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Dynamic exchanges between DOM and POM pools in coastal and inland aquatic ecosystems: A review

机译:沿海和内陆水生生态系统中DOM和POM池之间的动态交换:综述

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Dynamic exchanges between dissolved organic matter (DOM) and particulate organic matter (POM) plays a critical role in organic carbon cycling in coastal and inland aquatic ecosystems, interactions with aquatic organisms, mobility and bioavailability of pollutants, among many other ecological and geochemical phenomena. Although DOM-POM exchange processes have been widely studied from different aspects, little to no effort has been made to date to provide a comprehensive, mechanistic and micro-spatial schema for understanding various exchange processes occurring in different aquatic ecosystems in a unified way. The phenomena occurring between DOM and POM were explained here with the homogeneous and heterogeneous mechanisms. In the homogeneous mechanism, the participating components are only organic matter (OM) constituents themselves with aggregation and dissolution involved, whereas OM is associated with other components such as minerals and particulate colloids in the heterogeneous counterpart Besides the generally concerned processes of aggregation/dissolution and adsorption/desorption, other ecological factors such as sunlight and organisms can also participate in DOM-POM exchanges through altering the chemical nature of OM. Despite the limitation of current analytical technologies, many unknown and/or unquantified processes need to be identified to unravel the complicated exchanges of OM between its dissolved and particulate states. Based on the review of several previous mathematical models, we proposed a unified conceptual model to describe all major dynamic exchange mechanisms on the basis of exergy theory. More knowledge of dynamic DOM-POM exchanges is warranted to overcome the potential problems arising from a simple division of OM into dissolved versus particulate states and to further develop more sophisticated mathematic models.
机译:溶解性有机物(DOM)和颗粒有机物(POM)之间的动态交换在沿海和内陆水生生态系统的有机碳循环,与水生生物的相互作用,污染物的迁移率和生物利用度以及许多其他生态和地球化学现象中起着至关重要的作用。尽管已从不同方面对DOM-POM交换过程进行了广泛研究,但迄今为止,几乎没有做出任何努力来提供一个全面,机械和微观空间的方案,以统一的方式理解在不同水生生态系统中发生的各种交换过程。 DOM和POM之间发生的现象在这里用同构和异构机制进行了解释。在均相机制中,参与的成分仅是有机物(OM)成分本身,涉及聚集和溶解,而OM与异质对应物中的其他成分(如矿物质和颗粒胶体)相关,除了通常关注的聚集/溶解过程和吸附/解吸,其他生态因素(例如阳光和生物)也可以通过改变OM的化学性质来参与DOM-POM交换。尽管当前的分析技术存在局限性,但仍需要确定许多未知和/或未量化的过程才能解开OM在其溶解态和颗粒态之间的复杂交换。在回顾了以前的几种数学模型的基础上,我们提出了一个统一的概念模型,以能值理论为基础来描述所有主要的动态交换机制。为了避免将OM分为溶解状态和颗粒状态的简单划分而产生的潜在问题,并进一步开发更复杂的数学模型,有必要进一步了解动态DOM-POM交换。

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