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1.
为解决规模化胡萝卜种植过程尾菜处理难的问题,在通风速率为0.05 m3/min的条件下,探讨不同添加比例的玉米秸秆对胡萝卜尾菜堆肥过程中腐熟度、气体排放和酶活性的影响。通过分析腐熟度、气体排放和酶活性之间的响应关系,确定最优辅料添加比例,以期实现胡萝卜尾菜无害化、资源化利用。结果表明:不同胡萝卜尾菜好氧堆肥产品均能满足种子发芽率指数≥70%的无害化标准;NH3和CO2排放集中在前7 d,排放速率主要受温度、pH值等理化性质影响,同时鸡粪的添加导致NH3 累积排放量增加,不添加任何辅料的胡萝卜尾菜单独堆肥处理(CK)其CO2 排放速率最高; 胡萝卜尾菜单独堆肥处理(CK)及7.5%秸秆添加处理(T1)在堆肥期间含水率较高,易产生渗滤液;通过相关性热图、冗余分析对5个处理的气体排放、腐熟度、酶活性进行显著性、相关性分析,进一步证实NH3、CO2的排放与温度呈正相关,与pH值呈负相关关系;同时过氧化氢酶与腐熟度指标有显著正相关关系,纤维素酶活性影响堆肥产品的腐熟度。因此,胡萝卜尾菜好氧堆肥过程中,添加15%玉米秸秆辅料(T2)可以提高C/N比、孔隙度,降低渗滤液产出,同时CO2 排放量较胡萝卜尾菜单独堆肥(CK)降低6.63%。该研究可为胡萝卜尾菜无害化和资源化利用提供技术支持。  相似文献   

2.
不同施肥处理稻田甲烷和氧化亚氮排放特征   总被引:62,自引:14,他引:48  
采用静态箱-气相色谱法对长期不同施肥处理(NPKS、CK、NPK和NKM)的稻田CH4和N2O排放进行了观测。结果表明,稻田CH4和N2O排放季节变化规律明显不同,二者排放通量季节变化呈显著负相关(p<0.01)。与单施化肥和CK相比,施用有机肥显著促进CH4排放,排放量最高的NPKS处理早晚稻田排放量分别是:526.68 kg/hm2和1072.92 kg/hm2。对于N2O排放,早稻田各处理间差异不显著,NPK处理排放量最大,为1.48 kg/hm2;晚稻田各处理差异极显著(p<0.01),NPKS处理排放量最大,为1.40 kg/hm2。晚稻田CH4排放通量和10 cm土层温度及土壤pH值相关极显著(p<0.01),并与二者存在显著的指数关系。没发现N2O排放通量与温度及pH值间存在显著相关。稻田CH4和N2O排放受多种因素影响,但对全球变暖的贡献率CH4远大于N2O。NPKS处理的增温潜势最大,NPK处理的最小。  相似文献   

3.
为研究畜禽废弃物处理过程中温室气体泄漏与排放状况,该文利用静态箱对北京市北郎中猪场的污水处理单元进行了温室气体泄漏与排放测试。测试结果表明:厌氧消化罐泄漏造成的温室气体通量为5823.19 mg·m-2·h-1 CO2当量,一、二级氧化塘其CO2当量的温室气体通量分别为607.75、8.61mg·m-2·h-1;由于污水以厌氧处理为主,各处理单元冬季的氧化亚氮排放很低,几乎可以忽略不计。  相似文献   

4.
密闭箱处理蛋鸡粪的氧化亚氮氨气排放研究   总被引:2,自引:0,他引:2  
采用密切箱处理蛋鸡粪的方法,研究了密闭箱内产生的氧化亚氮、氨气的排放规律、影响因子及两者存在的内在联系。结果表明,氧化亚氮的产生与有机质的含量以及蛋鸡粪内部的氧氧状况密切相关;氨气与氧化亚氮的逐日排放变化规律存在很大的相似性;蛋鸡粪的内部温度作用表现不明显,受外界气温影响很小。  相似文献   

