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1.
旱地雨养马铃薯(Solanum tuberosum)田是一个重要的氧化亚氮(N2O)排放源,是当前农业温室气体排放的研究热点之一。在马铃薯主粮化战略的推动下,马铃薯种植面积不断扩大,覆膜和垄作栽培是其中两种重要的种植方式,但其栽培下的马铃薯田N2O排放规律尚不十分明确。选择内蒙古自治区武川县自然降水条件下的马铃薯田为试验对象,设置平作覆膜、垄作覆膜、平作不覆膜和垄作不覆膜4种处理,采用静态箱(暗箱)-气相色谱法监测N2O的排放通量并分析其排放特征,运用实时荧光定量PCR技术(Real-time quantitative PCR,q-PCR)检测不同时期与N2O排放相关的硝化菌和反硝化菌丰度,并测定相关的土壤要素,进而探究在覆膜和垄作条件下,影响雨养马铃薯田N2O排放特性和规律的微生物机理。结果表明,雨养马铃薯田是N2O排放源,其全生育期内平均N2O累积排放量为N (0.47±0.08) kg·hm-2。N  相似文献   

2.
为了解冬季调水期南四湖表层水中温室气体的溶存浓度及其排放通量,采集南四湖各湖区和主要入湖河流的河口区表层水及气体样品,分析了水体的理化指标以及CO2、CH4和N2O的溶存浓度,采用薄边界层扩散模型法估算了水—气界面排放通量,并探讨了影响调水期南四湖温室气体溶存浓度的主要因子.结果表明,调水期南四湖表层水中N2O、CH4和CO2浓度分别为(23.0±6.13) nmol·L-1、(0.15±0.10)μmol·L-1和(52.4±11.4)μmol·L-1,均处于高度过饱和状态,排放通量分别为(0.22±0.18)μmol·m-2·h-1、(3.95±2.73)μmol·m-2·h-1和(658±336)μmol·m-2·h-1;浓度和排放通量多与冬季其他湖泊相当...  相似文献   

3.
温室气体浓度上升导致全球气候变暖已成为国际社会关注的焦点。氧化亚氮(N2O)作为痕量温室气体,在全球气候变暖过程中扮演着重要的角色。河流和水库被认为是N2O释放的活跃区域,然而目前研究多集中在对单一河流或水库的监测,对大范围河库系统的N2O研究仍相对欠缺。选取澜沧江(云南段)流域作为考察对象,在2022年4月、8月采用悬浮箱采集24个点位的水-气界面的气体样品,并于实验室通过气象色谱仪检测气样氧化亚氮浓度,探究该流域干支流N2O释放通量的时空分布特征;同时,测定了水体水环境参数,解析其时空差异的环境影响因素。结果表明,1)在时间尺度上,澜沧江(云南段)旱季N2O通量均值低于雨季。旱季N2O通量均值为0.10 mg·m-2·d-1,雨季为0.18 mg·m-2·d-1,其中旱季干流均值为0.11 mg·m-2·d-1,支流为0....  相似文献   

4.
不同耕作制度对南方稻田甲烷排放的影响   总被引:4,自引:0,他引:4  
胡立峰  李琳  陈阜  叶桃林  杨光立 《生态环境》2006,15(6):1216-1219
以南方稻田温室气体甲烷排放为研究对象,选取冬季休闲和种植绿肥作物紫云英(AstragalussinicusL.)两种主要模式,在早稻(OryzasativaL.)移栽之前进行旋耕和翻耕两种处理,以全年休闲为空白对照,利用静态箱法测定甲烷排放通量。结果表明,甲烷排放在水稻抽穗期达到极大值,至收获甲烷排放呈减少趋势,以无稻全年休闲区甲烷排放通量最低,在抽穗至收获阶段平均排放速率为3.43mg·m-2·h-1,冬闲及冬季种植紫云英处理分别比无稻休闲区排放通量高114.3%和420.3%;甲烷浓度具有强烈的空间异质性,地表以上50cm空间内,早稻抽穗至成熟阶段甲烷浓度是大气甲烷浓度的35.2倍;稻田甲烷高浓度低排放速率以及低浓度高排放速率现象表明,甲烷排放速率与其浓度之间具有非一致性。  相似文献   

