Role of cadmium gallate nanoparticles on the cathode of microbial fuel cells for enhanced bioelectricity production

被引:0
|
作者
Sahni, Mohit [1 ]
Kumar, Ankit [2 ]
Gupta, Pankaj [1 ]
Khan, Azmat Ali [3 ]
Mathuriya, Abhilasha Singh [4 ]
Pandit, Soumya [2 ]
Sharma, Kuldeep [5 ]
Roy, Amit [6 ]
Ranjan, Nishant [7 ]
Yahya, M. Z. A. [8 ]
Noor, I. M. [9 ]
机构
[1] Sharda Univ, Sch Basic Sci & Res, Dept Phys, Greater Noida 201306, India
[2] Sharda Univ, Sch Basic Sci & Res, Dept Life Sci, Greater Noida 201306, India
[3] King Saud Univ, Coll Pharm, Dept Pharmaceut Chem, Pharmaceut Biotechnol Lab, Riyadh 11451, Saudi Arabia
[4] Minist Environm Forest & Climate Change MoEFCC, Jorbagh Rd, New Delhi 110003, India
[5] Chitkara Univ, Ctr Res Impact & Outcome, Rajpura, Punjab, India
[6] Saveetha Inst Med & Tech Sci SIMATS, Saveetha Med Coll & Hosp, Ctr Global Hlth Res, Chennai, India
[7] Chandigarh Univ, Dept Mech Engn, Gharuan 140413, India
[8] Univ Pertahanan Nas Malaysia UPNM, Fac Def Sci & Technol, Kuala Lumpur 57000, Malaysia
[9] Univ Putra Malaysia, Ctr Fdn Studies Agr Sci, Phys Div, Serdang 43400, Selangor, Malaysia
关键词
Microbial fuel cell; Bioelectricity; Oxygen reduction reaction (ORR); Cathode catalyst; Nanoparticles; SIMULTANEOUS CR(VI) REDUCTION; WASTE-WATER TREATMENT; POWER-GENERATION; PERFORMANCE EVALUATION; HEXAVALENT CHROMIUM; ELECTRODE MATERIAL; ENERGY RECOVERY; CATALYST; OXIDE; NANOCOMPOSITE;
D O I
10.1007/s11581-024-05727-7
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Bringing microbial fuel cells (MFCs) to market requires the use of non-precious metal catalysts. Therefore, we replaced the platinum (Pt) cathode with more cost-effective cadmium gallate (CdGa2O4) nanoparticles in the present research. The synthesis and characterization of cadmium gallate (CdGa2O4), and further its application as a cathode catalyst for oxygen reduction reaction (ORR) in a MFC. The physiochemical characterization indicates a high ORR property of CdGa2O4, attributed to the presence of active sites, high electronic conductivity, and high surface area. These features enhanced the bioelectricity production with simultaneous wastewater treatment which resulted into comparable performances to catalysts such as platinum (Pt). The electrochemical analysis shows that the loading rate of CdGa2O4 has a significant impact on the power output of the MFC. The highest volumetric power density was observed in CdGa2O4 with a loading of 1 mg/cm3 (8.2 W/m3). COD removal efficiency also showed a similar trend with respect to different loading rates. 1 mg/cm3 of CdGa2O4 showed the highest COD removal and Columbic efficiency of 83.8% and 11.7%, respectively. The low cost-to-performance ratio, high ORR activity, and high electric conductivity of CdGa2O4 prove that CdGa2O4 is a feasible substitute for Pt in large-scale operations of MFC.
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页数:12
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