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Supermagnetically Tuned Halloysite Nanotubes Functionalized with Aminosilane for Covalent Laccase Immobilization

机译:用氨基硅烷官能化的超磁性调谐纳米管,用于共价漆酶固定化

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Halloysite nanotubes (HNTs) were tuned with supermagnetic Fe3O4 (M-HNTs) and functionalized with beta-aminopropyltriethoxysilane (APTES) (A-M-HNTs). Gluteraldehyde (GTA) was linked to A-M-HNTs (A-M-HNTs-GTA) and explored for covalent laccase immobilization. The structural characterization of M-HNTs, A-M-HNTs, and A-M-HNTs-GTA-immobilized laccase (A-M-HNTs-GTA-Lac) was determined by X-ray photoelectron spectroscopy, field-emission high resolution transmission electron microscopy, a magnetic property measurement system, and thermogavimetric analyses. A-MHNTs-GTA-Lac gave 90.20% activity recovery and a loading capability of 84.26 mg/g, with highly improved temperature and storage stabilities. Repeated usage of A-M-HNTs-GTA-Lac revealed a remarkably consistent relative activity of 80.49% until the ninth cycle. The A-M-HNTs-GTA-Lac gave consistent redox-mediated sulfamethoxazole (SMX) degradation up to the eighth cycle. In the presence of guaiacol, A-M-HNTs-GTA-Lac gave elevated SMX degradation compared with 2,2'-azinobis(3-ethylbenzthiazoline-6-sulfonic acid) and syrinialdehyde. Therefore, the A-M-HNTs can serve as supermagnetic aminofunctionalized nanoreactors for biomacromolecule immobilization. The obtained A-M-HNTs-GTA-Lac is an environmentally friendly biocatalyst for effective degradation of micropollutants, such as SMX, and can be easily retrieved from an aqueous solution by a magnet after decontamination of pollutants in water and wastewater.
机译:用超镁Fe3O4(M-HNT)调节Halloysite Nanotubes(HNT),并用β-氨基丙基三乙氧基硅烷(Aptes)(A-M-HNT)官能化。胶乳醛(GTA)与A-M-HNT(A-M-HNTS-GTA)连接并探索共价漆酶固定化。 M-HNT,AM-HNT和AM-HNTS-GTA-固定漆酶(AM-HNTS-GTA-LAC)的结构表征由X射线光电子光电子,现场排放高分辨率透射电子显微镜,磁性测定性能测量系统,以及热量测量分析。 A-MHNTS-GTA-LAC产生90.20%的活性回收和84.26mg / g的负载能力,具有高度改善的温度和储存稳定性。反复使用A-M-HNTS-GTA-LAC显示出显着一致的相对活性为80.49%,直到第九循环。 A-M-HNTS-GTA-LAC将一致的氧化还原介导的磺胺甲恶唑(SMX)降解至第八循环。与2,2'-αzinobis(3-乙基苯并噻唑啉-6-磺酸)和锡醛相比,A-M-HNTS-GTA-LAC的存在升高了SMX降解。因此,A-M-HNT可用作用于生物致散热物的过氨基官能化纳米反应器。得到的A-M-HNTS-GTA-LAC是环境友好的生物催化剂,用于有效降解微核性的微拷贝,例如SMX,并且可以在水和废水中污染物的污染物净化后通过磁体从水溶液中检索。

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