5.
油菜地CO2、N2O排放及其影响因素   总被引:2,自引:0,他引:2  
2005年11月至2006年5月采用静态箱法对成都平原典型水稻 - 油菜轮作区油菜地CO2、N2O排放通量进行原位测定.结果表明,CO2排放通量为121.4~1 585.8 mg·m-2·h-1,平均656.8 mg·m-2·h-1;N2O排放通量为18.0~521.0 μg·m-2·h-1,平均168.0 μg·m-2·h-1.在整个油菜生长期内,地下5 cm土壤温度与CO2、N2O排放通量之间呈指数函数关系.3种不同处理油菜地CO2、N2O排放通量均为常规处理>无氮处理>裸地处理.土壤温度、施氮和植物生长是影响油菜地CO2、N2O排放的主要因素.  相似文献   

6.
近年来,稻田Cd污染引起的环境及健康问题日益突出。应用钝化技术对土壤中有效性Cd进行钝化对稻田生态系统中Cd的生物地球化学循环具有重要的理论和实际意义。在广东省韶关市仁化县董塘镇红星村一受Cd污染的稻田上,设置大田试验,研究铁基生物炭对Cd在大田土壤-水稻系统迁移的影响以及对作物产量的影响。试验共设6个处理:(1)空白对照;(2)每一季水稻插秧前,一次性施加1500 kg·hm-2的普通生物炭;(3)每一季水稻插秧前,一次性施加75 kg·hm-2的零价铁(Fe0);(4)每一季水稻插秧前,一次性施加1500 kg·hm-2、ω(Fe)=1%的铁基生物炭(ω(Fe)=1%in Fe-Biochar);(5)每一季水稻插秧前,一次性施加1500 kg·hm-2、ω(Fe)=3%的铁基生物炭(ω(Fe)=3%in Fe-Biochar);(6)每一季水稻插秧前,一次性施加1500 kg·hm-2、ω(Fe)=5%的铁基生物炭(ω(Fe)=5%in Fe-Biochar)。结果表明:(1)施用生物炭、铁粉和铁基生物炭土壤钝化调理剂可以增加水稻产量,显著降低籽粒重金属Cd含量;(2)施用铁基生物炭可以显著增加水稻根表铁膜Fe含量,同时显著增加水稻根表铁膜固定的Cd量,抑制重金属Cd向籽粒的运输累积。综合考虑施用成本和钝化效果,对于Cd污染稻田,建议施用1500 kg·hm-2、ω(Fe)=3%的铁基生物炭材料。  相似文献   

7.
在“碳中和”的大背景下,污水生物处理过程中氧化亚氮(N2O)的释放已经引起了人们的广泛关注,探究N2O的产生机理和寻找缓解N2O释放的策略也成为研究的热点.分析污水处理过程中能够产生N2O的微生物及其特性,以及硝化过程和反硝化过程N2O的产生机理,并从N2O释放影响因素的角度总结缓解污水生物处理过程中N2O释放的策略.随着对N2O产生和消耗的研究不断深入,N2O缓解释放的策略不再局限于工艺参数优化,微生物群落结构调控和完全反硝化过程强化也成为N2O减排策略研究的热点.生物处理硝化过程不能消耗N2O,只能通过减少N2O产生的方式来降低N2O的排放;与硝化不同,N2O是反硝化过程的中间产物,这也就意味着反硝化过程能够消耗N2O,因此反硝化过程作为N2  相似文献   

