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利用水厂中的铝污泥合成铝硅酸盐和沸石材料:挑战与展望。

Aluminosilicate and zeolitic materials synthesis using alum sludge from water treatment plants: Challenges and perspectives.

机构信息

Embrapa Instrumentation, São Carlos 13560-970, SP, Brazil.

Embrapa Instrumentation, São Carlos 13560-970, SP, Brazil; Institute of Chemistry, University of São Paulo, São Carlos 13566-590, SP, Brazil.

出版信息

Waste Manag. 2024 Sep 15;186:94-108. doi: 10.1016/j.wasman.2024.05.046. Epub 2024 Jun 13.

Abstract

Alum sludge (AS) is a by-product generated from drinking water treatment and produced in large amounts around the world. Its chemical composition makes this waste an emerging alternative source of silicon and aluminum for aluminosilicates or zeolite material production, which can add value to residues and contribute to the circular economy process on a global scale. In this sense, and considering the scarcity of information about AS, this review shows data collection about AS in different countries, including generation, chemical composition, and disposal information. The reuse of AS is discussed based on circular economy and the environmental gains derived from such approaches are highlighted, including the possibility of utilization with other residues (e.g., ash, bioproducts, etc). Moreover, this review shows and discusses the benefits and challenges of AS reuse in the synthesis process and how it can be a sustainable raw material for aluminosilicates and zeolite synthesis. The most common conditions (conventional or non-conventional) in zeolite synthesis from AS are mentioned and advantages, limitations and trends are discussed. The discussions and data presented can improve the AS management and reuse legislations, which certainly will collaborate with sustainable AS use and circular economy processes.

摘要

藻泥 (AS) 是饮用水处理过程中产生的一种副产物,在世界各地大量产生。其化学成分使这种废物成为硅和铝的新兴替代来源,可用于生产铝硅酸盐或沸石材料,从而增加残留物的价值,并为全球范围内的循环经济进程做出贡献。有鉴于此,并且考虑到 AS 的信息稀缺,本综述展示了不同国家关于 AS 的数据收集情况,包括生成、化学成分和处置信息。根据循环经济讨论了 AS 的再利用,并强调了此类方法带来的环境效益,包括与其他残留物(如灰烬、生物制品等)结合利用的可能性。此外,本综述还展示并讨论了 AS 在合成过程中的再利用的好处和挑战,以及它如何成为铝硅酸盐和沸石合成的可持续原料。还提到了 AS 合成沸石的最常见条件(常规或非常规),并讨论了优点、局限性和趋势。所呈现的讨论和数据可以改进 AS 管理和再利用法规,这无疑将有助于 AS 的可持续利用和循环经济进程。

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