Dissertation > Excellent graduate degree dissertation topics show
Fe3+-Ca2+-Tea Binuclear Complex as Mediattor for Indirect Electrochemical Reduction of Mechanism and Its Application on Vat Dyes
Author: LaiYuKun
Tutor: WangZuo
School: Donghua University
Course: Textile Chemistry and Dyeing and Finishing Engineering
Keywords: electrochemical binuclear complex vat dyes dyeing
CLC: TS193
Type: Master's thesis
Year: 2011
Downloads: 65
Quote: 0
Read: Download Dissertation
Abstract
|
Vat dyes is most popular among dye classes used for coloration of cotton,particular, when high fastness standards are required to light, washing and chlorine bleaching, especially for indigo, are demanded in large.Because a number of jeans are dyed in indigo. But these dyes are indiscerptible in water. Until now, in most industrial vat dyeing process, vat dyes are reduced mainly use sodium dithionite. This process produces large amounts of sodium sulphate and sulphite as by-products which increase the costs for waste water treatment. Hence, many attempts are being made to replace the enviromentally unfavourable sodium dithionte by ecologically. Such as indirect electrochemical, it offered tremendous environmental benefits.In the former research, most people use Fe3+-triethanolamine mononuclear complex as mediators for indirect electrochemical reduction. This paper taking binuclear Fe3+-Ca2+-TEA complex as redox mediator, the introduction of Ca2+-ion into Fe3+-TEA complexes lead to formation of a binuclear Fe3+-Ca2+-TEA and the formal redox potential shifts approximately-0.100V more negatively values,it improved electrochemical reduction efficiency and speed.The electronchemical bechavior of Fe3+-Ca2+-TEA was studied by the cylic voltammetry on glassy carbon electrode. Through fitting the relationship between oxidation, reduction peak current as the square root of scan rate, it presented linear relationship, and showed that Fe3t-Ca2+-TEA complex get electron on the electrod, it was a quasi-reversible diffusion controlled process. After added the indigo, the electrochemical reduction of the complex was a diffusion controlled process. And it was also a quasi-reversible process which believed to followed chemical catalysis mechanism(EC). The mediator got electron from cathode, and then transferred to dye. The copper electrode after the electrochemical processing was characterized by SEM, EDS. The results also supported this process. The Fe(OH)3 precipitation and-OH groups of triethanolamie undergo a coordination reaction according to the analysis of infrared spectroscopy.The Fe3+-Ca2+-TEA complex has been used as redox mediator to discuss the electrochemical reduction of dyeing process by orthogonal and single-elemental experiments. Sodium dithionite has been used as reducing agent to discuss the conventional dyeing method by orthogonal and single-elemetal experiments. The optimum conditions came out in terms of oxidation peak,K/S value, and Current efficiency.Electrochemical reduction:ferric nitiate lOg/L,calcium nitrate 7g/L, triethanolamine 35g/L, sodium hydroxide 9g/L,applied voltage 5V, cathode area of 30cm2, reducing time 50 min.Conventional dyeing:indigo 2g/L, sodium hydroxide 2g/L, Sodium dithionite 4g/L, dyeing time 50s. Oxidation time 3min. The different kinds of vat dyes were used in electrochemical reduction and conventional dyeing process. The same K/S value, washing fastness, rubbing fastness can be obtained by the two dyeing methods. Then, it can be concluded the dyeing effects of the electrochemical reducing and dyeing is the same as the conventional one.Electrochemical reduction use electric energy to reduction vat dyes, it not only reduced the COD value of dyeing waste water, but also lower energy consumption. Therefore, it had obvious environmental protection and energy efficiency.When the operation of electrochemical reduction dyeing has finished,a certain amount of air was blown into the liquorof dye to oxidation leuco. Finally, applying with a pore size of 0.4μm hollow fiber membrane filtration to remove the dye, it can reuse the mediator to the next dyeing, and reduce the consumption of water and chemicals. Compared to conventional dyeing, its economic cost savings of 31%, had obvious economic benefits. At last, it can be concluded the electrochemical reduction is better then the conventional one.
|
Related Dissertations
- Traditionalcraft Dyeing’s Research and Application Design,TS193
- The Preparation and Electrochemical Tests of Carbon Foam,O613.71
- Study of the Treatment of Printing and Dyeing Wastewater Using a Pilot-scale Combined Process of Multi-stage Anaerobic Phases and Cross Flow Aerobic Sludge Reactor,X791
- Study on Mechanism of Seawater Pearl Dyeing and Optimization of Dyeing Technology,TS933.23
- LSGM electrolyte thin films and electrochemical properties of,TM911.4
- Research of Electrochemical Immunosensor for Schistosomiasis Japonicum Diagnosis,R532.21
- Spectra and Electrochemical Behavior with Analytical Application of Three Herocyclic Bis-Schiff Bases,O626
- Research on Electrochemical Synthesis and Application of Conductive Polyaniline,O633.21
- PtRh / Pt 5 / C Catalyst Preparation, Characterization and Electrocatalytic Oxidation of Ethanol,TM911.4
- Study on Dyeing and Finishing Performance of Silk/Viscose Blended Fiber,TS102.52
- Geographical and cultural themes dyeing Design,J523.2
- Magnesium alloy surface MoS2 / resin hybrid layer Preparation and Properties,TG174.4
- Photocatalytic Reduction of Nitrate on Metal Modified TiO2,X703
- Heavy metal line monitor hardware design and testing laboratories,X832
- ZA35 alloy elements Zr on Microstructure and Properties,TG131
- Several Simple Methods of Research Photosynthesis Process,Q945.11
- Preparation and Application of Complex Oxide Coated Nano-electrode for the Oxidation of Pollutants,X505
- Study on Preparation of Laden TiO2 and Application of Photocatalytic Degradation to Advanced Treatment of Dyeing Waste Water,X791
- Finishing of Cotton Fabric with Vitamin E by Sol-gel Method,TS195.5
- Study on the Synthesis of Polysubstituted Pyrroles,TQ253
- Electro-generation of Furfural Alcohol and Furoic Acid in Pairs by Ni-P-mCMC/mCS Bipolar Membrane,TQ251.11
CLC: > Industrial Technology > Light industry,handicrafts > Textile industry,dyeing and finishing industry > Dyeing and finishing industry > Dyeing
© 2012 www.DissertationTopic.Net Mobile
|