Shi Rong, Jia Yongfeng, Wang Chengzhi, Yao Shuhua
Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.
J Hazard Mater. 2009 Apr 30;163(2-3):1129-33. doi: 10.1016/j.jhazmat.2008.07.068. Epub 2008 Jul 24.
Arsenic is highly toxic and therefore represents a potential threat to the environment and human health. The mobility and fixation of arsenic in natural environment is significantly affected by co-occurring dissolved natural organic acids, which are widely present in soils and sediments due to the decomposition of natural organic matters and the metabolism of plant roots and microorganisms. It was reported recently that at lower pH, citrate decreased arsenate adsorption on metal oxides as the result of competitive adsorption. This study examined the relationship between citrate-promoted goethite dissolution and citrate-suppressed arsenate adsorption in the equilibrated goethite-arsenate-citrate systems with different contact orders. The results indicated that there is obvious correlation between the suppression of arsenate adsorption and dissolution of goethite. Arsenate adsorption and goethite dissolution in the presence of citrate (1.0mM), oxalate (1.5mM) and acetate (3.0mM) were compared. The results showed that arsenate adsorption was most significantly inhibited by citrate among the three organic acids. Although oxalate dissolved goethite more significantly, it inhibited arsenate adsorption much less than citrate. Hence it is proposed that the competition for binding sites rather than citrate-promoted goethite dissolution played a key role in the reduction of arsenate adsorption by citrate at lower pH.
砷具有高毒性,因此对环境和人类健康构成潜在威胁。天然环境中砷的迁移性和固定性受到共存的溶解性天然有机酸的显著影响,这些有机酸由于天然有机物的分解以及植物根系和微生物的代谢而广泛存在于土壤和沉积物中。最近有报道称,在较低pH值下,由于竞争吸附,柠檬酸盐会降低砷酸盐在金属氧化物上的吸附。本研究考察了在不同接触顺序的针铁矿-砷酸盐-柠檬酸盐平衡体系中,柠檬酸盐促进针铁矿溶解与柠檬酸盐抑制砷酸盐吸附之间的关系。结果表明,砷酸盐吸附的抑制与针铁矿的溶解之间存在明显的相关性。比较了在存在柠檬酸盐(1.0mM)、草酸盐(1.5mM)和乙酸盐(3.0mM)的情况下砷酸盐的吸附和针铁矿的溶解。结果表明,在这三种有机酸中,柠檬酸盐对砷酸盐吸附的抑制作用最为显著。尽管草酸盐对针铁矿的溶解作用更明显,但其对砷酸盐吸附的抑制作用远小于柠檬酸盐。因此,有人提出,在较低pH值下,柠檬酸盐降低砷酸盐吸附的关键作用是结合位点的竞争,而不是柠檬酸盐促进针铁矿的溶解。