Toward Viable Industrial Solid Residual Waste Recycling: A Review of Its Innovative Applications and Future Perspectives

IF 2.2 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Minerals Pub Date : 2024-09-15 DOI:10.3390/min14090943
Tugba Keskin, Erol Yilmaz, Tugrul Kasap, Muhammet Sari, Shuai Cao
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Abstract

Industrial solid residual waste (ISRW) generated during and/or due to the making of energy, heat, and raw materials poses a major threat to a sustainable future due to its large production quantities and complex characteristics. Especially improper disposal of ISRW (e.g., coal ashes, municipal waste residue, and biomass ashes) not only threatens human health but can also cause environmental hazards such as water, soil, and air pollution, upsetting the global balance. Given the environmental impacts as well as increasingly stringent disposal regulations, lack of landfills, and economic constraints, more sustainable and naturally friendly management strategies are being adopted for ISRW. While numerous studies in the literature have considered various characteristics of ISRW, a complete appraisal of the entire practice, from making to disposal, is still lacking. This paper presents an overview of the making, features, and traditional and innovative managing tactics of ISRW within the context of a general legal framework. This paper provides a scientific review of the various production types, global production quantities, and characteristics of ISRW. Additionally, the orthodox management strategies of ISRWs are scrutinized from a sociological and ecological standpoint, and diverse techniques for more viable and secure management are elucidated. This review culminates in an examination of the global impact and advantages of ISRW management policies based on legislation and regulations. Consequently, this paper seeks to elucidate the extant practices and a few recent advancements pertaining to ISRWs. Additionally, it underscores the ecological, sociological, and economic issues engendered by ISRWs and proposes innovative applications and production technologies.
实现可行的工业固体残余废物回收利用:创新应用与未来展望综述
在能源、热能和原材料生产过程中和/或由于生产过程中产生的工业固体残留废物(ISRW),由于其生产量大、特性复杂,对未来的可持续发展构成了重大威胁。尤其是工业废渣(如煤灰、城市废渣和生物质灰烬)的不当处置不仅威胁人类健康,还会造成水、土壤和空气污染等环境危害,破坏全球平衡。鉴于对环境的影响,以及日益严格的处理法规、垃圾填埋场的缺乏和经济限制,人们正在采用更可持续、更自然友好的管理策略来处理综合可回收废物。虽然文献中的许多研究都考虑到了综合可回收废物的各种特性,但仍然缺乏对从制造到处置的整个过程的全面评估。本文在总体法律框架内概述了国际社会遗留爆炸物的制造、特征以及传统和创新的管理策略。本文对国际可回收废物的各种生产类型、全球生产数量和特点进行了科学评述。此外,本文还从社会学和生态学的角度审视了国际社会责任遗留爆炸物的正统管理策略,并阐明了更可行、更安全的多种管理技术。最后,本文还探讨了以法律法规为基础的国际共有含水层管理政策的全球影响和优势。因此,本文试图阐明与综合可回收废物有关的现有做法和一些最新进展。此外,本文还强调了综合可回收废物引发的生态、社会和经济问题,并提出了创新应用和生产技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Minerals
Minerals MINERALOGY-MINING & MINERAL PROCESSING
CiteScore
4.10
自引率
20.00%
发文量
1351
审稿时长
19.04 days
期刊介绍: Minerals (ISSN 2075-163X) is an international open access journal that covers the broad field of mineralogy, economic mineral resources, mineral exploration, innovative mining techniques and advances in mineral processing. It publishes reviews, regular research papers and short notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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