全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
冰川冻土  2014 

深部咸水层CO2地质储存适宜性评价方法研究

DOI: 10.7522/j.issn.1000-0240.2014.0078, PP. 649-660

Keywords: CO2地质储存,西宁盆地,评价指标体系,适宜性评价

Full-Text   Cite this paper   Add to My Lib

Abstract:

随着温室效应的加剧,CO2地质储存已成为减缓全球气候变暖的有效方法之一.可用于CO2地下储存的场地主要有枯竭的油气田、深部咸水层和深部不可开采的煤层等,我国深部咸水层CO2地质储存潜力占总潜力的98%以上.在全面分析CO2地质储存适宜性影响因素的基础上,建立了适宜于沉积盆地深部咸水层CO2地质储存的适宜性评价体系,主要包括地质安全性、储存规模、社会环境风险和经济适宜性4大指标层,共计28个评价指标,评价方法以层次分析法及指标叠加法为主.以西宁盆地为研究实例,通过基于排除法的地质条件综合分析与层次分析法的定量评价相互验证,表明该指标体系和评价方法具有广泛的应用价值.结果表明,西宁盆地一级构造单元中双树坳陷最适宜CO2地质储存,可作为CO2地质储存的优先选区.

References

[1]  Shen Yongping, Wang Guoya. Key findings and assessment results of IPCC WGI Fifth Assessment Report[J]. Journal of Glaciology and Geocryology, 2013, 35(5): 1068-1076. [沈永平, 王国亚. IPCC第一工作组第五次评估报告对全球气候变化认知的最新科学要点[J]. 冰川冻土, 2013, 35(5): 1068-1076.]
[2]  Wang Jiaoyue, Song Changchun, Wang Xianwei, et al. Progress in the study of effects of freezing-thaw processes on organic carbon pool and microorganisms in soil[J]. Journal of Glaciology and Geocryology, 2011, 33(3): 442-452. [王娇月, 宋长春, 王宪伟, 等. 冻融作用对土壤有机碳库及微生物的影响研究进展[J]. 冰川冻土, 2011, 33(2): 442-452.]
[3]  Liu Wenjie, Chen Shengyun, Zhao Qian, et al. Main greenhouse gases emissions during plant growing season in permafrost region of the upper reaches of Shule River, Qilianshan[J]. Journal of Glaciology and Geocryology, 2012, 34(5): 1149-1156. [刘文杰, 陈生云, 赵倩, 等. 疏勒河上游多年冻土区植物生长季主要温室气体排放观测[J]. 冰川冻土, 2012, 34(5): 1149-1156.]
[4]  Luo Dongliang, Jin Huijun, Lin Lin, et al. Degradation of permafrost and cold-environments on the interior and eastern Qinghai Plateau[J]. Journal of Glaciology and Geocryology, 2012, 34(3): 538-546. [罗栋梁, 金会军, 林琳, 等. 青海高原中、东部多年冻土及寒区环境退化[J]. 冰川冻土, 2012, 34(3): 538-546.]
[5]  Bachu S, Adams J J. Sequestration of CO2 in geological media in response to climate change: capacity of deep saline aquifers to sequester CO2 in solution[J]. Energy Conversion and Management, 2003, 44(20): 3151-3175.
[6]  Shuklar R, Ranjith P, Haque A, et al. A review of studies on CO2 sequestration and caprock integrity[J]. Fuel, 2010, 89(10): 2651-2664.
[7]  Zhang Hongtao, Wen Dongguang, Li Yilian, et al. Conditions for CO2 geological sequestration in China and some suggestions[J]. Geological Bulletin of China, 2005, 24(12): 1107-1110. [张洪涛, 文冬光, 李义连, 等. 中国二氧化碳地质埋存条件分析及有关建议[J]. 地质通报, 2005, 24(12): 1107-1110.]
[8]  Zhang Senqi, Guo Jianqiang, Diao Yujie, et al. Technical me-thod for selection of CO2 geological storage project sites in deep saline aquifer[J]. Geology in China, 2011, 38(6): 1640-1651. [张森琦, 郭建强, 刁玉杰, 等. 规模化深部咸水含水层CO2地质储存选址方法研究[J]. 中国地质, 2011, 38(6): 1640-1651.]
[9]  Guo Jianqiang, Zhang Senqi, Diao Yujie, et al. Site selection method of CO2 geological storage in deep saline aquifers[J]. Journal of Jilin University (Earth Science Edition), 2011, 41(4): 1085-1091. [郭建强, 张森琦, 刁玉杰, 等. 深部咸水层CO2地质储存工程场地选址技术方法[J]. 吉林大学学报(地球科学版), 2011, 41(4): 1085-1091.]
[10]  Zhang Senqi, Guo Janqiang, Li Xufeng, et al. Geological Basis and Site Evaluation for Carbon Dioxide Geological Storage in China[M]. Beijing: Geological Publishing House, 2011. [张森琦, 郭建强, 李旭峰, 等. 中国二氧化碳地质储存地质基础及场地地质评价[M]. 北京: 地质出版社, 2011.]
[11]  The Administrative Center for China's Agenda 21; Center for Hydrogeology and Environmental Geology, China Geological Survey. Study on Guideline of Site Selection for Carbon Dioxide Geologic Sequestration in China[M]. Beijing: Geological Publishing House, 2012. [中国21世纪议程管理中心, 中国地质调查局水文地质环境地质调查中心. 中国二氧化碳地质封存选址指南研究[M]. 北京: 地质出版社, 2012.]
