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煤化工低碳技术及其与新能源耦合发展的研究进展 被引量:11
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作者 李智 刘涛 +3 位作者 张志伟 李甲鸿 周露露 李成新 《中国煤炭》 2022年第8期66-81,共16页
“双碳”目标加快了我国能源消费结构从传统化石能源体系向可再生新能源体系的转变,煤化工产业正面临发展和减碳双重挑战,在此背景下,绿色低碳成为该产业重要发展方向。结合山东能源集团煤化工产业发展现状,简述了煤化工先进工艺和相应... “双碳”目标加快了我国能源消费结构从传统化石能源体系向可再生新能源体系的转变,煤化工产业正面临发展和减碳双重挑战,在此背景下,绿色低碳成为该产业重要发展方向。结合山东能源集团煤化工产业发展现状,简述了煤化工先进工艺和相应煤化工产品的碳排放情况,详细阐述了CCUS、绿电制气等发展迅速的煤化工减碳技术;指出,从长远来看采用可再生能源电力,通过电解方式制备氢气、一氧化碳或合成气是实现煤化工深度脱碳的关键。从固体氧化物电解(SOE)结构及工作原理、与煤化工耦合发展情况、技术进展、产业化发展等方面详细分析了既降能耗又减碳的SOE技术;认为,SOE可与煤化工装置在热-质-电深度耦合,是实现新能源与煤化工耦合发展最理想的技术路径之一。最后,介绍了山东能源集团绿色低碳技术布局以及新能源研发、低碳技术攻关等方面的成果和进展。 展开更多
关键词 “双碳”目标 煤化工低碳技术 固体氧化物解(SOE) 新能源耦合发展 CCUS 可再生能源 绿电制气 山东能源集团
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Design and Construction of GreenWAVE Energy Converter for Shallow Waters off South Australia
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作者 Leigh D. Appleyard 《Journal of Civil Engineering and Architecture》 2015年第10期1179-1184,共6页
Compared with more well-known renewable energy sources, such as wind and solar, the wave energy industry is relatively new. This paper describes the structural design and construction of the oscillating water column ... Compared with more well-known renewable energy sources, such as wind and solar, the wave energy industry is relatively new. This paper describes the structural design and construction of the oscillating water column "greenWAVE Energy Converter" which was constructed during 2013 and was planned to be deployed in shallow water off the South Australian coast in 2014. Rated initially at 1 MW, the greenWAVE unit will be dedicated to electricity production, although an option is available to produce desalinated seawater. The unit base is constructed from reinforced concrete designed to international maritime codes, and the unit will be founded in approximately 10-15 m of water. The upper portion of the device extends above sea level, housing the airwave turbine and electrical control systems. 展开更多
关键词 Wave energy oscillating water column design wave.
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