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固体废弃物再生建筑砖的现状与未来。

The current status and future of solid waste recycled building bricks.

机构信息

School of Civil Engineering, Xi'an University of Architecture & Technology, Xi'an, 710055, China.

Shaanxi Key Laboratory of Geotechnical & Underground Space Engineering, Xi'an, 710055, China.

出版信息

Environ Sci Pollut Res Int. 2023 Oct;30(48):105119-105148. doi: 10.1007/s11356-023-29902-x. Epub 2023 Sep 23.

Abstract

Solid waste (SW) has become a problem hindering the economic and social development. Achieving the full green cycle from raw material to production of recycled building bricks (RBB) using SW is the focus of future research. In this paper, the research results of RBB manufacturing using SW in recent years are reviewed. According to the consolidation principle of RBB, the effects of different types of SW on the physicochemical properties and microstructure of RBB are summarized based on the recycled unsintered brick (RUSB) and recycled sintered brick (RSB). By comparing and evaluating the two consolidation methods, it is proposed that RSB has good practicality due to its higher SW utilization rate, higher strength, and faster consolidation speed. Furthermore, the difference between MWS and conventional sintering (CS) is analyzed, and the research on the application of MWS in SW-RBB manufacturing in recent years is reviewed in detail. It is pointed out that microwave sintering (MWS) technology can solve many drawbacks in traditional sintering technology and has great prospects in manufacturing SW-RBB due to the low energy consumption, low pollution, and high efficiency. Finally, the shortcomings and possible challenges in the current research on manufacturing SW-RBB using MWS technology are discussed, which provides guidance for the future development of SW-RBB manufacturing.

摘要

固体废物(SW)已成为阻碍经济和社会发展的问题。实现使用 SW 从原材料到再生建筑砖(RBB)的完全绿色循环是未来研究的重点。本文综述了近年来利用 SW 制造 RBB 的研究成果。根据 RBB 的固结原理,基于回收未烧结砖(RUSB)和回收烧结砖(RSB),总结了不同类型的 SW 对 RBB 理化性能和微观结构的影响。通过比较和评价这两种固结方法,提出 RSB 具有较高的 SW 利用率、较高的强度和较快的固结速度,因此具有较好的实用性。此外,分析了微波烧结(MWS)与常规烧结(CS)的区别,并详细回顾了近年来 MWS 在 SW-RBB 制造中的应用研究。指出微波烧结(MWS)技术可以解决传统烧结技术中的许多缺点,由于能耗低、污染少、效率高,在制造 SW-RBB 方面具有广阔的前景。最后,讨论了利用 MWS 技术制造 SW-RBB 目前研究中的缺点和可能面临的挑战,为 SW-RBB 制造的未来发展提供了指导。

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