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1.
垄作覆膜条件下田间氨挥发及影响因素   总被引:12,自引:4,他引:8  
通过大田试验,采用密闭法研究了垄沟覆膜栽培条件下冬小麦生育期内土壤氨挥发动态过程及相关土壤理化性质.结果表明,生育期内垄沟覆膜处理氨挥发累积量(以N计)为(1.66±0.3)~(3.28±0.51)kg.hm-2,常规栽培为(4.68±0.35)kg.hm-2,垄作栽培比常规栽培减少了29.8%~63.8%,氮肥损失率从常规栽培的1.9%下降到了0.3%~0.8%.小麦生育期内土壤氨挥发速率先升后降,冬前高、冬后低.常规栽培土壤氨挥发主要发生在越冬前,其挥发量占总挥发量的82%;而垄作栽培的越冬前挥发量只占挥发总量的49%~61%.越冬前常规栽培土壤氨挥发速率受土壤铵态氮浓度和土壤含水量的共同影响;而垄作条件下土壤氨挥发主要受土壤铵态氮浓度影响,地表温度和土壤含水量通过土壤铵态氮间接影响氨挥发.返青后2种栽培模式下的氨挥发主要受土壤铵态氮浓度的影响.常规栽培和垄沟覆膜高施氮量条件下土壤氨挥发累积量动态过程符合对数函数;而不施肥和垄沟覆膜低施氮量条件下的动态过程可以用线性函数表示.垄沟覆膜栽培在一定程度上改变了土壤氨挥发机制和过程,显著降低土壤氨挥发和氮肥损失.  相似文献   

2.
Tillage practices affect the fate of fertilizer nitrogen (N) through influencing transformations of N, but few studies have examined N2O and NH3 emissions, and N leaching from different rice tillage systems. Thus the objective of this study was to assess N2O emission, NH3 volatilization and N leaching from direct seeded rice in conventional tillage (CT) and no-tillage (NT) production systems in the subtropical region of China during the 2008 and 2009 rice growing seasons. Treatments were established following a split-plot design of a randomized complete block with tillage practices as the main plot and N fertilizer level as the sub-plot treatment, and there were four treatments: NT + no fertilizer (NT0), CT + no fertilizer (CT0), NT + compound fertilizer (NTC) and CT + compound fertilizer (CTC), respectively. Results showed that N fertilization significantly increased (p < 0.01) N2O emissions, NH3 volatilization and N leaching from rice fields in both years. In general, there was no significant difference in N2O emissions and NH3 volatilization between NT0 and CT0 in both years, while NTC had significantly higher (p < 0.05) N2O emissions and NH3 volatilization compared to CTC. Over the two rice growing seasons, NTC showed 32% and 47% higher N2O emissions, and 29% and 52% higher NH3 losses than CTC. Higher (p < 0.05) N2O emissions from NTC than CTC were presumably due to higher soil organic C and greater denitrification. Total N and NO3? concentrations were higher (p < 0.05) in CTC than NTC, but larger volumes of percolation water in NTC than CTC resulted in no significant difference in leakage of total N and NO3?. Hence, application of N fertilizer in combination with NT appeared to be ineffective in reducing N losses from N fertilizer in paddy fields.  相似文献   

3.
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   

4.
Ammonia (NH3) emissions from cattle are much less when they are grazing than when they are housed. The urine excreted during grazing may rapidly infiltrate soil whereas it remains on the surface of impermeable floors and yards. If the average grazing season for the UK herd could be extended from 6 to 8 months, NH3 emissions from cattle could potentially be reduced by ca. 15% (of the total for all livestock) if the cattle spend all of the extra grazing days outdoors. The main objective of this desk study was to assess the potential of extended season grazing to reduce NH3 emissions from UK cattle farming. The impacts on nitrate (NO3) leaching and nitrous oxide (N2O) emissions were also estimated. A simple process-based model was developed to quantify the potential for extending the grazing season. A farm-scale model of NH3 emissions at the farm-scale, based on published emission factors for UK agriculture, was used to estimate NH3 emissions. Losses of NO3 following slurry spreading were estimated using the MANNER model, while NO3 leaching and denitrification losses during grazing were taken from output by the NGAUGE model. We conclude that one month’s extra grazing (based on the animals being outside for all of that month, day and night,) may reduce NH3 emissions from slurry-based systems by ca. 9% and for FYM-based systems by ca. 7% compared with losses from the current ca. 180-day winter housing period. However, in practice cattle are not outdoors all day during the extended grazing period. If it is assumed that cattle graze for an average of 4 h per day over the extended period, then the monthly reduction in NH3 emissions may be only ca. 1–2%. At all sites most of this conserved N was predicted to be lost as NO3. For slurry-based systems this could be at least 80%. For FYM-based systems, for which there was less potential to conserve NH3, the increase in NO3 leaching was always greater than the NH3 conserved. The effects on direct emissions of N2O were estimated be negligible, if grazing began earlier in spring or perhaps some reduction when grazing continues for longer in autumn. We conclude that extending the grazing season will increase NO3 leaching and that further studies are needed to fully evaluate the potential for reducing emissions of NH3.  相似文献   

