College of Chemical Engineering, Northwest Minzu University, Key Laboratory of State Ethnic Affairs Commission, Northwest Xincun 1, Lanzhou 730030, P. R. China.
Langmuir. 2023 Oct 24;39(42):14891-14903. doi: 10.1021/acs.langmuir.3c01632. Epub 2023 Oct 11.
With the frequent occurrence of offshore oil spills, the effective separation and treatment of oily wastewater are essential to the environment. In this work, the core-shell bioreactor (abbreviated as FeO/MHNTs-CNF@aerogel) was prepared with a core composed of camphor leaf cellulose-based aerogels for loading microorganisms and a shell derived from hydrophobic silane-modified halloysite doping with FeO for selective absorption of oil and maganetic recycling. The core-shell-structured bioreactor FeO/MHNTs-CNF@aerogel has excellent self-floating properties and can float on water for up to 100 days. The whole core-shell structure not only has excellent oil/water separation performance but also has good microbial degradation performance. By applying it in water containing 5% diesel for the biodegradation test, the biodegradation efficiency of FeO/MHNTs-CNF@aerogel for diesel can reach 82.4% in 10 days. The efficiency was 20% higher than for free microorganisms, and it still had excellent degradation ability after three degradation cycles, with a degradation rate of over 75%. In addition, the result obtained from the study on environmental tolerance shows that FeO/MHNTs-CNF@aerogel possessed a strong tolerance ability under different pH and salinity conditions. The FeO/MHNTs-CNF@aerogel also has superior mechanical properties; i.e., nearly no deformation occurs at 30 kPa. Compared with those conventional oil/water separation materials which can only absorb or separate the oils for water with limited capacity and taking the risk of secondary contamination, our core-shell-structured bioreactor is capable of not only selectively absorbing oil from water through its hydrophobic shell but also degrading it into a nontoxic substance by its microorganism-loaded core, thus showing great potential for practical application in oily wastewater treatment.
随着海上溢油事故的频繁发生,有效地分离和处理含油污水对环境至关重要。在这项工作中,制备了一种核壳式生物反应器(简称 FeO/MHNTs-CNF@aerogel),其核由樟树叶纤维素基气凝胶组成,用于负载微生物,壳由疏水硅烷改性的埃洛石掺杂 FeO 衍生而来,用于选择性吸收油和磁性回收。核壳结构的生物反应器 FeO/MHNTs-CNF@aerogel 具有优异的自浮性能,可以在水面上漂浮长达 100 天。整个核壳结构不仅具有优异的油水分离性能,而且具有良好的微生物降解性能。在含有 5%柴油的水中进行生物降解试验,FeO/MHNTs-CNF@aerogel 对柴油的生物降解效率在 10 天内可达 82.4%。比游离微生物的效率提高了 20%,经过三次降解循环后,仍具有优异的降解能力,降解率超过 75%。此外,环境耐受性研究的结果表明,FeO/MHNTs-CNF@aerogel 在不同 pH 值和盐度条件下具有很强的耐受性能力。FeO/MHNTs-CNF@aerogel 还具有优异的机械性能,在 30 kPa 下几乎没有变形。与那些只能吸收或分离有限容量的水中油,并且存在二次污染风险的传统油水分离材料相比,我们的核壳式生物反应器不仅能够通过其疏水性壳选择性地从水中吸收油,还能够通过其负载微生物的核将其降解为无毒物质,因此在含油污水处理的实际应用中具有很大的潜力。