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1.
根据IPCC Guidelines(1995)提供的方法,对1990年江浙沪地区农业生产过程中温室气体排放进行了统计计算。农业生产中主要的温室气体排放是甲烷,江浙沪地区农业生产中CH4排放量为2203Gg,而CH4的排放主要来自水稻田,占总农业部门CH4排放的80.3%。  相似文献   

2.
《农业环境与发展》1998,15(1):17-22
大气中温气体含量的不断增加是影响今后气候变化的重要因素,如何减少温室气体的排放是当今世界各国十分关注的问题,本文根据当前我国农业生产及农村经济状况,研究了农业减排温室气体各种可能途径,并初步分析了各种途径的减排潜力及存在的问题,为我国政府及有关部门应因气候变化的决策工作提供依据。  相似文献   

3.
旱地土壤温室气体排放影响因子及减排增汇措施分析   总被引:10,自引:0,他引:10  
农田既是主要的温室气体排放源之一,也是潜在的碳汇。本文分析了影响农田土壤特别是旱地农田土壤中二氧化碳和氧化亚氮排放的主要影响因子,包括土壤温度、土壤水分、土壤特性以及施肥与耕作等人为因素;提出了施用有机肥、合理施用氮肥、保护性耕作、秸秆还田、使用抑制剂等农业土壤减排增汇的主要措施,并对其操作和实施的可行性进行了剖析。  相似文献   

4.
农业减排温室气体的技术措施   总被引:9,自引:0,他引:9  
大气中温室气体含量的不断增加是影响今后气候变化的重要因素。如何减少温室气体的排放是当今世界各国十分关注的问题。本文根据当前我国农业生产及农村经济状况,研究了农业减排温室气体的各种可能途径,并初步分析了各种途径的减排潜力及存在的问题,为我国政府及有关部门应因气候变化的决策工作提供依据  相似文献   

5.
农田土壤温室气体排放机理与影响因素研究进展   总被引:50,自引:2,他引:50  
根据近几年国内外相关文献,对农田土壤中二氧化碳,甲烷与氧化亚氮排放相关机理及影响因子进行了归纳,并介绍了动物废弃物施用于农田土壤所导致的温室气体排放的变化情况,同时还对一些与土壤温室气体排放影响因素有关的定量模拟方程进行了介绍。  相似文献   

6.
试验设对照、尿素、尿素+草甘膦和尿素+丁草胺4个处理,尿素氮用量为200mg·kg-1干土,除草剂用量为10mg有效成分·kg-1干土。在实验室恒温培养条件下,研究除草剂对菜田土壤温室气体排放的影响。结果表明,菜田土壤中施用氮肥显著增加了温室气体N2O、CO2和CH4的排放。尿素氮肥中添加草甘膦显著抑制N2O、CO2的排放,分别比尿素处理降低48.4%和20.2%;添加丁草胺显著抑制N2O排放,比尿素处理降低23.2%,对CO2排放略有减少但不显著;草甘膦和丁草胺对CH4排放都无明显影响。这说明除草剂对土壤温室气体的排放具有显著影响,但不同除草剂品种的效应也存在明显差异。因此,在农田温室气体排放估算时应考虑除草剂的施用对温室气体减排所产生的效果。  相似文献   

7.
中国畜禽温室气体排放量估算   总被引:26,自引:2,他引:24  
为探明中国畜禽温室气体排放量及其趋势,该研究在政府间气候变化专家委员会(IPCC,2006)最新公布的畜禽温室气体排放系数和计算方法的基础上,结合中国畜牧业发展实际,估算了全国2000-2007年和各省区2007年畜禽温室气体的排放量。结果表明,全国年平均排放甲烷总量1 002.7万t,氧化亚氮总量57.7万t;2000-2007年期间全国畜禽温室气体排放量总体呈下降的趋势,黄牛甲烷排放量最大,生猪氧化亚氮排放量最大;各省区畜禽温室气体排放量呈现区域集中特点,居前2位的是四川省和河南省。要减少中国畜禽温室  相似文献   

