Ti掺杂BiOCl纳米片的制备及其压电光催化性能研究

X703.1; 采用一步水热法制备了Ti掺杂的BiOCl纳米片,并利用XRD、SEM和PFM以及其他分析测试技术对所制备催化剂的晶体结构和形貌进行测试.以四环素(TC)为目标污染物,在模拟太阳光和超声作用下,研究了Ti-BiOCl的压电光催化性能.结果表明,Ti-BiOCl材料由厚度为25~250 nm的纳米片组成,具有良好的晶体结构和较高的压电响应能力.在光(300 W)和超声(45 kHz,100 W)协同作用下,Ti-BiOCl在20 min内可以去除94.79%的TC.室温下一级反应速率常数达0.168 min-1,显著优于单独光催化或单独压电催化过程....

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Published in工业水处理 Vol. 43; no. 5; pp. 101 - 106
Main Authors 刘丽华, 钟山, 张漓杉, 刘保江
Format Journal Article
LanguageChinese
Published 桂林电子科技大学生命与环境科学学院,广西桂林 541004%东华大学化学与化工学院,上海 201620 01.05.2023
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ISSN1005-829X
DOI10.19965/j.cnki.iwt.2022-0614

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Abstract X703.1; 采用一步水热法制备了Ti掺杂的BiOCl纳米片,并利用XRD、SEM和PFM以及其他分析测试技术对所制备催化剂的晶体结构和形貌进行测试.以四环素(TC)为目标污染物,在模拟太阳光和超声作用下,研究了Ti-BiOCl的压电光催化性能.结果表明,Ti-BiOCl材料由厚度为25~250 nm的纳米片组成,具有良好的晶体结构和较高的压电响应能力.在光(300 W)和超声(45 kHz,100 W)协同作用下,Ti-BiOCl在20 min内可以去除94.79%的TC.室温下一级反应速率常数达0.168 min-1,显著优于单独光催化或单独压电催化过程.
AbstractList X703.1; 采用一步水热法制备了Ti掺杂的BiOCl纳米片,并利用XRD、SEM和PFM以及其他分析测试技术对所制备催化剂的晶体结构和形貌进行测试.以四环素(TC)为目标污染物,在模拟太阳光和超声作用下,研究了Ti-BiOCl的压电光催化性能.结果表明,Ti-BiOCl材料由厚度为25~250 nm的纳米片组成,具有良好的晶体结构和较高的压电响应能力.在光(300 W)和超声(45 kHz,100 W)协同作用下,Ti-BiOCl在20 min内可以去除94.79%的TC.室温下一级反应速率常数达0.168 min-1,显著优于单独光催化或单独压电催化过程.
Author 钟山
刘丽华
张漓杉
刘保江
AuthorAffiliation 桂林电子科技大学生命与环境科学学院,广西桂林 541004%东华大学化学与化工学院,上海 201620
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Author_FL LIU Lihua
LIU Baojiang
ZHANG Lishan
ZHONG Shan
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压电光催化
Ti-BiOCl纳米片
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Title Ti掺杂BiOCl纳米片的制备及其压电光催化性能研究
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