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低阶烟煤轻度加氢改质技术的研究
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作者 王东升 《煤质技术》 2016年第4期16-19,共4页
为验证低阶烟煤轻度加氢改质机理的正确性和技术可行性,利用高压釜装置及采用四氢萘加氢溶剂、纳米级铁系催化剂对新疆淖毛湖煤进行加氢改质试验。试验结果表明:与原煤相比,加氢产物的黏结指数增加至90时,其灰分及全硫增加、氢含量增多... 为验证低阶烟煤轻度加氢改质机理的正确性和技术可行性,利用高压釜装置及采用四氢萘加氢溶剂、纳米级铁系催化剂对新疆淖毛湖煤进行加氢改质试验。试验结果表明:与原煤相比,加氢产物的黏结指数增加至90时,其灰分及全硫增加、氢含量增多、氧含量减少,加氢改质效果明显;利用^(13)C-NMR对加氢产物进行分析,加氢产物的缩合环数增加,桥键和芳环数减少,平均分子量增加,分子结构芳构化程度加强,并根据分子结构参数模拟出加氢产物平均分子结构模型;通过配煤试验表明加氢产物进行配煤炼焦是可行的;连续式循环加氢改质技术路线可为加氢改质技术的工程化应用奠定基础。 展开更多
关键词 低阶烟煤 轻度加氢 分子结构 配煤试验 加氢产物 缩合环数 技术路线
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Performance analysis of ammonia-water absorption/compression combined refrigeration cycle 被引量:1
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作者 鲍帅阳 杜垲 +2 位作者 蔡星辰 牛晓峰 武云龙 《Journal of Southeast University(English Edition)》 EI CAS 2014年第1期60-67,共8页
In view of different compressor adding ways in the ammonia-water absorption/compression combined refrigeration AWA /CCR cycle combining the Schulz state equation of the ammonia-water solution the theoretical analysis ... In view of different compressor adding ways in the ammonia-water absorption/compression combined refrigeration AWA /CCR cycle combining the Schulz state equation of the ammonia-water solution the theoretical analysis and calculations on two combination ways by adding the compressor in the high-pressure area and in the low-pressure area are conducted respectively.The effects of several factors including the evaporation temperature Te heat-source temperature Th as well as the cooling water temperature Tw on the equivalent heat consumption in compression qCW heat consumption in absorption qG and the system coefficient of performance COP are analyzed under the two combination configurations.The results show that the effect of the equivalent heat consumption in compression on the COP is less than that of the heat consumption in absorption.Besides the compressor set in the high-pressure area uses more energy than that in the low-pressure area. Moreover the compressor in the low-pressure area is superior to that in the high-pressure area with respect to the COP. Under the given intermediate pressure there is an optimum heat-source temperature corresponding to the maximum COP of the AWA/CCR cycle. 展开更多
关键词 AMMONIA-WATER ABSORPTION compression refrigeration combined refrigeration cycle coefficient of performance COP
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