The Electrochemical Conversion of CO2 into Methanol with KHCO3 Electrolyte Using Membrane Electrode Assembly (MEA)

Q2 Pharmacology, Toxicology and Pharmaceutics
Dedi Rohendi, Nyimas Febrika Sya’baniah, Edy Herianto Majlan, Nirwan Syarif, Addy Rachmat, Dwi Hawa Yulianti, Icha Amelia, Dimas Ardiyanta, Isya Mahendra, Rr. Whiny Hardiyati Erliana
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Abstract

The electrochemical conversion process of CO2 into methanol using Membrane Electrode Assembly (MEA) has been done. The MEA consists of a Pt/C catalyst in the cathode and a Cu2O ZnO/C catalyst in the anode. The electrodes were made using the spraying method and then characterized using Cyclic Voltammetry (CV) and Electrochemical Impedance Spectroscopy (EIS) methods to determine the ECSA (Electrochemical Surface Area) and electrical conductivity values. Besides that, also X-Ray Diffraction (XRD) and Scanning Electrode Microscopy – Energy Dispersive X-Ray (SEM-EDX) analysis was to determine the crystal and morphological structure. The voltammogram from CV analysis indicated that the ECSA value on the Pt/C electrode was 7.2 m2/g and the Cu2O-ZnO/C electrodes as 0.69 m2/g. The electrode’s electrical conductivity value with Pt/C catalyst was 1.15 x 10−3 S/cm, and the electrode with Cu2O-ZnO/C catalyst was 0.80 x 10−3 S/cm. The results of the XRD analysis confirmed the presence of Cu2O and ZnO on the Cu2O-ZnO/C electrode and Pt on the Pt/C electrode. Meanwhile, the results of the SEM-EDX analysis showed that the Pt/C catalyst was spread more evenly with a larger percentage than Cu2O and ZnO. The result of the conversion of CO2 to methanol was measured using a methanol analyzer with variations in KHCO3 electrolyte concentration, variation of temperature operation, and variation of time operation. The best methanol concentrations after distillation process were 79.06 w/v %, with 1 M KHCO3, at room temperature and 2 hours operation.
膜电极组件(MEA)催化KHCO3电解液将CO2转化为甲醇
研究了利用膜电极组件(MEA)将CO2转化为甲醇的电化学过程。MEA由阴极的Pt/C催化剂和阳极的Cu2O ZnO/C催化剂组成。采用喷雾法制备电极,利用循环伏安法(CV)和电化学阻抗谱法(EIS)测定电极的电化学表面积(ECSA)和电导率值。此外,还通过x射线衍射(XRD)和扫描电极显微镜-能量色散x射线(SEM-EDX)分析确定了晶体和形态结构。CV分析的伏安图表明,Pt/C电极的ECSA值为7.2 m2/g, cu20 - zno /C电极的ECSA值为0.69 m2/g。Pt/C催化剂电极的电导率为1.15 × 10−3 S/cm, cu20 - zno /C催化剂电极的电导率为0.80 × 10−3 S/cm。XRD分析结果证实,Cu2O-ZnO/C电极上存在Cu2O和ZnO, Pt/C电极上存在Pt。同时,SEM-EDX分析结果表明,Pt/C催化剂比Cu2O和ZnO分布更均匀,且比例更大。采用甲醇分析仪,在不同的KHCO3电解液浓度、不同的操作温度和不同的操作时间下测定CO2转化为甲醇的结果。精馏后的最佳甲醇浓度为79.06 w/v %, KHCO3浓度为1 M,室温条件下操作2 h。
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来源期刊
Science and Technology Indonesia
Science and Technology Indonesia Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
8 weeks
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