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1.
猪粪堆肥过程保氮固磷及温室气体(N2O)减排研究   总被引:11,自引:7,他引:4  
针对畜禽粪便堆肥过程存在的氮素流失与温室气体(N2O)排放及畜禽粪便堆肥产品土地利用过程的磷素流失等不足,采用强制通风反应器堆肥系统进行小试规模的猪粪堆肥试验,以改性赤泥和改性镁橄榄石为添加剂,考察和比较了这2种改性金属盐添加剂在猪粪堆肥过程对氮磷保存与温室气体(N2O)减排的效果.结果表明,添加改性镁橄榄石(pH=7...  相似文献   

2.
The aim of this study was to uncover ways to mitigate greenhouse gas(GHG) emissions and reduce energy consumption during the composting process. We assessed the effects of different aeration rates(0, 0.18, 0.36, and 0.54 L/(kg dry matter(dm)·min)) and methods(continuous and intermittent) on GHG emissions. Pig feces and corn stalks were mixed at a ratio of 7:1. The composting process lasted for 10 weeks, and the compost was turned approximately every 2 weeks. Results showed that both aeration rate and method significantly affected GHG emissions. Higher aeration rates increased NH3 and N2O losses,but reduced CH4 emissions. The exception is that the CH4 emission of the passive aeration treatment was lower than that of the low aeration rate treatment. Without forced aeration,the CH4 diffusion rates in the center of the piles were very low and part of the CH4 was oxidized in the surface layer. Intermittent aeration reduced NH3 and CH4 losses, but significantly increased N2 O production during the maturing periods. Intermittent aeration increased the nitrification/denitrification alternation and thus enhanced the N2 O production. Forced aeration treatments had higher GHG emission rates than the passive aeration treatment. Forced aeration accelerated the maturing process, but could not improve the quality of the end product. Compared with continuous aeration, intermittent aeration could increase the O2 supply efficiency and reduced the total GHG emission by 17.8%, and this reduction increased to 47.4% when composting was ended after 36 days.  相似文献   

3.
Wastewater treatment systems are important anthropogenic sources of CH4emission. A full-scale experiment was carried out to monitor the CH4 emission from anoxic/anaerobic/oxic process(A2O) and sequencing batch reactor(SBR) wastewater treatment plants(WWTPs) for one year from May 2011 to April 2012. The main emission unit of the A2O process was an oxic tank, accounting for 76.2% of CH4emissions; the main emission unit of the SBR process was the feeding and aeration phase, accounting for 99.5% of CH4emissions. CH4can be produced in the anaerobic condition, such as in the primary settling tank and anaerobic tank of the A2O process. While CH4can be consumed in anoxic denitrification or the aeration condition, such as in the anoxic tank and oxic tank of the A2O process and the feeding and aeration phase of the SBR process. The CH4emission flux and the dissolved CH4concentration rapidly decreased in the oxic tank of the A2O process. These metrics increased during the first half of the phase and then decreased during the latter half of the phase in the feeding and aeration phase of the SBR process. The CH4oxidation rate ranged from 32.47% to 89.52%(mean: 67.96%) in the A2O process and from 12.65% to 88.31%(mean: 47.62%) in the SBR process. The mean CH4 emission factors were 0.182 g/ton of wastewater and 24.75 g CH4 /(person·year) for the A2O process, and 0.457 g/ton of wastewater and 36.55 g CH4 /(person·year) for the SBR process.  相似文献   

4.
污泥堆肥及其土地利用全过程的温室气体与氨气排放特征   总被引:2,自引:6,他引:2  
目前我国污泥堆肥及其土地利用全过程的温室气体(N2O、CH4)与氨气(NH3)排放数据极其缺乏,难以满足温室气体减排和氮素保存的需求.本研究通过原位观测,首次开展污泥堆肥及其土地利用全过程温室气体和氨气排放特征的研究.结果表明,基于机械翻堆条垛(turning windrow,TW)工艺的全过程温室气体排放因子(eCO2/干污泥,196.21 kg·t-1)是基于强制通风+机械翻堆条垛(aerated turning pile,ATP)工艺的1.61倍.N2O主要来自土地利用过程,CH4主要来自堆肥过程.ATP工艺的温室气体排放当量(eCO2/干污泥,12.47 kg·t-1)远低于TW工艺(eCO2/干污泥,86.84 kg·t-1).TW工艺的氨气排放因子(NH3/干污泥,6.86 kg·t-1)略高于ATP工艺(NH3/干污泥,6.63 kg·t-1).NH3是全过程最主要的N素损失形式,其中TW和ATP堆肥工艺因NH3排放造成的氮素损失相当,均约占堆料TN损失量的30%.而N2O和CH4带来的N、C元素的损失可以忽略不计.这些结果表明ATP是一种环境友好的污泥堆肥工艺.  相似文献   

