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Removal of Carbamazepine from Water by a Novel TiO2–Coconut Shell Powder/UV Process: Composite Preparation and Photocatalytic Activity

机译:新型TiO2-椰子壳粉/紫外光工艺从水中去除卡马西平:复合材料的制备和光催化活性

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摘要

A novel TiO2–coconut shell powder (TCNSP) composite, prepared by the controlled sol-gel method with a subsequent heat treatment, was investigated as an innovative photocatalytic absorbent for the removal of carbamazepine (CBZ). CBZ is used worldwide as an antiepileptic drug, which has recently been recognized as an important organic pollutant increasingly found in wastewaters from urban areas and other aquatic environments. The granulation process was performed by using a semiautomated mass production line to produce sufficient quantities of TCNSP composites, possessing sufficient crush strength for commercialization. Physical properties of the TCNSP composite such as crystallinity, morphology, crush strength, and the Brunauer-Emmett-Teller (BET)–specific surface area were controlled by the mass ratio of titanium dioxide sol and coconut shell powder (CNSP). Calcination at 700°C produced anatase phase TiO2 in the TCNSP composites with a BET high surface area of 454 m2/g. Anatase crystallite size of the TCNSP composite increased from 2.37 to 15.11 nm with increasing calcination temperature from 500°C to 800°C. Calcinated TCNSP composites had higher CBZ removal efficiency (98%) than pure TiO2 (23%) and CNSP (34%) within a 40-min reaction time. Optimization of this innovative adsorption/photocatalytic process was obtained by a response surface methodology and a central composite design model, which indicated that this novel and sustainable technology was successful in removing CBZ from a solution.
机译:通过控制溶胶-凝胶法和随后的热处理制备了一种新型的TiO2-椰子壳粉(TCNSP)复合材料,作为一种创新的光催化吸收剂,用于去除卡马西平(CBZ)。 CBZ在世界范围内用作抗癫痫药,最近被公认为是重要的有机污染物,越来越多地从城市地区和其他水生环境的废水中发现。造粒过程是通过使用半自动化的批量生产线进行的,以生产足够数量的TCNSP复合材料,并具有足够的压碎强度以进行商业化生产。 TCNSP复合材料的物理性质,如结晶度,形态,压碎强度和Brunauer-Emmett-Teller(BET)比表面积,是由二氧化钛溶胶和椰子壳粉(CNSP)的质量比控制的。在700℃下煅烧,在TCNSP复合材料中产生了锐钛矿相TiO2,其BET高表面积为454 m 2 / g。随着煅烧温度从500°C升高到800°C,TCNSP复合材料的锐钛矿微晶尺寸从2.37nm增加到15.11nm。在40分钟的反应时间内,煅烧的TCNSP复合材料具有比纯TiO2(23%)和CNSP(34%)更高的CBZ去除效率(98%)。通过响应表面方法和中心复合设计模型对这种创新的吸附/光催化工艺进行了优化,这表明这种新颖且可持续的技术成功地从溶液中去除了CBZ。

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