Current status and technology development in implementing low carbon emission energy on underground coal gasification (UCG)

Author:

Takyi Shadrack Adjei,Zhang Yindi,Si Mengting,Zeng Fanjin,Li Yingnan,Tontiwachwuthikul Paitoon

Abstract

Although coal mining has played a substantial role in world’s development as a critical fuel source for at least 25 years, its value is partly offset by the massive environmental issues it presents during combustion. The shift to a net-zero CO2 emission will open unique possibilities for new coal technological models in which progressive studies and policies, development, and modernization will play a significant role. Therefore, a collection of technologies has been proposed, one of which is cost-effective is the Underground Coal Gasification (UCG) coupled with carbon capture storage (CCS) and utilization technology (CCU) UCG-CCS/CCU. This paper reviews the current status and technology development in implementing low carbon emission energy on underground coal gasification. The study, therefore, leads to discussing the modern stage of underground coal gasification and carbon capture storage development, recent pilot operations, and current developments of the growing market. At the same time, it provides a reference for underground coal gasification combined with CCUS technology.

Funder

National Natural Science Foundation of China-China Academy of General Technology Joint Fund for Basic Research

Publisher

Frontiers Media SA

Subject

Economics and Econometrics,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference85 articles.

1. UCGNet: Wireless sensor network-based active aquifer contamination monitoring and control system for underground coal gasification;Barnwal;Int. J. Commun. Syst.,2017

2. Underground coal gasification: From fundamentals to applications;Bhutto;Prog. Energy Combust. Sci.,2013

3. Underground coal gasification for power generation: Efficiency and CO2-emissions;Blinderman,2003

4. The Chinchilla IGCC project to date: Underground coal gasification and environment;Blinderman,2002

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