶县| 高安市| 靖宇县| 嘉峪关市| 龙陵县| 海伦市| 历史| 凤山县| 花莲市| 类乌齐县| 新安县| 荃湾区| 黑水县| 阿勒泰市| 都兰县| 孟津县| 株洲市| 克什克腾旗|