![]() ![]() Figure 2: Sustainable Development Goals this paper. ![]() There are multiple hurdles to CCS deployment including the absence of a clear business case for CCS investment and the absence of robust economic incentives to support the additional high capital and operating costs of the whole CCS process. The aim of this paper is to establish mechanisms to detect the status of post-consumer PET bottles. There are growing interests in CO 2 storage in saline aquifers due to their enormous potential storage capacity and several projects are in the pipeline for demonstration of its viability. Among those geological formations for CO 2 storage, enhanced oil recovery is mature and has been practiced for many years but its economical viability for anthropogenic sources needs to be demonstrated. Pipeline is considered to be the most viable solution for large volume of CO 2 transport. Among those CO 2 separation processes, absorption is the most mature and commonly adopted due to its higher efficiency and lower cost. The selection of specific CO 2 capture technology heavily depends on the type of CO 2 generating plant and fuel used. ![]() In this paper, various aspects of CCS are reviewed and discussed including the state of the art technologies for CO 2 capture, separation, transport, storage, leakage, monitoring, and life cycle analysis. Carbon dioxide capture and storage (CCS) is considered a crucial strategy for meeting CO 2 emission reduction targets. ![]() Global warming and climate change concerns have triggered global efforts to reduce the concentration of atmospheric carbon dioxide (CO 2). ![]()
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