5.
汪军  王德建  张刚  王远 《环境科学》2013,34(1):27-33
利用原状土柱在田间试验条件下,比较了麦秸还田下乌栅土和黄泥土稻季氮素氨挥发损失规律,每种试验土壤均设对照、氮肥、氮肥加麦秆这3个处理,同步测定施肥后氨挥发、田面水铵态氮浓度与pH、以及表层土壤Eh.结果表明,乌栅土氨挥发速率及其累积氨挥发量显著高于黄泥土,两种土壤的稻季平均氨挥发的氮素损失量分别为41.8 kg·hm-2和11.2kg·hm-2,分别占氮肥用量的15.2%和3.8%;在3个施肥时期中,分蘖肥期氨挥发损失率最高,乌栅土和黄泥土分别占氮肥用量的29.4%和8.3%;麦秸还田显著增加了氮肥的氨挥发损失,麦秸还田下乌栅土和黄泥土稻季氨挥发损失比单施氮肥处理分别增加了19.8%和20.6%.两种土壤氨挥发速率均与田面水NH4+-N浓度、pH呈正相关关系,但与表层土壤Eh的关系还需进一步研究.  相似文献   

6.
Several studies point out the importance of agricultural emissions to particulate matter (PM) concentrations, and particularly of NH3 emissions to PM2.5. Our study used three different chemical transport models (CHIMERE, EMEP and LOTOS-EUROS) to quantify the reductions of PM2.5 and PM10 concentrations due to reductions of NH3 emissions beyond the Gothenburg Protocol (GP), as well as due to the GP alone compared to 2009. Simulations of PM2.5 and PM10 concentrations using 2009 meteorology were undertaken for five emission scenarios: 2009 emissions (as the reference simulation), GP emissions in 2020, and further 10%, 20% and 30% NH3 emission reductions in EU27 beyond the GP. The modelling results for the scenarios with further 10%, 20% and 30% NH3 agriculture emission reductions in EU27 beyond the GP show that the reduction achieved in PM concentrations is not linear with the emission reductions. In fact, the results from the study show that the impact of ammonia emissions reduction is significantly more efficient when the emission reduction rises. Moreover, based on the evaluation on 2009, the modelling study shows that the expected impact of ammonia emissions on the formation of particulate ammonium was underestimated by all models. This would imply that the role of ammonia on PM concentration and exceedances of PM2.5 and PM10 limit values is likely to be even larger than quantified in this study. This study shows that the implementation of the emission reductions imposed by the revised GP for 2020 will not suffice to achieve compliance with PM limit values everywhere in Europe; hence further European and local measures may be considered. NH3 emissions from agriculture can be further reduced with the implementation of proven and feasible measures (substitution of fertilizers, improved storage of manure, way fertilizer injections, etc., …), in order to reduce PM concentrations and their impacts on human health across Europe.  相似文献   

