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作 者:张一兵 黄英 ZHANG Yi-bing;HUANG Ying(School of Chemistry and Environmental Science, Shangrao Normal University, Shangrao 334001, Jiangxi, China;Jiangxi Province Key Laboratory of Polymer Preparation and Processing, Shangrao 334001, Jiangxi, China)
机构地区:[1]上饶师范学院化学与环境科学学院,江西上饶334001 [2]江西省塑料制备成型重点实验室,江西上饶334001
出 处:《矿冶工程》2019年第1期118-121,共4页Mining and Metallurgical Engineering
基 金:教育部第四批高等学校特色专业建设点资助项目(TS11524);江西省精品资源共享课资助项目(赣教高字[2015]79号)
摘 要:用水热法制备了掺Fe^(3+)的TiO_2晶体粉末Fe^(3+)/TiO_2,并通过XRD、SEM和TEM等手段对它进行了表征。研究了在紫外光照下Fe^(3+)/TiO_2对苯胺的催化降解效果。分析了苯胺初始浓度、掺Fe^(3+)量、Fe^(3+)/TiO_2用量、光照时间和溶液初始pH值等因素对光催化效率的影响。结果表明:所制备的TiO_2晶体为锐钛矿型即A-TiO_2;晶体粉末由直径约2.5μm的TiO_2微米球组成,各微米球则由八面体型的TiO_2纳米晶体(长度1~1.5μm)通过自组装形成,八面体的三角形边长100~200 nm;在50 mg/L的苯胺溶液中(pH=7),掺杂0.2%(摩尔分数)Fe^(3+)的A-TiO_2粉末用量为0.5 g/L时,室温下紫外光照(λ=365 nm)反应45 min,苯胺降解率达到73.84%。Fe^3+/ TiO2 crystalline powders were prepared using hydrothermal method and were characterized by XRD, SEM and TEM. The degradation of aniline by using the Fe^3+/ TiO2 crystalline powder under UV light was studied. Effects of the initial concentration of aniline, dosage of Fe^3+ and Fe^3+/ TiO2, illumination time and initial pH value on the degradation of aniline were examined. The experiment results showed that the as.prepared crystalline powders was an anatase crystal ( A.TiO2 ), with crystal powder composed of TiO2 microspheres around 2.5 μm in diameter. The microspheres were formed by self.assembly of octahedral TiO2 nanocrystals (each about 1 ~ 1.5 μm in length) and individual TiO2 octahedron had triangle with side length of 100~200 nm. The degradation rate of aniline was 73.84% after illumination for 45 min at room temperature under UV light (λ= 365 nm), with aniline mass concentration at 50 mg/ L (pH=7), by adding 0.5 g/ L A.TiO2 with Fe3+ concentration of 0.2%(molar fraction).
关 键 词:制备 掺杂 FE^3+ 锐钛型二氧化钛 苯胺 紫外光 光催化 降解
分 类 号:X131.2[环境科学与工程—环境科学]
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