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焦炉烟气氨法脱硫系统运行实践与优化改进
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作者 刘大川 严军喜 +2 位作者 何栋 万峻竹 李国梁 《中国设备工程》 2024年第4期96-98,共3页
以某公司焦炉烟气氨法脱硫系统为研究对象,根据氨法脱硫反应原理以及主要参数指标,针对脱硫系统运行实践中发生的烟气阻力增大、塔盘孔堵塞、入口烟道积料过多、再热器积料卡阻、塔内件腐蚀严重等问题,通过分析介质属性与设备设施的使... 以某公司焦炉烟气氨法脱硫系统为研究对象,根据氨法脱硫反应原理以及主要参数指标,针对脱硫系统运行实践中发生的烟气阻力增大、塔盘孔堵塞、入口烟道积料过多、再热器积料卡阻、塔内件腐蚀严重等问题,通过分析介质属性与设备设施的使用性能,提出了相应的解决措施,对系统进行了优化改进,从而保证了氨法脱硫系统的稳定运行。 展开更多
关键词 氨法脱硫 阻力 结晶积料 腐蚀
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Furan-based liquid-crystalline small-molecule donor guest improving the photovoltaic performance of organic solar cells with amorphous packing 被引量:1
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作者 Yuchen Yue Bing Zheng +4 位作者 Mengdi Liu Yujie Chen Lijun Huo Jingxia Wang Lei Jiang 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3402-3410,共9页
Introducing liquid-crystalline small-molecule donors(SMDs)into binary systems based on the strong intermolecular interactions of SMDs is a facile and effective strategy to tune the active layer morphology and improve ... Introducing liquid-crystalline small-molecule donors(SMDs)into binary systems based on the strong intermolecular interactions of SMDs is a facile and effective strategy to tune the active layer morphology and improve the performance of organic solar cells(OSCs).Contrary to conventional understanding,this research proposes a new strategy for ternary OSCs implicating that"weakly crystalline materials can also optimize the morphology of the active layer and improve the OSCs performance".Herein,we designed and synthesized two liquid-crystalline SMDs,Z1 and Z2,based on benzodifuran(BDF)units.The amorphous Z2-incorporated ternary devices present an unexpectedly improved power conversion efficiency(PCE)>18%with good stability.By contrast,the highly ordered Z1-based ternary devices possess a significantly depressed efficiency.Multiple characterizations reveal that the Z2-based ternary blend films possess improved miscibility and efficient charge transport.This novel strategy for the selection of the third component is significant for the fabrication of high-efficiency ternary OSCs. 展开更多
关键词 small-molecule donor organic solar cells liquid crystal active layer morphology
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