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首页> 外文期刊>Nano Energy >An advanced electro-Fenton degradation system with triboelectric nanogenerator as electric supply and biomass-derived carbon materials as cathode catalyst
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An advanced electro-Fenton degradation system with triboelectric nanogenerator as electric supply and biomass-derived carbon materials as cathode catalyst

机译:用摩擦纳米料剂作为电源和生物质衍生的碳材料作为阴极催化剂的先进的电芬龙降解系统

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On the basis of the advantages of electro-Fenton (EF) and the flexible design of triboelectric nanogenerator (TENG) and biomass carbon materials, a self-powered EF system is conceived, which is self-driven by a flexible multilayered TENG (FM-TENG) using carbon materials derived from long bean as the cathode catalyst for oxygen reduction. The synthesized carbon material is promising electrocatalyst due to its macro-/meso-porous structure, large surface area (2270 m(2) g(-1)), high nitrogen content and superhydrophilicity, which can facilitate dissolved O-2 mass transfer and promote the oxygen reduction. The instantaneous short-circuit current, transferred charge and open-circuit voltage of FM-TENG could reach 650 mu A, 1.7 mu C and 750 V, respectively, corresponding to an instantaneous power density of 2.6 W m(-2) (500 k Omega). Driven by FM-TENG, 4-dimethylaminoazobenzene can be decomposed to CO2 and inorganic ions by hydroxyl radical (center dot OH) generated via EF process. Cyclic voltammogram, gas chromatograph-mass spectrometer, UV-vis spectra and the H2O2 measurement together disclose such degradation mechanism in single-compartment cell (S-cell) and double-compartment cell (D-cell). Here, S-cell is preferable owing to the high efficiency, simple setup and low voltage. This provides a proof-of-concept of an innovative EF process using biomass-derived carbon materials as oxygen reduction electrocatalyst and FM-TENG as the electric supply to power the degradation of organic pollutants.
机译:在镍钨(EF)的优点的基础上,柔性电纳米料(滕)和生物质碳材料的柔性设计,构思了一种自给自足的EF系统,这是由柔性多层腾(FM-)自驾Teng)使用从长豆衍生的碳材料作为阴极催化剂进行氧还原。合成的碳材料是有前途的电催化剂由于其宏观/中间多孔结构,表面积大,表面积大(2270μm(2)g(-1)),高氮含量和超水性,这可以促进溶解O-2传质和促进氧气减少。 FM-Teng的瞬时短路电流,转移电荷和开路电压分别可以达到650μma,1.7μc和750V,对应于2.6W m(-2)的瞬时功率密度(500 k omega)。由FM-Teng的驱动,通过EF工艺产生的羟基自由基(中心点OH)可以将4-二甲基氨基氮苯并分解成CO 2和无机离子。循环伏安图,气相色谱谱图,UV-Vis光谱和H 2 O 2测量在一起公开了单室细胞(S-细胞)和双隔室细胞(D细胞)中的这种降解机制。这里,由于高效率,简单的设置和低电压,S-CELL是优选的。这提供了使用生物质衍生的碳材料作为氧还原电催化剂和FM-TENG作为电源,以供电的有机污染物的降解。

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