Green and low-cost synthesis of zeolites from kaolin: a promising technology or a delusion?

IF 3.4 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Reaction Chemistry & Engineering Pub Date : 2024-05-24 DOI:10.1039/D4RE00115J
Ivan M. Zdretsov and Andrey M. Gerasimov
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Abstract

Aluminosilicate zeolites are indispensable in many branches of the chemical industry. Conventionally, they are synthesised by the hydrothermal method from pure sources of SiO2 and Al2O3, whose production is relatively expensive and associated with waste generation. Recently, there has been a growing interest in kaolin as a low-cost alternative natural raw material for zeolite synthesis. In this case, the synthesis route includes kaolin pretreatment steps. For the development of feasible technology, it is necessary to have insight into new and basic synthesis steps and prove that the kaolin-based process is really green and low-cost. These aspects are often silent in research papers, which makes one doubt the idea. We have conducted an extensive literature review to fill these gaps. Collected data has been systematised and put in an easy-to-compare form. Synthesis routes from the literature have been divided into separate steps (grinding and screening, purification, metakaolinisation, alkali fusion, dealumination, hydrothermal process) to elucidate their conditions, theoretical basis and mechanisms, research progress, effect on the overall process, and compliance with economic and environmental requirements. It has turned out that alkali fusion is impracticable, and dealumination is not industrially applicable economically and environmentally (additional SiO2 is a feasible alternative). The other steps are essential. As a result, we have found that the synthesis of only low-silica zeolites can be considered green and low-cost. So, involved researchers should focus on this direction. Also, the review provides in-depth details about hydrothermal synthesis and may become information support for any researchers studying zeolite synthesis.

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从高岭土中绿色、低成本地合成沸石:一项前景广阔的技术还是一种幻想?
铝硅酸盐沸石在化学工业的许多领域都是不可或缺的。传统的沸石合成方法是通过水热法从纯净的 SiO2 和 Al2O3 原料中提取沸石。最近,人们对高岭土作为沸石合成的低成本天然替代原料的兴趣日益浓厚。在这种情况下,合成路线包括高岭土预处理步骤。为了开发可行的技术,有必要深入了解新的基本合成步骤,并证明基于高岭土的工艺确实是绿色低成本的。这些方面在研究论文中往往只字未提,这不禁让人产生怀疑。为了填补这些空白,我们进行了广泛的文献综述。我们对收集到的数据进行了系统整理,并以易于比较的形式进行了归纳。文献中的合成路线被划分为不同的步骤(研磨和筛选、提纯、偏高岭土化、碱熔、脱硫、水热过程),以阐明其条件、理论基础和机制、研究进展、对整个过程的影响以及是否符合经济和环境要求。结果表明,碱熔化是不可行的,而脱烷法在经济和环境方面也不适合工业应用(额外的二氧化硅是一种可行的替代方法)。其他步骤是必不可少的。因此,我们发现只有低硅沸石的合成才是绿色和低成本的。因此,相关研究人员应关注这一方向。此外,这篇综述还提供了有关水热合成的深入细节,可为任何研究沸石合成的研究人员提供信息支持。
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来源期刊
Reaction Chemistry & Engineering
Reaction Chemistry & Engineering Chemistry-Chemistry (miscellaneous)
CiteScore
6.60
自引率
7.70%
发文量
227
期刊介绍: Reaction Chemistry & Engineering is a new journal reporting cutting edge research into all aspects of making molecules for the benefit of fundamental research, applied processes and wider society. From fundamental, molecular-level chemistry to large scale chemical production, Reaction Chemistry & Engineering brings together communities of chemists and chemical engineers working to ensure the crucial role of reaction chemistry in today’s world.
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