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Effect of plant harvest on methane emission from two constructed wetlands designed for the treatment of wastewater

机译:植物采收对两个用于处理废水的人工湿地甲烷排放的影响

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The emission of methane from two constructed wetlands [a free water surface flow system (FWS) and a subsurface flow system (SF)], constructed for the treatment of waste water, was evaluated at different sites inhabited by reeds {Phragmites communis), to test the effects of plant harvest. High methane emission was recorded immediately after harvesting in both wetlands. Several days after harvesting, the emission decreased in the FWS but remained high in the SF. The variation was significantly influenced by temperature, with lower emission and higher dissolved CH_4 in water occurring at lower temperatures. Both the emission and concentration of dissolved CH_4 were also influenced significantly by water quality, wetland design, level of stalk butt left above the water level, etc. The methane flux was explained on the basis of rizhospheric methanogenic and methanotrophic microbial populations. FISH analysis indicated the presence of Type A and Type B methanotrophs in both wetlands, and the methane flux was directly influenced by the quantitative variation in methanogenic and methanotrophic bacteria in both wetlands.
机译:在芦苇(Phragmites communis)居住的不同地点,对两个用于处理废水的人工湿地[自由水面流系统(FWS)和地下流系统(SF)]的甲烷排放进行了评估。测试植物收获的效果。两个湿地都收获后立即记录了高甲烷排放量。收获后几天,FWS中的排放量减少,但SF中的排放量仍然很高。温度对变化的影响很大,在较低温度下,较低的排放量和较高的水中CH_4溶解度。水质,湿地设计,高于水位的秸秆对接水平等也对溶解的CH_4的排放和浓度都产生了显着影响。甲烷通量是根据氮圈甲烷化和甲烷营养型微生物种群进行解释的。 FISH分析表明,两个湿地中均存在A型和B型甲烷氧化菌,而甲烷和甲烷氧化菌的数量变化直接影响甲烷通量。

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