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饱和多孔介质中双硫噻唑与蒙脱石胶体的共运移

Cotransport of bismerthiazol and montmorillonite colloids in saturated porous media.

作者信息

Shen Chongyang, Wang Hong, Lazouskaya Volha, Du Yichun, Lu Weilan, Wu Junxue, Zhang Hongyan, Huang Yuanfang

机构信息

Department of Soil and Water Sciences, China Agricultural University, Beijing 100193, China.

Department of Plant and Soil Sciences, University of Delaware, Newark, DE 19716, United States.

出版信息

J Contam Hydrol. 2015 Jun-Jul;177-178:18-29. doi: 10.1016/j.jconhyd.2015.03.003. Epub 2015 Mar 14.

Abstract

While bismerthiazol [N,N'-methylene-bis-(2-amino-5-mercapto-1,3,4-thiadiazole)] is one of the most widely used bactericides, the transport of bismerthiazol in subsurface environments is unclear to date. Moreover, natural colloids are ubiquitous in the subsurface environments. The cotransport of bismerthiazol and natural colloids has not been investigated. This study conducted laboratory column experiments to examine the transport of bismerthiazol in saturated sand porous media both in the absence and presence of montmorillonite colloids. Results show that a fraction of bismerthiazol was retained in sand and the retention was higher at pH7 than at pH 4 and 10. The retention did not change with ionic strength. The retention was attributed to the complex of bismerthiazol with metals/metal oxides on sand surfaces through ligand exchange. The transport of bismerthiazol was enhanced with montmorillonite colloids copresent in the solutions and, concurrently, the transport of montmorillonite colloids was facilitated by the bismerthiazol. The transport of montmorillonite colloids was enhanced likely because the bismerthiazol and the colloids competed for the attachment/adsorption sites on collector surfaces and the presence of bismerthiazol changed the Derjaguin-Landau-Verwey-Overbeek (DLVO) interaction energies between colloids and collectors. The transport of bismerthiazol was inhibited if montmorillonite colloids were pre-deposited in sand because bismerthiazol could adsorb onto the colloid surfaces. The adsorbed bismerthiazol could be co-remobilized with the colloids from primary minima by decreasing ionic strength. Whereas colloid-facilitated transport of pesticides has been emphasized, our study implies that transport of colloids could also be facilitated by the presence of pesticides.

摘要

虽然双硫噻唑[N,N'-亚甲基-双-(2-氨基-5-巯基-1,3,4-噻二唑)]是应用最为广泛的杀菌剂之一,但迄今为止,双硫噻唑在地下环境中的迁移情况尚不清楚。此外,天然胶体在地下环境中普遍存在。双硫噻唑与天然胶体的共迁移尚未得到研究。本研究进行了实验室柱实验,以考察双硫噻唑在饱和砂质多孔介质中,在不存在和存在蒙脱石胶体的情况下的迁移情况。结果表明,一部分双硫噻唑滞留在砂中,且在pH7时的滞留率高于pH4和pH10时。滞留率不随离子强度而变化。滞留归因于双硫噻唑通过配体交换与砂表面的金属/金属氧化物形成络合物。溶液中同时存在蒙脱石胶体时,双硫噻唑的迁移得到增强,同时,双硫噻唑也促进了蒙脱石胶体的迁移。蒙脱石胶体迁移增强可能是因为双硫噻唑和胶体竞争收集器表面的附着/吸附位点以及双硫噻唑的存在改变了胶体与收集器之间的Derjaguin-Landau-Verwey-Overbeek(DLVO)相互作用能。如果蒙脱石胶体预先沉积在砂中,双硫噻唑的迁移会受到抑制,因为双硫噻唑可以吸附在胶体表面。通过降低离子强度,吸附的双硫噻唑可以与胶体一起从初级极小值处共同迁移。虽然农药的胶体促进迁移已受到关注,但我们的研究表明,农药的存在也可能促进胶体的迁移。

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