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Fingerprint Dive into the research topics where Bidyut Baran Saha is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 13 Similar Profiles
Adsorption Engineering & Materials Science
Activated carbon Engineering & Materials Science
Cooling Engineering & Materials Science
Adsorbents Engineering & Materials Science
Silica gel Engineering & Materials Science
adsorption Physics & Astronomy
Cooling systems Engineering & Materials Science
Temperature Engineering & Materials Science

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Research Output 1995 2019

8 Citations (Scopus)

Activated carbon and graphene nanoplatelets based novel composite for performance enhancement of adsorption cooling cycle

Pal, A., Uddin, K., Kyaw, T. & Saha, B. B., Jan 15 2019, In : Energy Conversion and Management. 180, p. 134-148 15 p.

Research output: Contribution to journalArticle

Activated carbon
Graphene
Cooling
Adsorption
Composite materials

Adsorption characteristics and thermodynamic property fields of polymerized ionic liquid and polyvinyl alcohol based composite/CO2 pairs

Rocky, K. A., Pal, A., Moniruzzaman, M. & Saha, B. B., Nov 15 2019, In : Journal of Molecular Liquids. 294, 111555.

Research output: Contribution to journalArticle

Polyvinyl Alcohol
Ionic Liquids
polyvinyl alcohol
Polyvinyl alcohols
Ionic liquids
1 Citation (Scopus)

Adsorption de CO2 sur un composite charbon actif-graphène pour des applications de refroidissement

Translated title of the contribution: CO2 adsorption onto activated carbon–graphene composite for cooling applicationsPal, A., Uddin, K., Rocky, K. A., Kyaw, T. & Saha, B. B., Jan 1 2019, In : International Journal of Refrigeration.

Research output: Contribution to journalArticle

Cooling
Adsorption
Composite materials
Activated carbon
Graphene

A new adsorbent bed design: Optimization of geometric parameters and metal additive for the performance improvement

Gediz Ilis, G., Demir, H., Mobedi, M. & Saha, B. B., Nov 5 2019, In : Applied Thermal Engineering. 162, 114270.

Research output: Contribution to journalArticle

Silica gel
Adsorbents
Cooling
Adsorption
Metals

Approche pour l'analyse quantitative de la distribution de la taille des pores du gel de silice en utilisant la microscopie à force atomique

Translated title of the contribution: An approach for quantitative analysis of pore size distribution of silica gel using atomic force microscopyPalash, M. L., Mitra, S., Sivasankaran, H., Kyaw, T. & Saha, B. B., Sep 1 2019, In : International Journal of Refrigeration. 105, p. 72-79 8 p.

Research output: Contribution to journalArticle

Silica gel
Pore size
Atomic force microscopy
Porous materials
Chemical analysis