Renewable Carbon Materials as Electrodes for High-Performance Supercapacitors: From Marine Biowaste to High Specific Surface Area Porous Biocarbons

被引:21
|
作者
Brandao, Ana T. S. C. [1 ]
State, Sabrina [2 ]
Costa, Renata [1 ]
Potorac, Pavel [2 ]
Vazquez, Jose A. [3 ]
Valcarcel, Jesus [3 ]
Silva, A. Fernando [1 ]
Anicai, Liana [2 ,4 ]
Enachescu, Marius [2 ,5 ]
Pereira, Carlos M. [1 ]
机构
[1] Fac Ciencias Univ Porto, Dept Quim & Bioquim, Inst Ciencias Mol IMS, CIQUP, P-4169007 Porto, Portugal
[2] Univ Polytech Bucharest, Ctr Surface Sci & Nanotechnol, Bucharest 060042, Romania
[3] Inst Invest Marinas IIM CSIC, Grp Reciclado & Valorizac Mat Residuales REVAL, Vigo 36208, Spain
[4] OLV Dev SRL, Brasoveni 3, Bucharest 023613, Romania
[5] Acad Romanian Scientists, Bucharest 050094, Romania
来源
ACS OMEGA | 2023年 / 8卷 / 21期
基金
欧盟地平线“2020”; 瑞典研究理事会;
关键词
MAGNETIC ACTIVATED CARBONS; DEEP EUTECTIC SOLVENT; CHEMICAL ACTIVATION; PHOSPHORIC-ACID; FACILE SYNTHESIS; RICE HUSK; BIOMASS; NITROGEN; WASTE; FABRICATION;
D O I
10.1021/acsomega.3c00816
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Waste, in particular, biowaste, can be a valuable sourceof novelcarbon materials. Renewable carbon materials, such as biomass-derivedcarbons, have gained significant attention recently as potential electrodematerials for various electrochemical devices, including batteriesand supercapacitors. The importance of renewable carbon materialsas electrodes can be attributed to their sustainability, low cost,high purity, high surface area, and tailored properties. Fish wasterecovered from the fish processing industry can be used for energyapplications and prioritizing the circular economy principles. Herein,a method is proposed to prepare a high surface area biocarbon fromglycogen extracted from mussel cooking wastewater. The biocarbon materialswere characterized using a Brunauer-Emmett-Teller surfacearea analyzer to determine the specific surface area and pore sizeand by scanning electron microscopy coupled with energy-dispersiveX-ray analysis, Raman analysis, attenuated total reflectance Fouriertransform infrared spectroscopy, X-ray diffraction, X-ray photoelectronspectroscopy, and transmission electron microscopy. The electrochemicalcharacterization was performed using a three-electrode system, utilizinga choline chloride-based deep eutectic solvent (DES) as an eco-friendlyand sustainable electrolyte. Optimal time and temperature allowedthe preparation of glycogen-based carbon materials, with a specificsurface area of 1526 m(2) g(-1), a pore volumeof 0.38 cm(3) g(-1), and an associated specificcapacitance of 657 F g(-1) at a current density of1 A g(-1), at 30 degrees C. The optimal material wasscaled up to a two-electrode supercapacitor using a DES-based solid-stateelectrolyte (SSE@DES). This prototype delivered a maximum capacitanceof 703 F g(-1) at a 1 A g(-1) of currentdensity, showing 75% capacitance retention over 1000 cycles, deliveringthe highest energy density of 0.335 W h kg(-1) andpower density of 1341 W kg(-1). Marine waste can bea sustainable source for producing nanoporous carbon materials tobe incorporated as electrode materials in energy storage devices.
引用
收藏
页码:18782 / 18798
页数:17
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