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真菌菌丝体支撑氧化铝:一种从水中去除氟化物的高效、可回收吸附剂。

Fungus hyphae-supported alumina: An efficient and reclaimable adsorbent for fluoride removal from water.

机构信息

Department of Environmental Engineering, School of Metallurgy and Environment, Central South University, Lushan South Road 932, Changsha Hunan 410083, China; Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution, Lushan South Road 932, Changsha Hunan 410083, China.

Department of Environmental Engineering, School of Metallurgy and Environment, Central South University, Lushan South Road 932, Changsha Hunan 410083, China.

出版信息

J Colloid Interface Sci. 2017 Jun 15;496:496-504. doi: 10.1016/j.jcis.2017.02.015. Epub 2017 Feb 10.

Abstract

A reclaimable adsorbent of fungus hyphae-supported alumina (FHSA) bio-nanocomposites was developed, characterized and applied in fluoride removal from water. This adsorbent can be fast assembled and disassemble reversibly, promising efficient reclamation and high accessible surface area for fluoride adsorption. Adsorption experiments demonstrate that the FHSA performed well over a considerable wide pH range of 3-10 with high fluoride removal efficiencies (>66.3%). The adsorption capacity was 105.60mgg for FHSA, much higher than that for the alumina nanoparticles (50.55mgg) and pure fungus hyphae (22.47mgg). The adsorption capacity calculated by the pure content of alumina in the FHSA is 340.27mgg of alumina. Kinetics data reveal that the fluoride adsorption process on the FHSA was fast, nearly 90% fluoride adsorption can be achieved within 40min. The fluoride adsorption on the FHSA is mainly due to the surface complexes formation of fluoride with AlOH and the attraction between protonated NH and fluoride through hydrogen bonding. Findings demonstrate that the FHSA has potential applicability in fluoride removal due to its strong fluoride adsorbility and the easy reclamation by its fast reversible assembly and disassembly feature.

摘要

一种可回收的真菌菌丝支撑氧化铝(FHSA)生物纳米复合材料吸附剂被开发、表征并应用于水中氟化物的去除。这种吸附剂可以快速组装和拆卸,具有高效的回收和高可及表面积,适用于氟化物吸附。吸附实验表明,FHSA 在相当宽的 pH 值范围 3-10 内表现良好,具有高的氟去除效率(>66.3%)。FHSA 的吸附容量为 105.60mgg,远高于氧化铝纳米粒子(50.55mgg)和纯真菌菌丝(22.47mgg)。由 FHSA 中氧化铝的纯含量计算的吸附容量为 340.27mgg 的氧化铝。动力学数据表明,氟化物在 FHSA 上的吸附过程很快,在 40min 内几乎可以达到 90%的氟化物吸附。FHSA 对氟化物的吸附主要是由于氟化物与 AlOH 形成表面络合物以及通过氢键质子化 NH 和氟化物之间的吸引力。研究结果表明,FHSA 由于其强的氟吸附能力和快速可逆组装和拆卸的特点,具有在氟化物去除方面的潜在应用。

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