8.
利用IKONOS高分辨率(1m)卫星遥感图,进行典型抽样和地形→土地利用→土地覆盖→综合信息提取的方法,选定了代表川中丘陵区类特征的四川省金堂县为研究区域,通过对研究区域中不同固定耕作制度下代表性田块的选取,于2005年5月—2006年5月对田块管理者进行作物田间管理、作物产出等农业生产实际情况调查和分析,进行土壤理化性状、水样的测定,并结合当地的气象资料,利用DNDC模型模拟川中丘陵区不同耕作制度下稻田温室气体的排放情况。结果表明:冬水田-水稻田(PF)水稻生长期CH4排放通量为2.24 kg.hm-2.d-1,占年排放量的80.73%;水稻生长期和冬闲期N2O通量分别为0.033和0.003 6 kg.hm-2.d-1,水稻生长期排放量为4.28 kg.hm-2,占年总排放量的83.59%。CH4和N2O排放量在水稻整个生季节存在明显的互为消长关系。油菜-小麦田(RR)水稻生长期CH4排放通量为1.16 kg.hm-2.d-1,是休闲期的20.71倍,水稻生长期CH4排放量占年排放量的90.48%;水稻生长期和非水稻生长期N2O排放通量分别为0.070和0.027 kg.hm-2.d-1,水稻生长期N2O排放量为8.01 kg.hm-2,占年排放量的54.19%。小麦-水稻田(RW)水稻生长期CH4排放通量为1.24 kg.hm-2.d-1,是休闲期的21.02倍。水稻生长期CH4排放量占年排放量的89.75%;水稻生长期和非水稻生长期N2O排放通量分别为0.089和0.030 kg.hm-2.d-1,水稻生长期N2O排放量为9.61 kg.hm-2,占年排放量的55.23%。PF年CH4排放量是RR和RW的近3倍,且少一季作物产量,应尽量将冬水田改为两季田。  相似文献   

9.
利用静态箱/气相色谱法对成都平原蔬菜地土壤-作物系统CO2的排放通量变化进行了观测,并分析了作物系统CO2排放速率与环境因子间的关系。多元逐步回归及单因子分析结果表明:施氮与不施氮处理的CO2排放速率与地下5 cm处土壤温度呈极显著正相关,土壤温度是影响蔬菜地CO2排放的主导因子;二者的Q10值分别为3.67和3.55。  相似文献   

10.
稻田甲烷排放通量与农业管理措施的关系   总被引:1,自引:0,他引:1  
1990至1992年对北京地区的麦后稻区及单季稻区进行了三年的稻田甲烷排放通量的测定,麦后稻区的甲烷排放通量约17.5mg/m~2·h;单季稻小区约在8.5-10mg/m~2·h。有机底肥的用量是影响甲烷排放通量的首要因素,旱直播及仅使用化肥可降低甲烷排放通量。在一定量有机底肥的条件下,采用间歇灌溉的方法既可保持或提高水稻的产量,又可抑制或降低甲烷的排放通量,但也观测到干干湿湿的状态下温室气体N_2O的排放通量有所增加。  相似文献   

11.
• Earthworms increase CO2 and N2O emissions in agricultural and forest soil. • 10% biochar suppresses CO2 and N2O emissions in forest soil. • Biochar interacted with earthworm to significant affect CO2 and N2O emissions. The application of manure-derived biochar offers an alternative to avoid the direct application of manure to soil causing greenhouse gas emission. Soil fauna, especially earthworms, can markedly stimulate carbon dioxide (CO2) and nitrous oxide (N2O) emissions from soil. This study therefore investigated the effect of cattle manure biochar (added at rates of 0, 2%, or 10%, coded as BC0, BC2 and BC10, respectively) application, with or without earthworm Aporrectodea turgida, on emissions of CO2 and N2O and changes of physic-chemical properties of agricultural and forest soils in a laboratory incubation experiment. The BC10 treatment significantly enhanced cumulative CO2 emissions by 27.9% relative to the untreated control in the agricultural soil. On the contrary, the BC2 and BC10 treatments significantly reduced cumulative CO2 emissions by 16.3%–61.1% and N2O emissions by 92.9%–95.1% compared to the untreated control in the forest soil. The addition of earthworm alone significantly enhanced the cumulative CO2 and N2O fluxes in agricultural and forest soils. Cumulative CO2 and N2O fluxes were significantly increased when BC2 and BC10 were applied with earthworm in the agricultural soil, but were significantly reduced when BC10 was applied with earthworm in the forest soil. Our study demonstrated that biochar application interacted with earthworm to affect CO2 and N2O emissions, which were also dependent on the soil type involved. Our study suggests that manure biochar application rate and use of earthworm need to be carefully studied for specific soil types to maximize the climate change mitigation potential of such management practices.  相似文献   

