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An analysis of producing ethanol and electric power from woody residues and agricultural crops in East Texas.

机译:分析德克萨斯州东部的木质残渣和农作物生产乙醇和电力。

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The increasing U.S. dependence on imported oil; the contribution of fossil fuels to the greenhouse gas emissions and the climate change issue; the current level of energy prices and other environmental concerns have increased world interest in renewable energy sources. Biomass is a large, diverse, readily exploitable resource. This dissertation examines the biomass potential in Eastern Texas by examining a 44 county region. This examination considers the potential establishment of a 100-megawatt (MW) power plant and a 20 million gallon per year (MMGY) ethanol plant using lignocellulosic biomass. The biomass sources considered are switchgrass, sugarcane bagasse, and logging residues. In the case of electricity generation, co-firing scenarios are also investigated. The research analyzes the key indicators involved with economic costs and benefits, environmental and social impacts. The bioenergy production possibilities considered here were biofeedstock supported electric power and cellulosic ethanol production. The results were integrated into a comprehensive set of information that addresses the effects of biomass energy development in the region.; The analysis indicates that none of the counties in East Texas have sufficient biomass to individually sustain either a 100% biomass fired power plant or the cellulosic ethanol plant. Such plants would only be feasible at the regional level. Co-firing biomass with coal, however, does provide a most attractive alternative for the study region. The results indicate further that basing the decision solely on economics of feedstock availability and costs would suggest that bioenergy, as a renewable energy, is not a viable energy alternative. Accounting for some environmental and social benefits accruing to the region from bioenergy production together with the feedstock economics, however, suggests that government subsidies, up to the amount of accruing benefits, could make the bioenergies an attractive business opportunity for local farmers and investors.
机译:美国对进口石油的依赖日益增加;化石燃料对温室气体排放和气候变化问题的贡献;当前的能源价格水平和其他环境问题已经增加了世界对可再生能源的兴趣。生物质是一种巨大的,多样化的,易于开发的资源。本文通过考察44个县区来考察德克萨斯州东部的生物质潜力。这项检查考虑了使用木质纤维素生物质建立一个100兆瓦(MW)的发电厂和一个年产2000万加仑(MMGY)乙醇的发电厂的潜力。所考虑的生物质来源是柳枝,、甘蔗渣和伐木残渣。在发电的情况下,还研究了共燃情景。该研究分析了涉及经济成本和收益,环境和社会影响的关键指标。这里考虑的生物能源生产可能性是生物原料支持的电力和纤维素乙醇的生产。结果被整合到一套综合信息中,以解决该地区生物质能源发展的影响。分析表明,东得克萨斯州没有一个县有足够的生物量来单独维持100%的生物质火力发电厂或纤维素乙醇厂。这样的工厂仅在区域一级是可行的。然而,将生物质与煤共烧确实为研究区域提供了最有吸引力的替代方法。结果进一步表明,仅基于原料可获得性和成本的经济性的决定将表明,生物能源作为一种可再生能源,不是可行的能源替代方案。然而,从生物能源生产到原料经济学一起,对该地区产生的一些环境和社会效益进行了核算,这表明,政府补贴(最多可获得的利益)可以使生物能源成为当地农民和投资者的诱人商机。

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