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破乳—混凝—光催化化学氧化法处理废切削液新工艺 被引量:2
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作者 程刚 路小彬 李艳 《纺织高校基础科学学报》 CAS 2006年第4期376-380,共5页
先硝酸破乳,再用聚合硫酸铁(PFS)和阳离子聚丙烯酰胺(PAM)复合处理废切削液,当pH为8.0,PFS和PAM的用量分别是1 800mg.L-1和8mg.L-1时混凝效果较好.混凝上清液用UV/H2O2/Fe2+系统氧化,当pH=3,分4次加入H2O2,紫外照射6.5h,结果令人满意.... 先硝酸破乳,再用聚合硫酸铁(PFS)和阳离子聚丙烯酰胺(PAM)复合处理废切削液,当pH为8.0,PFS和PAM的用量分别是1 800mg.L-1和8mg.L-1时混凝效果较好.混凝上清液用UV/H2O2/Fe2+系统氧化,当pH=3,分4次加入H2O2,紫外照射6.5h,结果令人满意.采用该工艺处理废切削液,其COD去除率为99.5%,脱色率100%,出水达到了国家《污水综合排放标准》(GB-8987-1996)一级标准. 展开更多
关键词 破乳 混凝 光催化化学氧化 切削液 UV/HO2/Fe^2+
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空调压缩机公司废切削液处理工艺研究 被引量:1
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作者 路小彬 程刚 陈敏 《科技经济市场》 2006年第1期16-18,共3页
采取先硝酸破乳,然后用聚硫酸铁(PFS)和阳离子聚丙烯酰胺(PAM)复合混凝废切削液,在pH为7.5时,PFS 和PAM的用量分别是1500mg·L^(-1)和8mg·L^(-1)时混凝效果较好。混凝后的废水再用UV/H_2O_2/Fe^(2+)系统氧化。当pH=3时, 分... 采取先硝酸破乳,然后用聚硫酸铁(PFS)和阳离子聚丙烯酰胺(PAM)复合混凝废切削液,在pH为7.5时,PFS 和PAM的用量分别是1500mg·L^(-1)和8mg·L^(-1)时混凝效果较好。混凝后的废水再用UV/H_2O_2/Fe^(2+)系统氧化。当pH=3时, 分四次加入H_2O_2,紫外照射6.5h,结果令人满意,经该方法处理的废切削液,其COD去除率为99.5%,脱色率100%,达到了国家《污水综合排放标准》(GB-8987-1996)二级标准。 展开更多
关键词 破乳 混凝 光催化化学氧化 切削液 UV/H2O2/Fe2+
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Catalytic effects of [Ag(H_2O)(H_3PW_(11)O_(39))]^(3-)on a TiO_2 anode for water oxidation 被引量:1
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作者 Jiansheng Li Lei Wang +3 位作者 Wansheng You Meiying Liu Lancui Zhang Xiaojing Sang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第3期534-541,共8页
A[H3AgI(H2O)PW11O39]3?‐TiO2/ITO electrode was fabricated by immobilizing a molecular polyoxometalate‐based water oxidation catalyst,[H3AgI(H2O)PW11O39]3?(AgPW11),on a TiO2electrode.The resulting electrode was charac... A[H3AgI(H2O)PW11O39]3?‐TiO2/ITO electrode was fabricated by immobilizing a molecular polyoxometalate‐based water oxidation catalyst,[H3AgI(H2O)PW11O39]3?(AgPW11),on a TiO2electrode.The resulting electrode was characterized by X‐ray powder diffraction,scanning electron microscopy,and energy dispersive X‐ray spectroscopy.Linear sweep voltammetry,chronoamperometry,and electrochemical impedance measurements were performed in aqueous Na2SO4solution(0.1molL?1).We found that a higher applied voltage led to better catalytic performance by AgPW11.The AgPW11‐TiO2/ITO electrode gave currents respectively10and2.5times as high as those of the TiO2/ITO and AgNO3‐TiO2/ITO electrodes at an applied voltage of1.5V vs Ag/AgCl.This result was attributed to the lower charge transfer resistance at the electrode‐electrolyte interface for the AgPW11‐TiO2/ITO electrode.Under illumination,the photocurrent was not obviously enhanced although the total anode current increased.The AgPW11‐TiO2/ITO electrode was relatively stable.Cyclic voltammetry of AgPW11was performed in phosphate buffer solution(0.1mol L?1).We found that oxidation of AgPW11was a quasi‐reversible process related to one‐electron and one‐proton transfer.We deduced that disproportionation of the oxidized[H2AgII(H2O)PW11O39]3?might have occurred and the resulting[H3AgIIIOPW11O39]3?oxidized water to O2. 展开更多
关键词 Water oxidation ELECTROCATALYSIS PHOTOELECTROCHEMISTRY TIO2 POLYOXOMETALATE Ag+ complex
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Efficient development of Type-Ⅱ TiO_2 heterojunction using electrochemical approach for an enhanced photoelectrochemical water splitting performance
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作者 Yuanxing Fang Yiwen Ma Xinchen Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第3期438-445,共8页
Type‐II‐heterojunction TiO2nanorod arrays(NAs)are achieved by a combination of reduced and pristine TiO2NAs through a simple electrochemical reduction.The heterojunction‐structured TiO2NAs exhibit an enhanced photo... Type‐II‐heterojunction TiO2nanorod arrays(NAs)are achieved by a combination of reduced and pristine TiO2NAs through a simple electrochemical reduction.The heterojunction‐structured TiO2NAs exhibit an enhanced photo‐efficiency,with respect to those of pristine TiO2NAs and completely reduced black TiO2.The improved efficiency can be attributed to a synergistic effect of two contributions of the partially reduced TiO2NAs.The light absorption is significantly increased,from theUV to the visible spectrum.Moreover,the type II structure leads to enhanced separation and transport of the electrons and charges.The proposed electrochemical approach could be applied to various semiconductors for a control of the band structure and improved photoelectrochemical performance. 展开更多
关键词 Type II heterojunction structure Photoelectrochemical water splitting TIO2 Electrochemical reduction MODIFICATION
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Decomposition of Benzo (a) Pyrene on Artificial Sea Water Using UV/Photocatalytic Oxidation Process
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作者 Masahiro Asano Shinya Sumino Fumihiko Jiku 《Journal of Environmental Science and Engineering(A)》 2012年第2期195-201,共7页
In recent years, serious heavy oil pollution has frequently occurred in the ocean. Heavy oil has escaped from grounded oil carrier and drifted ashore. Drifted heavy oil contains hazardous chemical such as benzo (a) ... In recent years, serious heavy oil pollution has frequently occurred in the ocean. Heavy oil has escaped from grounded oil carrier and drifted ashore. Drifted heavy oil contains hazardous chemical such as benzo (a) pyrene and other poly aromatic hydrocarbons (PAHs). These hazardous chemicals have worse affected on sea plants and animals. Thus, it is important to develop effective elimination of hazardous chemicals or drifted petroleum from sea shore. In this study, we have investigated the decomposition of benzo (a) pyrene on artificial sea water using UV/photocatalytic oxidation process. From this study, it was found that about 90% of benzo (a) pyrene on artificial seawater was decomposed by UV/photocatalytic oxidation process. And there were no by-product from decomposition of benzo (a) pyrene. It was supposed that benzo (a) pyrene was completely decomposed using UV/photocatalytic oxidation process. 展开更多
关键词 Benzo (a) pyrene sea water UV/photocatalytic oxidation process.
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