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基于纳米吸附中心的MgO-CaO-AlO-SiO-CO可持续颗粒复合材料的吸附-矿化机制及其对水中Cu(II)去除的影响洞察

Insights into Sorption-Mineralization Mechanism for Sustainable Granular Composite of MgO-CaO-AlO-SiO-CO Based on Nanosized Adsorption Centers and Its Effect on Aqueous Cu(II) Removal.

作者信息

Morozova Alla G, Lonzinger Tatiana M, Skotnikov Vadim A, Mikhailov Gennady G, Kapelyushin Yury, Khandaker Mayeen Uddin, Alqahtani Amal, Bradley D A, Sayyed M I, Tishkevich Daria I, Vinnik Denis A, Trukhanov Alex V

机构信息

Laboratory of Single Crystal Growth, South Ural State University, 454080 Chelyabinsk, Russia.

Centre for Applied Physics and Radiation Technologies, School of Engineering and Technology, Sunway University, Petaling Jaya 47500, Selangor, Malaysia.

出版信息

Nanomaterials (Basel). 2021 Dec 30;12(1):116. doi: 10.3390/nano12010116.

Abstract

Although copper is needed for living organisms at low concentrations, it is one of the pollutants that should be monitored along with other heavy metals. A novel and sustainable composite mineralizing sorbent based on MgO-CaO-AlO-SiO-CO with nanosized adsorption centers was synthesized using natural calcium-magnesium carbonates and clay aluminosilicates for copper sorption. An organometallic modifier was added as a temporary binder and a source of inovalent ions participating in the reactions of defect formation and activated sintering. The sorbent-mineralizer samples of specified composition and properties showed irreversible sorption of Cu ions by the ion exchange reactions Ca ↔ Cu and Mg ↔ Cu. The topochemical reactions of the ion exchange 2OH → CO, 2OH → SO and CO → SO occurred at the surface with formation of the mixed calcium-copper carbonates and sulfates structurally connected with aluminosilicate matrix. The reverse migration of ions to the environment is blocked by the subsequent mineralization of the newly formed interconnected aluminosilicate and carbonate structures.

摘要

尽管生物体在低浓度下需要铜,但它是应与其他重金属一起监测的污染物之一。使用天然钙镁碳酸盐和粘土铝硅酸盐合成了一种基于MgO-CaO-AlO-SiO-CO且具有纳米级吸附中心的新型可持续复合矿化吸附剂,用于铜的吸附。添加了一种有机金属改性剂作为临时粘结剂和参与缺陷形成及活化烧结反应的单价离子源。具有特定组成和性能的吸附剂-矿化剂样品通过Ca ↔ Cu和Mg ↔ Cu离子交换反应对Cu离子表现出不可逆吸附。离子交换的拓扑化学反应2OH → CO、2OH → SO和CO → SO在表面发生,形成了与铝硅酸盐基体结构相连的混合钙铜碳酸盐和硫酸盐。新形成的相互连接的铝硅酸盐和碳酸盐结构随后的矿化阻止了离子向环境的反向迁移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edb8/8746411/b2a5944d377e/nanomaterials-12-00116-g001.jpg

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