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首页> 外文期刊>The Science of the Total Environment >Energy performance and greenhouse gas emissions of kelp cultivation for biogas and fertilizer recovery in Sweden
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Energy performance and greenhouse gas emissions of kelp cultivation for biogas and fertilizer recovery in Sweden

机译:海带养殖的沼气和化肥回收利用的能源绩效和温室气体排放

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摘要

The cultivation of seaweed as a feedstock for third generation biofuels is gathering interest in Europe, however, many questions remain unanswered in practise, notably regarding scales of operation, energy returns on investment (EROI) and greenhouse gas (GHG) emissions, all of which are crucial to determine commercial viability. This study performed an energy and GHG emissions analysis, using EROI and GHG savings potential respectively, as indicators of commercial viability for two systems: the Swedish Seafarm project's seaweed cultivation (0.5 ha), biogas and fertilizer biorefinery, and an estimation of the same system scaled up and adjusted to a cultivation of 10 ha. Based on a conservative estimate of biogas yield, neither the 0.5 ha case nor the up-scaled 10 ha estimates met the (commercial viability) target EROI of 3, nor the European Union Renewable Energy Directive GHG savings target of 60% for biofuels, however the potential for commercial viability was substantially improved by scaling up operations: GHG emissions and energy demand, per unit of biogas, was almost halved by scaling operations up by a factor of twenty, thereby approaching the EROI and GHG savings targets set, under beneficial biogas production conditions. Further analysis identified processes whose optimisations would have a large impact on energy use and emissions (such as anaerobic digestion) as well as others embodying potential for further economies of scale (such as harvesting), both of which would be of interest for future developments of kelp to biogas and fertilizer biorefineries.
机译:海藻作为第三代生物燃料的原料种植正在欧洲引起人们的兴趣,但是,实践中仍未解决许多问题,特别是在经营规模,能源投资回报率(EROI)和温室气体(GHG)排放方面,所有这些问题对于确定商业可行性至关重要。这项研究分别使用EROI和GHG节省潜力作为两个系统的商业可行性指标进行了能源和GHG排放分析:瑞典Seafarm项目的海藻种植量(0.5公顷),沼气和化肥生物精炼厂,以及对该系统的估算扩大规模并调整至10公顷的种植面积。根据对沼气产量的保守估计,无论是0.5公顷的案例还是扩大后的10公顷的估计,都未达到(商业可行性)目标EROI为3的目标,也未达到欧盟可再生能源指令对生物燃料的60%的温室气体节省目标。通过扩大规模运营,商业可行性的潜力得到了极大的提高:单位规模扩大20倍,单位沼气的温室气体排放和能源需求几乎减少了一半,从而达到了在有益沼气下设定的EROI和GHG节约目标生产条件。进一步的分析确定了其过程的优化将对能源使用和排放产生重大影响的过程(例如厌氧消化),以及其他具有进一步规模经济潜力(例如收获)的过程,这两个过程都将对未来的发展产生影响。海带到沼气和化肥生物精炼厂。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|347-355|共9页
  • 作者单位

    Industrial Ecology, Department of Sustainable Development, Environmental Science and Engineering (SEED), KTH Royal Institute of Technology, Teknikringen 34,10044 Stockholm, Sweden;

    Industrial Ecology, Department of Sustainable Development, Environmental Science and Engineering (SEED), KTH Royal Institute of Technology, Teknikringen 34,10044 Stockholm, Sweden;

    Industrial Ecology, Department of Sustainable Development, Environmental Science and Engineering (SEED), KTH Royal Institute of Technology, Teknikringen 34,10044 Stockholm, Sweden ,Currently at Sweco Environment AB, Gjoerwellsgatan 22, Stockholm, Sweden;

    Industrial Ecology, Department of Sustainable Development, Environmental Science and Engineering (SEED), KTH Royal Institute of Technology, Teknikringen 34,10044 Stockholm, Sweden;

    Industrial Ecology, Department of Sustainable Development, Environmental Science and Engineering (SEED), KTH Royal Institute of Technology, Teknikringen 34,10044 Stockholm, Sweden;

    Department of Marine Sciences - Tjaemoe, University of Gothenburg, SE-452 96 Stroemstad, Sweden;

    School of Built Environment and Energy Technology, Linnaeus University, SE-351 95 Vaexjoe, Sweden;

    School of Built Environment and Energy Technology, Linnaeus University, SE-351 95 Vaexjoe, Sweden;

    Department of Marine Sciences - Tjaemoe, University of Gothenburg, SE-452 96 Stroemstad, Sweden;

    Industrial Ecology, Department of Sustainable Development, Environmental Science and Engineering (SEED), KTH Royal Institute of Technology, Teknikringen 34,10044 Stockholm, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Swedish macroalgae cultivation; Saccharina latissima; Biorefinery; Energy return on investment (EROI); EURED GHC savings; Economy of scale;

    机译:瑞典大型藻类养殖;Saccharina latissima;生物炼制;能源投资回报率(EROI);EURED GHC节省;规模经济;

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