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

Authors :
Machado, Raquel Cardoso.
Valle, Stella Fortuna do
Sena, Thais Beatriz Miqueleti
Perrony, Paul Esteban Pherez
Bettiol, Wagner
Ribeiro, Caue
Source :
Waste Management. Sep2024, Vol. 186, p94-108. 15p.
Publication Year :
2024

Abstract

• Alum sludge is a low-cost alternative Si and Al source for zeolite synthesis. • Recycle alum sludge for zeolite synthesis reduce water treatment's environmental impact. • Zeolite synthesis from alum sludge provides a sustainable way to waste management. • Aluminosilicate synthesis using alum sludge adds an economic/environmental value. 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. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0956053X
Volume :
186
Database :
Academic Search Index
Journal :
Waste Management
Publication Type :
Academic Journal
Accession number :
178318302
Full Text :
https://doi.org/10.1016/j.wasman.2024.05.046