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低温等离子体处理印染废水
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  • 英文篇名:Low Temperature Plasma Treatment of Printing and Dyeing Wastewater
  • 作者:宋世炜 ; 陈浩卓 ; 巩向杰 ; 杜长明
  • 英文作者:Song Shiwei;Chen Haozhuo;Gong Xiangjie;Du Changming;Guangzhou Shangjie Environmental Protection Technology Co., Ltd.;School of Environmental Science and Engineering, Sun Yat-sen University;
  • 关键词:低温等离子体 ; 印染废水 ; 催化剂 ; 处理
  • 英文关键词:low temperature plasma;;printing and dyeing wastewater;;catalyst;;treatment
  • 中文刊名:GDHG
  • 英文刊名:Guangdong Chemical Industry
  • 机构:广州尚洁环保科技有限公司;中山大学环境科学与工程学院;
  • 出版日期:2019-04-15
  • 出版单位:广东化工
  • 年:2019
  • 期:v.46;No.393
  • 基金:国家自然科学基金(61871409)
  • 语种:中文;
  • 页:GDHG201907077
  • 页数:6
  • CN:07
  • ISSN:44-1238/TQ
  • 分类号:173-178
摘要
介绍了印染废水的特征与危害、低温等离子体处理印染废水的现状。着重讨论了低温等离子体处理印染废水的不同放电方式。通过探讨各种影响参数如功率、温度、添加剂、溶液性质、催化剂等对低温等离子体处理印染废水的影响、低温等离子体处理印染废水的机理,表明低温等离子体处理印染废水具有很大的优势。
        The characteristics and hazards of printing and dyeing wastewater and the status of low temperature plasma treatment of print ing and dyeing wastewat er are introduced. The different discharge methods of low temperature plasma treatment of printing and dyeing wastewater are discussed. By investigating the effects of various parameters such as power, temperature, additives, solution properties, catalysts on low temperature pl asma treatment of printing and dyeing wastewat er, and the mechanism of low temperature plasma treatment of printing and dyeing wastewat er, it shows that low temperature plasma treatment of printing and dyeing wastewater has great advantages.
引文
[1]丁一,梁恒国.超高浓度有机废水处理技术[J].北方环境,2004,29(4):59-66.
    [2]孙基惠,孙玉,程茜,等.介质阻挡放电联合生物法处理染料废水的研究[J].水处理技术,2017(5):38-42.
    [3]Crini G.Non-conventional low-cost adsorbents for dye removal:a review[J].Bioresource technology:2006,97(9):1061-1085.
    [4]刘梅红,姜坪.膜法染料废水处理工艺研究[J].膜科学与技术,21(4):43-45.
    [5]余健,侯文俊.印染废水处理技术的研究新进展[J].化工环保,2004,24(增刊):105-107
    [6]张旋,王启山.高级氧化技术在废水处理中的应用[J].水处理技术,2009,35(3):24-28.
    [7]Njatawidjaja E,Sugiarto AT,Ohshima T,et al.Decoloration of electrostatically atomized organic dye by the pulsed streamer corona discharge[J].Journal of Electrostatics,2005,63(5):353-359.
    [8]Wang H,Li J,Quan X.Decoloration of azo dye by a multi-needle-to-plat e high-voltage pulsed corona discharge system in water[J].Journal of Electrostatics,2006,64(6):416-421.
    [9]Sugiarto AT,Ohshima T,Sato M.Advanced oxidation processes using pulsed streamer corona discharge in water[J].Thin Solid Films,2002,407(1-2):174-178.
    [10]Magureanu M,Piroi D,Mandache NB,et al.Decomposition of methylene blue in water using a dielectric barrier discharge:Optimization of the operating parameters[J].Journal of Applied Physics,2008,104(10):1-7.
    [11]Mok YS,Jo JO,Whitehead JC.Degradation of an azo dye Orange II using a gas phase dielectric barrier discharge reactor submerged in water[J].Chemical Engineering Journal,2008,142(1):56-64.
    [12]Lin QF,Ni GH,Jiang YM,et al.Degradation of Alizarin Red by Hybrid Gas-Liquid Dielectri c Barrier Discharge[J].Plasma Science and Technology,2014,16(11):1036-1041.
    [13]Dojcnovic BP,Roglic GM,Obradovic BM,et al.Decolorization of reactive textile dyes using water falling film dielectric barrier discharge[J].Journal of Hazardous Materials,2011,192(2):763-771.
    [14]Du C M,Zhang LL,Wang J,et al.Degradation of Acid Orange 7 by Gliding Arc Discharge Plasma in Combination with Advanced Fenton Catalysis[J].Plasma Chemistry&Plasma Processing,2010,30(6):855-871.
    [15]Zherlitsyn AG,Shiyan VP,Shiyan LN.Destruction of molecular compounds in gaseous and liquid medium in microwave discharge plasma[J].Journal of Physics:Conference Series,2015,652(1):012023.
