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Research of Greenhouse Gases (CH4 and CO2) Emission Flux in Baiyangdian Wetland

机译:白阳湿地温室气体(CH4和CO2)排放通量研究

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CH4 and CO2 are important greenhouse gases, playing a very important role in greenhouse effect. In order to estimate the current situation of source and sink of main greenhouse gases in Baiyangdian wetland and evaluate the influences of wetland system to the greenhouse effect of North China, static closed chamber-gas chromatogram method was adopted to study the space-time variation characteristics of N2O, CH4, and CO2 emission fluxes in Baiyangdian wetland. The analysis results indicate: the lake wetland which was abundant in organic matters and nutritive salt was an important greenhouse gases emission source. During one year of observation, it was found out that the fluxes of N2O, CH4, and CO2 of Baiyangdian wetland posses a very high time variability, with the range of variation being-0.08~0.33 mg•m-2•h-1, -5.40~328.65 mg•m-2•h-1 and -814.06~2934.93 mg•m-2•h-1. The emission fluxes of N2O, CH4, and CO2 reaches to maximum in summer, respectively being 62.09%, 92.15% and 87.04% of the annual total emission flux, The lakeside was a core area of N2O, CH4 emission, with annual average emission flux respectively reaching up to 0.11 mg•m-2•h-1 and 40.86 mg•m-2•h-1. Although the main emission area of CO2 was land, the emission flux of lakeside, with annual average emission flux being 692.35 mg•m-2•h-1, was also very high, ranking only second to land, the lakeside area of Baiyangdian wetland was only 12.60% of the whole lake wetland area, but the emission loads of N2O, CH4, and CO2 were respectively 26.51%, 43.96% and 23.76% of the total emission load, which explains that the lakeside was leading the greenhouse gases emission of Baiyangdian wetland.
机译:CH4和CO2是重要的温室气体,在温室效果中发挥着非常重要的作用。为了估算白阳湿地主要温室气体来源和下沉的现状,评价湿地系统对华北温室效应的影响,采用静电闭合室 - 气相色谱法研究时空变化特性白阳湿地的N2O,CH4和CO2发射助熔剂。分析结果表明:有机物质和营养盐丰富的湿地是一个重要的温室气体排放源。在一年的观察期间,发现了N2O,CH4和CO2的势倍,白阳湿地拥有非常高的时间变异性,变异范围为-0.08〜0.33mg• m-2• H-1,-5.40〜328.65 mg• m-2• h-1和-814.06〜2934.93 mg• m-2• h-1。 N2O,CH 4和CO2的排放通量分别在夏季最大程度,分别为年度总排放通量的62.09%,92.15%和87.04%,湖边是N2O,CH4排放的核心区域,年平均排放通量分别达到0.11 mg• m-2• h-1和40.86 mg• m-2• h-1。虽然二氧化碳的主要排放面积是土地,湖边的排放通量,每年平均排放通量为692.35毫克• m-2• h-1,也很高,只排名第二到陆地,湖边排名第二。百阳湿地面积仅为整个湖泊湿地区的12.60%,但N2O,CH4和CO2的排放量分别为总排放量的26.51%,43.96%和23.76%,这解释说湖畔领导着Baiyangdian湿地的温室气体排放。

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