5.
为了研究耕作措施对双序列轮作农田土壤温室气体的排放及影响, 采用CO2分析仪、静态箱 气相色谱法在陇中黄土高原半干旱区对传统耕作不覆盖、免耕不覆盖、免耕秸秆覆盖和传统耕作+秸秆还田4种耕作措施下豆麦双序列轮作农田土壤温室气体(CO2、N2O和CH4)的排放及影响因素进行了连续测定和分析。结果表明: 测定期内4种耕作措施下农田土壤均表现为CO2源、N2O源和CH4净吸收汇; 除传统耕作不覆盖措施, 其他3种耕作措施不同程度地减少了2种轮作序列土壤的N2O排放通量, 并显著增加了土壤对CH4的吸收。CO2和N2O的排放通量分别与地表、地下5 cm处、地下10 cm处的土壤温度呈极显著和显著正相关关系, 相关系数分别为0.92**和0.89**、0.95**和0.91**、0.77*和0.62*; 而CH4吸收通量与不同地层的温度之间无明显的相关关系; CO2和CH4的通量与0~5 cm、5~10 cm的土壤含水量均呈显著正相关关系, 相关系数分别为0.69*和0.72*、0.77*和0.64*, 而与10~30 cm土壤含水量无明显相关关系; N2O排放通量与各层次的土壤含水量之间均呈不显著负相关关系。对2种轮作序列各处理下土壤中排放的3种温室气体的增温潜势计算综合得出: 4种耕作措施中, 免耕不覆盖处理可相对减少土壤温室气体的排放量, 进而降低温室效应。  相似文献   

6.
减量施氮与大豆间作对蔗田土壤温室气体排放的影响   总被引:3,自引:2,他引:1  
采用静态箱 气相色谱法对常规施氮(N2, 525 kg·hm-2)y和减量施氮(N1, 300 kg·hm-2)处理下甘蔗与大豆按行数比1∶1(SB1)和1∶2(SB2)间作、甘蔗单作(MS)、大豆单作(MB)种植模式下蔗田土壤CO2、N2O、CH4排放通量及土地当量比(LER)进行观测和对比分析, 以探讨不同间作模式及施氮水平下甘蔗//大豆间作农田土壤温室气体排放的动态变化规律及对作物产量的影响, 为制定农田温室气体减排措施提供合理的依据。研究结果表明, 减量施氮处理甘蔗//大豆(1∶2)间作模式(SB2-N1)农田土壤CO2排放总量较甘蔗单作(MS)显著降低35.58%, N2O累积排放总量较甘蔗单作降低56.36%, CH4累积排放总量较甘蔗单作升高7.02%; 不同种植模式和施氮处理蔗田土壤均表现为CO2和N2O的排放源, CH4吸收汇, 追施氮肥后土壤对CH4的吸收速率降低, 但CO2和N2O的排放速率增加。MS-N1、SB1-N1、SB2-N1、MS-N2、SB1-N2、SB2-N2和MB处理土壤CO2年累积排放总量(kg·hm-2·a-1)分别为5 096.89、6 422.69、3 283.20、4 103.29、4 475.84、4 775.31和4 780.35, 土壤N2O年累积排放总量(kg·hm-2·a-1)分别为4.61、5.11、2.15、3.13、3.72、5.60和3.11, 土壤CH4年累积排放总量(kg·hm-2·a-1)分别为 13.68、 21.78、 12.72、 5.53、 11.36、 4.77和 9.97。甘蔗//大豆间作系统2009-2012年土地当量比(LER)均大于1, 且减量施氮水平下, 甘蔗//大豆(1∶2)间作模式优势最明显。  相似文献   

