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Emission Laws and Influence Factors of Greenhouse Gases in Saline-Alkali Paddy Fields

机译:盐碱稻田温室气体排放规律及影响因素

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The study of greenhouse gas emissions has become a global focus, but few studies have considered saline-alkali paddy fields. Gas samples and saline-alkali soil samples were collected during the green, tillering, booting, heading and grain filling stages. The emission fluxes of CO 2 , CH 4 , and N 2 O as well as the pH, soil soluble salt, available nitrogen, and soil organic carbon contents were detected to reveal the greenhouse gas (GHG) emission laws and influence factors in saline-alkali paddy fields. Overall, GHG emissions of paddy soil during the growing season increased, then decreased, and then increased again and peaked at booting stage. The emission fluxes of CO 2 and CH 4 were observed as having two peaks and a single peak, respectively. Both the total amount of GHG emission and its different components of CO 2 , CH 4 , and N 2 O increased with the increasing reclamation period of paddy fields. A positive correlation was found between the respective emission fluxes of CO2, CH 4 , and N 2 O and the available nitrogen and SOC, whereas a negative correlation was revealed between the fluxes of CO 2 , CH 4 , and N 2 O and soil pH and soil conductivity. The study is beneficial to assessing the impact of paddy reclamation on regional greenhouse gas emissions and is relevant to illustrating the mechanisms concerning the carbon cycle in paddy soils.
机译:温室气体排放的研究已成为全球关注的焦点,但是很少有研究考虑盐碱地的稻田。在果岭,分till,孕穗,抽穗和籽粒灌浆阶段收集了气体样品和盐碱土壤样品。检测CO 2,CH 4和N 2 O的排放通量以及pH,土壤可溶性盐,有效氮和土壤有机碳含量,以揭示盐水中温室气体(GHG)的排放规律和影响因素。碱性稻田。总体而言,稻田土壤在生长季节的温室气体排放量先升高后降低,然后再升高,并在孕穗期达到峰值。观察到CO 2和CH 4的发射通量分别具有两个峰和一个峰。随着稻田开垦周期的增加,温室气体的排放总量及其CO 2,CH 4和N 2 O的不同组成均增加。 CO 2,CH 4和N 2 O各自的排放通量与有效氮和SOC之间呈正相关,而CO 2,CH 4和N 2 O的通量与土壤pH之间呈负相关。和土壤电导率。该研究有益于评估稻田开垦对区域温室气体排放的影响,并有助于阐明有关稻田土壤碳循环的机制。

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