A Review of Aerogel Applications in Adsorption and Catalysis

سال انتشار: 1397
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 75

فایل این مقاله در 13 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_JPSTR-8-4_001

تاریخ نمایه سازی: 29 آذر 1402

چکیده مقاله:

Aerogels are a special class of porous material, which have excellent physicochemical properties such as low density, high porosity, high surface area and adjustable surface chemistry. Aerogels were first prepared several decades ago, but never truly commercialized due to their high cost. Technological advancements in the production and quality of different types of aerogel cut costs down and market factors increase demand. Therefore, the viability of this porous material on the several applications has been widely studied. Among the various high-performance applications, aerogel has attracted significant attention as a chemical sorbent and catalyst for CO۲ capture and conversion as well as methane conversion to value-added products. Although aerogel performance for zero CO۲ emission to the environment is promising, some drawbacks of aerogels such as complicated drying process, mechanically weak structure and processing cost should also be considered in material development. Ultimately this review article will cover an overview regarding the aerogels synthesis, processing and their recent applications in CO۲ capture and conversion.

نویسندگان

davood karami

EEEL۴۱۵, ۲۵۰۰ university dr nw

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • ReferencesKistler S. S., “Coherent Expanded Aerogels and Jellies,” Nature, ۱۹۳۱ ...
  • Kistler S. S., “Coherent Expanded-Aerogels,” J. Phys. Chem., ۱۹۳۲, ۳۶ ...
  • Moner M. A., Molins E., and Liber D., “Sol-Gel Route ...
  • Aegerter M. A., Leventis N., and Koebel M. M. (۳rd ...
  • Horikawa T., Hayashi J., and Muroyama K., “Size Control and ...
  • Kong Y., Zhong Y., Yang M., Teng K., and et ...
  • Worsley M. A., Satcher Jr. J. H., and Baumann T. ...
  • Wang J., Kuhn J., and Lu X., “Monolithic Silica Aerogel ...
  • Maleki H., Duraes L., and Portugal A., “An Overview on ...
  • Baetens B. P. J. R. and Gustavsen A., “Aerogel Insulation ...
  • Kistler S. S., Swann S. J., and Appel E. G., ...
  • Matias T., Marques J., Gando-Ferreira L., and Valente A. J. ...
  • Plata D. L., Wolfe R. L., Carroll M. K., and ...
  • Nagahara H., Suginouchi T., and Hashimoto M., “P۱M-۸ Acoustic Properties ...
  • Long J. W., Fischer A. E., Bourg M. E., and ...
  • Steinbach S.and Ratke L., “The Microstructure Response to Fluid Flow ...
  • Yin W. and Rubenstein D. A., in: Koebel M.M. (۵th ...
  • Pajonk G. M., “Aerogel Catalysts,” Appl. Catal., ۱۹۹۱, ۷۲, ۲۱۷-۲۶۶ ...
  • Ulker Z., “Supercritical Fluid Technology for Energy and Environmental Application,” ...
  • Zuo L., Zhang Y., Zhang L., Miao Y.E., and et.al., ...
  • Hüsing N. and Schubert U., “Aerogels-Airy Materials: Chemistry, Structure, and ...
  • Brinker C. J., Keefer K. D., Schaefer D. W., and ...
  • Brinker C. J. and Scherer G. W., GW Scherer “Sol-Gel ...
  • Rao A., Pajonk G. M., and Koebel M. M., Aerogels ...
  • Maleki H., Duraes L., and Portugal A., “Synthesis of Lightweight ...
  • Hench L. L. and West J. K., “The Sol-gel Process,” ...
  • Iler R. K., Hench L. L., and Ulrich D. R., ...
  • Davis P. J., Brinker C. J., and Smith D. M., ...
  • Strom R. A., Yasmine M., and Petermann G., “Strengthening and ...
  • Maleki H., Duraes L., and Portugal A., “Development of Mechanically ...
  • Chen H. B., Huang W., and Schiraldi D. A., “Fabrication ...
  • Kawagishi K., Saito H., and Furukawa H., “Superior Nanoporous Polyimides ...
  • Matson D. W. and Smith R. D., “Supercritical Fluid Technologies ...
  • Kalinin S. V., Mamchik A. I., and Vertegel A. A., ...
  • Zeng S., Zhang X., Dong H., and Zhang X., “Efficient ...
  • Begag R., “Super-hydrophobic Aerogel as Sorbent Material for CO۲ Capture,” ...
  • Inoue S., Itakura T., Furukawa Y., and Yamanaka Y., “Experimental ...
  • Kong Y., Jiang G., Fan M., Shen X., and et ...
  • Choi S., Drese J. H., and Jones C. W., “Adsorbent ...
  • Yue M. B., Sun L. B., Cao Y., and Wang ...
  • Uehara Y., Karami D., and Mahinpey N., “Roles of Cation ...
  • Uehara Y., Karami D., and Mahinpey N., “Effect of Water ...
  • Xu X., Andresen J. M., Miller B. G., and Scaroni ...
  • Rechberger F., Ilari G., and Niederberger M., “Assembly of Antimony ...
  • Qi G., Estevez L., Jones C. W., and Giannelis E., ...
  • Linneen N., Pfeffer R., and Lin Y. S., “CO۲ Capture ...
  • Nguyen S. T., Le T., and Duong H. M., “Cellulose ...
  • Begag R., Rhine W., Gould G., and Nahass P., “Superhydrophobic ...
  • Lin J. Y., Pfeffer R., “in: AIChE-Global Congr. on Process ...
  • Karami D., Bararpour S. T., and Mahinpey N., “Highly Active ...
  • Bararpour S. T., Karami D., and Mahinpey N., “Effect of ...
  • Howard C. J., “Sulfur Tolerant Highly Durable CO۲ Sorbents,” US ...
  • Karami D. and Mahinpey N., “The Preparation of very Efficient ...
  • Karami D. and Mahinpey N., “Utilization of Alumina Aerogel as ...
  • Bianchi D., Landoulsi H., Pajonk G. M., and Teichner S. ...
  • Blanchard F., Pommier B., Reymond J. P., and Teichner S. ...
  • Pommier B., Reymond J. P., and Teichner S. J., “Fischer-Tropsch ...
  • Blanchard F., Pommier B., and Teichner S. J., “New Fischer-Tropsch ...
  • Pommier B. and Teichner S. J., “On the Mechanism of ...
  • Droege M. W. and Westbrook C., Lawrence Livermore National Laboratory ...
  • Armor J. N., Carlson E. J., Zambri P. M., “Aerogels ...
  • Yamaguchi T., “Recent Progress in Solid Superacid,” Appl. Cat., ۱۹۹۰, ...
  • Ma J., Sun N., and Sun Y., “A Short Review ...
  • Erdohelyi A., Cserenyi J., and Solymosi F., “Activation of CH۴ ...
  • Bitter H., Seshan K., Lercher J.A., “The state of zirconia ...
  • McGee W. D., Pan Y., and Riley D. P., “Highly ...
  • Corthals S., Nederkassel J., Noyen J. V., Moens B., and ...
  • Nitta Y., Suwata O., and Okamoto Y., “Copper-zirconia Catalysts for ...
  • Arena F., Barbera K., Italiano G., Bonura G., and et ...
  • Dubois J. L., Sayama K., and Arakawa H., “CO۲ Hydrogenation ...
  • نمایش کامل مراجع