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Oxidation of tetracycline and oxytetracycline for the photo-Fenton process: Their transformation products and toxicity assessment

机译:光芬顿法氧化四环素和土霉素的转化产物和毒性评估

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摘要

Advanced oxidation processes have gained significant attention for treating tetracycline (TC) and oxytetracycline (OTC), however, their oxidation using the photo-Fenton process has not been sufficiently studied. Although degradations of TC and OTC were enhanced by increasing H2O2 and Fe2+ within the ranges investigated (H2O2 = 20-50 mg/L and Fe = 1-10 mg/L) under UV irradiation, further experiments for the photo-Fenton process were conducted with 20 mg/L of H2O2 and 5 mg/L of Fe2+ to balance efficiency and cost. The photo-Fenton process (UV/H2O2/Fe2+) was shown to be more effective to remove TC and OTC than H2O2, ultraviolet (UV), and UV/H2O2 at the same doses of oxidants. Inorganic anions and cations were shown to inhibit the degradation of TC and OTC during the photo-Fenton process, in the following order: HPO42- > HCO3- SO42- > Cl- and Cu2+ Ca2+ > Na+. The TC and OTC degradation are generally improved by increasing pH, which is opposite to the k(pCBA.obs) values, caused by increasing the deprotonation degree of TC and OTC. Four and nine transformation products of TC and OTC, respectively, were detected over the treatment period. Among the transformation products, m/z 443.14 (C22H22N2O8) formed during TC degradation, and m/z 433.16 (C20H20N2O9) and m/z 415.15 (C20H18N2O8) formed during OTC degradation, were reported for the first time. Vibrio fischeri toxicity assessment indicated that the inhibition ratio was decreased with a decreasing TC concentration, while, OTC transformation lead to higher toxicity. The product (m/z 477.15b) was determined to be the compound causing toxicity during degradation of OTC by using the quantitative structure activity relationship (QSAR). This toxic transformation product caused higher inhibition ratios than its parental compound (OTC), but its further oxidization resulted in decreasing the inhibition ratios. (C) 2020 Elsevier Ltd. All rights reserved.
机译:先进的氧化工艺在处理四环素(TC)和土霉素(OTC)方面引起了极大的关注,但是,使用光芬顿法进行的氧化还没有得到足够的研究。尽管在紫外线照射下,在所研究的范围内(H2O2 = 20-50 mg / L和Fe = 1-10 mg / L)增加H2O2和Fe2 +可以增强TC和OTC的降解,但仍进行了光芬顿法的进一步实验用20 mg / L的H2O2和5 mg / L的Fe2 +平衡效率和成本。在相同剂量的氧化剂下,光芬顿法(UV / H2O2 / Fe2 +)比H2O2,紫外线(UV)和UV / H2O2更有效地去除TC和OTC。无机阴离子和阳离子显示出在光芬顿过程中抑制TC和OTC的降解,其顺序如下:HPO42-> HCO3- SO42-> Cl-和Cu2 + Ca2 +> Na +。通常通过增加pH来改善TC和OTC的降解,这与增加TC和OTC的去质子度导致的k(pCBA.obs)值相反。在治疗期间,分别检测到TC和OTC的四种和九种转化产物。在转化产物中,首次报道了在TC降解过程中形成的m / z 443.14(C22H22N2O8)和在OTC降解过程中形成的m / z 433.16(C20H20N2O9)和m / z 415.15(C20H18N2O8)。费氏弧菌毒性评估表明,随着TC浓度降低,抑制率降低,而OTC转化导致更高的毒性。通过使用定量结构活性关系(QSAR),将产物(m / z 477.15b)确定为在OTC降解期间引起毒性的化合物。这种有毒的转化产物比其母体化合物(OTC)引起更高的抑制率,但其进一步的氧化导致抑制率降低。 (C)2020 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2020年第1期|115514.1-115514.10|共10页
  • 作者

  • 作者单位

    Korea Inst Sci & Technol Ctr Water Resource Cycle Res Hwamngno 14 Gil 5 Seoul 02792 South Korea|Korea Univ KU KIST Green Sch Grad Sch Energy & Environm 145 Anam Ro Seoul 02841 South Korea;

    Korea Univ KU KIST Green Sch Grad Sch Energy & Environm 145 Anam Ro Seoul 02841 South Korea|Korea Univ Sch Civil Environm & Architectural Engn Anam Ro 145 Seoul 02841 South Korea;

    Seoul Natl Univ Dept Rural Syst Engn Environm Funct Mat & Water Treatment Lab Seoul 08826 South Korea|Seoul Natl Univ Res Inst Agr & Life Sci Seoul 08826 South Korea;

    McGill Univ Dept Chem Engn 3610 Univ St Montreal PQ H3A 0C5 Canada;

    Korea Inst Sci & Technol Ctr Water Resource Cycle Res Hwamngno 14 Gil 5 Seoul 02792 South Korea;

    Seoul Natl Univ Res Inst Agr & Life Sci Seoul 08826 South Korea|McGill Univ Dept Chem Engn 3610 Univ St Montreal PQ H3A 0C5 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photo-fenton process; (oxy)tetracycline; Water quality parameters; Transformation products; Toxicity assessment; QSAR analysis;

    机译:光芬顿法;(氧)四环素;水质参数;转型产品;毒性评估;QSAR分析;

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