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Regional prediction of long-term landfill gas to energy potential

机译:长期填埋气发电潜力的区域预测

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摘要

Quantifying landfill gas to energy (LFGTE) potential as a source of renewable energy is difficult due to the challenges involved in modeling landfill gas (LFG) generation. In this paper a methodology is presented to estimate LFGTE potential on a regional scale over a 25-year timeframe with consideration of modeling uncertainties. The methodology was demonstrated for the US state of Florida, as a case study, and showed that Florida could increase the annual LFGTE production by more than threefold by 2035 through installation of LFGTE facilities at all landfills. The estimated electricity production potential from Florida LFG is equivalent to removing some 70 million vehicles from highways or replacing over 800 million barrels of oil consumption during the 2010-2035 timeframe. Diverting food waste could significantly reduce fugitive LFG emissions, while having minimal effect on the LFGTE potential; whereas, achieving high diversion goals through increased recycling will result in reduced uncollected LFG and significant loss of energy production potential which may be offset by energy savings from material recovery and reuse. Estimates showed that the power density for Florida LFGTE production could reach as high as 10 W m~2 with optimized landfill operation and energy production practices. The environmental benefits from increased lifetime LFG collection efficiencies magnify the value of LFGTE projects.
机译:由于建模垃圾掩埋气(LFG)所涉及的挑战,很难量化垃圾掩埋气转化为能源(LFGTE)潜力作为可再生能源。本文提出了一种方法,用于在考虑模型不确定性的情况下在25年的时间范围内估计区域范围内的LFGTE潜力。作为案例研究,该方法已在美国佛罗里达州进行了演示,并表明到2035年,佛罗里达州可以通过在所有垃圾填埋场安装LFGTE设施,将LFGTE的年产量增加三倍以上。佛罗里达州LFG估计的电力生产潜力相当于在2010-2035年的时间段内从高速公路上拆除了约7,000万辆汽车或替换了8亿多桶石油消耗。转移食物垃圾可大大减少逃逸的LFG排放,同时对LFGTE潜力的影响最小;相反,通过增加回收利用来实现较高的转移目标,将导致未收集的LFG减少以及能源生产潜力的巨大损失,这可能会被材料回收和再利用所节省的能源所抵消。估计显示,通过优化垃圾填埋场操作和能源生产实践,佛罗里达州LFGTE生产的功率密度可以达到10 W m〜2。使用寿命长的LFG收集效率提高所带来的环境效益,放大了LFGTE项目的价值。

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