腐殖质:与土壤、植物和环境相关的毒理学、化学和生物学

R. K. Gautam, Dimuth Navaratna, S. Muthukumaran, Amarendra K. Singh, Islamuddin, N. More
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引用次数: 8

摘要

近几十年来,不同学科的科学家越来越关注天然有机物的命运,特别是腐殖质(HS)的命运。腐殖质(humic substances, HS)是土壤和水生生态系统中难降解的原生和陆生有机质的统称,是天然有机质的重要组成部分之一。这些物质是微量元素的重要螯合剂,构成天然存在的复杂分子结构,包括聚集和组装过程,其中来自植物和动物残留物的生物分子通过生物和非生物束逐渐转化。由于这些有机化合物与土壤矿物组分结合或联系在一起,因此在进行物理化学研究之前,必须通过萃取方法将它们与无机组分进行物理或化学分离。本章重点介绍腐植酸化合物及其衍生物,如腐植酸、黄腐酸、腐植酸等的化学毒理学和分子方面的研究,以及它们在农业、生物医学、环境和生化方面的应用。此外,还研究了它们对植物生理和土壤微观结构的影响,以扩大我们对腐殖质化合物的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Humic Substances: Its Toxicology, Chemistry and Biology Associated with Soil, Plants and Environment
In recent decades, scientists in different disciplines have been increasingly concerned about the fate of natural organic matter, and in particular of humic substances (HS). The term humic substances (HS) incorporates refractory autochthonous and terrestrial organic matter in the soil and aquatic ecosystem, and are one of the key fractions of natural organic matter. These substances are important chelators of trace elements constituting complex class of molecular structures that occur naturally, consisting of aggregation and assembly processes in which biomolecules derived from plant and animal residues are gradually transformed through biotic and abiotic tracts. Since these organic compounds are bound by or linked with soil mineral fractions, they must be physically or chemically separated from the inorganic components by an extraction method before their physico-chemical study. This chapter focuses on the chemo-toxicological, molecular aspects of humic compounds and their derivatives such as humins, fulvic acids, humic acids etc., with their agricultural, biomedical, environmental and biochemical applications. In addition to studying their impact on plant physiology and soil microstructure to expand our understanding about humic compounds.
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