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首页> 外文期刊>Polymer Engineering and Science >Synthesis of Acrylamide/Acrylic Acid-Based Aluminum Flocculant for Dye Reduction and Textile Wastewater Treatment
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Synthesis of Acrylamide/Acrylic Acid-Based Aluminum Flocculant for Dye Reduction and Textile Wastewater Treatment

机译:丙烯酰胺/丙烯酸基铝絮凝剂的合成及染料还原及纺织品废水处理

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摘要

Aluminum hydroxide-poly[acrylamide-co-(acrylic acid)], AHAMAA, was synthesized with a redox initiator by solution polymerization in which the effects of reactant contents were optimized. The effects of pH, temperature, and initial dye concentration on Congo red reduction were investigated. A mixture of Congo red and direct blue 71, and the composite textile dye wastewater were investigated. Adsorptions of both dyes were more effective in the nonbuffered solution than those in the buffered solution, and Congo red adsorbed more than direct blue 71 at all pHs. The adsorption of Congo red increased with increasing temperature and its initial concentration. Both dyes obeyed the Freundlich adsorption isotherm. The maximum adsorptions in 100 mg dm^sup -3^ solution were 109 ± 0.5 mg g^sup -1^ and 62 ± 6.6 mg g^sup -1^ for Congo red and direct blue 71, respectively. At 150 mg dm^sup -3^ of the mixed Congo red and direct blue 71, the adsorption was 142 ± 2 mg g^sup -1^ by 643 ± 3 mg dm^sup -3^ AHAMAA. The 40 mg g^sup -1^ dyes of the textile effluent wastewater were adsorbed by 500 mg dm^sup -3^ AHAMAA. AHAMAA could decrease turbidity of the composite wastewater containing a mixture of reactive and direct dyes from 405 to 23 NTU. [PUBLICATION ABSTRACT]
机译:通过溶液聚合反应,利用氧化还原引发剂合成了氢氧化铝-聚[丙烯酰胺-共-(丙烯酸)] AHAMAA,其中反应物含量的影响得以优化。研究了pH,温度和初始染料浓度对刚果红还原的影响。研究了刚果红和直接蓝71的混合物,以及复合染料废水。在非缓冲溶液中,两种染料的吸附均比在缓冲溶液中的吸附更有效,并且在所有pH值下,刚果红的吸附能力都比直接蓝71高。刚果红的吸附量随温度及其初始浓度的升高而增加。两种染料均符合Freundlich吸附等温线。刚果红和直接蓝71在100 mg dm ^ sup -3 ^溶液中的最大吸附分别为109±0.5 mg g ^ sup -1 ^和62±6.6 mg g ^ sup -1 ^。在150mg dm ^ sup -3的混合刚果红和直接蓝71下,吸附量为142±2 mg g ^ sup -1 ^乘以643±3 mg dm ^ sup -3 ^ AHAMAA。纺织废水中的40 mg g ^ sup -1 ^染料被500 mg dm ^ sup -3 ^ AHAMAA吸附。 AHAMAA可以将含有活性染料和直接染料混合物的复合废水的浊度从405降低到23 NTU。 [出版物摘要]

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    《Polymer Engineering and Science》 |2010年第8期|p.1535-1546|共12页
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    Supaporn Noppakundilograt,1 Praon Nanakorn,2 Wanida Jinsart,3 Suda Kiatkamjornwong11 Department of Imaging and Printing Technology, Faculty of Science, Chulalongkorn University,Bangkok 10330, Thailand2 Program of Petrochemistry and Polymer Science, Faculty of Science, Chulalongkorn University,Bangkok 10330, Thailand3 Department of General Science, Faculty of Science, Chulalongkorn University, Bangkok 10330, ThailandCorrespondence to: Suda Kiatkamjornwong, e-mail: ksuda@chula.ac.thContract grant sponsor: Senior Scholar Research Team Consolidation Grants (Thailand Research Fund), contract grant numbers: RTA4780004, RTA5080004.DOI 10.1002/pen.21694Published online in Wiley InterScience (www.interscience.wiley.com).© 2010 Society of Plastics Engineers,;

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