Tsang Daniel C W, Lo Irene M C
Department of Civil Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Environ Sci Technol. 2006 Nov 1;40(21):6655-61. doi: 10.1021/es060625i.
The competitive effect influenced the transport behavior of Cu and Cd contrastingly in soils, as illustrated by the experimental findings obtained from column, batch kinetics, and sequential extraction tests. Of particular interest, Cd transport behavior changed from nonequilibrium in a single-metal system to equilibrium in a binary-metal system, whereas Cu exhibited a slightly greater degree of nonequilibrium transport under competition. The equilibrium time of specific sorption (approximately 7 days) was found to be much longer than that of nonspecific sorption (approximately 30 min). While there was a competitive effect on nonspecific sorption for both Cu and Cd, the majority of rate-limited specific sorption of Cd on oxide and organic matter fractions (contributing to approximately 20% of total sorption) was dramatically displaced by Cu. Such a strong suppression of specific sorption of Cd bythe presence of Cu resulted in a shorter equilibrium time of overall sorption, which probably accounts for its equilibrium transport. In contrast, the competitive effect on rate-limited sorption and transport behavior of Cu was less significant. This study demonstrated a correlation between the competitive effect of Cu and Cd on their nonspecific and specific sorption and the corresponding significance of rate-limited sorption and nonequilibrium transport behavior.
柱试验、批次动力学试验和连续萃取试验的实验结果表明,竞争效应在土壤中对铜和镉的迁移行为产生了相反的影响。特别值得注意的是,镉的迁移行为从单一金属体系中的非平衡状态转变为二元金属体系中的平衡状态,而铜在竞争作用下表现出稍大程度的非平衡迁移。发现特异性吸附的平衡时间(约7天)远长于非特异性吸附的平衡时间(约30分钟)。虽然铜和镉在非特异性吸附上存在竞争效应,但镉在氧化物和有机物质组分上的大部分限速特异性吸附(约占总吸附量的20%)被铜显著取代。铜的存在对镉特异性吸附的强烈抑制导致了整体吸附平衡时间缩短,这可能解释了其平衡迁移现象。相比之下,竞争效应对铜的限速吸附和迁移行为的影响较小。本研究证明了铜和镉在非特异性和特异性吸附上的竞争效应与限速吸附和非平衡迁移行为的相应重要性之间的相关性。