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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Preparation and application of multisensitive poly(NIPAM-co-AAc-co-CoMPc)/TiO_2 composites for dinitro butyl phenolwastewater treatment under visible light irradiation
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Preparation and application of multisensitive poly(NIPAM-co-AAc-co-CoMPc)/TiO_2 composites for dinitro butyl phenolwastewater treatment under visible light irradiation

机译:可见光照射下二硝基丁基苯酚废水多敏聚(NIPAM-co-AAc-co-CoMPc)/ TiO_2复合材料的制备及应用

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摘要

BACKGROUND:In this work, novel multisensitive composites of poly(N-isopropylacrylamide-co-acrylic acid-co-cobalt tetra (N-carbonylacrylic) aminophthalocyanine))/TiO_2 (poly(NIPAM-co-AAc-co-CoMPc)/TiO_2) were prepared to address the problems of low efficiency for utilizing solar light and difficult separation and recovery of nanometer sized TiO_2 particles in the photocatalytic degradation of dinitro butyl phenol (DNBP) in wastewater. RESULTS:The results showed that nanometer sized TiO_2 particles were successfully encapsulated in multisensitive polymer carriers of spherical shape and that the composite photocatalyst can be activated by both ultraviolet and visible light. The synthesized composites exhibited high sensitivity to external temperature and pH stimuli. The satisfactory removal of DNBP from aqueous solution can be achieved at pH 5.62 with catalyst concentration of 6 g L~(-1) under visible light irradiation for 5 h. The multisensitive composites prepared in this study have repeatability. CONCLUSION:The synthesized multisensitive composites can be used to perform 'on-off' photocatalytic degradation of organic contaminants in water under visible light irradiation by controlling temperature or pH.
机译:背景:在这项工作中,新型的聚(N-异丙基丙烯酰胺-丙烯酸-钴-钴四(N-羰基丙烯酸)氨基酞菁)/ TiO_2(聚(NIPAM-co-AAc-co-CoMPc)/ TiO_2 )的制备解决了利用太阳光效率低以及在废水中二硝基丁基苯酚(DNBP)的光催化降解中纳米尺寸TiO_2颗粒难以分离和回收的问题。结果:结果表明,纳米尺寸的TiO_2颗粒被成功地封装在球形的多敏聚合物载体中,并且该复合光催化剂可以被紫外光和可见光激活。合成的复合材料对外部温度和pH刺激表现出高度的敏感性。在可见光照射5 h的条件下,以6 g L〜(-1)的催化剂浓度在pH 5.62下,可以从水溶液中去除满意的DNBP。本研究中制备的多敏复合材料具有可重复性。结论:合成的多敏复合材料可用于通过控制温度或pH值在可见光照射下对水中的有机污染物进行“开关”光催化降解。

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