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氮肥对土壤氧化甲烷的影响研究 被引量:19
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作者 丁维新 蔡祖聪 《中国生态农业学报》 CAS CSCD 2003年第2期50-53,共4页
阐述了N肥用量、品种对土壤氧化甲垸(CH_4)的影响以及高浓度CH_4对这一影响的反作用,土壤可通过固定一定量的外源N确保土壤具有相对稳定的氧化大气CH_4能力,N含量低的土壤适量施用N肥可刺激甲烷氧化菌繁殖和功能的发挥,促进大气CH_4氧... 阐述了N肥用量、品种对土壤氧化甲垸(CH_4)的影响以及高浓度CH_4对这一影响的反作用,土壤可通过固定一定量的外源N确保土壤具有相对稳定的氧化大气CH_4能力,N含量低的土壤适量施用N肥可刺激甲烷氧化菌繁殖和功能的发挥,促进大气CH_4氧化。但当外源N用量超出一定范围时甲烷氧化菌Type Ⅰ对环境变化十分敏感,会产生抑制作用并表现为长期和短期2种效应,铵态氮具有短期更具长期效应,其直接结果是引起土壤中甲炕氧化菌尤其是Type Ⅰ数量的减少和作用的减弱,该抑制作用是单向、不可逆的。由于甲烷氧化菌Type Ⅰ和Ⅱ可被高浓度CH_4激活,不易受N肥的长期影响,有些水田土壤施用N肥甚至促进甲烷氧化菌繁殖,即N的影响是双向且可逆的。 展开更多
关键词 氮肥 土壤氧化甲烷 抑制机制 甲烷氧化
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氮输入和互花米草入侵下闽江河口潮滩土壤甲烷氧化速率研究 被引量:5
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作者 牟晓杰 刘兴土 +2 位作者 仝川 万斯昂 王纯 《湿地科学》 CSCD 北大核心 2017年第4期601-607,共7页
通过室内培养实验,研究了自然状态(对照)、外源铵态氮(NH_4Cl)和硝态氮(KNO_3)的3种浓度输入(1 g/m^2、2 g/m^2和4 g/m^2氮)和互花米草入侵下,闽江河口短叶茳芏(Cyperus malaccensis)潮滩土壤甲烷氧化速率。结果表明,与自然状态下相比,... 通过室内培养实验,研究了自然状态(对照)、外源铵态氮(NH_4Cl)和硝态氮(KNO_3)的3种浓度输入(1 g/m^2、2 g/m^2和4 g/m^2氮)和互花米草入侵下,闽江河口短叶茳芏(Cyperus malaccensis)潮滩土壤甲烷氧化速率。结果表明,与自然状态下相比,总体上,氨态氮输入促进了短叶茳芏潮滩土壤甲烷氧化,且随着氮输入浓度的增加,其促进作用逐渐增大;而硝态氮输入却抑制了短叶茳芏潮滩土壤的甲烷氧化,输入的硝态氮浓度越高,甲烷氧化速率越小;氮输入对潮滩土壤甲烷氧化速率无显著影响。互花米草(Spartina alterniflora)潮滩土壤的甲烷氧化速率高于短叶茳芏潮滩,互花米草入侵使潮滩土壤的甲烷氧化速率增加了22.66%。低、高浓度氮输入与互花米草入侵共同作用促进了潮滩土壤甲烷氧化,而中浓度氮输入与互花米草入侵共同作用却抑制了潮滩土壤甲烷氧化。潮滩土壤甲烷氧化速率与输入氮的类型、浓度、培养时间和土壤类型等有关。 展开更多
关键词 土壤甲烷氧化速率 氮输入 互花米草入侵 潮滩 闽江河口
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Advances of study on atmospheric methane oxidation (consumption) in forest soil 被引量:2
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作者 王琛瑞 史奕 +2 位作者 杨晓明 吴杰 岳进 《Journal of Forestry Research》 SCIE CAS CSCD 2003年第3期230-238,共9页
Next to CO2, methane (CH4) is the second important contributor to global warming in the atmosphere and global atmospheric CH4 budget depends on both CH4 sources and sinks. Unsaturated soil is known as a unique sink fo... Next to CO2, methane (CH4) is the second important contributor to global warming in the atmosphere and global atmospheric CH4 budget depends on both CH4 sources and sinks. Unsaturated soil is known as a unique sink for atmospheric CH4 in terrestrial ecosystem. Many comparison studies proved that forest soil had the biggest capacity of oxidizing atmospheric CH4 in various unsaturated soils. However, up to now, there is not an overall review in the aspect of atmospheric CH4 oxidation (consumption) in forest soil. This paper analyzed advances of studies on the mechanism of atmospheric CH4 oxidation, and re-lated natural factors (Soil physical and chemical characters, temperature and moisture, ambient main greenhouse gases con-centrations, tree species, and forest fire) and anthropogenic factors (forest clear-cutting and thinning, fertilization, exogenous aluminum salts and atmospheric deposition, adding biocides, and switch of forest land use) in forest soils. It was believed that CH4 consumption rate by forest soil was limited by diffusion and sensitive to changes in water status and temperature of soil. CH4 oxidation was also particularly sensitive to soil C/N, Ambient CO2, CH4 and N2O concentrations, tree species and forest fire. In most cases, anthropogenic disturbances will decrease atmospheric CH4 oxidation, thus resulting in the elevating of atmos-pheric CH4. Finally, the author pointed out that our knowledge of atmospheric CH4 oxidation (consumption) in forest soil was insufficient. In order to evaluate the contribution of forest soils to atmospheric CH4 oxidation and the role of forest played in the process of global environmental change, and to forecast the trends of global warming exactly, more researchers need to studies further on CH4 oxidation in various forest soils of different areas. 展开更多
关键词 Atmospheric methane Oxidation Global warming Forest soil SINK
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Advances in Greenhouse Gases Emission in Farmland Soils 被引量:2
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作者 王璐 蒋跃林 《Agricultural Science & Technology》 CAS 2012年第8期1738-1743,共6页
