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Laccase Immobilized on a PAN/Adsorbents Composite Nanofibrous Membrane for Catechol Treatment by a Biocatalysis/Adsorption Process

机译:漆酶固定在PAN /吸附剂复合纳米纤维膜上用于通过生物催化/吸附过程处理邻苯二酚

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摘要

The treatment of catechol via biocatalysis and adsorption with a commercial laccase immobilized on polyacrylonitrile/montmorillonite/graphene oxide (PAN/MMT/GO) composite nanofibers was evaluated with a homemade nanofibrous membrane reactor. The properties in this process of the immobilized laccase on PAN, PAN/MMT as well as PAN/MMT/GO with different weight ratios of MMT and GO were investigated. These membranes were successfully applied for removal of catechol from an aqueous solution. Scanning electron microscope images revealed different morphologies of the enzyme aggregates on different supports. After incorporation of MMT or MMT/GO, the optimum pH showed an alkaline shift to 4, compared to 3.5 for laccase immobilized on pure PAN nanofibers. The optimum temperature was at 55 °C for all the immobilized enzymes. Besides, the addition of GO improved the operational stability and storage stability. A 39% ± 2.23% chemical oxygen demand (COD) removal from the catechol aqueous solution was achieved. Experimental results suggested that laccase, PAN, adsorbent nanoparticles (MMT/GO) can be combined together for catechol treatment in industrial applications.
机译:用自制的纳米纤维膜反应器评估了固定在聚丙烯腈/蒙脱土/氧化石墨烯(PAN / MMT / GO)复合纳米纤维上的商品漆酶的生物催化和吸附处理邻苯二酚的能力。研究了固定化漆酶在PAN,PAN / MMT以及具有不同MMT和GO重量比的PAN / MMT / GO的过程中的性能。这些膜已成功应用于从水溶液中去除邻苯二酚。扫描电子显微镜图像显示了在不同载体上酶聚集体的不同形态。掺入MMT或MMT / GO后,最适pH值显示碱性移至4,而固定在纯PAN纳米纤维上的漆酶则为3.5。所有固定化酶的最佳温度为55°C。此外,GO的加入改善了操作稳定性和储存稳定性。从邻苯二酚水溶液中去除了39%±2.23%的化学需氧量(COD)。实验结果表明,漆酶,PAN,吸附剂纳米颗粒(MMT / GO)可以结合在一起用于工业应用中的邻苯二酚处理。

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