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91.
南海西部东方1-1、崖城13-1和乐东等气田具有CO2含量高的特点,每年从生产出的天然气中分离出大量的CO2。为了减少CO2在大气中的排放,考虑在莺歌海地区选择合适的盐水层埋存体,拟进行CO2地质埋存示范工程。根据CO2在盐水层中的各种埋存机理,并考虑盐水层构造特征对CO2运移分布的影响,提出了一种较为准确的CO2埋存潜力评估方法,并利用此方法对筛选出的5个备选盐水层进行了评估。评估结果表明,各盐水层埋存潜力巨大,都远远大于示范工程期限内预计的CO2埋存总量,并可将这些盐水层作为将来海南省及临近广东省人为CO2的埋存场所。南海西部东方1-1、崖城13-1和乐东等气田具有CO2含量高的特点,每年从生产出的天然气中分离出大量的CO2。为了减少CO2在大气中的排放,考虑在莺歌海地区选择合适的盐水层埋存体,拟进行CO2地质埋存示范工程。根据CO2在盐水层中的各种埋存机理,并考虑盐水层构造特征对CO2运移分布的影响,提出了一种较为准确的CO2埋存潜力评估方法,并利用此方法对筛选出的5个备选盐水层进行了评估。评估结果表明,各盐水层埋存潜力巨大,都远远大于示范工程期限内预计的CO2埋存总量,并可将这些盐水层作为将来海南省及临近广东省人为CO2的埋存场所。  相似文献   
92.
The Upper Kaimur Group of the Vindhyan Supergroup in Central India, primarily consists of three rock types-DhandraulSandstone, Scarp Sandstone and Bijaigarh Shale. Mineralogically and geochemically, they are quartz arenite, sublitharenite to litharenite and litharenite to shale in composition, respectively. The A-CN-K ternary plot and CIA and ICV values suggest that the similar source rocks suffered severe chemical weathering, under a hot-humid climate in an acidic environment with higher P CO 2, which facilitated high sediment influx in the absence of land plants. Various geochemical discriminants, elemental ratios like K2O/Na2O, Al2O3/TiO2, SiO2/MgO, La/Sc, Th/Sc, Th/Cr, GdN/YbN and pronounced negative Eu anomalies indicate the rocks to be of post-Archean Proterozoic granitic source, with a minor contribution of granodioritic input, in a passive margin setting. The sediments of the Upper Kaimur Group were probably deposited in the interglacial period in between the Paleoproterozoic and Neoproterozoic glacial epochs.  相似文献   
93.
环球     
英国政府因空气污染遭欧盟起诉3月20日,欧盟委员会宣布,因为治理空气污染不力。决定对英国政府提起诉讼。英国政府由此面临每年超过3亿欧元巨额罚款的风险。欧盟委员会表示,因为英国空气中的二氧化碳含量未能达到欧盟的标准,他们正在对英国提起诉讼。英国因此成为第一个因为空气质量未达标而被欧盟起诉的国家。  相似文献   
94.
<正>一般说来,海洋肉食动物鲨鱼在很大程度上靠嗅觉寻找分散于广阔环境中的猎物。然而,研究人员不久前在Global Change Bilolgy杂志在线版上报道说:根据预测,随着全球海洋的变化,鲨鱼这种久经历练的捕猎能力可能会受到损害。由于人类活动释放到大气中的二氧化碳被海水吸收,海水的酸度变得越来越大。以前的研究表明,富含二氧化碳的酸性海水可能会削弱珊瑚礁鱼类嗅  相似文献   
95.
In this paper, a coupled model was used to estimate the responses of soil moisture and net primary production of vegetation (NPP) to increasing atmospheric CO2 concentration and climate change. The analysis uses three experiments simulated by the second-generation Earth System Model (CanESM2) of the Canadian Centre for Climate Modelling and Analysis (CCCma), which are part of the phase 5 of the Coupled Model Intercomparison Project (CMIP5). The authors focus on the magnitude and evolution of responses in soil moisture and NPP using simulations modeled by CanESM, in which the individual effects of increasing CO2 concentration and climate change and their combined effect are separately accounted for. When considering only the single effect of climate change, the soil moisture and NPP have a linear trend of 0.03 kg m^-2 yr^-1 and-0.14 gC m^- 2 yr^-2, respec- tively. However, such a reduction in the global NPP results from the decrease of NPP at lower latitudes and in the Southern Hemisphere, although increased NPP has been shown in high northern latitudes. The largest negative trend is located in the Amazon basin at -1.79 gC m^-2 yr^-2. For the individual effect of increasing CO2 concentration, both soil moisture and NPP show increases, with an elevated linear trend of 0.02 kg m^-2 yr^-1 and 0.84 gC m^-2 yr^-2, respectively. Most regions show an increasing NPP, except Alaska. For the combined effect of increasing atmospheric CO2 and climate change, the increased soil moisture and NPP exhibit a linear trend of 0.04 kg m^2 yr^-1 and 0.83 gC m^2 yr^-2 at a global scale. In the Amazon basin, the higher reduction in soil moisture is illustrated by the model, with a linear trend of-0.39 kg m^-2 yr^-1, for the combined effect. Such a change in soil moisture is caused by a weakened Walker circulation simulated by this coupled model, compared with the single effect of increasing CO2 concentration (experiment M2), and a consequence of the reduction in NPP is also shown in this area, with a linear trend of-  相似文献   
96.
