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Polymeric Membrane based Gas Separation Technique: A Case Study

Polymeric Membrane based Gas Separation Technique: A Case Studyvon Mallikarjunagouda Patil Sie sparen 15% des UVP sparen 15%
Über Polymeric Membrane based Gas Separation Technique: A Case Study

Membrane¿based gas separation is quickly growing by serving joined of the vital industrial gas separation technologies. The interest in these systems is increasing owing to the simplicity of the idea and low-energy consumption. In the works, gas separation is required in several processes like gas treatment, dioxide capture, gas purification and hydrocarbons separations. In these processes, the membranes have established to be a possible candidate to exchange these standard strategies of adsorption, paraffin cleanup, pressure swing adsorption and refrigerant distillation. Polymeric membranes are dominating materials in this field owing to their excellent processability, easy scale¿up and feasibility in various modules. Various inorganics, as well as carbons, silica, and zeolites, ceramics, and metal membranes are additionally extensively studied for a lot of specific gas separation applications wherever chemical compound membranes cannot serve.

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  • Sprache:
  • Englisch
  • ISBN:
  • 9786200223388
  • Einband:
  • Taschenbuch
  • Seitenzahl:
  • 68
  • Veröffentlicht:
  • 20. Juni 2019
  • Abmessungen:
  • 150x5x220 mm.
  • Gewicht:
  • 119 g.
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Beschreibung von Polymeric Membrane based Gas Separation Technique: A Case Study

Membrane¿based gas separation is quickly growing by serving joined of the vital industrial gas separation technologies. The interest in these systems is increasing owing to the simplicity of the idea and low-energy consumption. In the works, gas separation is required in several processes like gas treatment, dioxide capture, gas purification and hydrocarbons separations. In these processes, the membranes have established to be a possible candidate to exchange these standard strategies of adsorption, paraffin cleanup, pressure swing adsorption and refrigerant distillation. Polymeric membranes are dominating materials in this field owing to their excellent processability, easy scale¿up and feasibility in various modules. Various inorganics, as well as carbons, silica, and zeolites, ceramics, and metal membranes are additionally extensively studied for a lot of specific gas separation applications wherever chemical compound membranes cannot serve.

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