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CONVERTING BROWNFIELD ENVIRONMENTAL NEGATIVES INTO ENERGY POSITIVES

机译:将棕色环境负离子转化为能量正离子

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There is a new paradigm for evaluating landfills. While landfills are contaminated repositories of hazardous wastes, they also are brown-fields that can be redeveloped for renewable energy development It is possible to view landfills through a new lens: As endowed areas of renewable energy potential that can be magnets for a host of renewable development incentives. Landfills also are critical resource areas for die control of greenhouse gases. Landfill materials decompose into methane, a greenhouse gas that is more than twenty times more potent—molecule for molecule—than carbon dioxide. This Article traces the molecular composition of waste in landfills, analyzing the chemical stew that brews in these repositories. Without doubt, landfills in America are brownfields. And many of these landfills leak and cause public health risks. This Article also analyzes the potential to utilize landfill gas for electricity production or as a thermal resource. It evaluates the energy potential at municipal sewage treatment plants and the ability to utilize the land at landfills to host wind turbines. The environmental regulatory envelope that surrounds landfill operation is explored. Also analyzed are the various incentives that foster renewable energy development and are applicable to landfill brownfields development. These include tax credits, tax-pref-erenced financing, renewable energy credits under state renewable portfolio standard (RPS) systems in twenty-two states, and direct renewable trust fund subsidies in sixteen states, as well as net metering available in forty states. Finally, creative techniques to mitigate derivative environmental liability under Superfund, the Resource Conservation and Recovery Act (RCRA), and similar state laws that can accompany energy operations at a landfill, are suggested.
机译:有一个评估垃圾掩埋场的新范例。垃圾填埋场是受污染的危险废物处置库,但它们也是可以重新开发以开发可再生能源的棕地。可以通​​过新的视角来查看垃圾填埋场:作为可再生能源潜力赋予的领域,它们可以吸引大量可再生能源发展激励措施。垃圾掩埋场也是控制温室气体的关键资源领域。垃圾填埋场的材料分解为甲烷,这是一种温室气体,对分子而言,其效力是二氧化碳的二十倍。本文追踪了垃圾填埋场中废物的分子组成,分析了在这些储存库中酿造的化学炖煮液。毫无疑问,美国的垃圾填埋场是棕地。这些垃圾填埋场中有许多会泄漏并造成公共健康风险。本文还分析了利用垃圾填埋气发电或作为热能的潜力。它评估了市政污水处理厂的能源潜力以及利用垃圾填埋场的土地承载风力涡轮机的能力。探索了围绕垃圾填埋场运营的环境法规范围。还分析了促进可再生能源发展并适用于垃圾填埋场发展的各种激励措施。其中包括税收抵免,有税收优惠的融资,在22个州的州可再生能源投资组合标准(RPS)系统下的可再生能源信用,以及在16个州的直接可再生信托基金补贴,以及40个州可用的净计量。最后,提出了减轻超级基金,《资源保护和回收法案》(RCRA)和类似的州法律(可伴随垃圾填埋场的能源运营)的创造性技术,以减轻此类风险。

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