Plaza-Joly Pierre, Gallois Arthur, Bosc-Rouessac Florence, Drobek Martin, Julbe Anne
Institut Européen des Membranes (IEM), CNRS, ENSCM, Univ Montpellier, Place Eugène Bataillon, 34095 Montpellier, France.
Molecules. 2024 Jun 27;29(13):3057. doi: 10.3390/molecules29133057.
Metal-Organic Frameworks (MOFs) are particularly attractive sorbents with great potential for the removal of toxic dye pollutants from industrial wastewaters. The uniform dispersion of MOF particles on suitable substrates then represents a key condition to improve their processability and provide good accessibility to the active sites. In this work, we investigate the efficiency of a natural bacterial cellulose material derived from Kombucha (KBC) as an active functional support for growing and anchoring MOF particles with UiO-66 structures. An original hierarchical microstructure was obtained for the as-developed Kombucha cellulose/UiO-66 (KBC-UiO) composite material, with small MOF crystals (~100 nm) covering the cellulose fibers. Promising adsorption properties were demonstrated for anionic organic dyes such as fluorescein or bromophenol blue in water at pH 5 and pH 7 (more than 90% and 50% removal efficiency, respectively, after 10 min in static conditions). This performance was attributed to both the high accessibility and uniform dispersion of the MOF nanocrystals on the KBC fibers together with the synergistic effects involving the attractive adsorbing properties of UiO-66 and the surface chemistry of KBC. The results of this study provide a simple and generic approach for the design of bio-sourced adsorbents and filters for pollutants abatement and wastewater treatment.
金属有机框架材料(MOFs)是极具吸引力的吸附剂,在去除工业废水中的有毒染料污染物方面具有巨大潜力。MOF颗粒在合适的基底上均匀分散是提高其可加工性并使活性位点易于接触的关键条件。在这项工作中,我们研究了源自康普茶(KBC)的天然细菌纤维素材料作为生长和锚定具有UiO - 66结构的MOF颗粒的活性功能载体的效率。对于所制备的康普茶纤维素/UiO - 66(KBC - UiO)复合材料,获得了一种原始的分级微观结构,小的MOF晶体(约100 nm)覆盖在纤维素纤维上。对于水中的阴离子有机染料,如荧光素或溴酚蓝,在pH 5和pH 7条件下表现出了良好的吸附性能(在静态条件下10分钟后,去除效率分别超过90%和50%)。这种性能归因于MOF纳米晶体在KBC纤维上的高可及性和均匀分散,以及涉及UiO - 66的吸附特性和KBC表面化学性质的协同效应。本研究结果为设计用于污染物减排和废水处理的生物源吸附剂和过滤器提供了一种简单通用的方法。