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Bio-methanol potential in Indonesia: Forest biomass as a source of bio-energy that reduces carbon emissions

机译:印度尼西亚的生物甲醇潜力:森林生物质作为减少碳排放的生物能源的来源

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摘要

Since Indonesia has significant land area in different forest types that could be used to produce biofuels, the potential to sustainably collect and convert forest materials to methanol for use in energy production was examined. Using the annually available aboveground forest biomass, from 40 to 168 billion 1 of bio-methanol could be produced for use as a transportation fuel and/or to supply fuel cells to produce electricity. When a lower forest biomass availability estimate was used to determine how much electricity (methanol fed into fuel cells) could be produced in Indonesia, more than 10 million households or about 12,000 villages (20% of the total rural villages in Indonesia) would be supplied annually with electricity. Collecting forest biomass at the higher end of the estimated available biomass and converting it to methanol to supply fuel cells could provide electricity to more than 42 million households annually. This would be approximately 52,000 villages, or 86% of the total rural villages in Indonesia. When electricity is produced with bio-methanol/fuel cells, it could potentially supply from half to all of the current electricity consumed in Indonesia. By generating electricity using bio-methanol/fuel cells instead of from fossil fuels, from 9 to 38% of the total carbon currently emitted each year in Indonesia could be avoided. In contrast, substituting this same amount of bio-methanol for gasoline could provide all of the annual gasoline needs of Indonesia and contribute towards reducing their carbon emissions by about 8-35%.
机译:由于印度尼西亚在不同森林类型中都有可用于生产生物燃料的重要土地面积,因此研究了可持续收集森林材料并将其转化为甲醇用于能源生产的潜力。使用每年可获得的地上森林生物量,可以生产40至1,680亿1的生物甲醇,用作运输燃料和/或供应燃料电池以发电。当使用较低的森​​林生物量可获得性估算值来确定印度尼西亚可以生产多少电力(供入燃料电池的甲醇)时,将提供超过1000万个家庭或约12,000个村庄(占印度尼西亚农村总数的20%)每年通电。在估计的可用生物量的较高端收集森林生物量并将其转化为甲醇以供应燃料电池,每年可为超过4,200万家庭提供电力。这将是大约52,000个村庄,占印度尼西亚乡村总数的86%。用生物甲醇/燃料电池生产电力时,它有可能供应印尼目前消耗的全部电力的一半。通过使用生物甲醇/燃料电池代替化石燃料发电,可以避免印尼目前每年排放的碳总量的9%至38%。相反,用相同量的生物甲醇代替汽油可以满足印度尼西亚的所有年度汽油需求,并有助于将其碳排放减少约8-35%。

著录项

  • 来源
    《Applied Energy》 |2009年第1期|S215-S221|共7页
  • 作者单位

    Forest Systems and Bio-Energy Program, College of Forest Resources, University of Washington, Box 352100, Seattle, WA 98195-2100, USA Indonesian Ecolabeiing lnstitute/Lembaga Ekolabel Indonesia (LEI), Taman Bogor Baru Blok BIV No. 12, Bogor 16152, Indonesia;

    Forest Systems and Bio-Energy Program, College of Forest Resources, University of Washington, Box 352100, Seattle, WA 98195-2100, USA ARU Associates, Pleasanton, CA 94566, USA;

    Forest Biometrics Program, College of Forest Resources, University of Washington, Box 352100, WA 98195-2100, USA;

    ARU Associates, Pleasanton, CA 94566, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aboveground forest biomass; forest residues/wastes; bio-methanol; electricity production; transportation fuels; carbon emissions;

    机译:地上森林生物量;森林残留物/废物;生物甲醇电力生产;运输燃料;碳排放量;

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