8.
中国农业温室气体减排潜力及其政策意涵   总被引:2,自引:0,他引:2  
通过农业温室气体减排GTAP-E模型及其数据库构建,模拟了中国农业温室气体减排潜力及其政策意涵,其结论为:农业温室气体减排5%,我国GDP将降低0.059%,社会福利将提高11.6亿美元;水稻的价格上升22.08%,其他农作物价格上升2.9%;牛羊类的价格上升163.43%,猪禽类的价格上升0.57%,其他畜产品价格下降0.98%。农业温室气体减排5%降低了我国农产品在国际市场上的竞争力,使得农产品的出口大大下降,但是却提高了其他部门的出口,导致我国净出口增加了45.5亿美元,农业征收排放税的税收收入为223.11亿美元。  相似文献   

9.
减缓农业生产中温室气体排放的对策及其经济可行性初探   总被引:7,自引:1,他引:7  
探讨了减缓农业生产中温室气体排放的各种可能途径,如:改进土地利用格局,减少农业系统碳C分离,增加生物燃料生产,提高饲料质量,开发沼气生产,加强稻田水肥管理等等,并初步讨论了实施这些减排措施的经济可行性问题。  相似文献   

10.
农业微环境对土壤温室气体排放的影响   总被引:1,自引:2,他引:1  
二氧化碳(CO  相似文献   

11.
不同有机肥对稻田温室气体排放及产量的影响   总被引:8,自引:4,他引:4  
为研究有机肥施入稻田对温室气体排放的影响,设置猪粪、鸡粪和稻草分别与化肥混施处理,利用静态箱法-气相色谱仪监测稻田甲烷(CH_4)和氧化亚氮(N_2O)排放通量并进行分析。研究结果表明,化肥处理(CF)CH_4季节排放为202.1、279.9和332.5 kg/hm~2,与猪粪(PM)无显性差异,明显低于鸡粪(CM)和稻草(RS)处理;CF处理N_2O排放总量最高,与有机肥处理无显著性差异;CH_4季节排放通量与土壤Eh值呈极显著负相关关系,与土壤温度呈极显著正相关关系;肥料中不同活性有机碳质量分数为18.4~114.5 g/kg,肥料中被167 mmol/L高锰酸钾氧化的有机碳(ROC167)与稻田CH_4排放总量呈显著正相关关系(相关系数为0.872,P0.05);施有机肥第三年水稻平均产量比CF处理增加14.3%(P0.05);不同有机肥中,以PM处理的增温潜势和温室气体排放强度最小,与不施肥和CF处理无显著性差异,猪粪的ROC167含量低,能较好的协调环境与产量之间关系,是值得推荐的有机肥种类。  相似文献   

12.
ABSTRACT

Paddy fields are considered as one of the most important sources of anthropogenic methane (CH4) and nitrous oxide (N2O) emissions. While several technical options have been proposed to reduce these emissions, gaps in data and information based on application of these options in the field are a key barrier to scaling-up. To address these gaps, we conducted a review of literature to analyze the potential of technical options in Southeast Asia (SEA). Using screening criteria based on reliability of experimental data, 31 region-specific cases were selected for the analysis. A meta-analysis indicated that water management options, including single and multiple drainage approaches such as alternative wetting and drying (AWD), significantly reduced CH4 emissions by 35% as a mean effect size (95% confidential interval: 41–29%), as well as the combined effects of CH4+N2O (net GWP) by 29% (36–23%). The effect on reducing CH4 emissions in the dry season was significantly larger than that in the wet season. Application of biochar reduced both CH4 and N2O emissions by 20% (40% to ?7%), while significantly increased rice yield by 28% (8–52%). Other options such as removal of rice straw from the previous crop, composting rice straw and manure, application of sulfate-containing fertilizer, and soil drying in the fallow season also have recognized potential to reduce emissions but require further data and consideration of possible trade-offs. Based on the analysis of mitigation potential, promising technical options were assessed by considering together with constraints and additional co-benefits in order to provide a useful guide for policy makers and rice value chain operators in SEA countries for adopting mitigation options in rice cultivation to tackle climate change and enhance agriculture sector sustainability.  相似文献   

