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Waste-to-Energy Technologies Towards Circular Economy: a Systematic Literature Review and Bibliometric Analysis

机译:循环经济的废物对能源技术:系统文献综述和义毛管计分析

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This article presents a systematic review of the literature using the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) method associated with a bibliometric analysis on global perspective of technological advances in waste-to-energy (WTE). OpenRefine and VOSviewer software supported the bibliometric analysis. It was possible to establish the scientific gap through the correlation among interactions observed on co-authored countries' analyses, cited sources of co-citation, cited authors of co-citation, and keyword of the co-occurrence author. A total of 10 papers were included for meta-analysis and categorized into 8 fields: author(s), title, published year, research areas, energy conversion technologies, wastes used for energy production, WTE products, key findings. Considering the end use of the products, the systematic literature review confirmed a limitation of research focusing on the opportunities for a cleaner transport sector. When analysing the author's keywords, the most cited were 'municipal solid waste', 'incineration', 'waste management', 'gasification', 'anaerobic digestion', 'combustion', 'waste-to-energy', 'landfill gas', and 'sustainability', noting that the studies were directed at economic and sustainable development, as well as circular economy, aiming to mitigate adverse environmental impacts. As can be seen from the systematic review associated with the bibliometric analysis presented, the waste to energy technology is an important innovation way or route that finds numerous applications in the transport and energetic sector. It was evidenced that the WTE research efforts are mainly focused on the conversion of waste for end use electricity generation. The main role of WTE technologies in the circular economy is the energy recovery from biomass and non-recyclable waste, and also it was presented as a viable alternative to the decarbonization of transport and energy sectors.
机译:本文利用与垃圾到能量(WTE)技术进步的全球技术进步的全球性视角有关的系统评价和荟萃分析(PRISMA)方法,对文献进行了系统审查。 OpenRefine和VosViewer软件支持了Bibliometric分析。有可能通过在共同撰写国家分析的相互作用之间的相互作用之间的相关性建立科学差距,引用了共同的协同来源,引用了共同引用的作者,以及共同发生的关键词。荟萃分析共有10篇论文,并分为8个领域:作者,标题,公布的年,研究领域,能源转换技术,用于能源生产的废物,WTE产品,主要结果。考虑到产品的最终用途,系统文献综述证实了对清洁运输部门的机会的研究得到了限制。在分析作者的关键词时,最引用的是“市政固体废物”,“焚烧”,“废物管理”,“气化”,“厌氧消化”,“燃烧”,“垃圾到能源”,“垃圾填埋能力”,“垃圾填埋气”和“可持续性”,注意到这些研究是针对经济和可持续发展的,以及循环经济,旨在减轻不利的环境影响。从与所提出的圣学算术分析相关的系统审查中可以看出,能源技术的废物是一种重要的创新方式或路线,可以在运输和精力充沛的行业中找到许多应用。有人证明,基于研究努力主要集中在废物的转换,以便使用发电。 WTE技术在循环经济中的主要作用是生物质和不可循环废物的能量回收,并且还被呈现为运输和能源部门脱碳的可行替代品。

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