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高校研究生专业课程思政教学的探索与改革 ———以环境反应过程原位在线分析技术课程为例
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Probing into the multifunctional role of copper species and reaction pathway on copper-cerium-zirconium catalysts for CO2 hydrogenation to methanol using high pressure in situ DRIFTS
Rational design of spinel CoMn2O4 with Co-enriched surface as high-activity catalysts for NH3-SCO reaction
Release time:2019-03-11
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会议论文
First Author:
张文珍
Co-author:
杨明旺,柳思,吕小兵
Date of Publication:
2016-07-01
Document Type:
A
Page Number:
1-1
Key Words:
二氧化碳;羧化反应;环化反应;有机合成方法学
Abstract:
二氧化碳是一种储量丰富且廉价易得的可再生性碳一资源。通过构建新的有机合成方法学将二氧化碳这一温室气体高效转化成高附加值的精细化学品是目前有机化学研究的热点[1]。虽然二氧化碳参与的有机合成的方法对二氧化碳温室效应的削弱程度极其有限,但用二氧化碳替代其他碳一合成子可使得相关反应更加绿色,对环境更加友好。
Translation or Not:
no