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首页> 外文期刊>The Science of the Total Environment >Photobioreactors based on microalgae-bacteria and purple phototrophic bacteria consortia: A promising technology to reduce the load of veterinary drugs from piggery wastewater
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Photobioreactors based on microalgae-bacteria and purple phototrophic bacteria consortia: A promising technology to reduce the load of veterinary drugs from piggery wastewater

机译:基于微藻细菌和紫色光养细菌联盟的光生物反应器:减少猪场废水中兽药负荷的有前途的技术

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Traditional swine manure treatments are not fully effective in the removal of veterinary drugs. Moreover, they are costly and entail a significant carbon footprint in many cases. Innovative biological approaches based on phototrophic microorganisms have recently emerged as promising alternatives to overcome those limitations. This work evaluated the removal of 19 veterinary drugs (i.e., 16 antibiotics, 1 analgesic, 1 anti-parasitic and 1 hormone) from piggery wastewater (PWW) in two open photobioreactors (PBR) operated with a consortium of microalgae-bacteria (AB-PBR) and purple photosynthetic bacteria (PPB-PBR). Multiple hydraulic retention times (HRT), in particular 11, 8 and 4 days, were tested during stage I, II and III, respectively. Ten out of 19 target compounds were detected with inlet drug concentrations ranging from 'non-detected' (n.d.) to almost 23,000 ng L-1 for the antibiotic oxytetracycline. Moreover, three of the antibiotics (i.e., enrofloxacin, sulfadiazine and oxytetracycline) were found at concentrations above the analytical linearity range in some or all of the samples under study. AB-PBR supported higher removal efficiencies (REs) than PPB-PBR, except for danofloxacin. Overall, REs progressively decreased when decreasing the HRT. The highest REs (>90%) were observed for doxy-cycline (95 +/- 3%) and oxytetracycline (93 +/- 3%) in AB-PBR during stage I. The other drugs, except sulfadimidine that was the most recalcitrant, showed REs above 70% during stage I in the same photobioreactor. In contrast, removal was observed for danofloxacin in AB-PBR during stage III, sulfadimidine in PPB-PBR during stage III or marbofloxacin in PPB-PBR during the entire experiment. (C) 2019 Elsevier B.V. All rights reserved.
机译:传统的猪粪处理不能完全有效地去除兽药。而且,它们很昂贵并且在许多情况下需要大量的碳足迹。最近,以光养微生物为基础的创新生物方法已成为克服这些局限性的有前途的替代方法。这项工作评估了在两个开放式光生物反应器(PBR)中由猪群废水(PWW)中的19种兽药(即16种抗生素,1种镇痛药,1种抗寄生虫药和1种激素)的去除方法,该反应器由一个微藻细菌联盟(AB- PBR)和紫色光合细菌(PPB-PBR)。在阶段I,II和III中分别测试了多个水力停留时间(HRT),尤其是11、8和4天。在19种目标化合物中,有10种被检测到,入口药物的浓度范围为“未检测到”(n.d.)至抗生素土霉素的近23,000 ng L-1。此外,在所研究的部分或全部样品中,发现三种抗生素(即恩诺沙星,磺胺嘧啶和土霉素)的浓度均超出分析线性范围。除达氟沙星外,AB-PBR比PPB-PBR支持更高的去除效率(RE)。总体而言,降低HRT时RE逐渐降低。在第一阶段,AB-PBR中的强力霉素(95 +/- 3%)和土霉素(93 +/- 3%)的REs(> 90%)最高。其他药物,除了磺胺嘧啶最多顽强的动物,在同一光生物反应器的I期中显示RE高于70%。相反,在整个实验过程中,观察到AB-PBR中的达氟沙星清除了,AB-PBR中的磺胺嘧啶清除了,IIIB期的PPB-PBR中的磺胺嘧啶清除了,PPB-PBR中的马波沙星清除了。 (C)2019 Elsevier B.V.保留所有权利。

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