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REMEDIATION CHEMISTRY OF HUMIC SUBSTANCES: THEORY AND IMPLICATIONS FOR TECHNOLOGY

机译:腐殖质的修复化学:理论和技术含义

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摘要

An overview is given of the interactions encountered between humic substances (HS), ecotoxicants, and living organisms in the context of environmental remediation. The most important interactions identified include: binding interactions affecting chemical speciation and bioavailability of contaminants; interfacial interactions altering physical speciation or interphase partitioning of ecotoxicants; abiotic-biotic redox interactions that influence metabolic pathways coupled to pollutants; and finally direct and indirect interactions coupled to various physiological functions of living organisms. Because humics are polyfunctional, they can operate as binding agents and detoxicants, sorbents and flushing agents, redox mediators of abiotic and biotic reactions, nutrient carriers, bioadaptogens, and growth-stimulators. It is shown that these functions possess significant utility in the remediation of contaminated environments and as such humic-based reactions pertinent to permeable reactive barriers, in situ flushing, bioremediation, and phytoremediation are examined in detail. Finally, this chapter introduces the novel concept of "designer humics" which are a special class of customized humics of the reduced structural heterogeneity and of the controlled size. They are developed and deployed to carry out one or more of the above in situ functions in an optimum manner and for the purpose of enhancing the efficacy of one or more remediation technologies. Designer humics possess specified reactive properties obtained by chemical modification and cross-linking of the humic backbone. This new class of reactive agents portend new opportunities for achieving enhanced remediation and for quantifying remediation performance. The latter is described in the context of the passive flux meter technology developed for direct measuring fluxes of contaminants and biomass.
机译:概述了在环境修复的背景下腐殖质(HS),生态毒物和活生物体之间遇到的相互作用。确定的最重要的相互作用包括:影响化学形态和污染物生物利用度的结合相互作用;界面相互作用改变生态毒物的物理形态或相间分配;非生物-生物氧化还原相互作用影响与污染物耦合的代谢途径;最后,直接和间接的相互作用与活生物体的各种生理功能有关。由于腐殖质是多功能的,因此它们可以用作粘合剂和脱毒剂,吸附剂和冲洗剂,非生物和生物反应的氧化还原介质,营养载体,生物适应原和生长刺激剂。结果表明,这些功能在污染环境的修复中具有重要作用,因此,对与渗透性反应性屏障相关的基于腐殖质的反应,原位冲洗,生物修复和植物修复进行了详细研究。最后,本章介绍了“设计人员”的新颖概念,这是一类特殊的定制的人员结构,其结构异质性降低,尺寸可控。开发和部署它们是为了以最佳方式执行上述一种或多种原位功能,并且目的是增强一种或多种修复技术的功效。设计的腐殖质具有通过化学改性和腐殖质骨架交联而获得的特定反应性。这类新的反应剂为实现改进的补救措施和量化补救措施带来了新的机遇。后者是在为直接测量污染物和生物质通量而开发的无源通量计技术的背景下进行描述的。

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