Capacitive deionization exploiting La-based LDH composite electrode toward energy efficient and selective removal of phosphate

被引:2
作者
Feng, Chunming [1 ,2 ]
Pan, Xiaobing [2 ,3 ]
Lin, Xiaocheng [1 ,4 ]
Yang, Yi [3 ]
Fan, Fuqiang [5 ]
Jiang, Chenxiao [6 ]
Mei, Ying [2 ]
机构
[1] Fuzhou Univ, Coll Chem Engn, Fuzhou 350116, Fujian, Peoples R China
[2] Beijing Normal Univ, Adv Inst Nat Sci, Res & Dev Ctr Watershed Environm Ecoengn, Zhuhai 519087, Peoples R China
[3] Beijing Normal Univ, Coll Educ Future, Fac Arts & Sci, Zhuhai 519087, Peoples R China
[4] Fuzhou Univ, Sch Future Membrane Technol, Fuzhou 350108, Peoples R China
[5] Beijing Normal Univ, Adv Inst Nat Sci, Ctr Water Res, Zhuhai 519087, Peoples R China
[6] Univ Sci & Technol China, Sch Chem & Mat Sci, Key Lab Precis & Intelligent Chem, Hefei 230026, Peoples R China
基金
中国国家自然科学基金;
关键词
Calcium-lanthanum layered double hydroxide; Capacitive deionization; Phosphate removal; Electro-adsorption; Capacitive and diffusion-controlled behavior; LAYERED DOUBLE HYDROXIDES; WATER-TREATMENT; DESALINATION; FUTURE;
D O I
10.1016/j.desal.2024.118259
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Capacitive deionization (CDI) is a promising technology for removing phosphate from wastewater. Its practical implementation is however hindered by the constraints on the electrode materials. To boost the adsorption capacity, phosphate selectivity, and cost-effectiveness of the electrode, this study proposed a composite electrode blending Lanthanum-based layered double hydroxide (Ca-La LDH) and activated carbon (AC). It capitalizes on the synergistic effects of electric double layer capacitance (EDLC) of AC and the diffusion-controlled charge storage (pseudocapacitive behavior) of Ca-La LDH. By optimizing the mass ratios of the constituents and the electrode material loading capacities, the composite electrode AC/Ca-La LDH-5020 was developed, which contains 20 mg of 50 wt% Ca-La LDH. This composition achieved a remarkable phosphate adsorption capacity of 34.8 mg P /g and a low energy consumption of 0.0051 kWh/g P in constant voltage (CV) mode. It represented a 241 % increase in adsorption capacity (mg P/g) and 71 % decrease in specific energy consumption (kWh/g P) compared to the electrode made solely of AC. Particularly the moderate inclusion of Lanthanum contributes to its cost-effectiveness. Moreover, further studies extensively examined the impacts of electrical driving force, including applied voltage in constant voltage (CV) mode and applied current in constant current (CC) mode, on the phosphate removal efficiency. The composite electrode remained stable performance with the presence of the high content of coexisting anions (e.g.,Cl-,SO42-, HCO3-, NO3-), obtaining high selectivity coefficient of phosphate over other anions. This study highlighted the practical potential of AC/Ca-La LDH composite electrode for advancing CDI technology for phosphate removal in an efficient, energy-saving and cost-effective manner.
引用
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页数:11
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