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废物焚烧与低热焦菲涅尔透镜太阳能集热器混合,实现可持续多代;全面的技术经济环境分析与优化。

Waste incineration and heat recovery hybridized with low-focus fresnel lens solar collectors for sustainable multi-generation; A thorough techno-economic-environmental analysis and optimization.

机构信息

School of Marine Technology and Environment, Dalian Ocean University, Dalian, China; Energy Department, Aalborg University, Denmark.

Energy Department, Aalborg University, Denmark.

出版信息

Chemosphere. 2024 Jan;346:140409. doi: 10.1016/j.chemosphere.2023.140409. Epub 2023 Oct 11.

DOI:10.1016/j.chemosphere.2023.140409
PMID:37832893
Abstract

Biomass, including municipal solid waste, and solar energy are two of the inevitable sources for future decarbonized energy systems. Fresnel lens thermal collectors using cheap micro-structured foils is an interesting emerging medium-temperature solar thermal design that might be of high practical value, provided that its fluctuating output is managed. This study proposes a hybrid solar-waste solution using this type of collector for multi-generation via an Organic Rankine Cycle. The cycle is specially designed for supplying low-grade heat, power, and industrial heat (which is a very critical sector to be decarbonized) taking advantage of the generated stable solar-waste medium-temperature heat at zero emission level. To achieve this optimal design, the article conducts a thorough energy-exergy-economic-environment (4E) analysis of the system and employs the non-dominated sorting genetic algorithm (NSGA II) for the optimizations. A benchmarking analysis is also conducted to show the importance of industrial heat supply in this cycle. The results show that this hybridization, owing to the cheap and flexible heat delivery of the waste incinerator as well as the low cost of the solar collectors, is very effective for efficient and cheap multi-generation. Especially for industrial heat supply, the competitive levelized cost of energy (LCOE) of 23.96 €/MWh is obtained, which is way lower than today's achievable costs in the industry.

摘要

生物质,包括城市固体废物和太阳能,是未来脱碳能源系统不可避免的两个来源。利用廉价微结构箔片的菲涅耳透镜热收集器是一种很有前途的中温太阳能热设计,具有很高的实用价值,只要能够管理其波动的输出。本研究提出了一种混合太阳能-废物解决方案,利用这种类型的收集器通过有机朗肯循环进行多代发电。该循环专门设计用于利用产生的稳定的太阳能-废物中温热能,以零排放水平提供低品位热能、电力和工业热能(这是一个非常关键的需要脱碳的领域)。为了实现这一最佳设计,本文对系统进行了全面的能源-能质-经济-环境(4E)分析,并采用非支配排序遗传算法(NSGA II)进行优化。还进行了基准分析,以展示该循环中工业热能供应的重要性。结果表明,由于废物焚烧炉的廉价和灵活的热能输送以及太阳能收集器的低成本,这种混合方式对于高效和廉价的多代发电非常有效。特别是对于工业热能供应,获得了具有竞争力的平准化能源成本(LCOE)为 23.96 欧元/MWh,远低于当今工业可达成本。

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