Li Yue-Peng, Yin Hua, Ye Jin-Shao, Peng Hua, Qin Hua-Ming, Long Yan, He Bao-Yan, Zhang Na, Tong Yao, Peng Su-Fen
Department of Environmental Engineering, Jinan University, Guangzhou 510632, China.
Huan Jing Ke Xue. 2011 Nov;32(11):3341-7.
A hydroponic experiment was conducted to investigate the cation exchanges during the process of Cd2+ absorption by Alfalfa in aqueous solution. The absorption efficiency of Alfalfa plants with 0-10 mg x L(-1) Cd2+ treatments, changes of Na+, K+, Mg2+, Ca2+ and NH4(+) concentration, and the variation of pH values at different absorption time (0, 1, 2, 4, 8, 12, 24 and 72 h) were studied separately. The multiple linear regressions between Cd2+ absorption and cation variation were analyzed. The results indicated that when Cd2+ concentrations were 0.1, 1, 5, 10 mg x L(-1), the absorption efficiencies of Cd2+ by Alfalfa after 72 h were 85.86%, 52.14%, 15.97% and 7.81%. Cation exchange was involved in the removal of Cd2+ by Alfalfa in aqueous solution. Except for NH4(+), the concentrations of cationic metals Na+, K+, Mg2+ and Ca2+ in aqueous solution increased over time, which increased 11.30% - 61.72%, 21.44% - 98.73%, 24.09% - 8.90% and 37.04% - 191.96%, respectively. Kinetic studies illuminated that the release of Na+, K+, Mg2+ and Ca2+ by Alfalfa in Cd2+ solution with initial concentrations of 0, 0. 1, 1, 5, 10 mg x L(-1) best fitted pseudo-second-order equation,while the NH4(+) release fitted this model when Cd2+ concentrations were 1, 5, 10 mg x L(-1). The gradual decrease of pH during adsorption of Cd2+ by Alfalfa was observed. As the competition ion of Cd2+, H+ might affect the capacity of Alfalfa root system to absorb Cd2+. The ternary linear equation results demonstrated that the content of Cd2+ absorption by Alfalfa strongly related with the release of Ca2+, Mg2+, Na+. And this exchange mainly occurred among Cd2+ and divalent cations.
进行了一项水培实验,以研究紫花苜蓿在水溶液中吸收Cd2+过程中的阳离子交换情况。分别研究了紫花苜蓿植株在0-10 mg·L(-1) Cd2+处理下的吸收效率、Na+、K+、Mg2+、Ca2+和NH4(+)浓度的变化以及不同吸收时间(0、1、2、4、8、12、24和72 h)下pH值的变化。分析了Cd2+吸收与阳离子变化之间的多元线性回归。结果表明,当Cd2+浓度为0.1、1、5、10 mg·L(-1)时,紫花苜蓿72 h后对Cd2+的吸收效率分别为85.86%、52.14%、15.97%和7.81%。阳离子交换参与了紫花苜蓿在水溶液中对Cd2+的去除。除NH4(+)外,水溶液中阳离子金属Na+、K+、Mg2+和Ca2+的浓度随时间增加,分别增加了11.30% - 61.72%、21.44% - 98.73%、24.09% - 8.90%和37.04% - 191.96%。动力学研究表明,初始浓度为0、0.1、1、5、10 mg·L(-1)的Cd2+溶液中,紫花苜蓿释放Na+、K+、Mg2+和Ca2+的情况最符合准二级方程,而当Cd2+浓度为1、5、10 mg·L(-1)时,NH4(+)的释放符合该模型。观察到紫花苜蓿吸附Cd2+过程中pH值逐渐降低。作为Cd2+的竞争离子,H+可能会影响紫花苜蓿根系吸收Cd2+的能力。三元线性方程结果表明,紫花苜蓿吸收Cd2+的含量与Ca2+、Mg2+、Na+的释放密切相关。这种交换主要发生在Cd2+和二价阳离子之间。