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1.
水稻土中硫酸二乙酯分解产生含硫气体的研究   总被引:1,自引:0,他引:1  
为了探讨水稻土中含硫气体产生和释放的途径,在室内培养条件下,测定了南京水稻土中含硫气体的释放。结果从该淹水土壤中测出3种含硫气体;硫化氢(H2S),羰基硫(COS)和二甲基硫(DMS)气体。当土壤中加入硫酸二乙酯后,不仅上述3种气体的释放量增加了,而且还明显测出甲硫醇(CH3SH)和二硫化碳(CS2)。据此推测,水稻土中硫酸二乙酯的分解可能是CH3SH、CS2、COS、H2S、DMS5种气体产生释放的来源之一。在好氧条件(普通大气)下:(1)H2S和COS的释放量低于厌氧条件(充氮)。(2)CS2和CH3SH的释放量高于厌氧条件。(3)DMS的释放量不受空气中氧气含量的影响。分析了培养前后土壤pH和Eh的变化和影响。  相似文献   

2.
黄河三角洲翅碱篷湿地硫化氢和羰基硫排放动态研究   总被引:5,自引:0,他引:5  
利用静态箱/气相色谱法,观测了生长季(5~10月)黄河三角洲翅碱篷湿地H2S和COS的释放动态.结果表明,H2S、COS的排放通量具有明显的季节和日变化规律,在生长季,黄河三角洲翅碱篷湿地是H2S和COS的释放源,其中H2S的平均释放通量为4.97μg·(m2·h)-1,COS的平均释放通量为0.92μg·(m2·h)-1.在探讨的环境因子中,不同环境因子对翅碱篷湿地H2S和COS释放通量的影响不同,其中土壤SO2-4含量是影响H2S释放通量的主要因素,土壤含水量是影响COS释放通量的主要因素.含硫气体的排放可能还受到其它因素如植物、潮汐状况等多种因素的影响.  相似文献   

3.
挥发性有机硫化合物释放及对全球环境的影响   总被引:4,自引:0,他引:4  
介绍了几种挥发性有机硫化合物:甲硫醚(DMS)、羰基硫(COS)、甲硫醇(MSH或CH3SH)、二硫化碳(CS2)和二甲基二硫(DMDS)从各种自然源(主要是生物源)释放的情况,并论述了有机硫气体释放对全球环境和气候的影响。着重阐述了在海洋、陆地生态系统中,各种生物硫源的释放情况和有机硫气体的迁移、转化规律。讨论了大气中痕量有机硫气体的分析方法,并提出一些建议。  相似文献   

4.
水稻土中甲硫氨酸分解释放挥发性含硫气体的影响因素   总被引:3,自引:1,他引:2  
为了探讨水稻土中含硫气体产生和释放的途径 ,在室内培养条件下 ,测定了南京水稻土中含硫气体的释放 .从该淹水土壤中测出 3种含硫气体 ;羰基硫 (COS)、二甲基硫 (DMS)和少量硫化氢 (H2S)气体 .当土壤中加入甲硫氨酸后 ,DMS气体的释放量有了明显增加 ,此外还有大量甲硫醇 (CH3SH)和二甲基二硫 (DMDS)气体测出 .而 COS在好氧条件 (普通大气淹水 )下的释放量明显增加 ,在厌氧条件 (充氮淹水 )下的释放量变化不明显 ;只有 H2S的释放量几乎没变 .这些结果表明 ,甲硫氨酸的分解可能是 COS、DMS、CH3SH和 DMDS的产生源之一 ,且释放含硫气体的种类明显不同于胱氨酸和半胱氨酸 .在好氧 (普通大气 )条件下 ,DMDS和 CH3SH的释放量低于厌氧情况 (充氮气 )下的释放量 ,DMS则高于厌氧条件下的释放量 .这表明 ,水稻土中甲硫氨酸分解产生 DMDS和 CH3SH需较强的还原条件 ,产生这 2种气体的微生物需要严格的厌氧条件 .产生 DMS的微生物则比前者需要高一些的含氧量 .土壤 pH值和含水量及光照对甲硫氨酸分解释放含硫气体均有影响 .各含硫气体在持水率 50%、普通大气、光照条件下的释放量明显高于无光照条件下的释放量 .  相似文献   

5.
三江平原小叶章湿地H2S和COS排放动态   总被引:1,自引:0,他引:1  
利用静态箱/气相色谱法,观测了生长季(5~9月)三江平原小叶章沼泽化草甸H2S和COS的释放动态,结果表明,H2S、COS的排放通量具有季节和日变化规律,小叶章沼泽化草甸H2S的平均释放通量为0.34μg·(m2·h)-1,COS的平均释放通量为-0.29μg·(m2·h)-1;在生长季,小叶章沼泽化草甸表现为H2S的源,COS的汇小叶章的生长过程对H2S、COS的排放影响显著,在小叶章生长旺盛期,H2S出现排放峰值,COS出现吸收高峰,H2S和COS的释放通量呈负相关.  相似文献   

