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ISSN : 1226-0088(Print)
ISSN : 2288-7253(Online)
Membrane Journal Vol.27 No.3 pp.240-247
DOI : https://doi.org/10.14579/MEMBRANE_JOURNAL.2017.27.3.240

Performance of Membrane Capacitive Deionization Process Using Polyvinylidene Fluoride Heterogeneous Ion Exchange Membranes Part II : Performance Study of Membrane Capacitive Deionization Process

Cheol Oh Park and Ji Won Rhim
Department of Advanced Materials and Chemical Engineering, Hannam University, 1646 Yuseongdae-ro, Yuseong-gu, Daejeon 34054, Korea
Department of Advanced Materials and Chemical Engineering, Hannam University, 1646 Yuseongdae-ro, Yuseong-gu, Daejeon 34054, Korea
Ji Won Rhim

Abstract

Abstract: In this study, the heterogeneous ion exchange membranes prepared by the combination of the carbon electrode and mixed the cation and anion exchange polymers and polyvinylidene fluoride as the basic polymer together were made to recognize the efficiency of the salt removal for the application of the membrane capacitive deionization process. The mixing weight ratio of the solvent, basic polymer and ion exchange resin was 7 : 2 : 1 and this mixed solution was directly cast on the electrode. As for the operating conditions of the adsorption voltage and time, feed flow rate, desorption voltage and time of the feed solution NaCl 100 mg/L, the salt removal efficiencies (SRE) were measured. Apart from this NaCl, the CaCl2 and MgSO4 solutions were investigated in terms of SRE as well. Typically, SRE for NaCl 100 mg/L solution under the conditions of adsorption voltage/time, 1.5 V/3 min, desorption voltage/time -0.1 V/3 min, was shown 98%. And for the CaCl2 and MgSO4 solutions, the SREs of 70 and 59% were measured under the conditions of adsorption voltage/time, 1.2 V/3 min, desorption voltage/time -0.5 V/5 min, respectively.

폴리비닐플루오라이드 불균질 이온교환막을 이용한 막 결합형 축전식 탈염공정의 탈염성능 Part II : 불균질 이온교환막의 탈염성능

박철오, 임지원
한남대학교 화공신소재공학과

초록

본 연구에서는 막 결합형 축전식 탈염공정에 적용을 위해 폴리비닐플루오라이드를 고분자 지지체로 사용하여 양이 온 및 음이온교환수지를 배합하여 제작된 불균질 이온교환막을 탄소전극에 결합하여 염 제거 효율을 알아보고자 하였다. 불균 질 이온교환막의 배합 조건은 용매, 고분자 지지체, 이온교환수지를 7 : 2 : 1의 무게 비율로 하였으며 탄소전극에 직접 캐스팅 하였다. 운전조건으로 공급액은 주로 NaCl 수용액에 대하여 흡착전압, 시간, 공급액의 농도, 유속, 탈착전압, 시간 등에 대하여 염 제거 효율을 측정하였으며 이 외에 CaCl2과 MgSO4 수용액에 대하여서도 측정하였다. 대표적으로 NaCl 100 mg/L 용액의 15 mL/min에서 1.5 V, 3분의 흡착조건, -0.1 V, 3분의 탈착조건에서 98%의 염 제거 효율을 보였으며, CaCl2과 MgSO4는 100 mg/L, 15 mL/min에서 1.2 V, 3분의 흡착조건, -0.5 V, 5분의 탈착조건에서 각각 70, 59%의 염 제거 효율을 보였다.
 

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