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攻克抽提装置“瓶颈”及抽提加工裂解汽油改造
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作者 时宝琦 《催化重整通讯》 2001年第3期52-57,共6页
本文主要阐述了抽提装置优化操作,在运行平衡的基础上,操作负荷由124v%提高至135v%,基本解决了其多年来芳烃联合装置中的“瓶颈”问题。并简单阐述了抽提装置加工裂解汽油的一些装置改造。
关键词 芳烃 非芳烃 烃负荷 过孔速率 返洗比 溶剂比 三次溶剂 抽提装置 裂解汽油 炼油
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Pore structure of unidirectional solidified lotus-type porous silicon
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作者 杨倩倩 刘源 +1 位作者 李言祥 张言 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第11期3517-3523,共7页
Lotus-type porous silicon with elongated pores was fabricated by unidirectional solidification under pressurized hydrogen. Porosity, pore diameter, and pore length can be adjusted by changing solidification speed and ... Lotus-type porous silicon with elongated pores was fabricated by unidirectional solidification under pressurized hydrogen. Porosity, pore diameter, and pore length can be adjusted by changing solidification speed and hydrogen pressure. The porosity of the ingot is nearly constant under different solidification speeds, but decreases with the increase of hydrogen pressure. The overall porosities of ingots fabricated at different hydrogen pressures were evaluated through a theoretical model. Findings are in good agreement with experimental values. The average pore diameter and pore length increase simultaneously while the average pore aspect ratio changes slightly with the decreases of solidification speed and hydrogen pressure. The average pore length is raised from 7 to 24 mm and the pore aspect ratio is raised from 8 to 20 respectively with the average pore diameter promoted by about 0.3 mm through improving the superheat degree of the melt from 200 to 300 K. 展开更多
关键词 lotus-type porous silicon solidification speed hydrogen pressure superheat degree pore length
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