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南海西部盐水层CO2埋存潜力评估
引用本文:张亮,任韶然,王瑞和,易平,米洪刚,李俊廷.南海西部盐水层CO2埋存潜力评估[J].岩土力学,2010,31(4):1238-1242.
作者姓名:张亮  任韶然  王瑞和  易平  米洪刚  李俊廷
作者单位:1. 中国石油大学(华东)石油工程学院,东营,257061
2. 中海油湛江分公司勘探开发部,湛江,524000
基金项目:中海油科技攻关项目,国家973项目 
摘    要: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。

关 键 词:二氧化碳  埋存潜力  盐水层  天然气  南海
收稿时间:2008-10-07

Estimation of CO2 storage capacity in saline aquifers in west of South China Sea
ZHANG Liang,REN Shao-ran,WANG Rui-he,YI Ping,MI Hong-gang,LI Jun-ting.Estimation of CO2 storage capacity in saline aquifers in west of South China Sea[J].Rock and Soil Mechanics,2010,31(4):1238-1242.
Authors:ZHANG Liang  REN Shao-ran  WANG Rui-he  YI Ping  MI Hong-gang  LI Jun-ting
Institution:1.School of Petroleum Engineering, China University of Petroleum (Huagdong), Dongying 257061, China; 2.Department of Exploration and Development, Zhanjiang Branch Company of China National Offshore Oil Corporation, Zhanjiang 524000, China
Abstract:Many natural gas fields discovered in the west of South China Sea, such as DF1-1, YC13-1 and Ledong, are associated with high concentration of CO2. Considerable amounts of CO2 has to be separated from natural gas stream during the development of these gas fields each year. In order to reduce the emission of CO2 into the atmosphere, geological storage of CO2 in deep saline aquifers has been considered. This study is aimed at selecting saline aquifers in the Yinggehai region, intending to carry out a CO2 storage demonstration project. Five candidate aquifers are selected and their capacities of CO2 storage are estimated based on an accurate method which considers various mechanisms of CO2 storage in aquifers as well as the influence of aquifer structural features on CO2 migration and distribution. The assessment results show that all five aquifers are good candidates for CO2 storage with high storage potential to store all the CO2 expected during the demonstration project, and also can provide storage sites for the man-made CO2 in Hainan and Guangdong provinces in the near future.
Keywords:carbon dioxide  storage capacity  saline aquifer  natural gas  South China Sea
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