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Methane in soil gas and its transfer to the atmosphere in the Yakela condensed gas field in the Tarim Basin,Northwest China 被引量:2
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作者 Tang Junhong Wang Guojian +1 位作者 yin haoyong Li Hongjun 《Petroleum Science》 SCIE CAS CSCD 2013年第2期183-189,共7页
In this study, by analyzing CH4 concentration and 613CCH4 in soil-gas profiles, the potentials of CH4 gas transfer from ground to atmosphere were studied at four representative sectors in the Yakela condensed gas fiel... In this study, by analyzing CH4 concentration and 613CCH4 in soil-gas profiles, the potentials of CH4 gas transfer from ground to atmosphere were studied at four representative sectors in the Yakela condensed gas field in the Tarim Basin, Xinjiang, China. These are: 1) the oil-gas interface sector, 2) fault sector, 3) oil-water interface sector, 4) an external area. Variation in CH4 in soil-gas profiles showed that CH4 microseepage resulted from the migration of subsurface hydrocarbon from deep-buried reservoirs to the earth's surface. It was found that CH4 from deep-buried reservoirs could migrate upwards to the surface through faults, fissures and permeable rocks, during which some CH4 was oxidized and the unoxidized methane remained in the soil or was emitted into the atmosphere. The lowest level of CH4 at the soil-gas profile was found at the CH4 gas-phase equilibrium point at which the CH4 migration upwards from deep-buried reservoirs and the CH4 diffusion downwards from the atmosphere met. The 613CcH4 and ethane, propane in soil gas exhibited thermogenic characteristics, suggesting the occurrence of CH4 microseepage from deep-buried reservoirs. A linear correlation analysis between CH4 concentrations in soil gas and temperature, moisture, pH, Eh, Ec and particle size of soil indicated that both soil Eh and soil temperature could affect CH4 concentration in soil gas while soil pH could indirectly influence soil methanotrophic oxidation via impacting soil Eh. 展开更多
关键词 Soil gas CH4 concentration carbon isotope microseepage oil reservoir
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纳米Ag/C空心球的制备及无酶H_2O_2电化学传感
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作者 祝佳杰 殷好勇 +2 位作者 占天昱 巩建英 聂秋林 《杭州电子科技大学学报(自然科学版)》 2018年第6期74-78,共5页
以SiO_2为模板制备出空心碳球,再用微波辅助原位还原的方法成功在空心碳球表面负载了纳米Ag颗粒,并对其形貌和结构进行了表征。结果表明:平均直径小于10nm的Ag颗粒均匀地负载到空心碳球表面。电化学结果显示纳米Ag/C空心球对过氧化氢H_2... 以SiO_2为模板制备出空心碳球,再用微波辅助原位还原的方法成功在空心碳球表面负载了纳米Ag颗粒,并对其形貌和结构进行了表征。结果表明:平均直径小于10nm的Ag颗粒均匀地负载到空心碳球表面。电化学结果显示纳米Ag/C空心球对过氧化氢H_2O_2具有较好的无酶电化学传感性能,其过氧化氢检测浓度范围为5~77 700μmol/L,并对抗坏血酸、赖氨酸、缬氨酸、脯氨酸等均有良好的抗干扰能力。 展开更多
关键词 纳米AG H2O2传感 微波还原 碳球
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