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From biorefinery landfills towards a sustainable circular bioeconomy: A techno-economic and environmental analysis in Atlantic Canada

机译:从生物垃圾填埋场到可持续的循环生物经济:大西洋加拿大的技术经济和环境分析

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Recycling and upgrading of low-grade materials plays a pivotal role in building a sustainable circular bioeconomy. The present study explored the potential of energy recovery from biorefinery landfills by means of in-situ thermal processing of municipal solid waste (MSW) with a techno-economic analysis and using RETScreen clean energy project analysis software. An environmental assessment was performed to validate the sustainability of the proposed process. The biorefinery landfill uses existing MSW landfill infrastructure to move from a disposal-only paradigm to a product-creation paradigm. This innovative concept can reduce the extra costs of ex-situ conventional power plants by avoiding waste transportation to a secondary site. A case study in Atlantic Canada was employed to optimize energy reclamation from MSW via two principal pathways: (1) Rankine cycle steam power plant and (2) gas turbine. A plant with a 30 t h(-1) capacity and 2 MW power production was proposed as a base case. The results indicated that the gross reduction in annual greenhouse gas emissions was 1115 t CO2 greater for a gas turbine than a steam cycle. Further, for a steam power plant, the capital cost was approximately three-fold higher, and the operating and maintenance costs were nearly eight-fold higher than a gas turbine plant. Study results will encourage progress towards a sustainable biopower system and lay the foundation for comprehensive analysis of renewable resources like MSW. The key outcomes of this study target growth of the circular bioeconomy. Moreover, they can serve as the basis to draw recommendations on the techno-economic feasibility of implementing such biorefineries, specifically at high latitudes where energy costs are relatively high. (C) 2021 Elsevier Ltd. All rights reserved.
机译:低档材料的回收和升级在建立可持续的循环生物经济体中起着关键作用。本研究探讨了通过现场固体废物(MSW)的热处理垃圾填埋场从生物垃圾填埋场的能源回收潜力,并使用试剂卷清洁能源项目分析软件。进行环境评估以验证拟议进程的可持续性。生物垃圾填埋场使用现有的MSW垃圾填埋基础设施从仅处理范例到产品创作范式。这种创新的概念可以通过避免对二级站点的废物运输来降低前u常规发电厂的额外费用。采用大西洋加拿大的案例研究通过两个主要途径优化MSW的能源填海:(1)兰峰循环蒸汽发电厂和(2)燃气轮机。提出了一种具有30th(-1)容量和2 MW电力产生的植物作为基础壳体。结果表明,对于燃气轮机而言,每年温室气体排放量的总减少比蒸汽循环为1115吨。此外,对于蒸汽发电厂,资本成本较高大约三倍,操作和维护成本比燃气轮机厂高近八倍。研究结果将鼓励对可持续生物系统的进展,并为MSW等可再生资源进行全面分析。该研究的主要结果是循环生物学的增长。此外,他们可以作为提高关于实施此类生物猎物的技术经济可行性的基础,特别是在能源成本相对较高的高纬度地区。 (c)2021 elestvier有限公司保留所有权利。

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