5.
为实现堆肥过程N2O、CH4和NH3的同步减排,在双氰胺和氢醌的基础上进一步研究磷石膏和过磷酸钙添加对猪粪堆肥温室气体和NH3排放的影响.以猪粪和玉米秸秆为堆肥原料,设置3个堆肥处理:只添加双氰胺和氢醌(HD)、添加双氰胺、氢醌和磷石膏(HD+P)和添加双氰胺、氢醌和过磷酸钙(HD+S),在60L的发酵罐中进行40d的...  相似文献   

6.
Gaseous emission (N2O, CH4 and NH3) from composting can be an important source of anthropogenic greenhouse gas and air pollution. A laboratory scale orthogonal experiment was conducted to estimate the effects of C/N ratio, aeration rate and initial moisture content on gaseous emission during the composting of pig faeces from Chinese Ganqinfen system. The results showed that about 23.9% to 45.6% of total organic carbon (TOC) was lost in the form of CO2 and 0.8% to 7.5% of TOC emitted as CH4. Most of the nitrogen was lost in the form of NH3, which account for 9.6% to 32.4% of initial nitrogen. N2O was also an important way of nitrogen losses and 1.5% to 7.3% of initial total nitrogen was lost as it. Statistic analysis showed that the aeration rate is the most important factor which could affect the NH3 (p = 0.0189), CH4 (p = 0.0113) and N2O (p = 0.0493) emissions significantly. Higher aeration rates reduce the CH4 emission but increase the NH3 and N2O losses. C/N ratio could affect the NH3 (p = 0.0442) and CH4 (p = 0.0246) emissions significantly, but not the N2O. Lower C/N ratio caused higher NH3 and CH4 emissions. The initial moisture content can not influence the gaseous emission significantly. Most treatments were matured after 37 days, except a trial with high moisture content and a low C/N ratio.  相似文献   

7.
施用畜禽粪便堆肥品的蔬菜地CH4、N2O和NH3排放特征   总被引:4,自引:3,他引:1  
农田是重要的温室气体排放来源之一,其中蔬菜地的温室气体排放日益受到人们关注.以北京市郊某温室种植的油麦菜地为研究对象,通过大棚试验,考察和比较了油麦菜地施用不同类型畜禽粪便堆肥产品的CH4、N2O和NH3排放特征及其影响因素.结果表明,油麦菜地NRM、RM、CF处理的CH4排放系数分别为0.2%、0.027%、0.004%;N2O排放系数分别为0.18%、0.63%、0.74%;NH3排放系数分别为2.00%、3.98%、2.53%.CH4排放通量与土壤温度和地表湿度相关,N2O排放通量与土壤温度、地表温度和湿度相关,CH4、N2O和NH3排放通量均受土壤含水率影响,而温室中的气温不是影响CH4、N2O和NH3排放的主要因素.  相似文献   

8.
不同用量竹炭对污泥堆肥过程温室气体排放的影响   总被引:1,自引:2,他引:1  
向秋洁  杨雨浛  张成  相欣奕  木志坚 《环境科学》2017,38(10):4390-4397
采用城市污泥为堆肥基质,设置4个堆肥处理,分别为添加2.5%竹炭(S1,占污泥的质量分数)、添加5%竹炭(S2)、添加10%竹炭(S3)和未添加竹碳(CK),研究城市污泥堆肥过程中温室气体的动态变化特征及添加不同用量竹炭的影响.结果表明,CH_4排放主要在升温期和高温前期,占排放总量的99.01%~99.81%.当竹炭添加量低于5%时,CH_4排放量随添加量的增加而减少;竹炭添加量高于5%时,其排放量又明显增加.CO_2排放集中在升温期和高温期,占排放总量的75.65%~86.58%;添加竹炭可减少3.37%~13.48%的CO_2排放,但处理间不存在显著差异(P0.05).N_2O排放集中在升温期和降温腐熟期,添加竹炭能减少16.37%~41.52%的N_2O排放,竹炭添加量越多,减排效果越好(P0.05).S1、S2和S3处理CO_2排放当量(以干污泥计)分别为37.57、35.10和35.44 kg·t~(-1),比CK处理减少了14.81%~20.41%.添加竹炭能降低污泥堆肥温室气体排放,其中,以S2处理的减排效果较为显著.  相似文献   

