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Efficiency of chitosans for the treatment of papermaking process water by dissolved air flotation

机译:壳聚糖通过溶解气浮法处理造纸用水的效率

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Interest has grown in bio-polymers as being environmental friendly alternatives to synthetic additives. In this work, two native chitosans with different molecular weights have been evaluated on a laboratory scale for their effectiveness for the removal of contaminants from papermaking process waters by dissolved air flotation (DAF). The use of chitosan quaternary derivatives and the use of the native chitosans in combination with anionic bentonite microparticles have also been tested. Results demonstrate a high efficiency of the native chitosan products at intermediate dosages and furthermore, their efficiency is enhanced by the combined addition of bentonite. For an equivalent removal of contaminants, the required dosage of chitosan is about half that the dosage required in absence of bentonite. Quaternary derivatives have not improved the efficiency of the native chitosan in this case. The optimum treatment would be 50 mg/L of nativechitosan and 100 mg/L of bentonite where this treatment is capable of the removal of 83-89% turbidity (residual turbidity 210-320 NTU), 68-71% dissolved turbidity (residual dissolved turbidity of 22-24 NTU), 18-22% total solids (residual total solids of 2750-2900 mg/L) and 19-23% COD (1440-1525 mg/L). The low molecular weight native chitosan is more efficient than the medium molecular weight chitosan in all cases. The Focused Beam Reflectance Measurement (FBRM) is used to assess the aggregation process and to predict the separation efficiency of DAF units either with single or dual systems. The efficiency predicted through the FBRM technique is very similar to that obtained later in the DAF tests.
机译:作为合成添加剂的环保替代品,人们对生物聚合物的兴趣日益浓厚。在这项工作中,已在实验室规模上评估了两种分子量不同的天然壳聚糖通过溶解气浮法(DAF)去除造纸工艺用水中污染物的有效性。还测试了壳聚糖季衍生物的使用以及天然壳聚糖与阴离子膨润土微粒的组合使用。结果表明,中等剂量的天然壳聚糖产品具有很高的效率,此外,结合使用膨润土可提高其效率。为了等效地去除污染物,壳聚糖的所需剂量约为不存在膨润土时所需剂量的一半。在这种情况下,四元衍生物没有提高天然壳聚糖的效率。最佳处理方法是50 mg / L的壳聚糖和100 mg / L的膨润土,其中该处理能够去除83-89%的浊度(残留浊度210-320 NTU),68-71%的溶解浊度(残余溶解度)。浊度为22-24 NTU),总固体含量为18-22%(残留总固体含量为2750-2900 mg / L)和19-23%的COD(1440-1525 mg / L)。在所有情况下,低分子量天然壳聚糖均比中分子量壳聚糖更有效。聚焦光束反射率测量(FBRM)用于评估聚集过程并预测具有单系统或双系统的DAF单元的分离效率。通过FBRM技术预测的效率与稍后在DAF测试中获得的效率非常相似。

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