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221.
CO2是主要的温室气体,利用油藏进行CO2封存,并结合原油厌氧生物降解产生的H2对其进行CH4转化,将提高原油采收率,减少封存CO2长久潜在的危害.本研究以高矿化度的青海油田油井采出液为研究对象,添加碳酸氢盐进行厌氧培养,以研究其中CO2进行CH4转化的可能性.结果显示,厌氧培养体系中检测到CH4产生.且在培养过程中,碳酸氢盐添加体系内CO2相对含量降低,甲烷相对产量升高,沥青质和芳香烃组分的相对含量降低,表明青海油田油藏中存在产甲烷菌及与产甲烷过程相关的菌群,同时CO2封存利于增强原油的流动性、提高采收率.定量PCR分析表明,碳酸氢盐的添加抑制了部分微生物的生长但古菌在整个体系生命活动中的作用并未减弱,且产甲烷古菌占古菌的相对丰度明显升高.因此,在青海油田利用油藏微生物进行CO2封存并产生新甲烷能源,同时提高原油采收率具有可能性. 相似文献
222.
为探究气象环境条件对消化系统疾病的影响,结合分布滞后非线性模型与广义相加模型,分析了2009~2011年气象环境要素与北京市消化系统疾病急诊人数的暴露-反应关系.结果显示,气温对消化系统疾病的影响主要体现为“高温效应”,高于25℃的气温其危险度RR随气温升高而增加,且滞后效应能达到10d以上.较为极端的湿度(RH<10%或RH>90%)会显著增加消化系统疾病的发病,并有持久的作用,其与高温结合会形成“高温低湿”和“高温高湿”2种让人不适的情况.0~2m/s的风速在短的滞后期(5d)最能增加发病危险性.而3~4m/s的风速对疾病的危险性小,说明适度的风速不影响健康.浓度高于200μg/m3的PM10和浓度高于70μg/m3的 NO2具有即时的危险性(5d内显著);而较高浓度(>55μg/m3)的SO2滞后一定时期后效应更加明显. 相似文献
223.
湖泊营养物生态分区是实现湖泊富营养化分区控制的基础。论文以东北区为研究区域,从自然地理要素、生态系统和人类活动三方面建立指标体系,利用粗糙集方法确定各指标的权重,并据此计算栅格尺度湖泊营养物生态分区评价分值,并将其投影到小流域尺度上。在小流域尺度采用双约束空间聚类算法开展湖泊营养物生态分区。结果表明:①采用粗糙集方法,运用属性重要度确定各属性的客观权重,适合用于测算湖泊营养物生态分区指标体系中各指标的权重;②采用双约束空间聚类进行湖泊营养物生态分区,保证了分区结果在空间上的连续性和评价分值上的接近性;③可以将东北区分为大兴安岭北部山地区、小兴安岭山地-三江平原区、长白山山地区、松嫩平原区和辽东、辽西丘陵-辽河平原区。 相似文献
224.
Man Liu Sheng Hong Huang Bo Wen Yan Qiu Sheng Li 《Environmental Fluid Mechanics》2018,18(6):1463-1489
Wind-driven rain (WDR) is responsible for many potential negative effects on bridges, such as structural cracking, aggregate erosion, steel corrosion and storm water management problems and so on. Hence, accurate evaluations of the WDR effects on bridges are essential to provide solutions for preventing material degradation and improving durability capability of bridges. However, in most previous WDR numerical studies, the turbulent dispersion of raindrops was neglected. In this paper, the turbulent dispersion is integrated into Eulerian multiphase model to investigate the WDR effects on a bridge with rectangular cross-section. Especially, the influences of the turbulent dispersion are discussed in detail by comparing the WDR simulation results for the cases with and without consideration of the turbulent dispersion in terms of WDR flow fields, volume fraction, specific catch ratio, catch ratio, rain loads and aerostatic force coefficients. The results indicate that the turbulent dispersion for a certain range of raindrop size is needed to be taken into account for obtaining accurate WDR simulation results for bridges. 相似文献
225.
Evaluation of leachate recirculation on nitrous oxide production in the Likang Landfill,China 总被引:1,自引:0,他引:1
Landfill leachate recirculation is efficient in reducing the leachate quantity handled by a leachate treatment plant. However, after land application of leachate, nitrification and denitrification of the ammoniacal N becomes possible and the greenhouse gas nitrous oxide (N2O) is produced. Lack of information on the effects of leachate recirculation on N2O production led to a field study being conducted in the Likang Landfill (Guangzhou, China) where leachate recirculation had been practiced for 8 yr. Monthly productions and fluxes of N2O from leachate and soil were studied from June to November 2000. Environmental and chemical factors regulating N2O production were also accessed. An impermeable top liner was not used at this site; municipal solid waste was simply covered by inert soil and compacted by bulldozers. A high N2O emission rate (113 mg m-2 h-1) was detected from a leachate pond purposely formed on topsoil within the landfill boundary after leachate irrigation. A high N2O level (1.09 micrograms L-1) was detected in a gas sample emitted from topsoil 1 m from the leachate pond. Nitrous oxide production from denitrification in leachate-contaminated soil was at least 20 times higher than that from nitrification based on laboratory incubation studies. The N2O levels emitted from leachate ponds were compared with figures reported for different ecosystems and showed that the results of the present study were 68.7 to 88.6 times higher. Leachate recirculation can be a cost-effective operation in reducing the volume of leachate to be treated in landfill. However, to reduce N2O flux, leachate should be applied to underground soil rather than being irrigated and allowed to flow on topsoil. 相似文献
226.
在利用间歇式液相本体法工艺生产聚丙烯时,易产生大量废水,包括闪蒸水环真空泵排放水、聚合釜轴封冷却水排放水、聚合升温用热水罐溢流水等。应最大限度地减少废水的排放量。已经采取的废水减排措施包括:对于真空泵逐渐调小供水量(即减少了排放量);将轴封冷却水收回重复利用;维持热水罐的水位稳定,避免产生溢流。采取上述措施在满足生产要求的同时,最大限度地减少了废水排放量。 相似文献
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