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Novel biosorbents synthesized from fungal and bacterial biomass and their applications in the adsorption of volatile organic compounds

机译:从真菌和细菌生物量合成的新型生物吸水剂及其在挥发性有机化合物的吸附中的应用

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Adsorption is an efficient and low-cost technology used to purify volatile organic compounds (VOCs). In the current study, novel microbial adsorbents were synthesized using cells of lyophilized fungi (Ophiostoma stenoceras LLC) or bacteria (Pseudomonas veronii ZW) that were modified by aminomethylation. Based on the adsorption performance and structural characterization results, the modified fungal biosorbent was the best. Its maximum adsorption capacities for ethyl acetate, a-pinene, and n-hexane were 620, 454, and 374 mg.g(-1) respectively, which were much higher than those of other synthesized biosorbents. The specific surface area of the fungal biosorbent was 20 m(2).g(-1), and most of the components were hydrocarbon compounds and polysaccharides. The VOC adsorption process on these synthesized biosorbents was in accordance with the Langmuir isothermal model and the pseudo-first-order kinetic model, thereby suggesting that physical adsorption was the dominant mechanism. The fungal biosorbent could be used for five consecutive VOC sorption-desorption cycles without any obvious decrease in adsorption capacity.
机译:吸附是一种有效和低成本的技术,用于净化挥发性有机化合物(VOC)。在目前的研究中,使用通过氨基化改性的冻干的真菌(Ophiostoma Stenoceras LLC)或细菌(Pseudomonas Veronii Zw)来合成新的微生物吸附剂。基于吸附性能和结构表征结果,改性的真菌生物吸附剂是最好的。其对乙酸乙酯,A-PINENE和N-己烷的最大吸附能力分别为620,454和374mg.g(-1),其远高于其它合成的生物吸水性。真菌生物吸附剂的比表面积为20μm(2).g(-1),大部分组分是烃类化合物和多糖。这些合成生物吸收剂上的VOC吸附过程符合Langmuir等温模型和伪第一阶动力学模型,从而表明物理吸附是主要机制。真菌生物吸附剂可用于五个连续的VOC吸附 - 解吸循环,没有任何明显的吸附能力降低。

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