9.
双氰胺对冬闲稻田和油菜地N2O排放的影响   总被引:2,自引:0,他引:2  
冬季的温室气体排放往往被忽视,而最新的研究结果表明,冬闲稻田和冬季油菜地N_2O排放仍较大,研究相应的减排措施及减排机制对于减少农田土壤N_2O排放有重要意义.在中国科学院桃源农业生态试验站选择冬闲稻田和油菜地两种不同土地利用方式,并设置添加和不添加双氰胺(DCD)处理,采用静态箱采集和气相色谱法结合监测N_2O排放动态,利用分子生物学手段分析氨氧化古菌(AOA)和氨氧化细菌(AOB)的群落结构和丰度变化.结果表明,添加DCD后明显抑制了冬闲稻田和油菜地N_2O排放,分别减少了36.7%和23.6%.DCD施入抑制了冬闲稻田AOA和AOB的丰度但只改变AOA的群落结构,DCD使AOA和AOB丰度分别减少了59.3%和73.7%.与此相反,添加DCD只改变油菜地AOB的群落结构同时只抑制了AOB的丰度.本研究表明,施加DCD能有效减少冬闲稻田和冬季油菜地N_2O排放,但减排机制不一致.  相似文献   

10.
Minimizing soil ammonia (NH3) and nitrous oxide (N2O) emission factors (EFs) has significant implications in regional air quality and greenhouse gas (GHG) emissions besides nitrogen (N) nutrient loss. The aim of this study was to investigate the impacts of different N fertilizer treatments of conventional urea, polymer-coated urea, ammonia sulfate, urease inhibitor (NBPT, N-(n-butyl) thiophosphoric triamide)-treated urea, and nitrification inhibitor (DCD, dicyandiamide)-treated urea on emissions of NH3 and GHGs from subtropical wheat cultivation. A field study was established in a Cancienne silt loam soil. During growth season, NH3 emission following N fertilization was characterized using active chamber method whereas GHG emissions of N2O, carbon dioxide (CO2), and methane (CH4) were by passive chamber method. The results showed that coated urea exhibited the largest reduction (49%) in the EF of NH3-N followed by NBPT-treated urea (39%) and DCD-treated urea (24%) over conventional urea, whereas DCD-treated urea had the greatest suppression on N2O-N (87%) followed by coated urea (76%) and NBPT-treated urea (69%). Split fertilization of ammonium sulfate-urea significantly lowered both NH3-N and N2O-N EF values but split urea treatment had no impact over one-time application of urea. Both NBPT and DCD-treated urea treatments lowered CO2-C flux but had no effect on CH4-C flux. Overall, application of coated urea or urea with NPBT or DCD could be used as a mitigation strategy for reducing NH3 and N2O emissions in subtropical wheat production in Southern USA.  相似文献   

11.
畜禽粪肥在贮存阶段养分损失严重,是CO_2、CH_4、NH_3和N_2O等大气污染物的重要排放来源.本文采用室内培养方法,研究了添加黄土、秸秆、生物炭和膨润土对猪粪贮存过程中氨气及温室气体排放的影响.结果表明,添加10%用量的生物炭和膨润土处理的CO_2累积排放量与不添加任何添加物的猪粪对照相比分别降低了15.4%和20.9%,N_2O累积排放量分别降低了19.8%和37.6%.添加膨润土处理的NH_3损失量显著增加,但添加生物炭和膨润土处理的综合温室效应与猪粪对照相比均显著降低.添加10%秸秆处理的CH_4和NH_3累积排放量分别较猪粪对照降低了56.8%和95.8%,但其综合温室效应与对照相比差异不显著.模拟黄土垫圈过程添加黄土处理的氨气及温室气体累积排放量均显著降低,综合温室效应显著低于其他处理(p0.05).可见,黄土垫圈是保蓄粪肥碳、氮养分的有效措施,猪粪贮存阶段添加少量生物炭、膨润土对于减少粪肥综合温室效应具有积极作用.  相似文献   

