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首页> 外文期刊>Chemical engineering journal >Simultaneous robust removal of tetracycline and tetracycline resistance genes by a novel UiO/TPU/PSF forward osmosis membrane
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Simultaneous robust removal of tetracycline and tetracycline resistance genes by a novel UiO/TPU/PSF forward osmosis membrane

机译:通过新型UIO / TPU / PSF前渗透膜同时去除四环素和四环素抗性基因的鲁棒去除

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摘要

The accumulation of antibiotics in the environment fosters the evolution of antibiotic resistance genes (ARGs) that cause adverse an ecological impact. In this study, we fabricated a thermoplastic polyurethane/polysulfone (TPU/PSF) composite membrane with a low structural parameter and high mechanical strength using electrospinning. UiO-66-NH2 particles and particles interfacial polymerization thin-film nanocomposite forward osmosis (UTFN) membrane were then prepared and characterized with the best-performing substrate layer of the TPU/PSF (20/80) membrane. Furthermore, the co-rejection and mechanism of tetracycline (TC) and tetracycline resistance genes (TRGs) (commonly including tetA, tetC, tetM, tetO, and tetX, as well as int1 and 16S rRNA gene) were revealed. Results demonstrated that the as-prepared UTFN membrane with 0.075 wt% particle (UTFN-0.075) achieved the highest water flux (64 L m(-2) h(-1)) and the rejection of TC was above 99.64% using 0.5 mol (NH4)(2)HPO4 as the draw solution. Meanwhile, the permeability of the TRGs was lower than 10% (particularly, less than 1.4% for tetC). The rejection of electrically neutral TC was likely affected by steric hindrance, whereas the TRGs rejection mechanism could be attributed to electrostatic repulsion and pore sieving effect. As for permeability, differences in various TRGs were mainly attributed to their distribution. Therefore, the simultaneous removal of TC and TRGs by the UTFN membrane has significant application prospects for wastewater treatment.
机译:环境中抗生素的积累培养了抗生素抗性基因(ARGS)的演变,导致生态撞击不良。在这项研究中,我们使用静电纺丝制造具有低结构参数和高机械强度的热塑性聚氨酯/聚砜(TPU / PSF)复合膜。然后制备UIO-66-NH2颗粒和颗粒界面聚合薄膜纳米多合成渗透(UTFN)膜,并表征了TPU / PSF(20/80)膜的最佳性底物层。此外,揭示了四环素(Tc)和四环素抗性基因(Tracycline抗性基因(Tetracecline抗性基因(Teta,Tetc,Tetm,Teto和Tetx以及Int1和16s rRNA基因)的共抑制和机制。结果表明,具有0.075wt%粒子(UTFN-0.075)的AS制备的UTFN膜实现了最高的水通量(64Lm(-2)H(-1)),使用0.5摩尔的Tc的排斥率高于99.64% (NH4)(2)HPO4作为绘制溶液。同时,TRG的渗透率低于10%(特别是TETC的小于1.4%)。电中性Tc的排斥可能受到空间障碍的影响,而TRGS排斥机制可归因于静电排斥和孔径筛选效应。对于渗透性,各种TRG的差异主要归因于其分布。因此,UTFN膜同时除去Tc和Trgs具有废水处理的显着应用前景。

著录项

  • 来源
    《Chemical engineering journal》 |2020年第1期|共11页
  • 作者单位

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Donghua Univ State Environm Protect Engn Ctr Pollut Treatment Coll Environm Sci &

    Engn Shanghai 201620 Peoples R China;

    Nanchang Hangkong Univ Key Lab Jiangxi Prov Persistent Pollutants Contro Nanchang 330063 Jiangxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Electrospinning TPU/PSF composite membrane; UiO-66-NH2 particle; Forward osmosis; Tetracycline and tetracycline resistance genes; Rejection mechanism;

    机译:静电纺丝TPU / PSF复合膜;UIO-66-NH2粒子;前渗透;四环素和四环素抗性基因;排斥机制;

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