13.
牛粪堆肥方式对温室气体和氨气排放的影响   总被引:7,自引:1,他引:7  
为明确堆肥过程中温室气体和氨气排放规律以及产生的总温室效应,在云南省大理州开展堆肥试验,并以奶牛粪便为试验材料,研究了农民堆肥(FC)、覆盖堆肥(CC)、覆盖-翻堆堆肥(CTC)和覆盖通风-翻堆堆肥(CATC)4种堆肥方式对温室气体和氨气排放的影响。结果表明:覆盖通风-翻堆堆肥(CATC)可提高堆肥腐熟度,有效降低CH4和N_2O排放,但并没降低CO2和NH_3排放;与农民堆肥(FC)相比,覆盖堆肥(CC)的CH4排放量增加了48.7%,而N2_O和NH3排放量与农民堆肥(FC)基本一致;覆盖-翻堆堆肥(CTC)虽然提高了腐熟度,但CH_4、CO_2和NH_3排放量较大;堆肥结束时,4个处理的总温室效应分别为25.6、32.9、38.1及18.0 kg/t;温度与CH_4、CO_2、N_2O和NH_3排放速率均极显著相关,pH值显著影响N_2O和NH_3的排放。因此,覆盖通风-翻堆堆肥(CATC)不仅能够满足堆肥产品的腐熟度要求,而且能够减少总温室效应,再加上其操作简便,能够在生产中推广应用。  相似文献   

14.
15.
Application of sewage sludge on agricultural land becomes more and more common in many parts of the world in order to recycle the nutrients from the sludge. A range of sewage sludge stabilization techniques are available to make the sludge more stable prior to storage, transportation, and application. These stabilization techniques include dewatering, drying, anaerobic digestion, composting, and reed bed sludge treatment. However, very few studies have investigated the effect of these techniques after the sludge has been applied to agricultural land. The objective of the current study was therefore to investigate the effect of sewage sludge stabilization techniques on the C and N mineralization and gaseous emissions from soil. A soil incubation was conducted to determine the rate of C and N mineralization and N2O and CH4 emissions of sewage sludge stabilized using different techniques. Unstabilized sludge released up to 90% of their C content as CO2, part of which could be caused by release of CO2 from carbonates. Compared with this, sludge stabilization including anaerobic digestion and drying resulted in a reduction of the C mineralization rate of about 40%. Liming reduced C mineralization with around 29%, while treatment in a reed bed system reduced it by 74%. The current study thus clearly demonstrated that stabilization techniques resulted in sludge that was more stable once they were applied to agricultural land. Stabilization also reduced the N immobilization phase, potentially improving the value of the sludge as a fertilizer. Emissions of CH4 were also reduced through sludge stabilization and mainly occurred after application of easily degradable sludge types, which is likely to have enhanced the creation of anaerobic microsites. The stabilization processes also decreased emissions of N2O. The results for both CH4 and N2O indicate that the stabilization tends to reduce the chance of developing conditions where these gases could be produced.  相似文献   

16.
Abstract. Grassland is a major source of nitrous oxide (N2O) and methane (CH4) emissions in the UK, resulting from high rates of fertilizer application. We studied the effects of substituting mineral fertilizer by organic manures and a slow-release fertilizer in silage grass production on greenhouse gas emissions and soil mineral N content in a three-year field experiment. The organic manures investigated were sewage sludge pellets and composted sewage sludge (dry materials), and digested sewage sludge and cattle slurry (liquid materials). The organic manures produced N2O and carbon dioxide (CO2) consistently from time of application up to harvest. However, they mitigated N2O emissions by around 90% when aggregate emissions of 15.7 kg N ha−1 from NPK fertilizer were caused by a flux of up to 4.9 kg N ha−1 d−1 during the first 4 days after heavy rainfall subsequent to the NPK fertilizer application. CH4 was emitted only for 2 or 3 days after application of the liquid manures. CH4 and CO2 fluxes were not significantly mitigated. Composting and dried pellets were useful methods of conserving nutrients in organic wastes, enabling slow and sustained release of nitrogen. NPK slow-release fertilizer also maintained grass yields and was the most effective substitute for the conventional NPK fertilizer for mitigation of N2O fluxes.  相似文献   

