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Information Journal Paper

Title

POWER GENERATION FROM SALINITY GRADIENT USING REVERSE ELECTRO-DIALYSIS IN LAB SCALE

Pages

  54-56

Abstract

 IntroductionNowadays, energy, water and environmental issues are the intersection of all human’s requisites. Supplying energy from a wide range of clean sources is a reliable response in order to obtain all of the requisites of mankind. SALINITY GRADIENT power is a clean energy source that is available everywhere and has the capacity of supplying a reasonable amount of energy suitable to be used in various applications. This source of energy has gained a global approval and many researchers are trying to expand and optimize its industrialization. Many various methods has been studied and presented for POWER GENERATION from SALINITY GRADIENT and they are almost the reverse of dominant desalination systems such as Reverse-Osmosis (RO) and Electro-Dialysis (ED). In the Reverse Electro-Dialysis (RED) method, a concentrated and a diluted salt solution are brought into contact through an alternative series of anION EXCHANGE MEMBRANES (AEM) as well as catION EXCHANGE MEMBRANES (CEM). By diffusion of anions and cations through the AEM and CEM from concentrate to dilute, are created in electrolyte which is converted into electric current in the wire by redox reaction on the active anode and cathode surface.

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    APA: Copy

    BADALIANS GAGIK, GHOLIKANDI, & AMIRREZA, ARASHI. (2014). POWER GENERATION FROM SALINITY GRADIENT USING REVERSE ELECTRO-DIALYSIS IN LAB SCALE. JOURNAL OF ENVIRONMENTAL STUDIES, 40(3 (71)), 54-56. SID. https://sid.ir/paper/409677/en

    Vancouver: Copy

    BADALIANS GAGIK GHOLIKANDI, AMIRREZA ARASHI. POWER GENERATION FROM SALINITY GRADIENT USING REVERSE ELECTRO-DIALYSIS IN LAB SCALE. JOURNAL OF ENVIRONMENTAL STUDIES[Internet]. 2014;40(3 (71)):54-56. Available from: https://sid.ir/paper/409677/en

    IEEE: Copy

    GHOLIKANDI BADALIANS GAGIK, and ARASHI AMIRREZA, “POWER GENERATION FROM SALINITY GRADIENT USING REVERSE ELECTRO-DIALYSIS IN LAB SCALE,” JOURNAL OF ENVIRONMENTAL STUDIES, vol. 40, no. 3 (71), pp. 54–56, 2014, [Online]. Available: https://sid.ir/paper/409677/en

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