7.
为探究长期平衡施肥和秸秆覆盖对紫色土坡耕地土壤养分及其化学计量比的影响,以垫江县长期农田氮磷流失监测点为研究样地,设置3个处理:常规模式(CK)、平衡施肥模式(M1)和平衡施肥+秸秆覆盖模式(M2),每个处理各设3个重复,共建立9个小区(长7 m×宽3 m),并于2018、2019和2020年采集土样,研究不同处理下碳(C)、氮(N)、磷(P)和钾(K)含量及其化学计量变化特征.结果表明,2018年不同处理之间K含量差异显著,大小顺序为:CK>M2>M1;2019年不同处理之间硝态氮(NO3--N)、铵态氮(NH4+-N)含量差异显著,表现为:M1>M2>CK;其他养分含量在同一年份不同处理之间差异均不显著.不同年份间各处理的土壤C和N含量差异不显著.2018年各处理中K含量均显著高于其他年份,其中,2018年的CK、M1和M2分别比2019年和2020年高78.26%和98.79%,19.13%和35.4%,54.49%和41.76%.P含量在CK和M2处理中均随着年份增大而减小,且2018年分别比2019年高20.29%和10.67%,比2020年高39.68%和17.33%.各处理不同年份间速效钾(AK)含量无显著差异,而NO3--N和NH4+-N和速效磷(AP)含量差异显著,且均在2020年最高.土壤C :P、C :K、N :P、N :K和P :K在不同年份间都表现出显著差异(P<0.05).土壤C :K、N :K和AN :AP分别于2018年和2019年在不同施肥模式间差异显著(P<0.05).土壤C与N及P与K之间呈显著的线性正相关;土壤C :K与C :P、N :K、N :P和P :K之间,N :K与C :P、P :K和N :P之间,N :P与C :P之间都呈显著的线性正相关;土壤P与C :K和N :K之间呈显著的线性负相关.土壤NO3--N与NH4+-N、AN :AP和AN :AK之间,NH4+-N与AN :AP和AN :AK之间,AP与AK和AP :AK之间,AN :AP与AN :AK之间都呈极显著正相关.研究发现平衡施肥+秸秆覆盖是紫色土坡耕地较为适宜的管理模式.  相似文献   

8.
Dietary modifications in dairy cattle have been reported as a useful strategy to alter the composition of manure. Many reports have been published on how changes in dietary crude protein content and forage-to-concentrate ratio reduces animal nitrogen (N) excretion, but little information exists about the effect of diet modification on nitrous oxide (N2O) and nitric oxide (NO) emission when the subsequent slurry is applied on grassland. Two diets differing in forage:concentrate ratio (high forage or HF diet, 75:25; low forage or LF diet, 55:45) were tested to detect the improvement of N use efficiency in milk and the reduction of urinary and fecal N excretion. Triticale silage and barley grain were used as the main forage and concentrate sources in the diets. The subsequent slurries were characterized for N and ammonium-N content (NH4+-N) and applied on grassland in order to study total and pattern of emission of N2O and NO.The HF diet reduced the voluntary dry matter intake of the cows, N intake and urinary and fecal N excretion. However, the reduction of N intake did not improve the N use efficiency in milk (NUE) (21.0%) and did not reduce N excretion per unit of milk produced (15 g N l−1) due to the lower milk yield. Slurries were similar in N content but differed in NH4+ content, being lower in HF. Therefore, different slurry amounts were needed to be applied on grassland to reach the correct fertilisation rate (120 kg NH4+-N ha−1). Total emissions of N2O (5.8 and 5.0 kg N2O-N ha−1) and NO (507.2 and 568.6 g NO-N ha−1), and the pattern of emissions were not affected by dietary treatments. When fertilisation management depends on the collected volume to empty the slurry pit, higher N2O and NO emissions per kg of slurry could be expected from LF slurry. Nevertheless, if slurry is applied following recommendation rates, N2O and NO emission per unit of milk produced might be slightly lower from LF slurry. Grass yield (1.5 t dry matter ha−1) and N uptake (50 kg N ha−1) did not vary due to the applications of different slurries, and was attributed to low rainfalls. The correct management of the slurries on grasslands may justify an adequate nutritional strategy of dairy herds from an environmental and productive point of view.  相似文献   

