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富含钙的工业废料在土壤稳定化中的可持续利用:电石渣的潜在用途。

Sustainable utilisation of calcium-rich industrial wastes in soil stabilisation: Potential use of calcium carbide residue.

作者信息

Tang Panpan, Javadi Akbar A, Vinai Raffaele

机构信息

Department of Engineering, University of Exeter, Exeter, United Kingdom.

Department of Engineering, University of Exeter, Exeter, United Kingdom.

出版信息

J Environ Manage. 2024 Apr;357:120800. doi: 10.1016/j.jenvman.2024.120800. Epub 2024 Apr 4.

Abstract

Calcium carbide residue (CCR), a by-product of the acetylene industry, is generated at a rate of 136 million tonnes per year, posing significant environmental risks. This review examines the potential utilisation of CCR in soil stabilisation, focusing on its stabilisation mechanism, performance in improving mechanical properties, environmental safety, and sustainability. The aim is to identify future research directions for CCR-based stabilisation to promote its broader application, and to provide references for managing similar Ca-rich wastes. CCR-based materials demonstrate promising benefits in enhancing various soil properties, such as uniaxial strength, swelling properties, triaxial shear behaviour, compressibility, and dynamic responses, while also reducing the mobility of contaminants. Compared to conventional stabilisers, CCR-based materials exhibit comparable performance in soil improvement, environmental impact and safety, and economic feasibility. However, further research is required to delve deeper into stabilisation mechanisms, mechanical properties, and stability of contaminants for the soil treated with CCR-based materials under diverse conditions.

摘要

电石渣(CCR)是乙炔工业的副产品,每年产生量达1.36亿吨,带来重大环境风险。本综述探讨了电石渣在土壤稳定化中的潜在利用,重点关注其稳定化机制、改善力学性能的表现、环境安全性和可持续性。目的是确定基于电石渣的稳定化未来研究方向,以促进其更广泛应用,并为管理类似富钙废物提供参考。基于电石渣的材料在增强各种土壤特性方面显示出有前景的益处,如单轴强度、膨胀特性、三轴剪切行为、压缩性和动力响应,同时还降低了污染物的迁移性。与传统稳定剂相比,基于电石渣的材料在土壤改良、环境影响与安全性以及经济可行性方面表现相当。然而,需要进一步研究以更深入地探究基于电石渣的材料处理的土壤在不同条件下的稳定化机制、力学性能和污染物稳定性。

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