6.
小麦田中有机硫气体的释放   总被引:2,自引:0,他引:2  
采用密闭箱法对不同施肥条件下小麦田中羰基硫(COS)、二硫化碳(CS2)和二甲基硫(DMS)的释放情况进行了监测.结果表明,小麦生长过程对COS、CS2和DMS释放影响显著,小麦对COS有明显吸收作用,DMS和CS2是麦田中释放的主要含硫气体.COS和CS2释放速率昼夜变化明显.仅施用有机肥的麦田,硫释放总量高于其它田块.不同施肥条件的田块,硫释放总量范围在-1.40~0.79mg·ml-2之间.  相似文献   

7.
珠江三角洲典型生态系统有机含硫气体地气交换通量比较   总被引:1,自引:1,他引:0  
选取珠江三角洲森林、稻田和城市草地和菜地为研究对象,运用静态箱法,测量土壤COS、DMS、CS2和DMDS通量,并分析了环境因子对含硫气体交换速率的影响。结果表明,稻田和菜地交换速率最大,城市草地次之,森林土壤交换速率最小。森林土壤吸收COS,释放DMS,有凋落物土壤气体交换速率高于无凋落物土壤,CS2和DMDS源与汇存在很大不确定性。森林COS通量受温度、土壤含水量、土壤肥力、土壤微生物和土壤呼吸的共同影响;有水稻稻田吸收COS,无水稻稻田释放COS,有水稻稻田DMS释放速率显著高于无水稻稻田。干旱稻田土壤吸收COS,水淹土壤释放COS,但DMS、CS2和DMDS释放速率两者间无显著影响;城市草地吸收COS释放DMS,CS2和DMDS存在不确定性,有草土壤COS和DMS交换速率高于无草土壤,割草前后气体释放速率无显著变化;菜地释放VOSCs,其中DMDS占75%。  相似文献   

8.
建立了采用预浓缩和GC FPD测定环境大气和海洋表层水中挥发性硫化物(COS、DMS和CS2)的方法.该方法对气态COS、DMS和CS2的回收率分别为(95±4)%,(86±3)%和(91±6)%(n=5),精密度分别为4 75%,8 26%和7 55%(n=5).对水体中COS、DMS和CS2的回收率分别为(86±8)%,(80±6)%和(97±12)%(n=5),精密度分别为8 17%,5 59%和11 70%.COS、DMS和CS2检出限分别为33pg,387pg和22pg.采用该方法测定了青岛近岸海域大气和表层海水中COS、DMS和CS2的浓度.结果表明,COS是近岸海域大气中主要挥发性硫化物,DMS是表层海水中最主要的挥发性硫化物.3种挥发性硫化物的浓度有明显的季节差异,夏季浓度远高于冬季浓度.  相似文献   

9.
水稻土中挥发性含硫气体的释放   总被引:1,自引:0,他引:1  
通过建立野外采样系统,对一个生长周期内水稻土释放的挥发性含硫气体进行了检测.研究结果表明:水稻土中释放的含硫气体主要为COS、CS2和DMS,并有少量的DMDS.估算出的各含硫气体的释放通量分别为81.11、6.33和10.71 mg·(m2·a)-1.我国水稻土释放含硫气体的通量为(S)0.013662 Tg/a,全球为(S)0.07992Tg/a  相似文献   

10.
易志刚  王新明 《环境科学》2011,32(8):2236-2239
通过静态箱采样和Entech7100预浓缩仪-GC-MS分析了半胱氨酸、硫化钠和硫酸钠对土壤吸收或释放羰基硫(COS)、二甲基硫醚(DMS)、二硫化碳(CS2)和二甲二硫醚(DMDS)等4种挥发性有机硫化合物(VOSCs)的影响.结果表明,添加半胱氨酸后,土壤由COS和CS2汇转变为源,DMS和DMDS通量显著增加,且...  相似文献   