17.
畜禽粪便堆放管理会造成甲烷(CH_4)和氧化亚氮(N_2O)等温室气体的大量排放。通过联合国政府间气候变化专门委员会(IPCC)建议的排放系数等方法,可以实现对某一区域范围内畜禽粪便管理系统的温室气体排放总量的估算,但由于其排放受粪便管理、气候条件等因素的显著影响,直接套用IPCC的默认系数会产生较大的误差。为更加准确估算中国奶牛粪便管理所造成的CH_4、N_2O排放,该文在对北京延庆区奶牛生产与粪便管理模式进行了实地调研的基础上,采用动态箱法模拟了奶牛粪便不同季节短时自然堆放管理模式下的CH_4、N_2O排放过程,并对区域内的年温室气体排放总量进行了测算。研究结果表明,奶牛粪便在一个月的自然堆放管理模式下,每千克牛粪挥发性固体在春、夏、秋季的CH_4排放量分别为223.97、4 603.31、351.38 mg,每千克牛粪N_2O排放量分别为5.86、9.43、0.81 mg。2016年北京延庆区全年奶牛粪便CH_4、N_2O排放总量分别为13 342.50、347.87 kg。延庆区奶牛粪便堆放管理过程的CH_4排放因子为1.50kg/(头·a),小于IPCC指南中的1.78 kg/(头·a);受堆放时间较短的影响,N_2O的排放因子则显著小于IPCC的推荐值。若直接使用IPCC默认参数估算延庆区奶牛粪便堆放管理过程中的CH_4和N_2O排放量,会造成排放量的高估。  相似文献   

18.
We investigated the effect of increasing soil temperature and nitrogen on greenhouse gas (GHG) emissions [carbon dioxide (CO2), methane (CH4) and nitrous oxide (N2O)] from a desert steppe soil in Inner Mongolia, China. Two temperature levels (heating versus no heating) and two nitrogen (N) fertilizer application levels (0 and 100?kg?N?ha?1?year?1) were examined in a complete randomized design with six replications. The GHG surface fluxes and their concentrations in soil (0 to 50?cm) were collected bi-weekly from June 2006 to November 2007. Carbon dioxide and N2O emissions were not affected by heating or N treatment, but compared with other seasons, CO2 was higher in summer [average of 29.6 versus 8.6?mg carbon (C) m?2?h?1 over all other seasons] and N2O was lower in winter (average of 2.6 versus 4.0?mg?N?m?2?h?1 over all other seasons). Desert steppe soil is a CH4 sink with the highest rate of consumption occurring in summer. Heating decreased CH4 consumption only in the summer. Increasing surface soil temperature by 1.3°C or applying 100?kg?ha?1?year?1 N fertilizer had no effect on the overall GHG emissions. Seasonal variability in GHG emission reflected changes in temperature and soil moisture content. At an average CH4 consumption rate of 31.65?µg?C?m?2?h?1, the 30.73 million ha of desert steppe soil in Inner Mongolia can consume (sequestrate) about 85?×?106?kg CH4-C, an offset equivalent to 711?×?106?kg CO2-C emissions annually. Thus, desert steppe soil should be considered an important CH4 sink and its potential in reducing GHG emission and mitigating climate change warrants further investigation.  相似文献   

19.
覆盖及堆积高度对肉牛粪便温室气体排放的影响   总被引:3,自引:1,他引:3  
为了研究覆盖对不同堆积高度肉牛固体粪便温室气体(N2O、CH4和 CO2)排放量的影响,试验采用静态箱的方法研究了20和40 cm堆积高度时覆盖或者不覆盖情况下肉牛粪便温室气体的排放量。结果表明,堆积40 cm的牛粪CH4的累积排放量显著高于20 cm处理,而N2O和CO2累积排放量显著降低。覆盖显著增加了牛粪N2O的排放量和40 cm高度牛粪的CH4排放量,降低了40 cm高度牛粪CO2的排放量,而对20 cm高度牛粪CH4和CO2排放无显著影响。根据CH4和N2O在100 a 尺度上相对CO2的全球增温潜势计算出综合温室效应,无覆盖处理的20和40 cm牛粪的综合温室效应分别为(101.07±6.28)和(94.67±3.29)g/kg,覆盖处理的20和40 cm牛粪的综合温室效应分别为(104.20±6.78)和(103.43±3.21)g/kg,堆积高度为40 cm且无覆盖的综合温室效应最小。  相似文献   

20.
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