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多孔陶瓷负载Ce-TiO2光催化降解印染废水研究OACSTPCD

Photocatalytic Degradation of Dying Waste water by Porous Ceramics Supported Ce-TiO2

中文摘要英文摘要

本文以建筑废弃物为主要原料,氧化铝为铝源,氟化铝为晶须催化剂,氧化硼、氧化铈、三氧化钼为烧结助剂,玉米淀粉为造孔剂,采用干压成型法制备了莫来石多孔陶瓷,研究了氧化铈和三氧化钼掺量对莫来石多孔陶瓷结构及理化性能的影响,并以性能最佳的陶瓷负载TiO2/Ce-TiO2进行光催化降解模拟印染废水研究.结果表明:以质量分数计,当氧化铈掺量为4%、三氧化钼掺量为1%时,多孔陶瓷的抗折强度为8.69 MPa,开口孔隙率为64.25%;负载0.05 g Ce-TiO2催化剂,掺入1.2 mmol/L的PMS,在功率为18 W、波长为420~430 nm的LED可见光灯照射120 min后,其对亚甲基蓝溶液降解率达到96.62%.

In this paper,mullite porous ceramics were prepared by dry compression molding method using construction waste as main raw material,alumina as aluminum source,aluminum fluoride as whisker catalyst,boron oxide,cerium oxide and molybdenum trioxide as sintering aids,and corn starch as pore forming additive.The effects of cerium oxide and molybdenum trioxide contents on the structure and physicochemical properties of the mullite porous ceramics were investigated,and the ceramics with the best performance were loaded with TiO2/Ce-TiO2 for photocatalytic degradation of simulated printing and dyeing wastewater.The results show that,in terms of mass fraction,when the content of cerium oxide is 4%and the content of molybdenum trioxide is 1%,the flexural strength of porous ceramics is 8.69 MPa,and the open porosity is 64.25%.Loading with 0.05 g Ce-TiO2 and mixing with 1.2 mmol/L PMS,the degradation rate of the methylene blue solution reaches 96.62%after 120 min of irradiation with LED visible light at power of 18 W and wavelength of 420~430 nm.

陈伟杰;花开慧;雷鸣;王望龙

东莞理工学院生态环境与建筑工程学院,东莞 523008东莞理工学院生态环境与建筑工程学院,东莞 523008||广东省城市生命线工程智慧防灾与应急技术重点实验室,东莞 523008广东东实环境股份有限公司,东莞 523143

化学

多孔陶瓷;莫来石晶须;可见光催化;降解;异质结;印染废水

porous ceramics;mullite whisker;visible photocatalytic;degradation;heterojunction;dying wastewater

《人工晶体学报》 2024 (001)

170-180 / 11

广东省普通高校创新团队项目(2019KCXTD013);东莞市社会发展科技项目(20211800905302);粤澳科技创新联合资助(2022A0505020030);广东省基础与应用基础研究基金(19201910260000040);广东省联合培养研究生示范基地人才培养项目(粤教研函[2021]2号,粤教研函[2023]3号)

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