12.
施用不同污泥堆肥品对土壤温室气体排放的影响   总被引:2,自引:1,他引:2  
杨雨浛  易建婷  张成  陈宏  木志坚 《环境科学》2017,38(4):1647-1653
通过田间试验,分别施加两种不同的污泥堆肥品(A:含生物质炭堆肥品,B:不含生物质炭堆肥品)和不同施肥量,分析土壤CO2、CH4和N2O动态变化特征和排放系数,研究施用污泥堆肥品对土壤温室气体排放的影响.结果表明,土壤CO2和CH4排放主要集中在生长期,生物质炭堆肥品低施用量能减少CO2排放,而高施肥量增加CO2排放.CH4排放主要为负值,总体表现为土壤吸收CH4,对照处理吸收量远高于其他处理(P<0.01),A组处理CH4吸收量随施肥量的增加而增加(P<0.05).N2O排放集中在发芽期和幼苗期,施肥量越高,排放量越大(P<0.01).污泥堆肥品农用过程排放的温室气体主要是N2O,施用A、B两种污泥堆肥品的土壤N2O排放系数分别为1.02%~1.90%和1.28%~2.93%.生物质炭堆肥品具有显著的碳减排效果,其温室气体排放量比不含生物质炭堆肥品的土壤低19.49%~35.56%,且对于N2O的减排效果较CH4更为显著.  相似文献   

13.
不同肥料施用对设施菠菜地NH3挥发和N2O排放的影响   总被引:5,自引:0,他引:5  
山楠  韩圣慧  刘继培  陈清  袁玉玲  王立刚  李虎 《环境科学》2018,39(10):4705-4716
以湖南设施菠菜地为研究对象,采用通气法和静态箱-气相色谱法研究了设施菠菜生长季施用工厂化堆肥(SC)、农民传统堆肥(SS)和单施化肥(FC)对土壤NH_3和N_2O排放的影响.结果表明在同等施氮水平下,与FC相比,SC处理能减少NH_3和N_2O排放量,分别减少52.9%和95.12%(P0.01);SS处理则增加NH_3挥发量24.8%,减少N_2O排放量48.8%.不同处理NH_3损失率分别为SS(10.97%)FC(4.19%)SC(2.74%);N_2O排放系数分别为FC(4.50%)SC(2.21%)SS(0.60%);与FC处理相比,SC处理条件下菠菜产量和作物吸氮量分别降低19.61%和13.20%,差异不显著;SS处理则显著降低27.9%和40.0%(P0.05).在该地区冬季设施菠菜田中,影响NH_3和N_2O排放的主要因素为土壤水分,环境温度不是此研究中影响气体排放的主要因素.因此,畜禽养殖固体废弃物经过不同处理后作为有机肥施入菠菜田,SC处理的菠菜可保证产量的同时,减少NH_3挥发和N_2O排放损失.  相似文献   

14.
氮肥与DCD配施对棚室黄瓜土壤NH3挥发损失及N2O排放的影响   总被引:4,自引:0,他引:4  
以传统水氮管理为对照,进行了优化水氮管理条件下氮肥与DCD配施对大棚黄瓜土壤氨挥发损失及氧化亚氮排放的影响研究.试验结果表明,与传统水氮管理相比,优化水氮管理减少了氮肥用量及灌水量,但黄瓜产量并没有降低.各水氮处理的NH3挥发速率峰值出现在施肥灌水后的第3d,添加DCD的各优化水氮处理与传统水氮处理相比,土壤氨挥发累积量分别减少55.97%、43.68%、66.47%,4次追肥后W2N2+DCD、W2N3+DCD和W2N4+DCD的氨挥发速率峰值与累积量变化范围较小.不同水氮处理的N2O排放通量的峰值均出现在施肥灌水后的第4d,各追肥时期W2N2+DCD、W2N3+DCD和W2N4+DCD处理,土壤N2O排放通量峰值与N2O累计排放量均显著低于传统水氮处理W1N1,并且3个处理之间不存在显著差异,充分表明优化水氮管理中将氮肥与DCD配施对减少N2O排放起到了显著作用.  相似文献   

