Starch as novel water soluble biopolymer in removal mixtures heavy metal ions via polymer enhanced ultrafiltration

Nurul Huda Baharuddin, N. M. Sulaiman, M. Aroua, M. Nawawi, M. Kassim, M. Othman, I. Dahlan
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引用次数: 6

Abstract

Four heavy metals Zn (II), Pb (II), Cr (III) and Cr (VI) were selected in this work was tested through a Polymer Enhanced Ultrafiltration (PEUF) system. The effects of pH, polymer concentration and metal ions feed concentration were the main focus and influenced the performance of PEUF system. A conventional water-soluble polymers was selected, namely polyethylene glycol (PEG), and an unmodified starch as biopolymer is proposed as an alternative binding reagent for four selected metal ions used for heavy metals removal from wastewater. Speciation profiles of Zn (II), Pb (II), Cr (III) and Cr (VI) species were obtained using available software to identify the soluble complexes of Zn (II), Pb (II),Cr (III) and Cr (VI) ions and hydroxides ions (OH−) present in various charged ions, either as anions or cations, at certain pH range. Investigation through experimental works was done using ultrafiltration systems obtained by laboratory ultrafiltration bench scale equipped with 10 kDa polysulfone hollow fiber membrane. The main operating parameter, namely the effects of pH, polymer composition and metal ions concentrations, were significantly affected by the rejection coefficient conducted at constant pressure and flowrate. Unmodified starch and PEG as binding polymers performed complexation interactions due to physical attraction of metal ions to the polymer on the molecular surface with high possibility of chemical occurrence. Rejection values were high at pH 7 for Zn (II) and Cr (III) ions corresponding to higher rejections with unmodified starch. Pb (II) ions obtained high rejections when tested with PEG whenever carried out in mixed metal ions solutions. The rejection of these metal ions by starch in this study is found to be influenced by granule structure that generally behaved in a non-ionic manner.Four heavy metals Zn (II), Pb (II), Cr (III) and Cr (VI) were selected in this work was tested through a Polymer Enhanced Ultrafiltration (PEUF) system. The effects of pH, polymer concentration and metal ions feed concentration were the main focus and influenced the performance of PEUF system. A conventional water-soluble polymers was selected, namely polyethylene glycol (PEG), and an unmodified starch as biopolymer is proposed as an alternative binding reagent for four selected metal ions used for heavy metals removal from wastewater. Speciation profiles of Zn (II), Pb (II), Cr (III) and Cr (VI) species were obtained using available software to identify the soluble complexes of Zn (II), Pb (II),Cr (III) and Cr (VI) ions and hydroxides ions (OH−) present in various charged ions, either as anions or cations, at certain pH range. Investigation through experimental works was done using ultrafiltration systems obtained by laboratory ultrafiltration bench scale equipped with 10 kDa polysulfone hollow fiber mem...
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淀粉作为新型水溶性生物聚合物在聚合物强化超滤去除混合物重金属离子中的应用
本文选取了Zn (II)、Pb (II)、Cr (III)和Cr (VI)四种重金属,通过聚合物增强超滤(PEUF)系统进行了检测。pH、聚合物浓度和金属离子进料浓度是影响PEUF体系性能的主要因素。选择了一种传统的水溶性聚合物聚乙二醇(PEG),并提出了一种未经改性的淀粉作为生物聚合物作为四种选定的金属离子的替代结合剂,用于废水中重金属的去除。利用现有的软件获得了Zn (II)、Pb (II)、Cr (III)和Cr (VI)的形态谱,以确定在一定pH范围内各种带电离子中存在的Zn (II)、Pb (II)、Cr (III)和Cr (VI)离子和氢氧化物离子(OH−)的可溶配合物。采用10 kDa聚砜中空纤维膜的实验室超滤实验装置获得的超滤体系进行了实验研究。恒压恒流量下的截留系数对pH、聚合物组成、金属离子浓度等主要操作参数的影响显著。未经改性的淀粉和PEG作为结合聚合物,由于金属离子对分子表面聚合物的物理吸引,发生络合作用的可能性很大。在pH为7时,Zn (II)和Cr (III)离子的截留值较高,对应于未改性淀粉的截留值较高。当在混合金属离子溶液中进行PEG测试时,Pb (II)离子获得高截留率。在这项研究中,淀粉对这些金属离子的排斥被发现受到颗粒结构的影响,而颗粒结构通常以非离子方式表现。本文选取了Zn (II)、Pb (II)、Cr (III)和Cr (VI)四种重金属,通过聚合物增强超滤(PEUF)系统进行了检测。pH、聚合物浓度和金属离子进料浓度是影响PEUF体系性能的主要因素。选择了一种传统的水溶性聚合物聚乙二醇(PEG),并提出了一种未经改性的淀粉作为生物聚合物作为四种选定的金属离子的替代结合剂,用于废水中重金属的去除。利用现有的软件获得了Zn (II)、Pb (II)、Cr (III)和Cr (VI)的形态谱,以确定在一定pH范围内各种带电离子中存在的Zn (II)、Pb (II)、Cr (III)和Cr (VI)离子和氢氧化物离子(OH−)的可溶配合物。以10 kDa聚砜中空纤维mem为设备,利用实验室超滤台架获得的超滤系统进行了实验研究。
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