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Reclamation of agro-wastewater polluted with pesticide residues using sunlight activated persulfate for agricultural reuse

机译:利用阳光活化过硫酸盐回收被农药残留污染的农业废水,以用于农业再利用

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摘要

The removal of 17 pesticides (pymetrozine, flonicamid, imidacloprid, acetamiprid, cymoxanil, thiachloprid, spinosad, chlorantraniliprole, triadimenol, tebuconazole, fluopyram, difenoconazole, cyflufenamid, hexythiazox, spiromesifen, folpet and acrinathrin) found in agro-wastewater from washing of containers and phytosanitary treatments equipment, has been carried out using sodium persulfate (Na2S2O8) at pilot plant scale under natural sunlight. Persulfate is a strong oxidant, inexpensive and environmentally appropriate. However, this oxidant is slow in kinetics under ordinary conditions. Na2S2O8 can be activated by ultraviolet light, generating SO4 center dot-radicals, which are also a very strong oxidizing species (E-0 = 2.6 V). Previously, preliminary experiments were carried out at laboratory scale using a photoreactor to optimize the Na2S2O8 (300 mg L-1) concentration on the rate constants of the found pesticides. The residual levels of the studied pesticides in agro-wastewater (900 L) were in the range 0.02-1.17 mg L-1 for acrinathrin and fluopyram, respectively. After treatment, nearly complete degradation (N97%) of the parent molecules was achieved although 13% of initial DOC was measured. No significant differences (p 0.05) were found when comparing grown broccoli using reclaimed and unreclaimed water. (c) 2019 Elsevier B.V. All rights reserved.
机译:从17种农药中去除17种农药(吡me嗪,氟尼卡胺,吡虫啉,对乙酰氨基酚,环草胺,噻虫啉,多杀菌素,绿藻腈,三苯二酚,戊唑醇,氟吡喃,二苯并噻唑,环苯乙酰胺,己基芥子油和环己酮,环己酮,环己酮,环己酮,氟虫草,螺菌素,植物检疫处理设备已经在自然阳光下以中试规模的过硫酸钠(Na2S2O8)进行了处理。过硫酸盐是一种强氧化剂,价格低廉且在环境上合适。然而,该氧化剂在普通条件下动力学缓慢。 Na2S2O8可以被紫外线激活,生成SO4中心点自由基,这也是一种非常强的氧化物种(E-0 = 2.6 V)。以前,使用光反应器在实验室规模下进行了初步实验,以根据发现的农药的速率常数优化Na2S2O8(300 mg L-1)的浓度。农业废水(900升)中所研究的农药中残留的残留量分别为0.02-1.17 mg L-1(阿里那林和氟吡草胺)。处理后,尽管测得初始DOC的13%,但母体分子几乎完全降解(N97%)。当使用再生水和未再生水比较生长的西兰花时,没有发现显着差异(p <0.05)。 (c)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第10期|923-930|共8页
  • 作者单位

    Catholic Univ Murcia, Appl Technol Grp Environm Hlth, Fac Hlth Sci, Campus Los Jeronimos S-N, Murcia 30107, Spain;

    Murcia Inst Agrifood Res & Dev, Sustainabil & Qual Grp Fruit & Vegetable Prod, C Mayor S-N, Murcia 30150, Spain;

    Murcia Inst Agrifood Res & Dev, Sustainabil & Qual Grp Fruit & Vegetable Prod, C Mayor S-N, Murcia 30150, Spain;

    Univ Murcia, Dept Agr Chem Geol & Pedol, Fac Chem, Campus Univ Espinardo, E-30100 Murcia, Spain;

    Murcia Inst Agrifood Res & Dev, Sustainabil & Qual Grp Fruit & Vegetable Prod, C Mayor S-N, Murcia 30150, Spain;

    Murcia Inst Agrifood Res & Dev, Sustainabil & Qual Grp Fruit & Vegetable Prod, C Mayor S-N, Murcia 30150, Spain;

    Univ Murcia, Dept Agr Chem Geol & Pedol, Fac Chem, Campus Univ Espinardo, E-30100 Murcia, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Broccoli irrigation; Persulfate; Pesticides; Solar photocatalysis; Water reuse;

    机译:西兰花灌溉;过硫酸盐;农药;太阳能光催化;中水回用;

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