9.
范会  姜姗姗  魏荧  蒋静艳 《环境科学》2016,37(8):2906-2913
为了解不同品种新型氮肥相对常规施肥其氨(NH3)和氧化亚氮(N_2O)的减排效果,本文通过田间原位试验同步研究了夏玉米生长季氮肥施用后的农田NH_3挥发和N_2O排放及其主要驱动因子.以常规施肥(复合肥+尿素,CK)为对照,设置了5个肥料处理,分别为脲铵氮肥(UA)、稳定性复合肥料(UHD)、硫包衣氮肥(SCU)、脲甲醛复合肥(UF)和有机肥(OF),施氮量(以N计)均为300 kg·hm~(-2).相关分析结果表明,氨挥发和N_2O排放受环境因子影响,均与土壤WFPS呈显著负相关(P0.05),N_2O排放还与土壤硝态氮呈极显著正相关(P0.01).进一步回归分析表明,N_2O排放(F_(N_2O))主要取决于土壤硝态氮(x)含量的变化,而氨挥发(F_(NH_3))主要取决于土壤铵态氮(x)含量的变化.与CK相比,除了UA,其它肥料处理都降低了土壤的氨挥发,尤其是UF和OF处理减少了37%~43%.但对于N_2O排放,所有处理与CK皆无显著差异.进一步计算每种处理氨挥发和N_2O的气态氮损失总量,与CK相比,UHD、SCU、UF和OF分别减排了9%、5%、30%和23%,而UA增加了3%.  相似文献   

10.
Lime and plant ash are common management used to achieve optimum pH for plant growth and improve soil properties in agricultural soils. Laboratory incubation was conducted to assess N20 emissions as influenced by different soil amendments (lime and plant ash) in a slightly acidic arable soil (pH 5.34). The experimental treatments consisted of CK, lime and plant ash fertilized with NH4+-N or N03?-N as nitrogen resource. The results show that lime and plant ash dramatically increases the soil pH and N20 emission. For N03?-N fertilization, the cumulative N20 emissions from CK, lime and ash are 421, 1669 and 921 μg N20-N/kg, respectively. For NH4+-N fertilization, the cumulative N20 emissions from CK, lime and ash are 361, 576 and 559 μg N20-N/kg, respectively. N03?-N addition leads to more N20 emission than that of NH4+-N addition, and lime increases more N20 emission than that of plant ash. After incubation, N03?-N content decreased largely. The findings suggested that alkaline ameliorants increase N20 emissions due to enhancement of soil denitrification.  相似文献   

11.
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   

12.
Nitrous oxide emissions from black soils with different pH   总被引:1,自引:0,他引:1  
N2O fluxes as a function of incubation time from soil with different available N contents and pH were determined. Cumulative carbon dioxide (CO2) emissions were measured to indicate soil respiration. A 144-hr incubation experiment was conducted in a slightly acidic agricultural soil (pHH2O 5.33) after the pH was adjusted to four different values (3.65, 5.00, 6.90 and 8.55). The experiments consisted of a control without added N, and with NH4+-N and NO3--N fertilization. The results showed that soil pH contributed significantly to N2O flux from the soils. There were higher N2O emissions in the period 0-12 hr in the four pH treatments, especially those enhanced with N-fertilization. The cumulative N2O-N emission reached a maximum at pH 8.55 and was stimulated by NO3--N fertilization (70.4 μg/kg). The minimum emissions appeared at pH 3.65 and were not stimulated by NO3--N or NH4+-N fertilization. Soil respiration increased significantly due to N-fertilization. Soil respiration increased positively with soil pH (R2 = 0.98, P < 0.01). The lowest CO2-C emission (30.2 mg/kg) was presented in pH 3.65 soils without N-fertilization. The highest CO2-C emissions appeared in the pH 8.55 soils for NH4+-N fertilization (199 mg/kg). These findings suggested that N2O emissions and soil respiration were significantly influenced by low pH, which strongly inhibits soil microbial nitrification and denitrification activities. The content of NO3--N in soil significantly and positively affected the N2O emissions through denitrification.  相似文献   

