Dissertation > Excellent graduate degree dissertation topics show

Experimental Study on Regeneration of Acidic Copper Chloride Etching Waste Liquor

Author: MeiFang
Tutor: PanYongZuo
School: Jinan University
Course: Environmental Science
Keywords: Acidic copper chloride etching waste liquor solvent extraction TBP H2O2 HFSLM
CLC: X703
Type: Master's thesis
Year: 2013
Downloads: 94
Quote: 0
Read: Download Dissertation

Abstract


It is inevitable that large amounts of acidic copper chloride etching waste liquor with high copper contentof80-130g L-1are discharged in the PCB manufacturing process. Waste etching solution is usually recycledwith simple chemical oxidation and electrochemical methods at present. These methods can remove Cu+fromthe etching liquid waste and recover the etching performance fast and efficiently. However problems also existthat the chemical oxidation method will inlarge the volume of the etching solution, electro-chemical method isvery strict with the electrochemical reactor, and the phenomenon of anode chlorine and cathodic hydrogenevolution in the process of electrochemistry have never been able to avoid. Accordingly, how to oxidize orextract the Cu+in the etching waste liquid has important significance to renew the waste etching solution.The paper studied regeneration of acidic copper chloride etching waste liquor prepared in laboratory withsolvent extraction method and hollow fiber supported liquid membrane-stripping distributed (HFSLM)technology. And simulation etching experiments adout regenerative etching liquor were also made.In solvent extraction experiment, TBP was used as extractant, sulfonated kerosene was used as thinner,and H2O2was used as back-extractant to selectively extracted Cu+from acidic copper chloride etching wasteliquor. The effects of TBP contentration, O/A, extraction time, concentration of HCl and Cl-on extractionefficience were investigated,and so were the effects of O/A, back-extraction time, concentration of H2O2onback extraction efficience. The composition of extraction and back-extraction compound were analysed withIR, UV spectroscopy, chemical concentration analysis, the slope method, and XRD analysis. The Experimentresult indicates:Firstly, the best extraction phase composition was70%TBP+30%sulfonated kerosene, O/A is1:1, the HCl concentration was no less than2mol L-1, extraction equilibrium time needs2min and extractionefficiency had no relevant to do with concentration of Cl-in the process when TBP extract Cu+from etchingwaste liquid.Second, the best O/A was5:4, back-extraction equilibrium time needs4min and the H2O2concentration was4%.And then Cu+was extracted by TBP in the shape of HCuCl2·2TBP, and he aqueousphase obtained in the back-extraction experiments was CuCl2solution.In HFSLM system, polyethersulfone hollow fiber tube was used as support. TBP/sulfonated kerosene,adhered in shell of pipe, formed liquid film. Feed phase and stripping phase circularly flow across the tube andshell. It was investigated how concentration of the organic phase, the flow rate of aqueous phase and theconcentration of stripping agent impact on mass flux of HFSLM. Experimental results show that Mass fluxincrease as concentration of H2O2is increasing, and increase at first and then decrease as concentration of TBPand the flow rate of aqueous phase increase. And it is determined as the optimal operating conditions that TBPcontent is5%, flow rate of aqueous fluid is40.16/40.05mL min-1and concentration of H2O2is6%. Finally,mass transfer model was established as InCc/Cp=nA/Vf.Pe.t, and the total mass transfer parameters wascalculated as3.14×10-5m·s-1.In etching experiments, acidic copper chloride etching liquor compounded in the laboratory, renewableliquid obtained through solvent extraction method and HFSLM technology were used as etchants.Experimental datas show that three etching rates were extremely close. It explains that solvent extraction method and HFSLM technology can recover etching performance of acidic copper chloride etching wasteliquor efficiently.The results showed that the solvent extraction with TBP/sulfonated kerosene as extractant, Cu+could beextracted in acidic copper chloride etching waste liquor all at once.When H2O2was used as the reextractionagent, on one hand extractant can be regenerated efficiently, on the other hand the reextraction product CuCl2may be recycled to regulate the renewable liquid of etching waste liquor, and the “zero” emissions and recyclewere truly achieved. HFSLM greatly improved the stability of supported liquid membrane, extraction and backextraction process were done at the same time, the operation were simple and convenient, and it had highlyselective to extract Cu+in the acidic copper chloride etching waste liquor.

Related Dissertations

  1. Research on the Effect of Electrodes and Electrolyte on H2O2 Open Circuit Potential,TM911.4
  2. Optimization Design Andapplication of Extracting Methods of Maize (Zea Mays L.) Volatile Compounds,S513
  3. Study on the Synthesis of the Polypyrrole-Cobalt Oxides and Their Catalytic Behavior for the Electroreduction of H2O2,O643.32
  4. Expression Analysis and Localization of OsDMI3 Gene Induced by Abscisic Acid,S511
  5. The Interaction between Phosphalipase Dα1 and Ca2+ in Stomatal Closure in Arabidopsis Thaliana.,Q946
  6. Study on the Halogen Atoms Participation in Radical Reaction,O621.25
  7. Experimental Study on Treating Simulative Tannery Wastewater with Fenton-like System Constructed by Fly Ash,X794
  8. Experimental Study on Extracting Humic Acid from Huolinhe Lignite,S141
  9. Study on Removal Effect of Different Organic Fractions from Bio-treated Effluent of Dye Wastewater by Chemical Oxidation,X703
  10. The Function Analysis of Ceramidase (CER) from Arabidopsis Thaliana,Q943
  11. TS-1 Zeolites Structure and Theoretical Study of Adsorption,TQ424.25
  12. The Effect of Fenton Treatment and Coagulation on COD Removal Efficiency in the Landfill Leachate Sample,X703
  13. Development of Ru/C Catalysts for Hydrogenation of Glucose to Sorbitol,O643.36
  14. Absorption - Photo-assisted oxidation process emissions of methylene chloride,X701.7
  15. High resistance β- diketone ammonia synthesis and extraction of copper etching solution,X703
  16. Pilot Test on Advanced Treatment of Printing and Dyeing Wastewater by Ozonation,X703.1
  17. Study on the Preparation of Biodiesel from Jatropha Curcas Seeds Oil and the Extraction of Jatropha Curcas Seeds Protein,TE667
  18. Study on Analysis Methods of Poison in Blood by Microwave Extraction the GPC on Line Concentration and Gas Chromatography-Multiple Mass,D919
  19. Study on the Control of Filamentous Bulking with Weighting Agents and Oxidants,X703.1
  20. Synthesis of Glucuronic Acid and Glucurolactone from Methyl Glucoside by Catalytic Oxidation Over Mn2+/H2O2 System,TQ463
  21. Research of Catalytic Oxidation of Cyclohexane to Cyclohexanone and Cyclohexanol,TQ234.2

CLC: > Environmental science, safety science > Processing and comprehensive utilization of waste > General issues > Wastewater treatment and utilization
© 2012 www.DissertationTopic.Net  Mobile