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Removal of Congo Red and Methylene Blue from Aqueous Solutions by Vermicompost-Derived Biochars

机译:mi邮衍生生物炭去除水溶液中的刚果红和亚甲基蓝

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摘要

Biochars, produced by pyrolyzing vermicompost at 300, 500, and 700°C were characterized and their ability to adsorb the dyes Congo red (CR) and Methylene blue (MB) in an aqueous solution was investigated. The physical and chemical properties of biochars varied significantly based on the pyrolysis temperatures. Analysis of the data revealed that the aromaticity, polarity, specific surface area, pH, and ash content of the biochars increased gradually with the increase in pyrolysis temperature, while the cation exchange capacity, and carbon, hydrogen, nitrogen and oxygen contents decreased. The adsorption kinetics of CR and MB were described by pseudo-second-order kinetic models. Both of Langmuir and Temkin model could be employed to describe the adsorption behaviors of CR and MB by these biochars. The biochars generated at higher pyrolysis temperature displayed higher CR adsorption capacities and lower MB adsorption capacities than those compared with the biochars generated at lower pyrolysis temperatures. The biochar generated at the higher pyrolytic temperature displayed the higher ability to adsorb CR owing to its promoted aromaticity, and the cation exchange is the key factor that positively affects adsorption of MB.
机译:表征了通过在300、500和700℃下热解ver砂制成的生物炭,并研究了它们在水溶液中吸附染料刚果红(CR)和亚甲基蓝(MB)的能力。生物炭的物理和化学性质基于热解温度而显着变化。数据分析表明,随着热解温度的升高,生物炭的芳香性,极性,比表面积,pH和灰分含量逐渐升高,而阳离子交换能力降低,碳,氢,氮和氧含量降低。 CR和MB的吸附动力学用伪二级动力学模型描述。 Langmuir和Temkin模型都可以用来描述这些生物炭对CR和MB的吸附行为。与在较低的热解温度下产生的生物炭相比,在较高的热解温度下产生的生物炭显示出更高的CR吸附能力和较低的MB吸附能力。在较高的热解温度下产生的生物炭由于具有增强的芳香性而具有较高的吸附CR的能力,而阳离子交换是积极影响MB吸附的关键因素。

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