13.
氮肥使用对北方夏玉米季氨挥发的影响   总被引:4,自引:1,他引:4  
张薇  倪邦  许秀春  杨轩  孟凡乔 《环境科学》2020,41(11):5176-5184
氨挥发是农田作物生产中氮肥损失的主要途径之一,对空气质量有重要影响.为研究我国北方地区化肥类型、施用数量、施氮时期以及采样方法等因素对夏玉米季氨挥发的影响,本研究收集了1980~2018年发表的北方地区夏玉米生产中氨挥发的研究文献,并对数据进行统计分析.结果发现,随着化肥施氮量的增加,氨挥发总量呈指数型增长,净氨挥发量呈幂函数型增长.基肥/追肥施氮量为1/1时,追肥期氨挥发总量和净氨挥发量显著高于基肥期(P<0.05),氨挥发总量分别约占总生育期的58.4%和41.6%.随着施氮量的增加,激发效应先表现为负效应后逐渐转变为正效应,转折点施氮量为297 kg ·hm-2.采用抽气法与海绵法测定的氨挥发量存在显著差异(P<0.01),且抽气法测定数据更为稳定.施用缓释尿素相较于普通尿素可降低氨挥发约20%~50%.我国北方夏玉米生产中,合理控制追肥期施氮量更有助于减少氨挥发,且高氮肥条件下抽气法比海绵法更适合于氨挥发的测定.  相似文献   

14.
基于大数据分析的杭州市农业源高分辨率氨排放清单研究   总被引:1,自引:0,他引:1  
基于实地调查并辅以统计的方法获得大数据,采用排放因子法,估算了杭州市2015年农业源氨排放清单,并选取经纬度坐标、土地类型和人口等数据作为权重因子,建立1 km×1 km高精度网格化空间分布,研究了该地区农业排放源氨排放空间分布特征.结果表明:杭州市2015年农业源NH3排放总量为54787.9 t,其中畜禽养殖和农田种植是最主要的氨排放来源,分别占农业源总排放量的86.7%和12.8%.在畜禽养殖各主要环节的氨排放过程中,圈舍固态粪便的氨排放贡献量最大,占总氨排放量的52.8%;其次是存储固态,占总氨排放量的35.1%.氮肥施用主要集中在萧山区、建德市、临安市和余杭区.秸秆堆肥和秸秆焚烧与秸秆综合利用率高低密切相关,两者氨排放量占有率不高,占杭州市农业源氨排放总量的1%以下.  相似文献   

15.
Nitrous oxide (N2O) emissions from soil are characterized by strong emission pulses. Although several mechanisms are known to create them, pulses are difficult to predict. Currently there is no established systematic way to identify pulses from long-term static chamber measurement results. In this study we suggest a simple algorithm for pulse identification. The algorithm was applied on time series of N2O and carbon dioxide (CO2) fluxes from a field study on the long-term impact of fertilization and tillage practice. Between 4 and 9% of N2O values were pulse values; 20-60% of total emission was emitted as pulses. Minimum tillage resulted in more pulses than plowing. In contrast, long-term averages of N2O losses from nitrogen (N) fertilizer were similar (3-4%) for all management practices. N2O emissions per crop yield for increased fertilization practice were double the values for reduced fertilization practice independent of tillage practice. CO2 emission pulses were scarce and there was no significant effect of management practice on CO2 pulse probability.  相似文献   

16.
A field lysimeter/mini plot experiment was established in a silt loam soil near Lincoln, New Zealand, to investigate the effectiveness of urea fertilizer in fine particle application (FPA), with or without the urease inhibitor N-(n-butyl) thiophosphoric triamide (NBPT - “Agrotain”), in decreasing nitrogen (N) losses and improving N uptake efficiency. The five treatments were: control (no N) and 15N-labelled urea, with or without NBPT, applied to lysimeters or mini plots (unlabelled urea), either in granular form to the soil surface or in FPA form (through a spray) at a rate equivalent to 100 kg N ha−1. Gaseous emissions of ammonia (NH3) and nitrous oxide (N2O), nitrate (NO3) leaching, herbage dry-matter (DM) production, N-response efficiency, total N uptake and total recovery of applied 15N in the plant and soil varied with urea application method and with addition of NBPT. Urea with NBPT, applied in granular or FPA form, was more effective than in application without NBPT: N2O emissions were reduced by 7-12%, NH3 emissions by 65-69% and NO3 leaching losses by 36-55% compared with granular urea. Urea alone and with NBPT, applied in FPA form increased herbage DM production by 27% and 38%, respectively. The N response efficiency increased from 10 kg DM kg−1 of applied N with granular urea to 19 kg DM kg−1 with FPA urea and to 23 kg DM kg−1 with FPA urea plus NBPT. Urea applied in FPA form resulted in significantly (P < 0.05) higher 15N recovery in the shoots compared with granular treatments and this was improved further when urea in FPA form was applied with NBPT. These results suggest that applying urea with NBPT in FPA form has potential as a management tool in mitigating N losses, improving N-response efficiency and increasing herbage DM production in intensive grassland systems.  相似文献   

