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Progress in bentonite clay modification and enhancing properties to industrial applications: A review

Chokri, Mohamed; Azougagh, Omar; El Bojaddayni, Imad; Jalafi, Ilyas; El Ouardi, Youssef; Jilal, Issam; Ahari, M’hamed; Salhi, Amin; El Idrissi, Abderrahmane; Bendahhou, Amine; Abou-Salama, Mohamed; El Barkany, Soufian (2025-02-03)

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chokri_et_al_progress_in_final_draft.pdf (2.676Mb)
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: 04.02.2027

Post-print / Final draft

Chokri, Mohamed
Azougagh, Omar
El Bojaddayni, Imad
Jalafi, Ilyas
El Ouardi, Youssef
Jilal, Issam
Ahari, M’hamed
Salhi, Amin
El Idrissi, Abderrahmane
Bendahhou, Amine
Abou-Salama, Mohamed
El Barkany, Soufian
03.02.2025

Materials Chemistry and Physics

337

Elsevier

School of Engineering Science

https://doi.org/10.1016/j.matchemphys.2025.130486
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe2025041125919

Tiivistelmä

Bentonite, an aluminum phyllosilicate derived from volcanic ash conversion, mainly contains smectite minerals, notably montmorillonite, it is eco-friendly and cost-effective material. The two principal types of bentonites are calcium bentonite and sodium bentonite, have significantly contributed to revolutions in various chemical industries. This material has enormous uses attributed to its crucial Physico-chemical properties, such as surface area, composition, plasticity, structure, sorption capacity, and cation exchange capacity. Industries ranging from construction and petrochemistry to pharmaceuticals, agriculture, and cosmetics benefit from these properties. However, to adapt bentonite for specific applications, modifications of its inherent characteristics become necessary. This systematic review explores a spectrum of modification techniques applied to bentonite clay, encompassing both physical and chemical approaches. Physical methods include heat treatment, while chemical modifications involve acid activation, surfactants, ionic liquids, inorganic compounds, and polymer. The study exactly examines the impacts of these diverse modification techniques on the structural and physico-chemical properties of bentonite. Insights gained from this review will aid researchers, engineers, and industry professionals in making informed decisions regarding the selection and application of modified bentonite in various industrial sectors. This comprehensive review sheds light on the versatility of bentonite and its potential for further innovation through targeted modifications to meet evolving industrial demands.

Lähdeviite

Chokri, M., et al. (2025). Progress in bentonite clay modification and enhancing properties to industrial applications: A review. Materials Chemistry and Physics, vol. 337. DOI: 10.1016/j.matchemphys.2025.130486

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