7.
通过设置在甘肃省定西市李家堡镇的不同耕作措施试验, 利用CO2分析仪、静态箱-气相色谱法对双序列轮作次序下春小麦地、豌豆地生育期内CO2、CH4和N2O通量进行了测定。试验结果表明: 4种耕作措施下春小麦地和豌豆地在生育期内均表现为CO2源、N2O源和CH4汇的功能。传统耕作不覆盖、免耕不覆盖、免耕秸秆覆盖和传统耕作结合秸秆还田下, 春小麦生育期内平均土壤CO2通量(μmol·m-2·s-1)分别为0.203 6、0.221 2、0.241 8、0.224 9, CH4通量(mg·m-2·h-1)分别为-0.041 6、-0.078 0、-0.081 8、-0.053 7, N2O通量(mg·m-2·h-1)分别为0.089 1、0.069 2、0.046 1、0.065 6; 豌豆生育期内平均土壤CO2通量(μmol·m-2·s-1)分别为0.273 6、0.261 6、0.218 1、0.236 0, CH4通量(mg·m-2·h-1)分别为-0.055 0、-0.073 7、-0.066 2、-0.054 5, N2O通量(mg·m-2·h-1)分别为0.123 4、0.084 7、0.080 6、0.035 0。少免耕及小麦秸秆覆盖有利于减少土壤CO2排放通量, 免耕不覆盖、免耕秸秆覆盖及传统耕作结合秸秆还田均能不同程度地增加CH4吸收通量、减少N2O排放通量。综合来看, 免耕不覆盖、免耕秸秆覆盖和传统耕作结合秸秆还田3种保护性耕作措施有助于减少土壤温室气体的排放量。春小麦地CO2通量随着土壤温度、土壤含水量的逐渐升高而增大; CH4吸收通量随着土壤含水量的逐渐升高而增大, 而随着土壤温度的逐渐升高而减小。豌豆地CO2通量的变化与土壤含水量存在极显著正相关关系; 而春小麦地N2O通量则与平均土壤温度呈显著正相关, 豌豆地则为极显著正相关。  相似文献   

8.
[目的] 探究鸡粪和炉渣添加对疏浚土的改良效果,为疏浚土资源化利用提供理论依据。[方法] 以疏浚土为供试土壤,皇竹草为供试植物开展盆栽试验,设置4个处理,分别为对照(CK)、添加5%鸡粪(T1)、添加5%鸡粪+5%炉渣(T2)、添加5%鸡粪+10%炉渣(T3),分析不同处理对疏浚土理化性质、皇竹草生长及养分吸收的影响。[结果] 与CK相比,3种处理均显著改善了疏浚土的理化性质。其中,T3处理的容重显著低于其他处理,总孔隙度和毛管持水量显著高于其他处理;且土壤有机质、全氮、全磷、全钾、碱解氮、速效磷和速效钾含量均为最高水平。鸡粪和炉渣添加显著促进皇竹草的生长及养分积累,T3处理的促进效果最佳,株高、生物量及地上部和地下部的N,P,K积累量均最大,且显著高于其他处理。主成分分析方法综合评价结果显示:不同处理对疏浚土的改良效果排序为T3>T2>T1。[结论] 添加鸡粪或鸡粪+炉渣能显著改善疏浚土的理化性质,促进皇竹草生长和养分累积,且T3处理对疏浚土的改良效果最佳。  相似文献   

9.
城市生活垃圾堆肥过程中腐熟度指标及控制参数   总被引:12,自引:1,他引:11  
以日处理400 t经马家楼筛分处理后的15~60 mm生活垃圾的北京南宫堆肥厂垃圾堆肥过程为研究对象,对堆肥过程中垃圾的理化性质、腐熟度指标与控制参数进行了研究。结果表明,堆肥过程中水分含量是下降的;不同季节堆肥pH值的总体变化均呈上升趋势;电导率(EC)降到了作物受抑制的限定值以下,不会对作物产生盐分毒害;堆肥水浸提的腐殖酸E4/E6值随着垃圾堆肥腐熟度升高呈增加趋势;24 h和96 h的发芽率指数(GI)表明垃圾堆肥时间可以从8周缩短到5周;有机碳、总氮和C/N比随着堆肥时间的增加均呈下降趋势;C/N比与E4/E6值和GI(24 h和96 h)值呈显著负相关关系,EC值与E4/E6值和GI(24 h和96 h)值呈极显著负相关,而E4/E6值与GI(24 h和96 h)值呈极显著正相关。  相似文献   