12.
于2017年冬季12月13—21日在青藏高原东缘理塘地区分昼夜采集PM2.5样品,并用DRI2001A热光碳分析仪测定了有机碳(OC)和元素碳(EC)的质量浓度,研究青藏高原PM2.5中碳组分的化学特征及主要来源,以期为理塘地区制定污染排放政策提供参考。结果表明,2017年冬季青藏高原东缘理塘地区PM2.5平均质量浓度为44.34μg·m?3,OC和EC的质量浓度为12.72μg·m?3和3.85μg·m?3,分别占PM2.5质量浓度的29.61%和8.96%。通过经验公式,计算得到总碳气溶胶(TCA)质量浓度为24.20μg·m?3,占PM2.5的54.84%,说明碳质气溶胶对青藏高原东缘理塘地区PM2.5有着十分重要的贡献。OC和EC在白天和夜间都有较高的相关性(相关系数分别为0.74和0.91),表明OC和EC的来源基本一致,受燃烧源影响较大。其中白天的相关系数低于夜间,说明青藏高原东缘理塘地区白天碳组分来源相对复杂。昼夜浓度对比显示,青藏高原东缘理塘地区PM2.5白天和夜间的质量浓度分别为53.88μg·m?3和33.44μg·m?3,OC和EC浓度白天高于夜间,表明白天人为排放相对较高。冬季观测期间,PM2.5中二次有机碳(SOC)昼夜浓度分别为1.11μg·m?3和3.03μg·m?3,分别占OC质量浓度的7.09%、26.59%,表明青藏高原东缘理塘城区白天碳组分主要为一次源。利用PMF 5.0软件对理塘城区碳组分进行进一步的解析,结果显示燃煤和生物质燃烧的混合源对总碳(TC)的贡献高达47.84%,占比最高;其次是汽车尾气和柴油车尾气源,贡献率分别为28.62%和23.54%。  相似文献   

13.
● A series of Cu-ZSM-5 catalysts were tested for DMF selective catalytic oxidation. ● Cu-6 nm samples showed the best catalytic activity and N2 selectivity. ● Redox properties and chemisorbed oxygen impact on DMF catalytic oxidation. ● Isolated Cu2+ species and weak acidity have effects on the generation of N2. N, N-Dimethylformamide (DMF), a nitrogen-containing volatile organic compound (NVOC) with high emissions from the spray industry, has attracted increasing attention. In this study, Cu-ZSM-5 catalysts with different CuO particle sizes of 3, 6, 9 and 12 nm were synthesized and tested for DMF selective catalytic oxidation. The crystal structure and physicochemical properties of the catalyst were studied by various characterization methods. The catalytic activity increases with increasing CuO particle size, and complete conversion can be achieved at 300–350 °C. The Cu-12 nm catalyst has the highest catalytic activity and can achieve complete conversion at 300 °C. The Cu-6 nm sample has the highest N2 selectivity at lower temperatures, reaching 95% at 300 °C. The activity of the catalysts is determined by the surface CuO cluster species, the bulk CuO species and the chemisorbed surface oxygen species. The high N2 selectivity of the catalyst is attributed to the ratio of isolated Cu2+ and bulk CuO species, and weak acidity is beneficial to the formation of N2. The results in this work will provide a new design of NVOC catalytic oxidation catalysts.  相似文献   