[12]  Bachu S. Screening and ranking of sedimentary basins for sequestration of CO2 in geological media in response to climate change[J]. Environmental Geology, 2003, 44(3): 277-289.
[13]  Kaldi J, Gibson-Poole C. Storage Capacity Estimation, Site Selection and Characterization for CO2 Storage Projects, Report No. RPT08-1001[R]. Canberra, Australia: Cooperative Research Centre for Greenhouse Gas Technologies, 2008.
[14]  Oldenburg C M. Screening and ranking framework for geologic CO2 storage site selection on the basis of health, safety, and environmental risk[J]. Environmental Geology, 2008, 54(8): 1687-1694.
[15]  Shen Pingping, Liao Xinwei. Technology of Carbon Dioxide Stored in Geological Media and Enhanced Oil Recovery[M]. Beijing: Petroleum Industry Press, 2009. [沈平平, 廖新维. 二氧化碳地质埋存与提高石油采收率技术[M]. 北京: 石油工业出版社, 2009.]
[16]  Zhang Senqi, Xu Weilin, Yan Weide, et al. Geothermal Geology of Xining Basin[M]. Beijing: Geological Publishing House, 2013. [张森琦, 许伟林, 严维德, 等. 西宁盆地地热地质[M]. 北京: 地质出版社, 2013.]
[17]  Zhang Senqi, Diao Yujie, Cheng Xuxue, et al. CO2 geological storage leakage routes and environment monitoring[J]. Journal of Glaciology and Geocryology, 2010, 12(6): 1251-1261. [张森琦, 刁玉杰, 程旭学, 等. 二氧化碳地质储存泄漏通道及环境监测研究[J]. 冰川冻土, 2010, 12(6): 1251-1261.]
[18]  Metz B, Davidson O, de Coninck H, et al. IPCC Special Report on Carbon Dioxide Capture and Storage[M]. New York: Cambridge University Press, 2005.
[19]  Grunau H R. A worldwide look at the cap rock problem[J]. Journal of Petroleum Geology, 1987, 10(3): 245-266.
[20]  Ye Jianping, Wu Qiang, Wang Zihe. Controlled characteristics of hydrogeological conditions on the coalbed methane migration and accumulation[J]. Journal of China Coal Society, 2001, 26(5): 459-462. [叶建平, 武强, 王子和. 水文地质条件对煤层气赋存的控制作用[J]. 煤炭学报, 2001, 26(5): 459-462.]
[21]  Rubin E S. IPCC Special Report on Carbon Dioxide Capture and Storage[R/OL]. [2013-12-05].
[22]  Chadwick A, Arts R, Bernstone C, et al. Best Practice for the Storage of CO2 in Saline Aquifers: Observations and Guidelines from the SACS and CO2 STORE Projects[M]. Keyworth, Nottingham, UK: British Geological Survey, 2008.
[23]  Liu Xufeng, He Zhenming, He Youbin. GIS Assistant Oil and Gas Exploration Decision: Theory, Method and Application[M]. Beijing: Petroleum Industry Press, 2008. [刘学锋, 何贞铭, 何幼斌. GIS辅助油气勘探决策: 原理;方法及应用[M]. 北京: 石油工业出版社, 2008.]
[24]  Liu Kun, Peng Jian, Peng Fangle. Evaluation model for the suitability of underground space resources exploitation and utilization[J]. Chinese Journal of Underground Space and Engineering, 2011, 7(2): 219-231. [柳昆, 彭建, 彭芳乐. 地下空间资源开发利用适宜性评价模型[J]. 地下空间与工程学报, 2011, 7(2): 219-231.]
[25]  Zhao Huanchen, Xu Shubo, He Jinsheng. Analytic Hierarchy[M]. Beijing: Science Press, 1986. [赵焕臣, 许树柏, 和金生. 层次分析法[M]. 北京: 科学出版社, 1986.]
[26]  Shapira A, Simcha M. AHP-based weighting of factors affecting safety on construction sites with tower cranes[J]. Journal of Construction Engineering and Management, 2009, 135(4): 307-318.
[27]  Harker P T, Vargas L G. The theory of ratio scale estimation: Saaty's analytic hierarchy process[J]. Management Science, 1987, 33: 1383-1403.
[28]  Saaty T L, Tran L T. On the invalidity of fuzzifying numerical judgments in the analytic hierarchy process[J]. Mathematical and Computer Modelling, 2007, 46: 962-975.
[29]  Bachu S, Shaw J. Evaluation of the CO2 sequestration capacity in Alberta's oil and gas reservoirs at depletion and the effect of underlying aquifers[J]. Journal of Canadian Petroleum Technology, 2003, 42(9): 51-61.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133