17.
以华北地区典型农业县曲周县为研究对象,通过收集本地人为源活动水平数据和相关氨排放因子,利用排放因子法建立2002~2019年人为源氨排放清单,并且采用当地实测的农田氮肥施用氨排放因子和县域农户生产调研数据优化2019年氨排放清单.结果表明,曲周县氨排放总量呈现“双峰”模式,从2002年的6 682.9 t增加到2004年的7 195.0 t,随后下降到2008年的5 872.0 t; 2015年增加到7 010.5 t,随后逐步下降到2018年的5 636.3 t.畜禽养殖(61%~75%)和氮肥施用(14%~28%)是主要氨排放源. 2019年曲周县氨排放总量为6 559.7 t,其中氮肥施用和畜禽养殖分别贡献28%和61%.小麦为氨排放最高的作物,占种植业氨排放总量的40%;蛋鸡为氨排放量最大的畜禽,贡献率为畜禽养殖的40%.在空间分布上呈现南高北低的趋势,南里岳乡和白寨乡为主要排放热区,全县平均氨排放强度达到13.5 t·km-2.在县域尺度上重点开展小麦种植和蛋鸡养殖氨减排将有助于华北平原大气氨污染治理.  相似文献   

18.
Direct and indirect nitrous oxide (N2O) emissions and leaching losses from an intensively managed grazed pasture in the Ythan catchment, Aberdeenshire, UK, were measured and compared over a 17-month period. Simultaneous measurements of farm-wide leaching losses of N2O were also made and catchment-wide fluxes were estimated from existing N leaching data. The relative importance of direct and indirect N2O fluxes at the field, farm and catchment scale was then assessed. At the field scale we found that direct N2O emissions were low (1.2 kg N ha−1 year−1, 0.6% of N input) with indirect N2O emissions via drainage waters comprising a significant proportion (25%) of total N2O emissions. At the whole-farm scale, the N2O-N emission factor (0.003) for leached NO3-N (EF5-g) was in line with the IPCC's recent downward revision. At the catchment scale, a direct N2O flux of 1.9 kg N ha−1 year−1 and an indirect flux of 0.06 kg N2O-N ha−1 year−1 were estimated. This study lends further support to the recent downward revision of the IPCC emission factor for N2O arising from leached N in surface and ground waters (EF5-g) and highlights the need for multiple point sampling to ensure that the importance of indirect N2O losses via drainage waters is not misrepresented at the farm and catchment scales.  相似文献   

19.
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   

20.
Nitrous oxide (N2O) and ammonia (NH3) emissions from surface applied high (HN) and low (LN) nitrogen pig manures were measured under field conditions. Manures were band-spread to a winter wheat crop at three growth stages—mid-tillering, stem elongation and flag leaf emergence. The N2O flux rates were measured using the static chamber technique while NH3 volatilisation was assessed using a micrometeorological mass balance technique with passive flux samplers. The N2O emissions were episodic in nature with flux rates observed ranging from 2.8 to 31.5 g N2O–N ha?1 day?1 (P < 0.001). Higher N2O emissions generally occurred after rainfall events. Highest N2O losses were observed from the HN treatment with LN manure use decreasing emissions by 18% (P < 0.03). The NH3 volatilisation rates were highest within 1 h of manure application with 95% of emissions occurring within 24 h (P < 0.001). Cumulative N loss was highest at mid-tillering as low crop canopy cover and increased wind-speeds enhanced NH3 loss (P < 0.001). Highest emissions were measured from the HN manure (P < 0.03). Total ammoniacal N loss ranged from 6 to 11%. Crop N uptake and grain yield were unaffected by application timing or manure type. Therefore, the use of LN manures decreased gaseous emissions of N2O and NH3 without any adverse effects on crop performance.  相似文献   

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