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首页> 外文期刊>Biomass & bioenergy >Current and future technical, economic and environmental feasibility of maize and wheat residues supply for biomass energy application: Illustrated for South Africa
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Current and future technical, economic and environmental feasibility of maize and wheat residues supply for biomass energy application: Illustrated for South Africa

机译:用于生物质能应用的玉米和小麦残留物供应的当前和未来技术,经济和环境可行性:针对南非

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摘要

This study assessed the feasibility of mobilising maize and wheat residues for large-scale bioenergy applications in South Africa by establishing sustainable residue removal rates and cost of supply based on different production regions. A key objective was to refine the methodology for estimating crop residue harvesting for bioenergy use, while maintaining soil productivity and avoiding displacement of competing residue uses. At current conditions, the sustainable bioenergy potential from maize and wheat residues was estimated to be about 104 PJ. There is potential to increase the amount of crop residues to 238 PJ through measures such as no till cultivation and adopting improved cropping systems. These estimates were based on minimum residues requirements of 2 t ha~(-1) for soil erosion control and additional residue amounts to maintain 2% SOC level. At the farm gate, crop residues cost between 0.9 and 1.7 $ GJ~(-1). About 96% of these residues are available below 1.5 $ GJ~(-1). In the improved scenario, up to 85% of the biomass is below 1.3 $ GJ~(-1). For biomass deliveries at the conversion plant, about 36% is below 5 $ GJ~(-1) while in the optimised scenario, about 87% is delivered below 5$ GJ~(-1). Co-firing residues with coal results in lower cost of electricity compared to other renewables and significant GHG (CO_2 eq) emissions reduction (up to 0.72 tons MWh~(-1)). Establishing sustainable crop residue supply systems in South Africa could start by utilising the existing agricultural infrastructure to secure supply and develop a functional market. It would then be necessary to incentivise improvements across the value chain.
机译:这项研究通过根据不同生产地区确定可持续的残留物去除率和供应成本,评估了动员玉米和小麦残留物用于南非大规模生物能源应用的可行性。一个主要目标是完善估算用于生物能源使用的农作物残渣收获的方法,同时保持土壤生产力并避免竞争性残渣用途的替代。在当前条件下,估计来自玉米和小麦残留物的可持续生物能源潜力约为104 PJ。通过诸如免耕法和采用改良的耕作制度等措施,有可能将农作物残留量增加到238 PJ。这些估算是基于控制土壤侵蚀的2 t ha〜(-1)的最低残留量要求和为维持2%SOC水平而增加的残留量。在农场大门处,农作物残留物的成本在0.9至1.7 $ GJ〜(-1)之间。这些残留物中约96%在1.5 $ GJ〜(-1)以下可用。在改进的方案中,高达85%的生物量低于1.3 $ GJ〜(-1)。对于转化工厂的生物量输送,大约36%低于5 $ GJ〜(-1),而在优化方案中,大约87%的输送低于5 $ GJ〜(-1)。与其他可再生能源相比,将残渣与煤共烧可降低电力成本,并显着减少温室气体(CO_2当量)的排放量(高达0.72吨MWh〜(-1))。要在南非建立可持续的农作物残渣供应系统,首先要利用现有的农业基础设施来确保供应并开发功能性市场。因此,有必要激励整个价值链的改进。

著录项

  • 来源
    《Biomass & bioenergy》 |2016年第9期|106-129|共24页
  • 作者单位

    Energy Research Centre, University of Cape Town, P Bag X3, Rondebosch 7701, Cape Town, South Africa,Copernicus Institute of Sustainable Development, Department of Innovation, Environmental and Energy Sciences, Utrecht University, Heidelberglaan 2, 3584 CS, Utrecht, The Netherlands;

    SkyNRG, Keizersgracht 203 Ⅳ, 1016 DS, Amsterdam, The Netherlands;

    Copernicus Institute of Sustainable Development, Department of Innovation, Environmental and Energy Sciences, Utrecht University, Heidelberglaan 2, 3584 CS, Utrecht, The Netherlands;

    Copernicus Institute of Sustainable Development, Department of Innovation, Environmental and Energy Sciences, Utrecht University, Heidelberglaan 2, 3584 CS, Utrecht, The Netherlands;

    Copernicus Institute of Sustainable Development, Department of Innovation, Environmental and Energy Sciences, Utrecht University, Heidelberglaan 2, 3584 CS, Utrecht, The Netherlands,PBL Netherlands Environmental Assessment Agency, Bilthoven, The Netherlands;

    Copernicus Institute of Sustainable Development, Department of Innovation, Environmental and Energy Sciences, Utrecht University, Heidelberglaan 2, 3584 CS, Utrecht, The Netherlands;

    Copernicus Institute of Sustainable Development, Department of Innovation, Environmental and Energy Sciences, Utrecht University, Heidelberglaan 2, 3584 CS, Utrecht, The Netherlands,University of Groningen, Blauwborgje 6, PO Box 221, 9700 AE, Groningen, The Netherlands;

  • 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

    Agricultural residues; Soil Organic Carbon; Bioenergy; Supply chain; Logistics; Power Production;

    机译:农业残留物;土壤有机碳;生物能源供应链;后勤;电力生产;

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