Department of Process Engineering and Technology of Polymers and Carbon Materials, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego Street 27, Wrocław, Lower Silesia 50-370, Poland.
Department of Process Engineering and Technology of Polymers and Carbon Materials, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego Street 27, Wrocław, Lower Silesia 50-370, Poland.
J Hazard Mater. 2022 Aug 15;436:129047. doi: 10.1016/j.jhazmat.2022.129047. Epub 2022 May 4.
The amino-hypophosphite polyampholyte (AHP) obtained from cheap and safe building blocks lacks a typical ion-scavenger matrix derived from crude-oil intermediates like poly(divinylbenzene), which is an advantage to commercial solutions. AHP is characterised by sorption capacity comparable to some ion scavengers available on the market, as it was found that its maximum capacity in the temperature range from 298 K to 328 K varies between 114 and 146 mg Cu(II) g of dry AHP. The possible application of the AHP in the Cu(II) removal process from galvanic effluent was investigated. The results show that it is possible to achieve a good removal rate for model wastewater. The inlet Cu concentrations of model wastewater were 6.4 mg Cu(II) dm and 36,2 mg Cu(II) dm, acidic and basic galvanic wastewater respectively. After the removal process concentrations were lowered to 1.3 mg Cu(II) dm and 5.1 mg Cu(II) dm, for acidic and basic galvanic wastewater respectively. It was found that the presence of Ca(II) and Na(I) did not significantly influence the Cu(II) removal process. The obtained results indicate that the prepared more environmentally safe ion scavenger can be applicable in a wide range of metal ion removal processes.
由廉价且安全的建筑模块制成的氨基酸次膦酸盐聚两性电解质(AHP)缺乏典型的离子清除剂基质,这种基质源自原油中间体,如多(二乙烯基苯),这对于商业解决方案来说是一个优势。AHP 的特点是其吸附能力与市场上某些可用的离子清除剂相当,因为发现在 298 K 至 328 K 的温度范围内,其最大容量在 114 到 146 mg Cu(II) g 干 AHP 之间变化。研究了 AHP 在从电镀废水中去除 Cu(II)过程中的可能应用。结果表明,对于模型废水,可以实现良好的去除率。模型废水中的入口 Cu 浓度分别为 6.4 mg Cu(II) dm 和 36.2 mg Cu(II) dm,分别为酸性和碱性电镀废水。去除过程后,浓度分别降低至 1.3 mg Cu(II) dm 和 5.1 mg Cu(II) dm,分别为酸性和碱性电镀废水。发现 Ca(II)和 Na(I)的存在并没有显著影响 Cu(II)的去除过程。所得结果表明,所制备的更环保的离子清除剂可适用于广泛的金属离子去除过程。