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Biomass-based carbon beads with a tailored hierarchical structure and surface chemistry for efficient batch and column uptake of methylene blue

机译:基于生物量的碳珠,具有定制的等级结构和表面化学,高效批量和亚甲基蓝柱吸收

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摘要

There is interest in cultivating an economic and controllable method for preparing biomass-based adsorptive materials for efficient removal of dyes from water. Herein a new bead-like material, i.e. alginate-derived carbon beads with a tailored hierarchical structure and surface chemistry, was prepared by using CaCO3-encapsulated calcium alginate (CA) hydrogel beads as the starting material and subsequent controllable carbonization and oxidation treatment. The resultant samples were characterized by SEM, TEM, FTIR, N-2 sorption and XRD, etc. Analyses showed that hierarchical carbon beads with a tailored density of oxygen-containing functional groups have been successfully prepared. Adsorption of methylene blue (MB) was studied systematically through batch and column adsorption analyses, and noting the effect of pH, contact time, initial dye concentrations and flow rates. The adsorption kinetics and isotherms fitted well with the pseudo-second-order kinetic model and Langmuir isotherm model, respectively; and the maximum adsorption capacity for MB was 397.9 mg/g. The results indicated that CaCO3/CA-ox could not only significantly improve the adsorption capacity but also exhibited a higher adsorption rate for MB compared with CA. Furthermore, compared to traditional powdery materials, this bead-like porous adsorbent is convenient for column adsorption and scale-up for practical applications, due to the easy regeneration and reusability.
机译:有兴趣培养一种制备基于生物质的吸附材料的经济和可控方法,以有效地从水中去除染料。本文通过使用CaCO3包封的藻酸钙(CA)水凝胶珠作为起始材料和随后可控碳化和氧化处理,制备了一种新的珠状材料,即具有定制的分层结构和表面化学的藻酸盐衍生的碳珠。通过SEM,TEM,FTIR,N-2吸附和XRD等所得的样品。分析表明,已经成功地制备了具有定制密度的含氧官能团密度的分层碳珠。通过批量和柱吸附分析系统地研究亚甲基蓝(MB)的吸附,并注意到pH,接触时间,初始染料浓度和流速的影响。吸附动力学和等温分别与伪二阶动力学模型和Langmuir等温模型很好; MB的最大吸附能力为397.9 mg / g。结果表明,CaCO 3 / Ca-OX不仅可以显着提高吸附能力,而且与CA相比,MB的吸附速率较高。此外,与传统的粉末材料相比,这种珠状多孔吸附剂是由于易于再生和可重用性的实际应用的柱吸附和扩大的方便。

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