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基于天然膨润土通过铝和铁(III)的多羟基阳离子共沉淀改性的颗粒吸附剂的物理化学性质

Physico-Chemical Properties of Granular Sorbents Based on Natural Bentonite Modified by Polyhydroxocations of Aluminum and Iron (III) by Co-Precipitation.

作者信息

Kussainova Bakytgul, Tazhkenova Gaukhar, Kazarinov Ivan, Burashnikova Marina, Ramazanova Raigul, Ivashchenko Yelena, Saurbayeva Bekzat, Tantybayeva Batima, Seitkan Ainur, Matniyazova Gulsim, Sadiyeva Khalipa, Nurlybayeva Aisha, Bazarkhankyzy Aidana

机构信息

Department of Chemistry, Faculty of Natural Sciences, L.N. Gumilyov Eurasian National University, 010000 Astana, Kazakhstan.

Department of Physical Chemistry, Saratov State University, 410000 Saratov, Russia.

出版信息

Molecules. 2025 Jan 6;30(1):195. doi: 10.3390/molecules30010195.

Abstract

The physicochemical and adsorption properties of granular sorbents based on natural bentonite and modified sorbents based on it have been studied. It was found that modification of natural bentonite with iron (III) polyhydroxocations (mod. 1_Fe_5 GA) and aluminum (III) (mod. 1_Al_5 GA) by the "co-precipitation" method leads to a change in their chemical composition, structure, and sorption properties. It is shown that modified sorbents based on natural bentonite are finely porous (nanostructured) objects with a predominance of pores measuring 1.5-8.0 nm, with a specific surface area of 55-65 m/g. Modification of bentonite with iron (III) and aluminum compounds by the "co-precipitation" method also leads to an increase in the sorption capacity of the obtained sorbents with respect to bichromate and arsenate anions and nickel cations by 5-10 times compared with natural bentonite. The obtained sorption isotherms were classified as Langmuir type isotherms. Kinetic analysis showed that at the initial stage the sorption process is controlled by an external diffusion factor, i.e. refers to the diffusion of sorbent from solution into a liquid film on the surface of the sorbent. Then the sorption process begins to proceed in a mixed diffusion mode, when it limits both the external diffusion factor and the internal diffusion factor (the diffusion of the sorbent to the active centers through the system of pores and capillaries). To determine the contribution of the chemical stage to the rate of adsorption of bichromate and arsenate anions and nickel(II) cations with the studied granular sorbents, kinetic curves were processed using the equations of chemical kinetics (pseudo-second-order model). As a result, it was found that the adsorption of the studied anions by modified sorbents based on natural bentonite is best described by a pseudo-second-order kinetic model. It is shown that the use of natural bentonite for the development of technology for the production of granular sorbents based on it has an undeniable advantage, firstly, in terms of its chemical and structural properties, it is easily and effectively modified, and secondly, having astringent properties, granules are easily made on its basis, which turn into ceramics during high-temperature firing. The result is a granular sorbent with high physical and mechanical properties. Since bentonite is an environmentally friendly product, the technology of recycling spent sorbents is also greatly simplified.

摘要

研究了基于天然膨润土的颗粒吸附剂及其改性吸附剂的物理化学和吸附性能。发现通过“共沉淀”法用铁(III)多羟基阳离子(改性1_Fe_5 GA)和铝(III)(改性1_Al_5 GA)对天然膨润土进行改性会导致其化学组成、结构和吸附性能发生变化。结果表明,基于天然膨润土的改性吸附剂是细孔(纳米结构)物体,主要孔隙尺寸为1.5 - 8.0 nm,比表面积为55 - 65 m/g。通过“共沉淀”法用铁(III)和铝化合物对膨润土进行改性还会使所得吸附剂对重铬酸根和砷酸根阴离子以及镍阳离子的吸附容量比天然膨润土提高5 - 10倍。所获得的吸附等温线属于朗缪尔型等温线。动力学分析表明,在初始阶段,吸附过程受外部扩散因素控制,即指吸附剂从溶液扩散到吸附剂表面的液膜中。然后吸附过程开始以混合扩散模式进行,此时外部扩散因素和内部扩散因素(吸附剂通过孔隙和毛细管系统扩散到活性中心)都对其产生限制。为了确定化学阶段对所研究的颗粒吸附剂吸附重铬酸根和砷酸根阴离子以及镍(II)阳离子速率的贡献,使用化学动力学方程(伪二级模型)对动力学曲线进行了处理。结果发现,基于天然膨润土的改性吸附剂对所研究阴离子的吸附最好用伪二级动力学模型来描述。结果表明,利用天然膨润土开发基于它的颗粒吸附剂生产技术具有不可否认的优势,首先,就其化学和结构性质而言,它易于且有效地进行改性;其次,由于具有收敛性,很容易在此基础上制成颗粒,这些颗粒在高温烧制过程中会变成陶瓷。最终得到具有高物理和机械性能的颗粒吸附剂。由于膨润土是一种环保产品,废弃吸附剂的回收技术也大大简化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6528/11722007/c08c4352ad8e/molecules-30-00195-g001.jpg

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