Model Development and Simulation Study of Underground Coal Gasification
Model Development and Simulation Study of Underground Coal Gasification
批准号:
395089-2009
负责人:
Chen, Zhangxing
金额:
$7.33万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2010
资助国家:
加拿大
项目状态:
已结题
起止时间:
2010-01-01 至 2011-12-31
中文摘要
加拿大丰富的油砂资源的开发导致对天然气的需求增加,以产生用于沥青提取的蒸汽,并作为沥青升级的氢气来源。然而,使用越来越多的天然气来处理相对低能源/高碳资源,如沥青,成本高昂且不可持续。在一个对环境负责的过程中释放煤炭的全部能源潜力,是加拿大油砂持续和可持续发展的关键。这些优势超越了油砂行业,并为目前使用天然气作为原料或能源的加拿大其他行业提供了重要的优势。加拿大的煤炭储量世界排名第十,阿尔伯塔省的336亿吨煤炭储量占加拿大总储量的70%。因此,阿尔伯塔省的煤炭资源构成了一个巨大的未开发能源来源。通过地下煤气化(UCG)生产合成气为使用天然气生产用于沥青提取和升级的蒸汽和氢气提供了替代方案。此外,ucg后的二氧化碳捕获和封存可能有很大的潜力。UCG的基础设施可用于地质CO2封存作业。UCG还处于研发的早期阶段;一些关键的科技领域,如UCG过程和运行监测、燃烧和气化建模、环境风险评估以及后UCG CO2储存的可行性,需要广泛的研究。这些领域可以通过加速研究项目来解决。这个研究项目可以充分利用工程和地球科学模拟方面的现有知识和进展。
英文摘要
The development of Canada's vast oil sands resource has led to increased demands for natural gas to produce steam for bitumen extraction and as a source of hydrogen for bitumen upgrading. However, using increasing volumes of natural gas to process relatively low energy/high carbon resources such as bitumen is costly and not sustainable. Unlocking the full energy potential of coal, in an environmentally responsible process, is key to the ongoing and sustainable development of Canada's oil sands. These benefits transcend the oil sands industry and offer important advantages to a range of other Canadian industries that currently use natural gas as a feedstock or energy source. Canada is ranked tenth worldwide in coal reserves, and Alberta's 33.6 billion tons of coal represents 70% of Canada's total reserves. Consequently, Alberta's coal resources constitute an enormous source of untapped energy. The production of syngas through underground coal gasification (UCG) provides alternatives to the use of natural gas to produce steam and hydrogen for bitumen extraction and upgrading. Furthermore, there may be a great potential for post-UCG CO2 capture and sequestration. The well infrastructure for UCG can be used subsequently for geologic CO2 sequestration operations. UCG is in the early stages of research and development; several key scientific and technical areas, such as UCG process and operation monitoring, combustion and gasification modeling, environmental risk assessment, and feasibility of post-UCG CO2 storage, require extensive research. These areas can be addressed with an accelerated research project. This research project can lever substantially off of existing knowledge and advances in engineering and geo-science simulations.
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批准号:--
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项目类别:--
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资助金额:40万元
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批准年份:2020
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依托单位: