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Optimization of one-pot H3PO4-activated hydrochar synthesis by Doehlert design: Characterization and application

机译:基于Doehlert设计的一锅法H3PO4活化氢炭合成的优化:表征和应用

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? 2022In this work, the hydrochar process optimization was carried out from Brewer's spent grains (BSG) using wet pyrolysis (WP) with one-pot acid activation. The Doehlert Matrix was used as an experimental design to evaluate the influence of temperature (100, 125, 150, 175, and 200 °C) and residence time (4, 14, and 24 h), totaling nine experiments. The responses to evaluate the synthesis performance were mass yield and methylene blue (MB) dye removal capacity in an aqueous solution. The physicochemical properties of each material were determined. The optimized hydrochar (150 °C, 14 h) presented a specific surface area of 9 m2 g?1. The pseudo-second-order kinetic model and the Freundlich isotherm model best fit the experimental data of MB removal by hydrochar. In the isotherm study, the amount of MB adsorbed at equilibrium varied from 39.39 to 107.66 mg g?1 for initial concentrations of 50–250 mg L?1, with a maximum adsorption capacity of 134.78 mg g?1, estimated by the Langmuir model. These results were obtained using 1.00 g L?1 of biochar at 30 °C and pH = 6. Finally, it can be concluded that WP with activation in a single step proved to be a suitable way to treat BSG, whose obtained material has a high potential to be used as a low-cost adsorbent for remediating organic pollutants in water.
机译:?2022在这项工作中,使用湿式热解 (WP) 和一锅酸活化对 Brewer's 废谷物 (BSG) 进行了加氢炭工艺优化。采用Doehlert Matrix作为实验设计,评估温度(100、125、150、175和200 °C)和停留时间(4、14和24 h)的影响,共计9个实验。评估合成性能的响应是水溶液中的质量产率和亚甲基蓝(MB)染料去除能力。测定了每种材料的理化性质。优化后的加氢炭(150 °C,14 h)的比表面积为9 m2 g?1。拟二级动力学模型和Freundlich等温线模型最能拟合氢炭去除MB的实验数据。在等温线研究中,当初始浓度为50–250 mg L?1时,平衡时吸附的MB量为39.39至107.66 mg g?1,最大吸附量为134.78 mg g?1,由Langmuir模型估计。这些结果是在30°C和pH = 6下使用1.00g L?1生物炭获得的。最后,可以得出结论,一步活化的WP被证明是处理BSG的合适方法,其获得的材料具有很高的潜力,可以用作修复水中有机污染物的低成本吸附剂。

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