Department of Public Health, Chengdu Medical College, Chengdu 610500, China.
Department of Public Health, Chengdu Medical College, Chengdu 610500, China.
Ecotoxicol Environ Saf. 2018 Apr 15;150:251-259. doi: 10.1016/j.ecoenv.2017.12.042. Epub 2018 Jan 4.
In this paper, the adsorption behaviors of Cu(II) from the aqueous solution using rape straw powders were studied. The effects of initial Cu(II) concentration, pH range and absorbent dosage on the adsorption efficiency of Cu(II) by rape straw powder were investigated by Box-Behnken Design based on response surface methodology. The values of coefficient constant of the nonlinear models were 0.9997, 0.9984 and 0.9944 for removal Cu(II) from aqueous solution using rape straw shell, seed pods and straw pith core, respectively, which could navigate the design space for various factors on effects of biosorption Cu(II) from aqueous solution. The various factors of pH and biosorbents dosage were the key factors that affecting the removal efficiency of Cu(II) from aqueous solution. The biosorption equilibrium data presented its favorable monolayer adsorption Cu(II) onto shell, seed pods and straw pith core, respectively. The pseudo-second order kinetic model was the proper approach to determine the adsorption kinetics. The biosorption of Cu(II) onto surfaces of rape straw powders were confirmed and ion-exchanged in the adsorption process by energy dispersive spectrometer. The critical groups, -OH, -CH, -NH, -CH, -NH and -C-O, exhibited by the infrared spectra results, changed to suggest that these groups played critical roles, especially -CH in the adsorption of copper ions onto rape straw powders. The study provided evidences that rape straw powders can be used for removing Cu(II) from aqueous water.
本文研究了从水溶液中用油菜秸秆粉末吸附 Cu(II)的行为。通过响应面法中的 Box-Behnken 设计,考察了初始 Cu(II)浓度、pH 值范围和吸附剂用量对油菜秸秆粉吸附 Cu(II)效率的影响。用油菜秸秆壳、种子荚和秸秆髓芯从水溶液中去除 Cu(II)的非线性模型的系数常数分别为 0.9997、0.9984 和 0.9944,可用于导航各种因素对从水溶液中生物吸附 Cu(II)的设计空间。pH 和生物吸附剂用量等各种因素是影响水溶液中 Cu(II)去除效率的关键因素。吸附平衡数据表明,油菜秸秆壳、种子荚和秸秆髓芯对 Cu(II)的吸附分别有利于单层吸附。准二级动力学模型是确定吸附动力学的合适方法。通过能谱仪确认了油菜秸秆粉末表面对 Cu(II)的吸附和离子交换过程。红外光谱结果表明,关键基团-OH、-CH、-NH、-CH、-NH 和-C-O 发生了变化,表明这些基团在油菜秸秆粉末吸附铜离子的过程中发挥了关键作用,特别是-CH。本研究为油菜秸秆粉末可用于从水溶液中去除 Cu(II)提供了证据。