首页> 外文期刊>Environmental Science and Pollution Research >Progress in Understanding the Sources, Deposition and Above-ground Fate of Trichloroacetic Acid
【24h】

Progress in Understanding the Sources, Deposition and Above-ground Fate of Trichloroacetic Acid

机译:三氯乙酸的来源,沉积和地上命运的理解进展

获取原文
获取原文并翻译 | 示例
           

摘要

Aim and Scope. This paper is a companion to the recent review paper by Laturnus et al. (2005) on TCA in soils, presenting a complementary review of knowledge gaps in the sources and fate of trichloroacetic acid (TCA) in plants. Main Features. The review considers the various sources of TCA precursors, including the question of how much atmospheric TCA comes from naturally-produced precursors, and addresses the implications of climate change on atmospheric TCA formation. Models of the conversion of precursors to TCA in the atmosphere are critically compared with field measurements of concentrations, deposition and budgets; data on the quantitative relationships between gas-phase TCA, particulate TCA, and TCA dissolved in rain and clouds are reviewed. Methods for quantifying TCA are summarised, along with a description of what the different techniques measure, and how results can be compared. A distinction is made between 'extractable' TCA and 'total' TCA in vegetation. Evidence for the various pathways by which TCA enters plants is given, including the in situ production of TCA in leaves. This leads to a better understanding of how plant tissue concentrations depend on uptake, production and removal rates. Finally, knowledge of the toxic effects of TCA on plants and TCA metabolism in plant tissues is summarised. Results and Discussion. The discussion highlights knowledge gaps, and is intended to aid the reader in interpreting previously published results through identifying where different ways of expressing data have been used, and the consequent conclusions that can be drawn. Conclusion and Further Research Directions. Recommendations are given for future research directions - in identifying precursor sources, quantifying heterogeneous atmospheric processes, recognising and quantifying uptake pathways, and elucidating the biochemical mechanisms involved in sequestering and degrading TCA inside leaves.
机译:目的和范围。本文是Laturnus等人最近发表的评论文章的补充。 (2005年)关于土壤中的三氯乙酸,提出了对植物中三氯乙酸(TCA)的来源和归宿方面知识差距的补充综述。主要特点。审查考虑了三氯乙酸前体的各种来源,包括多少自然TCA来自大气中的三氯乙酸的问题,并论述了气候变化对大气三氯乙酸形成的影响。将大气中前体转化为三氯乙酸的模型与浓度,沉积和预算的现场测量结果进行了严格比较;综述了气相TCA,颗粒状TCA和溶解在雨水和云层中的TCA之间的定量关系数据。总结了量化TCA的方法,并描述了不同技术所能测量的结果以及如何比较结果。植被中的“可提取” TCA和“总” TCA有所区别。提供了TCA进入植物的各种途径的证据,包括在叶片中原位产生TCA。这使人们对植物组织浓度如何取决于吸收,产生和去除速率有更好的了解。最后,总结了有关TCA对植物的毒性作用和植物组织中TCA代谢的知识。结果与讨论。讨论强调了知识方面的空白,旨在通过识别在何处使用了不同的表达数据的方式以及可以得出的结论,来帮助读者解释以前发表的结果。结论和进一步的研究方向。针对未来的研究方向提出了建议-确定前体来源,量化异质大气过程,识别和量化摄取途径以及阐明与螯合和降解叶片内部三氯乙酸有关的生化机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号