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Preparation and electrochemical performance of nitrogen-enriched activated carbon derived from silkworm pupae waste

机译:蚕waste废料富氮活性炭的制备及电化学性能

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In this study, nitrogen-enriched activated carbon from silkworm pupae waste (P-AC) was successfully prepared and its electrochemical performances in aqueous and organic electrolytes were investigated. Silkworm pupae waste is beneficial because it is a nitrogen-enriched, inexpensive, and locally available material. The preparation process includes hydrothermal treatment of the silkworm pupae waste at 200 °C, and chemical activation using zinc chloride at activation temperatures of 700, 800 and 900 °C (P700, P800, and P900, respectively). The nitrogen content in the P-ACs was approximately 3.8–6.4 at%, decreasing with activation temperature, while the surface area was approximately 1062–1267 m ~(2) g ~(?1) , increasing with activation temperature. Compared to a commercial AC, the P-ACs show higher nitrogen content but lower surface area. Furthermore, the P800 exhibited superior specific capacitance (154.6 and 91.6 F g ~(?1) in aqueous and organic electrolytes) compared to a commercial AC despite possessing smaller surface area. The high nitrogen content enhanced the pseudocapacitance and improved the electrical conductivity of the P-ACs. These properties were confirmed by relatively low series and charge transfer resistances, a capacity retention higher than 88% at a current density of 0.5 A g ~(?1) and excellent cycling stability demonstrated by maintaining 97.6% of its capacitance after 3000 cycles. These results demonstrate that silkworm pupae waste is a viable source of nitrogen-enriched AC for application in supercapacitors.
机译:本研究成功地从蚕from废料(P-AC)中制备了富氮活性炭,并研究了其在水和有机电解质中的电化学性能。蚕p废料是有益的,因为它是富氮,廉价且可在当地获得的材料。制备过程包括在200°C下对蚕p废液进行水热处理,并在700、800和900°C(分别为P700,P800和P900)的活化温度下使用氯化锌进行化学活化。 P-AC中的氮含量约为3.8–6.4 at%,随活化温度而降低,而表面积约为1062–1267 m〜(2)g〜(?1),随活化温度而增加。与商用AC相比,P-AC的氮含量更高,但表面积却更低。此外,尽管P800具有较小的表面积,但与商用AC相比仍显示出优异的比电容(在水性和有机电解质中为154.6和91.6 F g〜(?1))。高氮含量提高了伪电容并提高了P-AC的电导率。这些特性被相对较低的串联电阻和电荷转移电阻,在0.5 A g〜(?1)的电流密度下的容量保持率高于88%以及通过在3000次循环后保持其97.6%的电容所显示的优异的循环稳定性所证实。这些结果表明,家蚕p废物是用于超级电容器的一种富氮AC的可行来源。

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