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Iron and Chromium Removal from Binary Solutions of Fe(lll)/Cr(lll) and Fe(lll)/Cr(VI) by Biosorbents Supported on Zeolites

机译:沸石上负载的生物吸附剂脱除Fe(III)/ Cr(III)和Fe(III)/ Cr(VI)二元溶液中的铁和铬

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The removal of metallic ions from binary aqueous solutions of Fe(III)/Cr(III) and Fe(III)/Cr(VI) by an Arthrobacter viscosus biofilm supported on NaY zeolite was investigated. Experiments were repeated with suspended biomass for comparison purposes. Batch assays were performed using different concentrations (10, 25 and 40 mg/L), for both metals in solution. Results indicated that Arthrobacter viscosus is able to retain the metallic ions, although not totally. The removal efficiencies were improved when the biofilm was supported on the zeolite, for all the initial concentrations of Cr(III), for the intermediate and higher concentration of Cr(VI) and for all range of initial concentrations of Fe(III), in the presence of Cr(III). The bacteria reduce Cr(VI) to Cr(III) and, only then, this cation may be entrapped in the framework zeolite by ion exchange. Suspended bacteria had higher affinity for Fe(III), than for Cr(VI) or Cr(III), while the conjugated system was selective to Fe(III) when in the presence of Cr(VI). For solutions of Fe(III)/Cr(III), very high removals were achieved by the supported system, ranging from 94 to 100 % for Cr(III) and from 98 to 100 % for Fe(III). The conjugated system also reached the highest removal ratio of Cr(VI), 36 %, for the initial concentration of 40 mg/L. The materials in study were characterized by techniques such as FTIR, SEM and chemical analyses.
机译:研究了用NaY沸石负载的节杆菌粘性生物膜从Fe(III)/ Cr(III)和Fe(III)/ Cr(VI)的二元水溶液中去除金属离子的过程。为了比较的目的,用悬浮的生物质重复实验。对于溶液中的两种金属,使用不同的浓度(10、25和40 mg / L)进行批量测定。结果表明,节杆菌粘性能够保留金属离子,尽管不能完全保留。当生物膜负载在沸石上时,对于所有初始浓度的Cr(III),中等和较高浓度的Cr(VI)以及所有初始浓度的Fe(III),去除效率都得到了提高。 Cr(III)的存在。细菌将Cr(VI)还原为Cr(III),只有这样,该阳离子才可以通过离子交换截留在骨架沸石中。悬浮细菌对Fe(III)的亲和力高于对Cr(VI)或Cr(III)的亲和力,而共轭体系在存在Cr(VI)时对Fe(III)具有选择性。对于Fe(III)/ Cr(III)溶液,通过支持的系统可实现很高的去除率,Cr(III)的去除率为94%至100%,Fe(III)的去除率为98%至100%。对于40 mg / L的初始浓度,共轭体系还达到了最高的Cr(VI)去除率36%。通过FTIR,SEM和化学分析等技术对研究中的材料进行表征。

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