15.
选择海南典型的水稻-豇豆轮作系统进行氧化亚氮(N_2O)和甲烷(CH_4)排放的原位监测,探究不同施肥模式下该系统土壤温室气体排放特征.试验设当地常规施肥对照(CON)、优化施肥量(OPT)、有机无机配施(ORG)、缓控肥替代优化(SCOPT)及不施氮对照(CK)共5个处理,采用静态箱-气相色谱法监测整个种植季土壤N_2O和CH_4排放,并估算增温潜势(GWP)和温室气体排放强度(GHGI).结果表明,各处理水稻季N_2O累积排放量为0. 19~1. 37 kg·hm~(-2),相较于CON处理,优化施肥处理N_2O减排50%~86%;豇豆季N_2O累积排放量为1. 29~3. 55 kg·hm~(-2),除ORG增加14%,其他处理减排16%~59%.各处理水稻季CH_4累积排放量为4. 67~14. 23 kg·hm~(-2),CK、OPT和ORG处理分别较CON增加116%、22%和102%,而SCOPT减少了29%;豇豆季CH_4累积排放量为0. 03~0. 26 kg·hm~(-2),期间出现CH_4吸收.比较两个作物季和休闲期对农田土壤直接排放的温室气体GWP的贡献率,豇豆季在CH_4排放极低的情况下,仍有44. 7%~54. 5%的占比;两种温室气体比较中,N_2O对GWP的贡献率为66. 7%~77. 2%. SCOPT处理的GWP和两季作物GHGI均显著低于CON处理.3个优化施肥处理中,SCOPT的增产减排效果最显著,为最优的施肥方案.  相似文献   

16.
Stored solid manure heaps can be a significant source of nitrous oxide (N2O) and methane (CH4) emissions. The manure characteristics influence emissions and solid manure heaps can be managed to promote aerobic decomposition during storage. Increasing the carbon (C) content of the manure heap with high-C additives, such as straw, may provide the opportunity for N2O and CH4 emission reduction. Greenhouse gas (GHG) emissions from conventionally produced farmyard manure (FYM) have been quantified, but there is little data on emissions from organically produced FYM. N2O and CH4 emissions were measured using a small-scale storage method from FYM collected from organic and conventional dairy units under a range of storage conditions with and without extra straw addition.The organic and the conventional FYM were similar in composition except for the higher C and dry matter content in the organic FYM and in the FYM with added straw. This resulted in mean total emissions of N2O and CH4 being lower from the organic (27 g N t−1) than the conventional FYM (52 g N t−1) and from the treatments with straw added (32 g N t−1) than those without (47 g N t−1). The initial C:N ratio and dry matter content of the stored FYM were the most important factors affecting N2O and CH4 emissions although the FYM temperature also affected CH4 emissions. Adding high-C additives, such as straw could be a promising strategy for reducing GHG emissions because it influences the dry matter content, C:N ratio and aeration of the manure. The small-scale FYM storage method were shown to be a reliable and an easy method to quantify emissions under a range of environmental conditions and manure manipulations and so develop effective manure management practices to reduce GHG emissions.  相似文献   

17.
不同施氮处理下旱作农田土壤CH_4、N_2O气体排放特征研究   总被引:6,自引:0,他引:6  
依托甘肃农业大学布设在定西市李家堡镇的长期施氮定位实验,对不同施氮农田CH4和N2O气体通量,采用静态箱-气相色谱法进行小麦生育期的连续观测,并对影响通量变化的环境因子同期观测.结果表明:5个施氮处理下(0、52.5、105、157.5、210 kg·hm-2),旱作农田土壤在小麦全生育期内表现为CH4累积通量的汇和N2O累积通量的源;且不施氮处理时,CH4累积吸收通量最大;施氮量为210 kg·hm-2时,土壤CH4的累积吸收通量所受抑制最大,即土壤CH4累积吸收通量随施氮量升高而降低.相反,不施氮处理时,土壤N2O的累积排放通量最小,施氮量为210 kg·hm-2时,土壤N2O的累积排放通量最大,土壤N2O累积排放通量随施氮量的增加而增大.综合分析,施氮量增大会抑制全生育期旱作春小麦田土壤CH4吸收通量,提高土壤N2O的排放通量.因此,合理控制施氮量有利于生育期旱作农田土壤减排.CH4平均吸收通量随土壤温度的升高而降低,随土壤水分的升高而升高;相反,N2O平均排放通量随土壤温度的升高而升高,随土壤水分的升高而降低.5~10 cm层次的土壤温度与CH4平均吸收通量呈极显著线性负相关,与N2O平均排放通量呈显著正相关.5~10 cm层次的土壤水分与CH4平均吸收通量呈极显著线性正相关,与N2O平均排放通量呈显著负相关.  相似文献   

