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首页> 外文期刊>Solar Energy >Inactivation of simulated aquaculture stream bacteria at low temperature using advanced UVA- and solar-based oxidation methods
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Inactivation of simulated aquaculture stream bacteria at low temperature using advanced UVA- and solar-based oxidation methods

机译:采用先进的UVA和太阳能氧化方法在低温下模拟水产养殖流细菌的灭活

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摘要

In this work the effect of water temperature (6 +/- 1 degrees C and 22 +/- 1 degrees C) on inactivation of bacteria (104 -106 CFU mL-1; Pseudomonas spp., Aeromonas spp. and Enterobacter spp.) in simulated aquaculture streams (SAS) using UVA based advanced oxidation processes (AOP) (H2O2-assisted UVA; photocatalysis; H2O2-assisted photocatalysis) and solar driven AOPs (H2O2-assisted solar disinfection, SODIS) was studied. Efficiency at 22 degrees C in terms of inactivation rate was higher using H2O2-assisted photocatalysis (H2O2/UVA-TiO2/polysiloxane) H2O2-assisted UVA disinfection (UVA/H2O2 - 10 mg L-1) photocatalysis (UVA-TiO2/polysiloxane) UVA disinfection. At low temperature (6 degrees C) the inactivation rate increased with SODIS/H2O2 SODIS H2O2assisted UVA disinfection (UVA/H2O2 - 10 mg L-1) H2O2-assisted photocatalysis (H2O2/UVA-TiO2/polysiloxane) photocatalysis (UVA-TiO2/polysiloxane). The main results indicate that the inactivation rates increased when hydrogen peroxide (10 mg L-1) was used during H2O2-assisted UVA disinfection and photocatalysis. In addition, exposure of SAS to hydrogen peroxide for 24 h (in absence of light) at room temperature decreased the subsequent exposure UVA irradiation dose by almost four times. Drastic increase of inactivation rate was observed at low water temperature (6 +/- 1 degrees C) when UVA- and solarbased AOPs were employed compared to 22 +/- 1 degrees C. The treatment with SODIS proved to be more effective in Finland than in Spain. The effect of the low temperature (6 +/- 1 degrees C) was proposed as a critical factor during UVA disinfection (UVA/H2O2 and photocatalysis) that can increase the disinfection rate constant (kmax) by 1.3-5.2 times, leading to a reduction of the treatment costs ( euro m-3) by 1.3-3.3 times. The mechanism of observed enhanced disinfection at low water temperature (6 +/- 1 degrees C) when natural solar light and UVA are employed as irradiation sources for UVA/H2O2 and photocatalytic bacteria inactivation was proposed. No regrowth was observed in case of H2O2-assisted AOPs.
机译:在这方面,水温(6 +/- 1℃和22 +/- 1℃)的效果对细菌的失活(104-106 CFU ML-1;假单胞菌SPP,Aeromonas SPP。和肠杆菌SPP。)在模拟水产养殖流(SAS)中使用UVA的高级氧化方法(AOP)(H2O2辅助UVA;光催化; H2O2辅助光催化)和太阳驱动的AOP(H2O2辅助太阳消毒,SODIC)进行了研究。使用H2O2辅助光催化(H2O2 / UVA-TiO 2 /聚硅氧烷)&效率在22摄氏度下效率较高。 H2O2辅助UVA消毒(UVA / H2O2 - 10 mg L-1)>光催化(UVA-TiO 2 /聚硅氧烷)> UVA消毒。在低温(6摄氏度)下,灭活率随SODIS / H2O2&GT而增加; SODIS> H2O2Assisted UVA消毒(UVA / H2O2 - 10 mg L-1)> H2O2辅助光催化(H2O2 / UVA-TiO 2 /聚硅氧烷)>光催化(UVA-TiO 2 /聚硅氧烷)。主要结果表明,当在H 2 O 2辅助UVA消毒和光催化期间使用过氧化氢(10mg L-1)时,灭活率增加。此外,在室温下将SAS暴露于过氧化氢24小时(在不存在光)下降几乎四次随后的暴露UVA辐照剂量。当使用UVA-和太阳能的AOPS与22 +/- 1摄氏度相比,在低水温(6 +/- 1摄氏度)时观察到灭活率的急剧增加。在芬兰的SODIC的治疗方案中被证明比芬兰更有效在西班牙。低温(6 +/- 1℃)的效果是在UVA消毒(UVA / H 2 O 2和光催化)期间的关键因素,其可以将消毒率常数(kmax)增加1.3-5.2倍,导致a将治疗成本(欧元M-3)减少1.3-3.3倍。提出了当采用天然太阳能光和UVA时,观察到低水温(6 +/- 1℃)在低水温(6 +/- 1℃)中的机制提出了uva / h2O2和光催化细菌灭活的辐照源。在H 2 O 2辅助AOPS的情况下没有观察到再生。

著录项

  • 来源
    《Solar Energy》 |2021年第10期|477-489|共13页
  • 作者单位

    Univ Cadiz Fac Marine & Environm Sci INMAR Marine Res Inst Dept Environm Technol Poligono Rio San Pedro S-N Cadiz 11510 Spain;

    Univ Eastern Finland Dept Environm & Biol Sci Fine Particle & Aerosol Technol Lab POB 1627 FI-70211 Kuopio Finland|Aalto Univ Sch Engn Water & Environm Engn Res Grp POB 15200 FI-00076 Aalto Finland;

    Univ Eastern Finland Dept Environm & Biol Sci Fine Particle & Aerosol Technol Lab POB 1627 FI-70211 Kuopio Finland;

    Masaryk Univ Fac Sci Dept Phys Elect Kotlarska 267-2 Brno 61137 Czech Republic;

    Univ Malaga Fac Sci Dept Microbiol Malaga 29071 Spain;

    Aalto Univ Sch Engn Water & Environm Engn Res Grp POB 15200 FI-00076 Aalto Finland;

    Univ Cadiz Fac Marine & Environm Sci INMAR Marine Res Inst Dept Environm Technol Poligono Rio San Pedro S-N Cadiz 11510 Spain;

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

    Aquaculture streams; UVA-based AOPs; Solar AOPs; Low temperature;

    机译:水产养殖流;基于UVA的AOPS;太阳能驴;低温;

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