10.
淡水湿地不同围垦土壤非耕季节呼吸速率差异   总被引:1,自引:0,他引:1  
选择何种湿地利用方式,使得土壤固碳能力及CO2气体排放受到的影响最小,是合理利用湿地、减少温室气体排放的关键所在,湿地土壤呼吸不仅受环境条件的影响,还受土壤本身性状的影响。以皖江地区为研究区域,利用定位试验对天然湿地及不同围垦利用方式下土壤在非耕季节CO2排放通量、大气温度及表层土壤温度进行测定,并对其土壤TOC含量进行分析。结果表明,CO2排放通量:水稻田[700.70 mg/(m2·h)]> 旱地[433.80 mg/(m2·h)]> 天然湿地[302.66 mg/(m2·h)],天然湿地土壤TOC含量明显高于围垦旱地及水稻田(0-30 cm),说明天然湿地较围垦旱地和水稻田对大气中CO2浓度贡献最小,能存储更多的碳。探讨了CO2排放通量与温度的相关性,得出3种土壤类型CO2排放通量与大气温度和表层土壤温度均呈正相关关系。  相似文献   

11.
低碳氮比条件下猪粪堆肥氨气和温室气体排放   总被引:7,自引:0,他引:7  
针对养殖场粪便产生量大、外加碳源物质成本高,堆肥需要添加大量的碳源物质,并且猪粪堆肥实际生产过程中氨气(NH_3)和温室气体(GHG)排放数据缺乏的问题,开展了低碳氮比(C/N)条件下的猪粪堆肥试验。试验采用箱式堆肥法,使用Innova 1312对氨气(NH_3)、氧化亚氮(N_2O)、甲烷(CH_4)和二氧化碳(CO_2)气体进行24h在线连续监测。结果表明:堆肥箱体内日平均温度超过50℃的持续天数均超过10d,满足国家相关标准的无害化要求;经过31d的好氧发酵,每千克初始原料鲜重的NH_3、N_2O、CH_4和CO_2的累计排放分别为2.27、0.07、0.24、135.72g,NH_3的排放主要集中在堆肥第1周和翻堆后10d,分别占总排放的31.09%和36.15%,GHG排放主要集中在第4周,占总排放的30.9%;在不考虑CO_2时,N_2O是GHG的主要贡献气体,贡献率为72.02%。堆肥过程中物料气体(NH_3、N_2O、CH_4和CO_2)累计排放量均与p H值呈现良好的正相关(P0.01)、与含水率和C/N呈现良好的负相关(P0.01)。建议对猪粪堆肥过程中NH_3的控制应集中在堆肥第1周和翻堆后,GHG减排应重点关注堆肥后期N_2O的排放。  相似文献   

12.
There is no standardized method for the sampling of greenhouse gas fluxes from soil. Two methods are primarily used: closed dynamic chamber (CDC) and closed static chamber (CSC) systems. The most complex and costly are the CDC systems, which can sample gases in situ. However, the low-cost CSC systems are being increasingly used in which the gas samples are collected manually and analyzed off-site at a later date. Given their growing popularity, it is important to optimize the sampling procedure of the CSC systems to ensure that the measurements are both repeatable and representative. Samples from a commercial potato crop were collected in the morning and afternoon at 0, 15, 30, 60, 90, and 120 min after the chambers were closed, and the concentrations of carbon dioxide (CO2), methane (CH4), and nitrous oxide (N2O) were determined using gas chromatography. The concentrations of CO2 and N2O inside chambers increased linearly over time, whereas the concentration of CH4 remained constant. The fluxes of CO2 and N2O from soil were greater in the afternoon than the morning, whereas the flux of CH4 was greater in the morning. For longer-term single-point soil flux monitoring using CSCs with a volume of 6.3 L, it is recommended that samples are collected in the morning at 0, 30, and 60 min after chambers are closed. This approach will ensure that the concentration of the gases are representative and will allow for a high level of repeatability and certainty in the results.  相似文献   

