石油学报(石油加工)
石油學報(石油加工)
석유학보(석유가공)
ACTA PETROLEI SINICA(PETROLEUM PROCESSING SECTION)
2014年
6期
997-1003
,共7页
张龙辉%董美美%刘春雨%邓盼姗%黄衡%张潮%刘红斌%林立刚
張龍輝%董美美%劉春雨%鄧盼姍%黃衡%張潮%劉紅斌%林立剛
장룡휘%동미미%류춘우%산반산%황형%장조%류홍빈%림립강
脱硫%膜吸附%聚酰亚胺%分子筛
脫硫%膜吸附%聚酰亞胺%分子篩
탈류%막흡부%취선아알%분자사
desulphurization%membrane adsorption%polyimide%zeolites
以耐高温基聚合物聚酰亚胺(PI )为基质材料,以 Y分子筛为功能颗粒,通过相转化法制备了吸附功能膜,用于燃料油的深度脱硫,采用FT‐IR、XPS和电镜分析手段系统研究了该吸附功能膜的形态结构、通道与吸附脱硫性能的关系。结果表明,所制备的吸附功能膜具有发达的孔结构,功能颗粒镶嵌于基膜表面层的三维网络通道中。膜的孔结构随凝固浴介质的不同而有显著区别,以水、乙醇、异丙醇、正丁醇的顺序,从指状孔结构逐渐向海绵状孔结构过渡;挥发时间的增加有利于海绵状孔的形成,海绵状、指状孔通道共存有利于吸附功能的实现。AgY‐PI膜的吸附性能高于NaY‐PI膜,这与分子筛与硫化物的结合力大小有关;AgY‐PI膜可将燃料油硫质量浓度降至0.1 mg/L以下,为燃料油脱硫提供了一种新途径。
以耐高溫基聚閤物聚酰亞胺(PI )為基質材料,以 Y分子篩為功能顆粒,通過相轉化法製備瞭吸附功能膜,用于燃料油的深度脫硫,採用FT‐IR、XPS和電鏡分析手段繫統研究瞭該吸附功能膜的形態結構、通道與吸附脫硫性能的關繫。結果錶明,所製備的吸附功能膜具有髮達的孔結構,功能顆粒鑲嵌于基膜錶麵層的三維網絡通道中。膜的孔結構隨凝固浴介質的不同而有顯著區彆,以水、乙醇、異丙醇、正丁醇的順序,從指狀孔結構逐漸嚮海綿狀孔結構過渡;揮髮時間的增加有利于海綿狀孔的形成,海綿狀、指狀孔通道共存有利于吸附功能的實現。AgY‐PI膜的吸附性能高于NaY‐PI膜,這與分子篩與硫化物的結閤力大小有關;AgY‐PI膜可將燃料油硫質量濃度降至0.1 mg/L以下,為燃料油脫硫提供瞭一種新途徑。
이내고온기취합물취선아알(PI )위기질재료,이 Y분자사위공능과립,통과상전화법제비료흡부공능막,용우연료유적심도탈류,채용FT‐IR、XPS화전경분석수단계통연구료해흡부공능막적형태결구、통도여흡부탈류성능적관계。결과표명,소제비적흡부공능막구유발체적공결구,공능과립양감우기막표면층적삼유망락통도중。막적공결구수응고욕개질적불동이유현저구별,이수、을순、이병순、정정순적순서,종지상공결구축점향해면상공결구과도;휘발시간적증가유리우해면상공적형성,해면상、지상공통도공존유리우흡부공능적실현。AgY‐PI막적흡부성능고우NaY‐PI막,저여분자사여류화물적결합력대소유관;AgY‐PI막가장연료유류질량농도강지0.1 mg/L이하,위연료유탈류제공료일충신도경。
The membrane adsorbents for desulphurization of fuel oil were prepared with polyimide (PI) as matrix material and Y zeolite as adsorptive functional materials . The relationships between membrane morphology , mass transfer channel and membrane adsorption desulfurization behavior of the membrane were investigated by means of FT‐IR、XPS and SEM .The detailed characterization results showed that the membranes possessed abundant pores , and the zeolites particles were dispersed in the membrane surface and incorporated with the polymer matrix .The pore structure of the prepared membrane was also related with the medium of coagulation bath used in preparation . With the order of the medium from water , ethanol , i‐propanol , n‐butanol , the pore structure of the prepared membrane changed gradually from finger‐like to sponge‐like . The increase of the volatile time during the preparation was favor to the formation of spongy‐like pores . Both of finger‐like and sponge‐like pores were the functional zone of adsorption .The adsorption capacity of AgY‐PI for sulphur was higher than that of NaY‐PI membrane due to their different binding forces with sulfur compounds .After adsorption by AgY‐PI membrane , the sulphur content of fuel oil could be below 0.1 mg/L , meaning that the membrane adsorption is an effective desulfurization technology for fuel oil .