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System Dynamics of the Competition of Municipal Solid Waste to Landfill, Electricity, and Liquid Fuel in California

机译:加州城市固体废物向垃圾填埋场,电力和液体燃料竞争的系统动力学

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Increasing concern regarding the cost, security, and environmental impact of fossil fuel energy use is driving research and investment towards developing the most strategic methods of converting biomass resources into energy. Analyses to date have examined theoretical limitations of biomass-to-energy through resource availability assessments, but have not thoroughly challenged competing tradeoffs of biomass conversion into liquid fuel versus electricity. Existing studies have focused on energy crops and cellulosic residues for biomass-to-energy inputs, however the conversion of these biomass resources is often less energetically efficient compared to fossil energy sources. Waste streams are beginning to be recognized as valuable biomass to energy resources. Municipal solid waste (MSW) is a low-cost waste biomass resource with a well-defined supply infrastructure and does not compete for land area or food supply, making it a potentially attractive renewable feedstock for energy conversion. The Waste Biomass to Energy Pathway model (WBEM) described here demonstrates a system dynamics approach to analyze the impact of converting MSW biomass to either bioelectricity or liquid fuel. The WBEM incorporates macro-scale feedback from supply chain costs, energy sector impacts, and greenhouse gas (GHG) production within the competing pathways of MSW to 1) landfill, 2) electricity, and 3) liquid fuel within California.
机译:对化石燃料能源使用的成本,安全性和环境影响的日益关注正在推动研究和投资,以开发将生物质资源转化为能源的最具战略意义的方法。迄今为止,分析已通过资源可用性评估检查了生物质转化为能源的理论局限性,但尚未彻底挑战将生物质转化为液体燃料与电力的竞争权衡。现有研究集中在能源作物和纤维素残渣上,以生物质转化为能源,但是与化石能源相比,这些生物质资源的能源转换效率通常较低。废物流开始被认为是能源资源的宝贵生物质。市政固体废物(MSW)是一种低成本的废物生物质资源,具有完善的供应基础设施,不会竞争土地面积或粮食供应,因此使其成为潜在的有吸引力的可再生能源转化原料。此处描述的废物生物质转化为能源的路径模型(WBEM)展示了一种系统动力学方法,可分析将MSW生物质转化为生物电或液体燃料的影响。 WBEM结合了来自供应链成本,能源部门的影响以及在MSW通往加州1)垃圾填埋场,2)电力和3)液体燃料的竞争途径内的温室气体(GHG)生产的宏观反馈。

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