[Objective] The aim was to overview the emission of greenhouse gases in farmland. [Method] Based on domestic and foreign references, production mechanism, discharging characters and major influential factors of CO2, C... [Objective] The aim was to overview the emission of greenhouse gases in farmland. [Method] Based on domestic and foreign references, production mechanism, discharging characters and major influential factors of CO2, CH4 and N2O in soils of farmland were overviewed. [Result] Production and discharge of CO2, CH. and N2O played an important role in circulation of carbon and nitrogen in terrestrial ecosystem and constituted a key method for carbon and nitrogen output. It is significant to conduct research on reduction of greenhouse gas and increase of absorption. [Conclusion] The research is beneficial for exploration on discharge rule and influential factors of greenhouse gases, providing theoretical references for reduction of greenhouse gases and study on climate change. 展开更多
关键词 Farmland soils Carbon dioxide METHANE Nitrous oxide Emission flux influential factors
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Effects of Nitrogen Fertilizer,Soil Moisture and Temperature on Methane Oxidation in Paddy Soil 被引量:6
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作者 YANXIAOYUAN CAIZUCONG 《Pedosphere》 SCIE CAS CSCD 1996年第2期175-181,共7页
Effects of nitrogen fertilizer,soil moisture and temperature on methane oxidation in paddy soil were investigated under laboratory conditions. Addition of 0.05 g N kg-1 soil as NH4Cl strongly inhibited methane oxidati... Effects of nitrogen fertilizer,soil moisture and temperature on methane oxidation in paddy soil were investigated under laboratory conditions. Addition of 0.05 g N kg-1 soil as NH4Cl strongly inhibited methane oxidation and addition of the same rate of KCl also inhibited the oxidation but with more slight effect,suggesting that the inhibitory effect was partly caused by increase in osmotic potential in microorganism cell.Not only NH but also NO greatly affected methane oxidation.Urea did not affect methane oxidation in paddy soil in the first two days of incubation,but strong inhibitory effect was observed afterwards.Methane was oxidized in the treated soil with an optimum moisture of 280 g kg-1, and air-drying inhibited methane oxidation entirely.The optimum temperature of methane oxidation was about 30℃in paddy soil,while no methane oxidation was observed at 5℃or 50℃ 展开更多
关键词 methane oxidation nitrogen fertilizer paddy soil soil moisture TEMPERATURE
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Effects of Organic Manure Applications on Methane and Nitrous Oxide Emissions in Paddy Fields 被引量:2
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作者 WU Jia-mei JI Xiong-hui +5 位作者 PENG Hua XIE Yun-he GUAN Di TIANFa-xiang ZHU Jian HUO Lian-jie 《Agricultural Science & Technology》 CAS 2018年第2期36-48,共13页
This study was carried out in paddy fields to explore how organic manure applications would affect greenhouse emissions in South China. The results showed that the seasonal emission of CH4 under the chemical fertiliz... This study was carried out in paddy fields to explore how organic manure applications would affect greenhouse emissions in South China. The results showed that the seasonal emission of CH4 under the chemical fertilizer (CF) treatment was 271.47 kg/hm^2. In comparison, the seasonal emissions of CH4 under the treatment of pig manure (PM), chicken manure (CM) and rice straw (RS) increased by 50.61,260.22 and 602.82 kg/hm^2, respectively. N2O emission under the CF treatment was 1.22 kg/hm^2, while the N20 seasonal emissions under tile PM, CM and RS treatment decreased by 23.6% (P〈0.05), 31.7% (P〈0.05) and 30.9% (P〈0.05), respectively. Meanwhile, the readily oxidized organic carbon (which was oxidized by 167 mmol/L potassium permanganate, ROC167) of manure, paddy soil Eh value and temperature could also affect the CH4 emissions. The average yield of the organic fertilizer treatments increased by 6.8% compared with that of the CF treatment. Among all the organic fertilizer treatments, the PM treatment offered the lowest global warming potential and greenhouse gas intensity, in which the PM was of no significant difference from NF (no fertilizing) and CF. Therefore, the pig manure is capable of coordinating the relationship between environment and yield, and it also has a low ROC167 content, so the PM is considered worthy of recommendation. 展开更多
关键词 Paddy field Methane emission Nitrous emission Soil Eh value Readily oxidized organic carbon Greenhouse gas intensity
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