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Fungal biomass as biosorbent for the removal of Acid Blue 161 dye in aqueous solution

机译:真菌生物量作为生物吸附剂,用于去除水溶液中的酸蓝161染料

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摘要

Physical and thermal treatment was used to inactivate Trametes sp. SC-10 fungus. The resulting biomass was named BTV, characterized by analytical techniques such as SEM, EDX, FTIR, BET, and BarrettJoyner- Halenda (BJH) model. pH, kinetic, and equilibrium adsorption studies with the Acid Blue 161 (AB-161) dye were investigated at 303.15 K. The kinetics of the biosorption process were examined at 600.00 and 1300 mg L-1, using pseudo-first-order, pseudo-second-order, and Avrami fractional-order models. The maximum biosorption capacity of BTV for AB-161 dye was 221.6 mg g(-1). Considering the biosorption data and the functional groups of BTV, it can be inferred that the sorption mechanism of AB-161 is regulated by electrostatic interactions between ionized dye molecules and negative charges on BTV in an aqueous solution. Finally, the BTV was tested with a simulated effluent with 89.47% efficiency, presenting the BTV as a biosorbent for real effluents polluted with dyes.
机译:物理和热处理用于灭活TRMETES SP。 SC-10真菌。 所得生物质被命名为BTV,其特征在于分析技术,如SEM,EDX,FTIR,BET和BARRETJOYNER-HALENDA(BJH)模型。 在303.15k下研究了用酸蓝161(AB-161)染料的pH,动力学和平衡吸附研究。使用伪一阶,伪伪检测生物吸附过程的动力学。在600.00和1300mg L-1中检查生物吸附过程的动力学。 - 第一个订单和Avrami分数级型号。 AB-161染料BTV的最大生物吸收容量为221.6mg(-1)。 考虑到BTV的生物吸附数据和官能团,可以推断出通过在水溶液中的离子染料分子与BTV上的负电荷之间的静电相互作用来调节AB-161的吸附机理。 最后,使用89.47%的模拟流出物测试BTV,效率为89.47%,将BTV作为生物吸附剂,用于用染料污染的真正污水。

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