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Cationic flocculants derived from native cellulose: Preparation, biodegradability, and removal of dyes in aqueous solution

机译:源自天然纤维素的阳离子絮凝剂:水溶液中染料的制备,生物降解性和去除

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Highlights ? Cationic celluloses were prepared by homogeneous cationization of cellulose. ? The cationic celluloses were degraded by cellulase. ? The cationic celluloses exhibit a good flocculation ability toward anionic dyes. ? The flocculation ability was stable in a wide range of pH and temperatures. ? The cationic celluloses could be reusable by an easy regeneration process. Water-soluble quaternized celluloses with various substitution degrees were prepared. The polymers showed excellent flocculation ability against anionic dyes; this ability was strongly dependent on the substituent degree and not affected by the temperature and pH of the dye solution. The flocculation ability was accurately fitted by a pseudo-second order kinetic model, which enabled reliable predictions of the flocculation behavior. In addition, the flocculation behavior of the anionic dyes followed the Langmuir adsorption isotherm model, whose analysis revealed the maximum anionic dye coagulation/flocculation capacity. The quaternized celluloses could be regenerated by washing in NaOH solution and precipitation in acetone. The quaternized celluloses exhibited good biodegradability, with a maximum degradation of 48% within 48?h using cellulase. These encouraging results indicate that the cationic celluloses could be applicable for use as reusable flocculants for wastewater treatment, leading to an environmentally friendly method to the removal of dyes from aqueous solutions. Graphical Figure options.
机译:强调 ?阳离子纤维素是通过纤维素的均匀阳离子化制备的。 ?阳离子纤维素被纤维素酶降解。 ?阳离子纤维素对阴离子染料具有良好的絮凝能力。 ?在很宽的pH和温度范围内,絮凝能力是稳定的。 ?阳离子纤维素可以通过简单的再生过程再利用。制备了具有不同取代度的水溶性季铵化纤维素。该聚合物对阴离子染料具有优异的絮凝能力。这种能力在很大程度上取决于取代基的程度,不受染料溶液的温度和pH值的影响。絮凝能力通过伪二级动力学模型精确拟合,从而能够可靠地预测絮凝行为。另外,阴离子染料的絮凝行为遵循Langmuir吸附等温线模型,其分析揭示了最大的阴离子染料凝结/絮凝能力。季铵化的纤维素可通过在NaOH溶液中洗涤并在丙酮中沉淀来再生。季铵化纤维素表现出良好的生物降解性,使用纤维素酶可在48?h内最大降解48%。这些令人鼓舞的结果表明,阳离子纤维素可以用作废水处理的可重复使用的絮凝剂,从而导致了一种从水溶液中去除染料的环保方法。图形选项。

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