11.
Measurements of atmospheric COS, CS2, DMS, SO2 and aerosol sulfate and methanesulfonate (MSA) concentrations were conducted in a loblolly pine forest in central Georgia between July and September 1990. The daytime profiles obtained for the reduced sulfur gases (COS, CS2, DMS) often showed significantly higher concentrations at the canopy level than above the forest canopy, indicating a net emission of these gases from the tree tops. No evidence was found for a net uptake of COS by the canopy during daytime. With one exception, all COS concentrations measured during the day were significantly higher than corresponding nighttime values. These results appear to be in conflict with recent studies suggesting a net uptake of atmospheric COS by plants during photosynthetic activity. Possible explanations for these different findings are discussed. Nighttime profiles indicated no major biosphere-atmosphere exchange of COS, CS2 or DMS. Nighttime DMS concentrations were significantly higher than corresponding daytime values. A clear inverse relationship between the diel variations of DMS and MSA was observed, consistent with rapid photochemical oxidation of DMS under the given conditions.  相似文献   

12.
水稻土中胱氨酸分解产生含硫气体的研究   总被引:1,自引:1,他引:0  
测定在室内培养情况下南京水稻土中挥发性含硫气体的释放.结果表明,该土壤中产生H2S、羰基硫(COS)和二甲基硫(MDS)气体.当土壤中加入胱氨酸后,检测到甲硫醇(CH3SH)、二硫化碳(CS2)、COS、H2S和DMS气体.除DMS之外,这些气体的释放量随胱氨酸添加量增加而增加.据此推测,水稻土中胱氨酸的分解可能是CH3SH、CS2、COS、H2S等4种气体产生释放的来源之一.在厌氧条件(充氮淹水)下检测到的含硫气体低于好氧条件(普通大气淹水).光照、pH值、土壤含水量等对含硫气体的释放量均有影响  相似文献   

13.
土壤中发生的挥发性有机硫气体的研究   总被引:11,自引:0,他引:11  
测定了张北、封丘、鹰潭、吴县、长沙、湛江等地旱地土壤和水稻土在室内培养情况下挥性有机硫气体的释放。结果表明,这些土壤中产生硫化氢、氧硫化碳、甲基硫醇、二甲基硫、二硫化碳和二甲基二硫等含硫气体。水稻土中产生的有机硫气体高于旱地土壤,同时施用有机肥和化肥后,土壤中发生的有机硫气体高于仅施用化肥,在厌氧条件下检测到的有机硫气体高旱地土壤、同时施用有机肥和化肥后,土壤中发赡有机硫气体高于仅施用化肥。在厌氧  相似文献   

14.
Measurements of the fluxes of reduced sulphur compounds to the atmosphere, from three types of inter-tidal site, representing saltmarsh creek, saltmarsh pan and saltmarsh vegetated surface, have been made using an enclosure method. The major S gases released were DMS, H2S and COS. Their fluxes showed a strong seasonal variation with a summer maximum apparently related to elevated sediment temperature. Laboratory experiments revealed no influence of illumination upon the fluxes. In summer, a net export of DMS in estuarine water exiting from the marsh was demonstrated but there was no export during winter. The average fluxes of gases from sediments to the atmosphere in summer from these three sites were all of similar magnitude, although less than those reported from the North Sea water column. When the area of inter-tidal sediments was taken into account it was concluded that inter-tidal areas did not make a significant direct contribution to the regional atmospheric sulphur budget.  相似文献   

15.
The sulfur cycle and its compartmental distribution within an atmosphere-plant-soil system was studied using a compartment model in the typical meadow Calamagrostis angustifolia wetland in the Sanjiang Plain Northeast China. The results showed that in the typical meadow C. angustifolia wetland ecosystem, soil was the main storage compartment and current hinge of sulfur in which 98.4% sulfur was accumulated, while only 1.6% sulfur was accumulated in the plant compartment. In the plant subsystem, roots and litters were the main storage compartment of sulfur and they remained 83.5% of the total plant sulfur. The calculations of sulfur turnover through the compartments of the typical meadow C. angustifolia wetland ecosystem demonstrated that the above-ground component took up 0.99 gS/m2 from the root, of which 0.16 gS/m2 was translocated to the roots and 0.83 gS/m2 to the litter. The roots took in 1.05 gS/m2 from the soil, subsequent translocation back to the soil accounted for 1.31 gS/m2, while there was 1.84 gS/m2 in the litter and the net transfer of sulfur to the soil was more than 0.44 gS/(m2·a). The emission of H2S from the typical meadow C. angustifolia wetland ecosystem to the atmosphere was 1.83 mgS/(m2·a), while carbonyl sulfide (COS) was absorbed by the typical meadow C. angustifolia wetland ecosystem from the atmosphere at the rate of 1.76 mgS/(m2·a). The input of sulfur by the rainfall to the ecosystem was 4.85 mgS/m2 during the growing season. The difference between input and output was 4.78 mgS/m2, which indicated that sulfur was accumulated in the ecosystem and may cause wetland acidify in the future.  相似文献   

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