Suppr超能文献

稻草灰改良对土壤中氯酚类化合物的吸附增强作用。

Enhanced chlorophenol sorption of soils by rice-straw-ash amendment.

机构信息

Agricultural Research Institute, Wufeng, Taichung 41301, Taiwan.

出版信息

J Hazard Mater. 2010 May 15;177(1-3):692-6. doi: 10.1016/j.jhazmat.2009.12.086. Epub 2009 Dec 28.

Abstract

Rice-straw burning is a common post-harvest practice on rice paddy land, which results in the accumulation of rice-straw ash (RSA) in paddy soil. Because the occurrence of RSA in soil may affect the fate and transport of contaminants, this study investigated the sorption of 3-chlorophenol (3-CP) on RSA and RSA amended soils to evaluate the sorptive properties of RSA in soils. The results showed that the sorption of 3-CP to RSA proceeds through a surface reaction rather than through partitioning and that the neutral form of 3-CP is preferentially sorbed to the surface when compared to the deprotonated anionic form of 3-CP. The addition of RSA to the soils enhanced the overall 3-CP sorption, indicating that RSA amendment may be applied to retard the movement of 3-CP in contaminated soils. As the RSA content in the soils was increased from 0% to 2%, the Langmuir sorption maximum of the soils increased from 18-80 to 256-274 mg kg(-1). Thus, RSA contributed more to the total sorption of the soils than other major components in the soils. Nonetheless, the 3-CP sorption of the soils containing RSA was less than the combination of pure RSA and the soils, thereby indicating that the 3-CP sorption of RSA was suppressed. This may be attributed to the competition of organic matter or other soil components for the surface binding sites of RSA.

摘要

稻草燃烧是稻田中常见的一种收获后处理方式,会导致稻秆灰(RSA)在稻田土壤中积累。由于土壤中 RSA 的出现可能会影响污染物的归宿和迁移,因此本研究调查了 3-氯苯酚(3-CP)在 RSA 和添加 RSA 的土壤中的吸附情况,以评估 RSA 在土壤中的吸附特性。结果表明,3-CP 对 RSA 的吸附是通过表面反应进行的,而不是通过分配作用,与 3-CP 的去质子化阴离子形式相比,3-CP 的中性形式更优先被吸附到表面。向土壤中添加 RSA 增强了 3-CP 的整体吸附,表明 RSA 改性可用于延缓污染土壤中 3-CP 的迁移。随着土壤中 RSA 含量从 0%增加到 2%,土壤的 Langmuir 吸附最大值从 18-80 增加到 256-274mgkg-1。因此,与土壤中的其他主要成分相比,RSA 对土壤的总吸附作用更大。尽管如此,含 RSA 的土壤对 3-CP 的吸附量小于纯 RSA 和土壤的组合,表明 RSA 对 3-CP 的吸附受到抑制。这可能归因于有机物或其他土壤成分对 RSA 表面结合位点的竞争。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验