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Synthesis and characterization of cassava starch graft poly(acrylic acid) and poly[acrylic acid)-co-acrylamide] and polymer flocculants for wastewater treatment

机译:木薯淀粉接枝聚丙烯酸和聚丙烯酸-共丙烯酰胺及高分子絮凝剂的合成及表征

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Starch-g-poly(acrylic acid) and poly[(acrylic acid)-co-acrylamide] synthesized via chemically crosslinking polymerization were then each mixed with inorganic coagulants of aluminum sulfate hydrate [Al-2(SO4)(3)-18H(2)O], calcium hydroxide [Ca(OH)(2)], and ferric sulfate [Fe-2(SO4)(3)] in a proper ratio to form complex polymeric flocculants (CPFs). All CPFs exhibited low water absorbency than those of the uncomplexed superabsorbent copolymers. The color reduction by the CPFs was tested with both synthetic wastewater and selected wastewater samples from textile industries. The synthetic wastewater was prepared from a direct dye in a concentration of 50 mg dm(-3) at pH 7. The CPFs of poly[(acrylic acid)-co-acrylamide] with calcium hydroxide at a ratio of 1:2 is the most effective CPF for the wastewater color reduction. The CPF concentration of 500 mg dm(-3) could reduce the color of the synthetic wastewater containing the direct dye solution by 95.4% and that of the industrial wastewater by 76%. Starch-g-poly(acrylic acid)/Ca(OH)(2) CPF can reduce the synthetic direct dye and the industrial wastewater by 74% and 18%, respectively. Chemical oxygen demand, residual metal ion concentrations, pHs, turbidity of the wastewater were also investigated and the potential use of the complex polymer flocculants for textile wastewater treatment was indicated. (c) 2006 Wiley Periodicals, Inc.
机译:然后将通过化学交联聚合合成的淀粉-g-聚(丙烯酸)和聚[(丙烯酸)-共-丙烯酰胺]分别与硫酸铝水合物[Al-2(SO4)(3)-18H( 2)O],氢氧化钙[Ca(OH)(2)]和硫酸铁[Fe-2(SO4)(3)]以适当的比例形成复杂的聚合物絮凝剂(CPF)。与未络合的超吸收性共聚物相比,所有CPF均显示出低吸水率。使用合成废水和纺织行业的精选废水样品测试了CPF导致的颜色降低。合成废水是由直接染料在pH值为7的浓度为50 mg dm(-3)制备的。聚[(丙烯酸)-共丙烯酰胺]与氢氧化钙的CPF的比例为1:2。最有效的CPF,用于减少废水的颜色。 CPF浓度为500 mg dm(-3)可使含直接染料溶液的合成废水的颜色降低95.4%,使工业废水的颜色降低76%。淀粉-g-聚(丙烯酸)/ Ca(OH)(2)CPF可使合成直接染料和工业废水分别减少74%和18%。还研究了化学需氧量,残留金属离子浓度,pH,废水的浊度,并指出了复合高分子絮凝剂在纺织废水处理中的潜在用途。 (c)2006年Wiley Periodicals,Inc.

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