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Analysis of carbon sink effects for saline constructed wetlands vegetated with mangroves to treat mariculture wastewater and sewage

机译:盐水构建湿地碳含量分析用西红柿治疗水土养殖废水和污水

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摘要

In this study, two saline mangrove artificial wetlands, Datang Saline Constructed Wetland (DSCW) created for treating mariculture wastewater and sewage, vegetated with Avicennia marina, and Mangrove Wetland Park (MWP) created for mangrove conservation, vegetated with Rhizophora stylosa, were selected for assessment of carbon sequestration and carbon budget based on measuring greenhouse gas (GHG) emissions and net primary productivities. The average GHG flux and net carbon sequestration flux as carbon dioxide equivalent (CO2 eq.) were measured. The results showed that the GHG flux emitted from DSCW and MWP were 2,128 and 2,148 g CO2 eq./m(2)-yr, respectively, while the flux of net sequestered carbon was 2,909 and 3,178 g CO2 eq./m(2)-yr, respectively, which achieved carbon budget values of -676 and -230 g CO2 eq./m(2)-yr, respectively, exhibiting carbon source effects. Some amounts of N2O, with a high global warming potential of 265, emitted from both artificial wetland systems might cause high GHG flux as CO2 eq. emitted from the wetland systems. It was concluded that both the nitrogenous contents and environmental conditions suitable for microbial production of N2O might be the main factors to change the wetland systems from carbon sinks to carbon sources.
机译:在这项研究中,选择了用于治疗海水养殖废水和污水,与Avicennia Marina植被植被的湿地(DSCW),为美洲红树保护而创造的污水,植被植被植被植被,培养红树林(DSCW),并被选中基于测量温室气体(GHG)排放和净初级生产率的碳封存和碳预算评估。测量平均温室气体通量和净碳螯合助焊剂作为二氧化碳当量(CO2等式)。结果表明,从DSCW和MWP发出的温室气体磁通量分别为2,128和2,148g CO 2等式,而净隔离碳的通量分别为2,909和3,178g CO2 eq./m(2) - 分别达到-676和-230g CO2碳源效应的碳预注渍值,分别实现了碳源效应。从人工湿地系统发射的高度全球变暖电位的一些N2O可以导致CO 2 EQ的高温度通量。从湿地系统发出。结论是,适用于N2O微生物生产的含氮含量和环境条件可能是将湿地系统从碳源改变到碳源的主要因素。

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