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Water Organic Pollution and Eutrophication Influence Soil Microbial Processes Increasing Soil Respiration of Estuarine Wetlands: Site Study in Jiuduansha Wetland

机译:水有机污染和富营养化影响土壤微生物过程增加河口湿地的土壤呼吸:九段沙湿地的实地研究

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摘要

Undisturbed natural wetlands are important carbon sinks due to their low soil respiration. When compared with inland alpine wetlands, estuarine wetlands in densely populated areas are subjected to great pressure associated with environmental pollution. However, the effects of water pollution and eutrophication on soil respiration of estuarine and their mechanism have still not been thoroughly investigated. In this study, two representative zones of a tidal wetland located in the upstream and downstream were investigated to determine the effects of water organic pollution and eutrophication on soil respiration of estuarine wetlands and its mechanism. The results showed that eutrophication, which is a result of there being an excess of nutrients including nitrogen and phosphorus, and organic pollutants in the water near Shang shoal located upstream were higher than in downstream Xia shoal. Due to the absorption and interception function of shoals, there to be more nitrogen, phosphorus and organic matter in Shang shoal soil than in Xia shoal. Abundant nitrogen, phosphorus and organic carbon input to soil of Shang shoal promoted reproduction and growth of some highly heterotrophic metabolic microorganisms such as β-Proteobacteria, γ-Proteobacteria and Acidobacteria which is not conducive to carbon sequestration. These results imply that the performance of pollutant interception and purification function of estuarine wetlands may weaken their carbon sequestration function to some extent.
机译:未受干扰的自然湿地由于其低的土壤呼吸而成为重要的碳汇。与内陆高山湿地相比,人口稠密地区的河口湿地承受着与环境污染有关的巨大压力。然而,水污染和富营养化对河口土壤呼吸的影响及其机理尚未得到充分研究。在这项研究中,研究了位于上游和下游的潮汐湿地的两个代表性区域,以确定水体有机污染和富营养化对河口湿地土壤呼吸的影响及其机理。结果表明,富营养化是由于富营养化,其中包括氮和磷的过量,上游浅滩附近水中的有机污染物高于下游浅滩。由于浅滩的吸收和拦截功能,商浅滩土壤中的氮,磷和有机质比夏浅滩更多。商滩土壤中大量的氮,磷和有机碳的输入促进了一些高度异养的代谢微生物的繁殖和生长,例如不利于固碳的β-变形杆菌,γ-变形杆菌和酸性细菌。这些结果表明,河口湿地污染物的截留和净化功能可能会在一定程度上削弱其固碳功能。

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