4.5 Article

Suitability Evaluation of CO2 Geological Sequestration Based on Unascertained Measurement

期刊

ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING
卷 47, 期 9, 页码 11453-11467

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s13369-021-06179-1

关键词

CCUS; Unascertained measurement; Comprehensive weight; Songliao basin; Suitability evaluation of basin-level CO2 geological sequestration

资金

  1. General Project of National Natural Science Foundation of China [51974253]
  2. Youth Project of National Natural Science Foundation of China [52004219]
  3. Shaanxi Provincial Education Department [20JS117]
  4. Natural Science Basic Research Program of Shaanxi [2020JQ-781, 221717005]
  5. Open Fund of State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development [G5800-20-ZS-KFGY018]
  6. Open Fund of State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation (Southwest Petroleum University) [PLN2021-12]
  7. Xi'an Shiyou University [YCS20111001]

向作者/读者索取更多资源

The suitability evaluation of CO2 geological sequestration is a decision-making process that involves uncertain information of various factors and attributes. A new model is developed based on unascertained measurement theory and comprehensive weight, which shows better evaluation results for certain areas in Songliao Basin.
Carbon capture utilization and storage (CCUS) is the primary technique to achieve large-scale industrialized CO2 emission reduction. There is a key issue on CCUS and related engineering construction, which is the suitability evaluation of CO2 geological sequestration. The suitability evaluation of CO2 geological sequestration is essentially a decision-making process in which unascertained information of various factors and attributes is involved. With the CO2 geological sequestration suitability evaluation indexes and released data, a new CO2 geological sequestration suitability evaluation model is developed based on the unascertained measurement theory and comprehensive weight which is composed of subjective weight and objective weight to reduce the errors arising from employing single weight (either subjective or objective weight) for the evaluation indexes. The new model is validated by the basin-level CO2 geological sequestration suitability evaluation of six first-level tectonic units, which are the northern plunging zone, the northeast uplift zone, the central depression zone, the western slope zone, the southeast uplift zone and the southwest uplift zone in Songliao Basin. The results indicate that the evaluation by the proposed model aligns with the previous study by the consistency of 83.33%. Since the objective weight is introduced to develop the comprehensive weight of evaluation indexes in the model, the proposed model yields a better evaluation for the northeast uplift zone. With different evaluation indexes, the proposed model is extensible to evaluate the suitability of CO2 geological sequestration at different levels.

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