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超临界氨合成体系的组分偏摩尔体积的计算

Calculation of partial molar volume of components in supercritical ammonia synthesis system

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【作者】 王存文余传波陈文王为国吴元欣张俊峰

【Author】 WANG Cunwen1,YU Chuanbo 1,2, CHEN Wen1, WANG Weiguo1, WU Yuanxin1,ZHANG Junfeng1 (1Novel Reactor and Green Chemistry Key Laboratory of Hubei Province,Wuhan Institute of Technology,Wuhan 430073,Hubei,China; 2Chemistry and Biology Engineering Department, Panzhihua University,Panzhihua 617000,Sichuan,China)

【机构】 武汉工程大学湖北省新型反应与绿色化工工艺重点实验室武汉工程大学湖北省新型反应与绿色化工工艺重点实验室 湖北武汉430073湖北武汉430073攀枝花学院生物与化学工程系四川攀枝花617000湖北武汉430073

【摘要】 结合RK方程推导出偏摩尔体积计算公式,计算了超临界氨合成体系的组分偏摩尔体积,以期进一步了解各组分的相行为,为探索超临界相氨合成新工艺提供理论依据和指导.计算的条件为:H2/N2=3,合成气中NH3浓度为2%~15%,超临界体系中介质浓度为20%~50%,温度为243~699K,压力为0.1~187MPa.结果表明:在合成气中加入合适的超临界介质并控制反应条件,体系可以达到超临界状态;在常温下或介质的临界温度附近或工业氨合成温度范围内,在各自相应的总压和组成条件下,使介质处于超临界状态,对超临界氨合成才是有利的.

【Abstract】 The partial molar volumes of components in a supercritical ammonia synthesis system were calculated under different conditions with the calculation formula of partial molar volume derived from R-K equation of state.The objectives were to comprehend phase behavior of components and to provide the theoretical explanation and guidance for developing novel processes of ammonia synthesis under supercritical conditions. The conditions of calculation were H2/N2=3, concentration of NH 3 in synthesis gas ranging from 2% to 15%, concentration of medium in supercritical ammonia synthesis system ranging from 20% to 50%,temperature ranging from 243 K to 699 K and pressure ranging from 0.1 MPa to 187 MPa.The results showed that the ammonia synthesis system could reach supercritical state by adding a suitable supercritical medium and then controlling the reaction conditions.It was good for supercritical ammonia synthesis that medium reached supercritical state under the corresponding total pressure and composition,and at a temperature near the normal temperature or near the critical temperature of medium or in the range of temperature of commercial ammonia synthesis.

【基金】 湖北省自然科学基金资助项目(2001ABB067);湖北省教育厅优秀中青年科技创新团队项目(2003).~~
  • 【文献出处】 化工学报 ,Journal of Chemical Industry and Engineering(China) , 编辑部邮箱 ,2006年07期
  • 【分类号】TQ113.21
  • 【被引频次】3
  • 【下载频次】181
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