Effect of different type of scavengers on the photocatalytic removal of copper and cyanide in the presence of TiO2@yeast hybrids
Zheng, Pei1; Pan, Zhe2; Li, Hongying1; Bai, Bo3; Guan, Weisheng1
刊名journal of materials science-materials in electronics
2015-09-01
卷号26期号:9页码:6399-6410
中文摘要effect of different type of organic or inorganic additions (formic acid, agno3, nacl) on the photocatalytic reduction of copper and photooxidation of cyanide with illuminated tio2@yeast was studied in this work together with the impact of solution ph values and contact time. the results indicated that ph values exhibited a great effect on the adsorption and photocatalytic performance of cyanide and copper because the surface charge of the tio2@yeast and the existence form of cyanide and copper are highly ph dependent. the optimal adsorption and photo-oxidation of cyanide was observed at ph 2.0 while the best adsorptive and photocatalytic efficiency for copper was achieved at ph 5.0 within the studied range. the addition of formic acid increased the photo-reduction rate of copper and inhibited the photo-oxidation of cyanide. agno3, as electron acceptor, restrained the cu(ii) reduction from 75.0 to 30.5 %, whereas accelerate the photo-oxidation of cyanide. besides, the presence of chloride ions retarded the removal efficiency of both cyanide and copper. the first-order kinetic model well described the experimental data. one possible mechanism of the effect of additives on copper and cyanide degradation was discussed.
英文摘要effect of different type of organic or inorganic additions (formic acid, agno3, nacl) on the photocatalytic reduction of copper and photooxidation of cyanide with illuminated tio2@yeast was studied in this work together with the impact of solution ph values and contact time. the results indicated that ph values exhibited a great effect on the adsorption and photocatalytic performance of cyanide and copper because the surface charge of the tio2@yeast and the existence form of cyanide and copper are highly ph dependent. the optimal adsorption and photo-oxidation of cyanide was observed at ph 2.0 while the best adsorptive and photocatalytic efficiency for copper was achieved at ph 5.0 within the studied range. the addition of formic acid increased the photo-reduction rate of copper and inhibited the photo-oxidation of cyanide. agno3, as electron acceptor, restrained the cu(ii) reduction from 75.0 to 30.5 %, whereas accelerate the photo-oxidation of cyanide. besides, the presence of chloride ions retarded the removal efficiency of both cyanide and copper. the first-order kinetic model well described the experimental data. one possible mechanism of the effect of additives on copper and cyanide degradation was discussed.
WOS标题词science & technology ; technology ; physical sciences
类目[WOS]engineering, electrical & electronic ; materials science, multidisciplinary ; physics, applied ; physics, condensed matter
研究领域[WOS]engineering ; materials science ; physics
关键词[WOS]titanium-dioxide ; activated carbon ; exchange-resins ; visible-light ; water ; tio2 ; oxidation ; adsorption ; reduction ; ions
收录类别SCI
语种英语
WOS记录号WOS:000359454500009
内容类型期刊论文
源URL[http://ir.nwipb.ac.cn/handle/363003/5520]  
专题西北高原生物研究所_中国科学院西北高原生物研究所
作者单位1.Changan Univ, Coll Environm Sci & Engn, Xian 710054, Peoples R China
2.Baoji Vocat Technol Coll, Dept Chem Engn, Baoji 721000, Peoples R China
3.Chinese Acad Sci, Northwest Plateau Inst Biol, Xining 810001, Peoples R China
推荐引用方式
GB/T 7714
Zheng, Pei,Pan, Zhe,Li, Hongying,et al. Effect of different type of scavengers on the photocatalytic removal of copper and cyanide in the presence of TiO2@yeast hybrids[J]. journal of materials science-materials in electronics,2015,26(9):6399-6410.
APA Zheng, Pei,Pan, Zhe,Li, Hongying,Bai, Bo,&Guan, Weisheng.(2015).Effect of different type of scavengers on the photocatalytic removal of copper and cyanide in the presence of TiO2@yeast hybrids.journal of materials science-materials in electronics,26(9),6399-6410.
MLA Zheng, Pei,et al."Effect of different type of scavengers on the photocatalytic removal of copper and cyanide in the presence of TiO2@yeast hybrids".journal of materials science-materials in electronics 26.9(2015):6399-6410.
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