In this study, the authors developed an en- semble of Elman neural networks to forecast the spatial and temporal distribution of fossil-fuel emissions (ff) in 2009. The authors built and trained 29 Elman neural net- works based on the monthly average grid emission data (1979-2008) from different geographical regions. A three-dimensional global chemical transport model, God- dard Earth Observing System (GEOS)-Chem, was applied to verify the effectiveness of the networks. The results showed that the networks captured the annual increasing trend and interannual variation of ff well. The difference between the simulations with the original and predicted ff ranged from -1 ppmv to 1 ppmv globally. Meanwhile, the authors evaluated the observed and simulated north-south gradient of the atmospheric CO2 concentrations near the surface. The two simulated gradients appeared to have a similar changing pattern to the observations, with a slightly higher background CO2 concentration, - 1 ppmv. The results indicate that the Elman neural network is a useful tool for better understanding the spatial and tem- poral distribution of the atmospheric C02 concentration and ft.  相似文献   
97.
The 3rd Chinese National Arctic Research Expedition(CHINARE–Arctic III) was carried out from July to September in 2008. The partial pressure of CO2(pCO2) in the atmosphere and in surface seawater were determined in the Bering Sea during July 11–27, 2008, and a large number of seawater samples were taken for total alkalinity(TA) and total dissolved inorganic carbon(DIC) analysis. The distributions of CO2 parameters in the Bering Sea and their controlling factors were discussed. The pCO2 values in surface seawater presented a drastic variation from 148 to 563 μatm(1 μatm = 1.013 25×10-1 Pa). The lowest pCO2 values were observed near the Bering Sea shelf break while the highest pCO2 existed at the western Bering Strait. The Bering Sea generally acts as a net sink for atmospheric CO2 in summer. The air-sea CO2 fluxes in the Bering Sea shelf, slope, and basin were estimated at-9.4,-16.3, and-5.1 mmol/(m2·d), respectively. The annual uptake of CO2 was about 34 Tg C in the Bering Sea.  相似文献   
98.
在二氧化碳地质储存中,储层温度是影响CO2矿物储存量的因素之一。文章选取美国Gulf Coast地区的资料,并设置6种温度敏感性分析方案,使用TOUGHREACT/ECO2N软件模拟并分析了温度变化对CO2矿物捕集的影响,得出三个结论:长石类矿物、高岭石、绿泥石是主要的溶解矿物,方解石并非主要的溶解矿物;主要固碳矿物为铁白云石和片钠铝石,两者与绿泥石存在较好的相关性,并且沉淀量与温度变化正相关;CO2体积分数随时间变化幅度和矿物捕获总量均与温度呈正相关。通过分析储层温度对矿物捕获CO2的影响,为选取CO2储层提供温度上的考量。  相似文献   
99.
CO2的地质储存是迅速减少温室气体向大气排放最直接、最有效的方法之一,其封存量受很多因素影响,储层原生矿物组分是其中之一。本文以松辽盆地、美国墨西哥湾、日本Nagaoka场地资料为基础,对CO2矿物封存过程进行数值摸拟。结果表明:原生矿物组成及含量相差不大时,地球化学反应过程相似,原生矿物组成较为复杂时,地球化学反应过程也更复杂;在以石英、长石为主的砂岩储层中,长石和绿泥石是重要的溶解矿物,铁白云石和片钠铝石是主要的固碳矿物;CO2矿物封存量随着原生矿物中奥长石和绿泥石含量增加而增大,其中奥长石的影响更大。以上研究对CO2地质储存储层的选取有指导意义。  相似文献   
100.
天然气水合物(Gas Hydrate)是产于大陆坡海底和永久冻土带的一种新型能源资源,是在高压低温下由水和天然气形成的冰态超分子笼状固态物,每立方米的天然气水合物在标准状态下可释放160~180立方米天然气。据估计,全球天然气水合物蕴藏的天然气总量相当于全球  相似文献   
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