14.
大气CO2浓度升高已成为世界范围内重要环境问题。为了解大气CO2浓度升高对春小麦光合作用及水分生理生态特性的影响,在典型半干旱区定西利用开顶式气室(OTC)试验平台,以春小麦“定西24号”为供试品种,开展了CO2浓度增加模拟试验。试验设对照(390μmol·mol?1)、480μmol·mol?1和570μmol·mol?1等3个CO2浓度(摩尔分数)梯度。结果表明:在对照和增加CO2浓度条件下,春小麦叶片净光合速率和蒸腾速率日变化均呈“双峰型”分布,出现明显的“午休”现象;胞间CO2浓度的日变化表现为斜“V”字型曲线;叶水势日变化呈现反抛物线曲线走向,在中午后出现水势曲线拐点。在不同生育时期内,净光合速率、气孔导度和胞间CO2浓度均表现为开花期最大,乳熟期最小。而蒸腾速率表现为开花期最大,拔节期最小,叶片水平水分利用效率表现为孕穗期最大,乳熟期最小。随着CO2浓度升高,春小麦叶片净光合速率、胞间CO2浓度、水分利用效率和水势提高,气孔导度和蒸腾速率降低。与对照大气CO2浓度相比,在480μmol·mol?1浓度和570μmol·mol?1浓度下,整个生育期净光合速率平均分别提高了14.68%和28.20%,气孔导度平均降低了15.29%和24.83%,胞间CO2浓度平均提高了10.38%和26.15%,蒸腾速率平均减小了6.63%和12.41%,WUE平均增加了22.9%和46.9%。随着CO2浓度升高,蒸腾失水减少,叶片水势不断增加,从而增强了春小麦对干旱胁迫的抵御能力。研究结果为我国半干旱区春小麦对全球气候变化下的敏感性及适应性提供理论参考。  相似文献   

15.
•Bacterially-mediated coupled N and Fe processes examined in incubation experiments. •NO3 reduction was considerably inhibited as initial Fe/N ratio increased. •The maximum production of N2 occurred at an initial Fe/N molar ratio of 6. •Fe minerals produced at Fe/N ratios of 1–2 were mainly easily reducible oxides. The Fe/N ratio is an important control on nitrate-reducing Fe(II) oxidation processes that occur both in the aquatic environment and in wastewater treatment systems. The response of nitrate reduction, Fe oxidation, and mineral production to different initial Fe/N molar ratios in the presence of Paracoccus denitrificans was investigated in 132 h incubation experiments. A decrease in the nitrate reduction rate at 12 h occurred as the Fe/N ratio increased. Accumulated nitrite concentration at Fe/N ratios of 2–10 peaked at 12–84 h, and then decreased continuously to less than 0.1 mmol/L at the end of incubation. N2O emission was promoted by high Fe/N ratios. Maximum production of N2 occurred at a Fe/N ratio of 6, in parallel with the highest mole proportion of N2 resulting from the reduction of nitrate (81.2%). XRD analysis and sequential extraction demonstrated that the main Fe minerals obtained from Fe(II) oxidation were easily reducible oxides such as ferrihydrite (at Fe/N ratios of 1–2), and easily reducible oxides and reducible oxides (at Fe/N ratios of 3–10). The results suggest that Fe/N ratio potentially plays a critical role in regulating N2, N2O emissions and Fe mineral formation in nitrate-reducing Fe(II) oxidation processes.  相似文献   

16.
近年来中国大部分区域大气硫、氮沉降速率趋于平稳甚至下降,但西北地区煤炭行业的快速发展使得硫、氮沉降速率加快.燃煤电厂作为酸前体物的主要排放源之一,在其周围开展硫、氮沉降效应研究,可为合理评价煤矿区大气污染物控制措施的实施效果提供数据支撑.该文以宁东能源化工基地3个燃煤电厂为采样点,研究了电厂周围土壤化学和生物学性质的变...  相似文献   

