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首页> 外文期刊>International Journal of Environmental Science and Technology >Preparation of granular composite materials as novel sorbents and their application for removal of heavy metals from solution
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Preparation of granular composite materials as novel sorbents and their application for removal of heavy metals from solution

机译:用颗粒复合材料作为新型吸附剂的制备及其从溶液中除去重金属的应用

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A granular composite material (GCM) consisting of beta-zeolite-/powder activated carbon (PAC), organic binder (MC) and inorganic binder (bentonite) was prepared from powdered samples. GCMs were prepared successfully at a constant concentration of MC (10 wt%) and bentonite (30 wt%) and at various ratios of -zeolite/PAC (0.05-0.5). The results indicated that the GCMs had high iodine values (981.9-1170.1mg/g) and suitable mechanical strength (180.55-323.86N). A series of batch sorption experiments for removal of Zn2+, Cd2+, Cu2+ and Pb2+ from aqueous solutions were performed with two selected composites of GCM2 (-zeolite/PAC ratio=0.05) and GCM9 (-zeolite/PAC ratio=0.4) under various conditions (contact time and pH). Maximum sorptions of Zn, Cd and Pb at pH 5.5 and that of Cu at pH 6 were attained at equilibrium time of 80min and initial metal ions concentration of 20mg/L. The results showed that the sorption of Zn2+, Cu2+, Cd2+ and Pb2+ by GCMs increased by increasing the -zeolite/PAC ratio. The maximum sorption occurred at the -zeolite/PAC ratio of 0.4. The maximum sorption capacity order of GCM2 in unit of mgg(-1) was: Pb2+ (13.684)>Cu2+ (13.300)>Cd2+ (12.717)>Zn2+ (12.590). The maximum sorption capacity order of GCM9 in unit of mgg(-1) was: Pb2+ (15.983)>Cu2+ (15.066)>Cd2+ (14.760)>Zn2+ (14.481). Three equations of Morris-Weber, pseudo-first order and pseudo-second order were investigated to study the kinetics of sorption process. The kinetic data showed that sorption of heavy metal ions was well described by pseudo-second-order equation.
机译:由β-沸石/粉末活性炭(PAC),有机粘合剂(MC)和无机粘合剂(膨润土)组成的粒状复合材料(GCM)由粉末样品制备。以恒定浓度的MC(10wt%)和膨润土(30wt%)成功制备GCMS,并以沸石/ PAC的各种比例(0.05-0.5)。结果表明,GCMS具有高碘值(981.9-1170.1mg / g)和合适的机械强度(180.55-323.86N)。在各种条件下,用两种选定的GCM2(-ZEOLITE / PAC比= 0.05)和GCM9(-ZEOLITE / PAC比率= 0.4)进行从水溶液中除去Zn2 +,CD2 +,Cu2 +和Pb2 +的一系列分批吸附试验。 (接触时间和pH)。在pH 5.5的最大Zn,Cd和Pb的最大恋癖以及pH6处的Cu在pH6的均衡时间,初始金属离子浓度为20mg / l。结果表明,通过增加 - 沸石/足比增加了GCM的Zn2 +,Cu2 +,CD2 +和PB2 +的吸附。 - 沸石/ PAC比为0.4的最大吸附。 MGG(-1)单位的GCM2的最大吸附能力顺序为:Pb2 +(13.684)> Cu2 +(13.300)> Cd2 +(12.717)> Zn2 +(12.590)。 MGG(-1)单位的GCM9的最大吸附能量顺序为:Pb2 +(15.983)> Cu2 +(15.066)> CD2 +(14.760)> Zn2 +(14.481)。研究了莫里斯 - 韦伯,伪第一顺序和伪二次订单的三个方程,研究了吸附过程的动力学。动力学数据显示,通过伪二阶方程良好地描述了重金属离子的吸附。

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