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银掺杂多孔氧化钛光催化甲基橙降解反应条件的探究
引用本文:王瑶,武志刚,贾艳蓉.银掺杂多孔氧化钛光催化甲基橙降解反应条件的探究[J].井冈山大学学报(自然科学版),2016(2):29-32,59.
作者姓名:王瑶  武志刚  贾艳蓉
作者单位:中北大学理学院, 山西, 太原 030051,中北大学理学院, 山西, 太原 030051,中北大学理学院, 山西, 太原 030051
基金项目:山西省归国留学人员基金项目(2010-79)
摘    要:利用溶胶-凝胶法结合光还原法制备Ag掺杂多孔TiO_2光催化剂,以甲基橙的降解效果为评价标准,考查了光照降解时间、光催化剂用量、甲基橙溶液初始浓度、溶液pH值对光催化剂催化降解甲基橙的影响。结果表明,本方法制备的光催化剂无论是在紫外光还是可见光下均具有优良的光催化性能:在浓度为10 mg/L的甲基橙溶液中,4 g/L光催化剂,紫外光照射80 min,甲基橙可实现100%完全降解;相同催化条件下,可见光照100 min,甲基橙完全降解;当反应溶液pH=2时,紫外光和可见光都可在20 min内实现甲基橙的完全降解。

关 键 词:Ag掺杂多孔TiO2  光催化性能  甲基橙  降解反应条件
收稿时间:2015/9/23 0:00:00
修稿时间:1/6/2016 12:00:00 AM

DEGRADATION REACTION CONDITIONS OF METHYL ORANGE PHOTOCATALYZED BY Ag-DEPOSITED POROUS TITANIUM OXIDE
WANG Yao,WU Zhi-gang and JIA Yan-rong.DEGRADATION REACTION CONDITIONS OF METHYL ORANGE PHOTOCATALYZED BY Ag-DEPOSITED POROUS TITANIUM OXIDE[J].Journal of Jinggangshan University(Natural Sciences Edition),2016(2):29-32,59.
Authors:WANG Yao  WU Zhi-gang and JIA Yan-rong
Affiliation:School of Science, North University of China, Taiyuan, Shanxi 030051, China,School of Science, North University of China, Taiyuan, Shanxi 030051, China and School of Science, North University of China, Taiyuan, Shanxi 030051, China
Abstract:Ag-deposited porous TiO2 powders were prepared by sol-gel method combined with reduction method. The effects of the degradation conditions such as irradiation time, amount of catalyst, the initial concentration of methyl orange solution, pH value and additional oxidant on photocatalytic degradation of methyl orange under ultraviolet irradiation of Ag-deposited porous TiO2 were investigated. The results showed that the prepared photocatalyst had excellent photo-catalytic properties. When 4 g/L Ag-deposited porous TiO2 was added in 10 mg/L methyl orange solution, and the solution was exposured under UV light for 80 min or visible light for 100 min, the methyl orange can be fully degraded. When pH=2, the methyl orange can be degraded completely in 20 min under both UV and visible light.
Keywords:Ag doped porous TiO2  photocatalytic performance  methyl orange  degradation reaction conditions
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