Development and application of a multi-stage CCUS source–sink matching model
Applied Energy, 2017Abstract To achieve the targets in the Paris Climate Change Agreement, carbon capture, utilization and storage (CCUS) will be one of the critical carbon mitigation technologies. For China, the biggest carbon emitter with coal-dominated energy structure, CCUS is expected to play more and more important roles for carbon emissions reduction.
Wenying Chen, Liang Sun
exaly +2 more sources
An optimization-based CCUS source-sink matching model for dynamic planning of CCUS clusters
Greenhouse Gases: Science and Technology, 2022AbstractCarbon capture, utilization and storage (CCUS) is a critical technology option in achieving large‐scale CO2 mitigation for power and industrial sectors. A full‐chain CCUS cluster could be formed based on numerous scattered capture sources and one or more storage sites connected by a pipeline network. Reasonable source‐sink matching planning for
Qian Wu +3 more
exaly +2 more sources
The energy-saving study of water heater based on source-sink matching principle
Energy, 2020Abstract Aiming at the energy-saving of water heater, a novel technology which can enhance thermal insulation and improve energy efficiency simultaneously has been proposed, and its source-sink matching strategy has been investigated in this study. A source-sink heat transfer device is designed, and the optimal installment position of this device has
Zhuang Ding, Han Yuan, Jikang Wang
exaly +2 more sources
The influence of imperfect matching habitat choice on evolution in source–sink environments
Evolutionary Ecology, 2015Studies of evolution in source–sink environments can illuminate when to expect niche conservatism, versus niche evolution. A species can persist in habitats outside its ecological niche (sinks, where mean fitness
Robert D. Holt
exaly +2 more sources
A Novel Source–Sink Matching Optimization Model for Carbon Capture and Storage
Geological JournalABSTRACT In carbon capture and storage system (CCS), the task of the CO 2 source–sink matching involves optimising source–sink cluster deployment, transportation path, and pipe network layouts.
Chunsheng GU, Qi-Qi Zhang
exaly +2 more sources
A geographical source-sink matching for carbon capture and utilization deployment in Taiwan
International Journal of Greenhouse Gas Control, 2022Pi-Cheng Chen, Remi CHAUVY
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Domestic and international CO2 source-sink matching for decarbonizing India's electricity
Resources, Conservation and Recycling, 2021Abstract India is the third largest CO2 emitter in the world and the ascending trend has not shown clear signs of leveling off. Electricity generation is the most important contributing sector. This paper examines the role of CO2 capture, utilization and storage (CCUS) in decarbonizing India's electricity. We build a source-sink matching optimization
Tarun Sharma, Yuan Xu
openaire +1 more source
Impact of carbon tax on CCUS source-sink matching: Finding from the improved ChinaCCS DSS
Journal of Cleaner Production, 2022Wenying Chen, Liang Sun
exaly +2 more sources
CCUS source-sink matching model based on sink well placement optimization
FuelZheng Ling, Yongchen Song, Jinyang Shen
exaly +2 more sources
Source-sink matching and cost analysis of offshore carbon capture, utilization, and storage in China
EnergyCaspar Adenutsi, Lili Sun
exaly +2 more sources