18.
卫河新乡市区段春季溶解CH4与N2O浓度特征   总被引:2,自引:2,他引:0  
侯翠翠  张芳  李英臣  王奇博  刘赛 《环境科学》2016,37(5):1891-1899
对卫河新乡市区段春季CH_4与N_2O浓度进行调查分析,初步探讨了城市河流中典型温室气体的溶存量空间变化及其影响因素.结果表明,受到水中污染物质浓度及人类活动影响,春季卫河表层水中CH_4与N_2O浓度处于超饱和状态,饱和度分别为147.59~2 667.85和4.06~188.25.影响市区内N_2O浓度的主要环境因素为NH~+_4-N(P0.01),而新区污水处理厂排水输入显著提高了N_2O的溶存量,说明污染物类型影响温室气体的产生和积累,NH~+_4-N的硝化过程是城市河流N_2O产生的主要来源.逐步回归分析表明CH_4浓度是NH~+_4-N浓度与水温的相关函数,其中CH_4浓度与NH~+_4-N极显著相关(R2=0.70,P0.01),说明春季卫河中NH~+_4-N浓度是影响卫河春季CH_4溶存的关键因素.此外研究结果显示在NO~-_3-N浓度较低并且NH~+_4-N浓度高时水中CH_4与N_2O浓度具有显著正相关关系,表明有效态氮浓度差异影响CH_4与N_2O产生过程的耦合机制.  相似文献   

19.
冬季污泥堆肥过程温室气体排放特征   总被引:2,自引:1,他引:2  
污泥堆肥处理是一种简便高效的污泥稳定化技术,但堆肥过程产生的温室气体也引起了国内外的广泛关注,我国关于污泥堆肥,特别是低温环境下的堆肥温室气体排放特征研究和基础数据还很缺乏.本实验采用城市脱水污泥,考察低温环境条件下不同调理剂混合污泥堆肥过程中温室气体的排放特征.结果表明,低温环境条件下污泥堆肥能够顺利进行,但高温期持续时间相对较短而腐熟期温度降低过快.木屑处理的总氮损失低于秸秆处理,然而温室气体总排放当量却高于秸秆处理,木屑和秸秆处理总的CO2排放当量(以干污泥计)分别为169.45 kg·t~(-1)、133.13 kg·t~(-1).木屑与秸秆CH_4累积排放量(以干污泥计)分别为0.648 kg·t~(-1)、0.689 kg·t~(-1),N_2O累积排放量(以干污泥计)分别为0.486 kg·t~(-1)、0.365 kg·t~(-1).CH_4的排放75%以上集中在堆肥前2周,而N_2O则90%以上出现在后腐熟期.整体而言,冬季堆肥高温期持续时间相对较短而腐熟期温度低,出现CH_4排放量相对较低而N_2O较高的现象,CH_4排放量均低于IPCC推荐值,N_2O则均高于IPCC推荐值.因此针对低温环境堆肥工艺,温室气体的减排应重点关注堆肥后期N_2O排放的降低策略.  相似文献   

20.
以湖南典型红壤双季稻田系统为研究对象,采用静态箱-气相色谱法研究了水稻生长季基肥配施猪粪条件下CH4和N2O的排放特征,并估算了排放的CH4和N2O的全球增温潜势(GWP).结果表明,与施用化肥处理相比,猪粪化肥配施对稻田CH4和N2O排放的季节变化模式无明显影响,但影响其排放量大小.两个稻季,猪粪替代50%化学氮肥处理(1/2N+PM)CH4累积排放量较不施氮肥处理(0N)、50%化学氮肥处理(1/2N)、100%化学氮肥处理(N)分别提高54.83%、33.85%和43.30%(P<0.05);1/2N+PM处理N2O累积排放量较N处理显著降低67.50%,较0N处理、1/2N处理分别提高129.43%、119.23%(P<0.05).水稻生长季CH4是GWP的主要贡献者,占CH4和N2O综合GWP的99%以上.1/2N+PM处理的GWP显著高于其他处理(P<0.05),且1/2N+PM处理单位产量GWP最高,较N处理、1/2N处理、0N处理分别提高58.21%、26.82%、20.63%.因此,双季稻田猪粪替代部分化学氮肥较全部施用化学氮肥增加了双季稻田CH4和N2O排放的综合温室效应,其对温室气体排放的影响需在区域温室气体排放清单中加以考虑.  相似文献   

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