Sawalha Maather F, Peralta-Videa Jose R, Sanchez-Salcido Blanca, Gardea-Torresdey Jorge L
Environmental Science and Engineering PhD Program, University of Texas at El Paso, El Paso, TX 79968, USA.
J Environ Manage. 2009 Feb;90(2):1213-8. doi: 10.1016/j.jenvman.2008.06.002. Epub 2008 Jul 24.
Batch studies were performed to determine the interference of calcium (Ca) and magnesium (Mg) on the sorption of Cu(II), Cd(II), Cr(III), Cr(VI), Pb(II), and Zn(II) [from CuSO(4), K(2)Cr(2)O(7), Pb(NO(3))(2), Cr(NO(3))(3), ZnCl(2), and Cd(NO(3))(2)] by saltbush (Atriplex canescens) biomass. The results demonstrated that Ca and Mg at concentrations of at least 20 times higher than the concentration of most of the target metals did not interfere with the metal binding. The data show that the batch binding capacity from a multimetal solution at pH 5.0 was (micromol/g) about 260 for Cr(III) and Pb, and about 117, 54, and 49 for Cu, Zn, and Cd, respectively. The use of 0.1M HCl allowed the recovery of 85-100% of the bound Cu, Cr(III), and Pb, and more than 37% of the bound Cd and Zn. The column binding capacity for Pb was about 49 micromol/g from both the single and multimetal solutions, while it was, respectively about 35 and 23 micromol/g for Cr(III). The binding capacity for Cu and Zn from the single and multimetal column experiments was 35 micromol/g and less than 10 micromol/g, respectively. The stripping data from the single column experiment showed that 0.1M HCl allowed the recovery of all the bound Cu and Zn, 90% and 74% of the bound Pb and Cr(VI), respectively, and less than 25% of the bound Cd and Cr(III), while the stripping from the multimetal experiment showed that 0.1M HCl allowed the recovery of all the bound Cu and about 74%, 54%, 43%, and 40% of the bound Pb, Zn, Cd, and Cr(III), respectively.
进行了批次研究,以确定钙(Ca)和镁(Mg)对盐蒿(Atriplex canescens)生物质吸附铜(II)、镉(II)、铬(III)、铬(VI)、铅(II)和锌(II)[来自硫酸铜(CuSO₄)、重铬酸钾(K₂Cr₂O₇)、硝酸铅(Pb(NO₃)₂)、硝酸铬(Cr(NO₃)₃)、氯化锌(ZnCl₂)和硝酸镉(Cd(NO₃)₂)]的干扰。结果表明,浓度至少比大多数目标金属浓度高20倍的Ca和Mg不会干扰金属结合。数据显示,在pH 5.0时,来自多金属溶液的批次结合容量(微摩尔/克)对于铬(III)和铅约为260,对于铜、锌和镉分别约为117、54和49。使用0.1M盐酸可回收85 - 100%的结合态铜、铬(III)和铅,以及超过37%的结合态镉和锌。来自单金属和多金属溶液的铅的柱结合容量约为49微摩尔/克,而铬(III)分别约为35和23微摩尔/克。单金属和多金属柱实验中铜和锌的结合容量分别为35微摩尔/克和小于10微摩尔/克。单柱实验的洗脱数据表明,0.1M盐酸可回收所有结合态的铜和锌,分别回收90%和74%的结合态铅和铬(VI),以及小于25%的结合态镉和铬(III),而多金属实验的洗脱表明,0.1M盐酸可回收所有结合态的铜,以及分别约74%、54%、43%和40%的结合态铅、锌、镉和铬(III)。