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首页> 外文期刊>Biomass & bioenergy >Cultivating biomass locally or importing it? LCA of biomass provision scenarios for cleaner electricity production in a small tropical island
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Cultivating biomass locally or importing it? LCA of biomass provision scenarios for cleaner electricity production in a small tropical island

机译:在当地种植生物质还是进口?在一个热带小岛上提供更清洁电力生产的生物质供应情景的生命周期评估

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摘要

Biomass is a promising renewable alternative to decarbonize and to secure energy production on small islands, as most insular power generation systems rely heavily on imported fossil fuels. Feedstock procurement is a key aspect of bioenergy chain sustainability, and local resources as well as imported biomass can be considered if the electricity generated presents environmental benefits. We used Life Cycle Assessment (LCA) to evaluate the environmental impacts of 1 kWh of electricity produced in Guadeloupe from the combustion of locally grown energy cane and imported wood pellets. The energy cane agricultural supply was simulated using a bio-economic model to elaborate and analyze five scenarios involving different biomass mixes and geographical areas of production. Our results show that electricity produced from energy cane reduced the impacts of ABIOTIC DEPLETION, ACIDIFICATION and PHOTOCHEMICAL OXIDATION by 29% compared with pellet-based electricity. The environmental impacts of the energy cane cultivation stage varied by a factor of 1.5-3.7 among regional areas of cultivation because of differences in yields, soil emissions and land conversion for energy crop farming. The substitution of 5% of fossil energy by biomass in the island electricity mix can reduce GLOBAL WARMING and ABIOTIC DEPLETION impact by 4.5%. However, this change requires 3.5 to 5.2 times higher LAND OCCUPATION per unit of energy produced. Given the limited land availability on small islands, this latter point confirms that the combination of locally grown energy crops with imported biomass will be a suitable strategy to develop sustainable bioenergy for small islands.
机译:生物质是一种有前途的可再生替代品,可用于脱碳并确保小岛上的能源生产,因为大多数岛上发电系统严重依赖进口化石燃料。原料采购是生物能源链可持续性的关键方面,如果产生的电力具有环境效益,则可以考虑本地资源以及进口的生物质。我们使用生命周期评估(LCA)来评估瓜德罗普岛因当地种植的能量棒和进口木屑颗粒燃烧而产生的1 kWh电力对环境的影响。使用生物经济模型模拟了甘蔗的农业供应,以详细阐述和分析涉及不同生物量混合物和生产地理区域的五个方案。我们的结果表明,与基于颗粒的电力相比,由甘蔗产生的电力将生物耗竭,酸化和光化学氧化的影响降低了29%。在能量种植领域,由于能量作物种植的产量,土壤排放和土地转化的差异,能量蔗种植阶段的环境影响在1.5-3.7之间变化。在岛上的电力结构中,用生物质替代5%的化石能源可将全球变暖和生物耗竭的影响降低4.5%。但是,这种变化需要每单位产生的能源增加3.5到5.2倍的土地占用。鉴于小岛上的土地有限,后一点证实了将当地种植的能源作物与进口生物质相结合将是发展小岛上可持续生物能源的合适策略。

著录项

  • 来源
    《Biomass & bioenergy》 |2018年第3期|1-12|共12页
  • 作者单位

    ASTRO Agrosyst Tropicaux, INRA, UR1321, F-97170 Petit Bourg, Guadeloupe, Guadeloupe;

    INRA, UMR Sol Agro & Hydrosyst Spatialisat 1069, F-35000 Rennes, France;

    ASTRO Agrosyst Tropicaux, INRA, UR1321, F-97170 Petit Bourg, Guadeloupe, Guadeloupe;

    ASTRO Agrosyst Tropicaux, INRA, UR1321, F-97170 Petit Bourg, Guadeloupe, Guadeloupe;

    ASTRO Agrosyst Tropicaux, INRA, UR1321, F-97170 Petit Bourg, Guadeloupe, Guadeloupe;

  • 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

    LCA; Electricity; Energy cane; Wood pellet; Islands; Saccharum sp.;

    机译:LCA;电力;甘蔗;木质颗粒;岛;蔗糖;

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