    [16]Shi JW,Bian WJ,Yin XL.Organic contaminants removal by the technique of pulsed high-voltage discharge in water[J].Journal of Hazardous Materi als,2009,171(1-3):924-931.
    [17]StaráZ,Krca F,Nejezchleb M,et al.Organic dye decomposition by DCdiaphragm discharge in water:Effect of solution properties on dye removal[J].Desalination,2009,239(1):283-294.
    [18]Sugiarto AT,Ito S,Ohshima T,et al.Oxidative decoloration of dyes by pulsed discharge plasma in water[J].Journal of Electrostatics,2003,58(1):135-145.
    [19]Zhang RB,W Y,L GF.Enhancement of the plasma chemistry process in a three-phase discharge reactor[J].Plasma Sources Science&Technology,2005,14(2):308-313.
    [20]Zhang RB,Zhang C,Cheng XX,et al.Kinetics of decolorization of azo dye by bipolar pulsed barrier discharge in a three-phase discharge plasma reactor[J].Journal of Hazardous Materials,2007,142(1-2):105-110.
    [21]Kobya M,Can OT,Bayramoglu M.Treatment of textile wastewaters by electrocoagulation using iron and aluminum electrodes[J].Journal of Hazardous Materials,2003,100(1-3):163-178.
    [22]Yan Z,Liu Y,Ren W.Investigation of liquid plasma catalysis on Ti electrodes for the decolorization of a brilliant red B solution[J].Journal of Electrostatics,2012,70(1):48-53.
    [23]Chen GL,Zhou MY,Chen SH,et al.The different effects of oxygen and air DBD plasma byproducts on the degradation of methyl violet5BN[J].Journal of Hazardous Materials,2009,172(2-3):786-791.
    [24]Chandana L,Reddy PMK,Subrahmanyam C.Atmospheric pressure non-thermal plasma jet for the degradation of methylene blue in aqueous medium[J].Chemical Engineering Journal,2015,282:116-122.
    [25]Du CM,Shi TH,Sun YW,et al.Decolorization of Acid Orange 7 solution by gas-liquid gliding arc discharge plasma[J].Journal of Hazardous Materials,2008,154(1-3):1192-1197.
    [26]Du CM,Huang DW,Li HX,et al.Adsorption of Acid Orange II from Aqueous Solution by Plasma Modified Activated Carbon Fibers[J].Plasma Chemistry&Plasma Processing,2013,33(1):65-82.
    [27]Zhang RB,Li GF,Wu V.Degradation of indigo carmine using bipolar pulsed dielectric barrier discharge(DBD)in the water-air mixture[J].Industry Applications Conference,2004:238-243.
    [28]Baroch P,Anita V,Saito N,et al.Bipolar pulsed electrical discharge for decomposition of organic compounds in water[J].Journal of Elect rostatics,2008,66(5-6):294-299.
    [29]Zhang L,Sun B,Zhu X.Organic dye removal from aqueous solution by pulsed discharge on the pinhole[J].Journal of Electrostatics,2009,67(1):62-66.
    [30]Benetoli LO,Cadorin BM,BaldissarelliVZ,et al.Pyrite-enhanced methylene blue degradation in non-thermal plasma water treatment reactor[J].Journal of Hazardous Materials,2012,237-238(6):55-62.
    [31]Liu H,Du CM,Wang J,et al.Comparison of Acid Orange 7 Degradation in Solution by Gliding Arc Discharge with Different Forms of TiO2[J].Plasma Processes&Polymers,2012,9(3):285-297.
    [32]Trifi B,Cavadias S,Bellakhal N.Decoloration of Methyl Red by gliding arc discharge[J].Desalination&Water Treatment,2011,25(1-3):65-70.
    [33]Jiang B,Zheng J,Lu X,et al.Degradation of organic dye by pulsed discharge non-thermal plasma technology assisted with modified activated carbon fibers[J].Chemical Engineering Journal,2013,215-216(3):969-978.
    [34]Wang TC,Qu GZ,Ren JY,et al.Organic acids enhanced decoloration of azo dye in gas phase surface discharge plasma system[J].Journal of Hazardous Materials,2016,302:65-71.
    [35]Merouani DR,Abdelmalek F,TalebF,et al.Plasma treatment by gliding arc discharge of dyes/dye mixtures in the presence of inorgani c salts[J].Arabian Journal of Chemistry,2011,8(2):155-163.
    [36]Parkansky N,Vegerhof A,AlterkopBA,et al.Submerged Arc Breakdown of Methylene Blue in Aqueous Solutions[J].Plasma Chemistry&Plasma Processing,2012,32(5):933-947.
    [37]Ni MJ,Yang H,Chen T,et al.Degradation of Acid Orange 7 in an Atmospheric-Pressure Plasma-Solution System(Gliding Discharge)[J].Plasma Science and Technology,2015,17(3):209-215.

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