17.
As the bioelectrochemical system, the microbial fuel cell (MFC) and the microbial electrolysis cell (MEC) were developed to selectively recover Cu2+ and Ni2+ ions from wastewater. The wastewater was treated in the cathode chambers of the system, in which Cu2+ and Ni2+ ions were removed by using the MFC and the MEC, respectively. At an initial Cu2+ concentration of 500 mg·L-1, removal efficiencies of Cu2+ increased from 97.0%±1.8% to 99.0%±0.3% with the initial Ni2+ concentrations from 250 to 1000 mg·L-1, and maximum power densities increased from 3.1±0.5 to 5.4±0.6 W·m-3. The Ni2+ removal mass in the MEC increased from 6.8±0.2 to 20.5±1.5 mg with the increase of Ni2+ concentrations. At an initial Ni2+ concentration of 500 mg·L-1, Cu2+ removal efficiencies decreased from 99.1%±0.3% to 74.2%±3.8% with the initial Cu2+ concentrations from 250 to 1000 mg·L-1, and maximum power densities increased from 3.0±0.1 to 6.3±1.2 W·m-3. Subsequently, the Ni2+ removal efficiencies decreased from 96.9%±3.1% to 73.3%±5.4%. The results clearly demonstrated the feasibility of selective recovery of Cu2+ and Ni2+ from the wastewater using the bioelectrochemical system.  相似文献   

18.
Excess nitrate in Mississippi River water entering offshore areas is reported to contribute to low oxygen (hypoxia) conditions in the Gulf of Mexico. Excessive algal growth driven by the excess nitrogen results in a decrease in dissolved oxygen in bottom water. Reintroduction of Mississippi River waters into a Louisiana coastal wetland has the potential to reduce the amount of nitrate reaching offshore waters. In this study, reduction in the concentration of added NO3- was determined in sediment-water-columns collected from a wetland site in Breton Sound estuary receiving nutrient inputs from the Mississippi River. The capacity of a wetland to process nitrate in floodwater was determined in the laboratory. The rates of NO3- removal (determined from change in nitrate concentration in the floodwater) averaged 97 mg N m-2 d-1 over 16 d for a 1750-mg NO3-N m-2 addition, and 170 mg N m-2 d-1 over 16 d for a 3500-mg NO3-N m-2 addition. The total N2O-N emissions from the 1750- and 3500-mg NO3-N m-2 additions were 19 and 54 mg N m-2 accounting for 1.1% and 1.5% of the applied NO3-N, respectively. Using the acetylene-inhibition technique, the average denitrification rate was determined to be 57 and 87 mg N m-2 d-1 (21 and 32 g N m-2 yr-1) during the most active denitrification period of 5 d after incubation for 1750 and 3500 mg NO3--N m-2 of added nitrate in floodwater, respectively. The total N evolved over 11 d as N2O + N2 was equivalent to 436 and 921 mg N m-2 (24.9% and 26.3%, respectively, of added N). Increasing the amount of NO3- applied to the overlying water increased the rate of NO3- loss and N2O emission significantly. The thickness of the oxidized surface sediment layer was also influenced by the NO3- application to the floodwater with a significant linear correlation between nitrate addition and thickness of the oxidized layer (r = 0.9998, p = 0.01). This study indicates that wetlands receiving diverted Mississippi River water have the potential to process and remove NO3- in the river water, reducing the amount of NO3- reaching to offshore areas.  相似文献   

19.
为研究嘉兴地区嘉善冬季污染时段和清洁时段PM2.5化学组分特征,结合气象数据对2019年1月嘉兴市嘉善县善西超级站在线自动监测PM2.5及化学组分数据、气态污染物(NO2和SO2)进行了分析.结果表明,2019年1月嘉善善西超级站污染时段PM2.5浓度(97.18μg·m-3)为清洁时段(36.77μg·m-3)的2.6倍.污染时段水溶性离子浓度(41.58μg·m-3)较清洁时段(19.82μg·m-3)高21.76μg·m-3,但占比有所降低,含碳组分比例增加.OC;EC比值为3.93,可能受到燃煤及机动车排放的共同影响.低风速及高湿有利于NO2和SO2等气态污染物进行二次转化,污染时段硫转化率和氮转化率均比清洁时段高,分别增高7.93%和54.11%,说明NOx向硝酸盐二次转化较为明显,导致颗粒物浓度升高.聚类分析结果显示67.34%气流来自北方,且相应的气流轨迹上污染物浓度比周边高,说明污染物存在一定的长距离输送.结合风玫瑰图可以看出,污染主要为本地及其周边的输送,污染物的长距离输送在短时会使污染浓度突增.因此,在重点关注本地及周边污染的同时,偏北气流下的污染物区域输送不可忽视.  相似文献   

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