13.
Stack gases of wood and oil burning boilers were analyzed by a low resolution FT-IR gas analyzer. Concentrations of carbon dioxide (CO2), carbon monoxide (CO), nitric oxide (NO), nitrogen dioxide (NO2), nitrous oxide (N2O), hydrogen cyanide (HCN), sulfur dioxide (SO2), methane (CH4), and water vapor (H2O) were predicted in real time by multicomponent analysis. Detection limits, linearity, analysis accuracy and long time repeatability were experimentally determined for selected gas components. Applicability of the measurement method was demonstrated by analysis of stack gas mixtures of known concentrations. The results indicate that all the primary stack gas components can be measured by the low resolution FT-IR gas analyzer with comparable results to single component measurement methods.  相似文献   

14.
为探究锰矿物添加对微好氧堆肥过程腐熟、温室气体和臭气排放的影响,以由厨余垃圾、水稻秸秆、羊粪和尾菜组成的多元混合物料堆肥为研究对象,共设3个处理,采用间歇通风方式,将通风速率为0.14 L/(kg·min)设置为好氧堆肥对照(CK),速率为0.06 L/(kg·min)为微好氧处理(T1),添加二氧化锰(MnO2)的微好氧处理为T2。结果表明:多元废弃物好氧或微好氧堆肥在堆制70 d后均能腐熟,但T2处理腐熟度显著高于T1。微好氧处理T1、T2减少了26.47%~30.29%的NH3和33.19%~38.60%的N2O的排放,总温室效应减少了29.26%~31.38%。臭气的排放集中在前14 d,T1、T2处理的H2S和VOCs的释放量显著增加了320.35%~501.04%和39.82%~53.63%。因此,微好氧堆肥可达到减排目的,但却加剧臭气的排放;MnO2可提高促进堆肥腐熟,降低温室气体和臭气的排放。  相似文献   

15.
Cultivation of rice in unsaturated soils covered with mulch is receiving more attention in China because of increasingly serious water shortage; however, greenhouse gas emission from this cultivation system is still poorly understood. A field experiment was conducted in 2001 to compare nitrous oxide (N2O) and methane (CH4) emission from rice cultivated in unsaturated soil covered with plastic or straw mulch and the traditional waterlogged production system. Trace gas fluxes from the soil were measured weekly throughout the entire growth period using a closed chamber method. Nitrous oxide emissions from unsaturated rice fields were large and varied considerably during the rice season. They were significantly affected by N fertilizer application rate. In contrast, N2O emission from the waterlogged system was very low with a maximum of 0.28 mg N2O m–2 h–1. However, CH4 emission from the waterlogged system was significantly higher than from the unsaturated system, with a maximum emission rate of 5.01 mg CH4 m–2 h–1. Our results suggested that unsaturated rice cultivation with straw mulch reduce greenhouse gas emissions.  相似文献   

16.
On the main Japanese island of Honshu, bark or sawdust is often added to cattle excreta as part of the composting process. Dairy farmers sometimes need to dispose of manure that is excess to their requirements by spreading it on their grasslands. We assessed the effect of application of bark- or sawdust-containing manure at different rates on annual nitrous oxide (N2O) and methane (CH4) emissions from a grassland soil. Nitrous oxide and CH4 fluxes from an orchardgrass (Dactylis glomerata L.) grassland that received this manure at 0, 50, 100, 200, or 300?Mg?ha?1?yr?1 were measured over a two-year period by using closed chambers. Two-way analysis of variance (ANOVA) was employed to examine the effect of annual manure application rates and years on annual N2O and CH4 emissions. Annual N2O emissions ranged from 0.47 to 3.03?kg?N?ha?1?yr?1 and increased with increasing manure application rate. Nitrous oxide emissions during the 140-day period following manure application increased with increasing manure application rate, with the total nitrogen concentration in the manure, and with cumulative precipitation during the 140-day period. However, manure application rate did not affect the N2O emission factors of the manure. The overall average N2O emission factor was 0.068%. Annual CH4 emissions ranged from ?1.12 to 0.01?kg?C?ha?1?yr?1. The annual manure application rate did not affect annual CH4 emissions.  相似文献   

