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Research on integrated system of large-scale non-grid-connected wind power and coal-to-SNG

机译:大规模非网格通电动力与煤与SNG集成系统研究

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The contribution rate of wind power on the grid is difficult to achieve beyond 10%. The wind-powered generator increases the complexity and the manufacturing costs for meeting the requirements of the power grid, which limits the applications of large-scale wind power. The traditional coal-to-SNG process is an important technology route for coal chemical, but releases a large number of CO2. In the integrated system of large-scale non-grid-connected wind power and coal-to-SNG, wind power is used to electrolyze water for producing H2 and O2. The O2 is fed to the gasifier as a gasification agent. The H2 is mixed with syngas to adjust the H2/CO to an appropriate ratio for a methanation reaction. It can avoid the bottleneck issue of wind power, sharply reduce manufacturing costs of wind farms, enable the omission of the air separation unit, CO conversion device and CO2 removal process, achieve zero emissions of CO2, increase the output of SNG, enable coal chemical industry to become “green” and make large-scale wind power application possible, realizing the optimization of economic, social and environmental benefits.
机译:电网上风电的贡献率难以超过10%。风力发电机增加了满足电网要求的复杂性和制造成本,这限制了大规模风电的应用。传统的煤炭至SNG过程是煤化工的重要技术途径,但释放了大量的CO 2 。在大规模的非电网连接风电和煤至SNG的集成系统中,风电用于电解生产H 2 和O 2 。将O 2 作为气化剂送入气化器。 H 2 与合成气混合,将H 2 / CO调节至甲烷化反应的适当比率。它可以避免风电的瓶颈问题,大幅降低风电场的制造成本,使得空气分离单元,CO转换装置和CO 2 去除过程,实现CO 2 ,增加SNG的输出,使煤化工成为“绿色”,使大规模风电应用,实现经济,社会和环境效益的优化。

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