Effect of Temperature and Current Density on Polybenzimidazole Zirconium Phosphate Hybrid Membrane in Copper Chloride Electrolysis for Hydrogen Production

被引:0
|
作者
Kamaroddin, Mohd Fadhzir Ahmad [1 ,3 ]
Sabli, Nordin [1 ,2 ]
Abdullah, Tuan Amran Tuan [3 ,4 ]
Abdullah, Luqman Chuah [1 ,2 ]
Izhar, Shamsul [1 ]
Ripin, Adnan [3 ,4 ]
Ahmad, Arshad [3 ,4 ]
机构
[1] Univ Putra Malaysia, Dept Chem & Environm Engn, Upm Serdang 43400, Selangor, Malaysia
[2] Univ Putra Malaysia, Inst Adv Technol ITMA, Upm Serdang 43400, Selangor, Malaysia
[3] Univ Teknol Malaysia, Ctr Hydrogen Energy, Inst Future Energy, Utm Johor Bahm 81310, Johor, Malaysia
[4] Univ Teknol Malaysia, Fac Engn, Sch Chem & Energy Engn, Utm Johor Bahru 81310, Johor, Malaysia
来源
INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING | 2019年 / 11卷 / 07期
关键词
Hybrid membrane; zirconium oxide; phosphoric acid; hydrogen production; copper chloride electrolysis; NANOCOMPOSITE MEMBRANES; COMPOSITE MEMBRANES; FUEL-CELLS; PBI; ENERGY; SPEEK;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper presents an elevated temperature copper chloride electrolysis as a sustainable hydrogen production using a modified polybenzimidazole (PBI) based membrane. The main objective of this work was to characterize the performance of PBI Zirconium Phosphate (PBI/ZrP) hybrid membrane and evaluate its use as potential working membrane in the hydrogen production. Temperature and ament density effects on hydrogen production were investigated in the range of 100 to 115 degrees C and 0.1 to 0.5 A/cm(2), respectively. PBI based hybrid membrane was synthesized with zirconium oxide (ZrO2) followed by phosphoric acid (PA) doping. The membrane properties was characterized for proton conductivity, thermal stability, copper diffusivity and tensile strength. The results revealed that modification of the PBI into PBI/ZrP has significantly increased the proton conductivity by four fold, and selectivity by 30%. However, there was a slight reduction in tensile strength by 5 MPa may due to the realignment of PBI/ZrP molecule structures. Furthermore, a higher current density (0.5 A/cm(2)) produced almost 40% more hydrogen (5.04 cm(3)/min) compared to 0.1 A/cm(2) (3.64 cm(3)/min) at 115 degrees C with electrolysis efficiency of 97%. PBI/ZrP exhibited superior proton conductivity, thermally stable with high tensile strength. The synergistic of the pristine PBI with ZrO2 and PA doping has produced a hybrid PBI/ZrP membrane that can be a promising effective polymer electrolyte and budget friendly compared to Nafion.
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页码:182 / 189
页数:8
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