17.
Soil carbon (C) content, often found at elevated levels in manured soils, can play a critical role in regulating nitrous oxide emissions. Nitrate availability and oxygen status are the other primary drivers of emissions, yet the interaction of these three variables and the dynamics of the denitrification process are inadequately known. Emissions of N2O and N2 were measured from two New York State soils that were historically managed either with regular cattle manure applications (M) or without manure (NM). For 168 h, repacked soil cores were maintained at 80 % water-filled pore space after the application of 0, 50, 100, and 200 kg ha?1 of labeled K15NO3. Significant differences were found in the N2O emission profiles between the two treatments with a simultaneous increasing trend in emissions with higher fertilizer applications. The M soil produced 53-, 15.5-, and 8.6-fold increases in N2O emissions over the NM soil at the 50-, 100-, and 200-kg ha?1 N rates, respectively. Additionally, the mean ratio of nitrous oxide to total denitrification (N2O/(N2O + N2)) was higher for M soil. It increased to values of 0.17, 0.25, and 0.43 for fertilizer rates of 50, 100, and 200 kg ha?1, respectively, in contrast to ratios in the NM soil of 0.01, 0.03, and 0.14.  相似文献   

18.
Decomposition of organic materials, oxygen consumption, and carbon dioxide emission were investigated in Masukata mire, a small minerotrophic mire in central Japan. We selected three dominant community types in the mire, a Sphagnum palustre community, a Phragmites australis community, and an Alnus japonica community, for the decomposition study sites. Decomposition rates were measured in the field by examining mass loss of peat and cellulose for 6 months. The oxygen consumption rate was measured in the field using a closed chamber equipped with an oxygen electrode. The carbon dioxide emission rate of the peat was measured by an infrared gas analyser in the laboratory under controlled conditions. Results of these measurements were tested by correlation analysis. The rate of mass loss of peat positively correlated with the CO2 emission rate. The cellulose decomposition rate showed significant differences among community types, and it had significant positive correlation with the oxygen consumption rate. Although oxygen consumption measurement is not generally used to estimate peatland soil respiration, the oxygen consumption method can be used for predicting long-term decomposition rate according to different vegetation types within a short time.  相似文献   

19.
A high soil nitrogen (N) content in irrigated areas quite often results in environmental problems. Improving the management practices of intensive agriculture can mitigate greenhouse gas (GHG) emissions. This study compared the effect of maize stover incorporation or removal together with different mineral N fertilizer rates (0, 200 and 300 kg N ha?1) on the emission of nitrous oxide (N2O) and carbon dioxide (CO2) on a sprinkler-irrigated maize (Zea mays L.). The trail was conducted in the Ebro Valley (NE Spain) in a high nitrate-N soil (i.e. 200 g NO3–N kg?1). Nitrous oxide and CO2 emissions were sampled weekly using a semi-static closed chamber and quantified using the photoacoustic technique in 2011 and 2012. Applying sidedress N fertilizer tended to increase N2O emissions whereas stover incorporation did not have any clear effect. Nitrification was probably the main process leading to N2O. Denitrification was limited by the low soil moisture content (WFPS <?54%), due to an adequate irrigation management. Emissions ranged from ??0.11 to 0.36% of the N applied, below the IPCC (2007) values. Nitrogen fertilization tended to reduce CO2 emission, but only in 2011. Stover incorporation increased CO2 emission. Nitrogen use efficiency decreased with increasing mineral fertilizer supply. The application of N in high N soils of the Ebro Valley is not necessary until the soil restores a normal mineral N content, regardless of stover management. This will combine productivity with keeping N2O and CO2 emissions under control provided irrigation is adequately managed. Testing soil NO3 ?–N contents before fertilizing would improve N fertilizer recommendations.  相似文献   

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