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Preliminary feasibility study for the use of an adsorption/bio-regeneration system for molinate removal from effluents

机译:吸附/生物再生系统用于从废水中去除水lin中的初步可行性研究

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This work studies the feasibility of the use of a combined physical-biological remediation procedure for treatment of effluents contaminated with molinate, where the herbicide is removed through adsorption and biodegraded in a subsequent stage, with the regeneration of the adsorbent. In order to select the most adequate absorbent for molinate, different materials were tested, namely pine bark, activated carbon and resin Amberlite XAD-4. Activated carbon and resin Amberlite XAD-4 were the most efficient on the removal of molinate from solutions, although the activated carbon used proved not to be bio-regenerable. It was also observed that factors such as temperature, pH, and conductivity did not affect significantly molinate adsorption onto resin Amberlite XAD-4. Resin Amberlite XAD-4 was successfully bio-regenerated, being observed that biodegradation was mainly dependent on spontaneous desorption of the molinate. After bio-regeneration, the resin could be re-utilised as adsorbent.
机译:这项工作研究了使用联合的物理-生物修复程序来处理被甲酸盐污染的废水的可行性,其中除草剂通过吸附作用去除,并在随后的阶段进行生物降解,并吸收吸附剂。为了选择最合适的水合物吸收剂,测试了不同的材料,即松树皮,活性炭和树脂Amberlite XAD-4。活性炭和树脂Amberlite XAD-4在从溶液中去除残留的草酸盐方面最有效,尽管事实证明所用的活性炭不是生物可再生的。还观察到诸如温度,pH和电导率之类的因素并没有显着影响苹果酸酯对树脂Amberlite XAD-4的吸附。树脂Amberlite XAD-4已成功地生物再生,据观察,生物降解主要取决于丝氨酸盐的自发解吸。生物再生后,该树脂可以重新用作吸附剂。

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