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Manure anaerobic digestion effects and the role of pre- and post-treatments on veterinary antibiotics and antibiotic resistance genes removal efficiency

机译:粪肥厌氧消化效果和治疗前后治疗对兽医抗生素和抗生素抗性基因的作用

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摘要

This review was aimed to summarize and critically evaluate studies on removal of veterinary antibiotics (VAs), antibiotic resistance genes (ARGs) and mobile genetic elements (MGEs) with anaerobic digestion (AD) of manure and demonstrate areas of focus for improved removal efficiency. The environmental risks associated to the release of the same were also critically evaluated. The potential of AD and advanced AD of manure on removal rate of VAs, ARGs and MGEs was thoroughly assessed. In addition, the role of post and pre-AD treatments and their potential to support VAs and ARGs removal efficiency were evaluated. The overall review results show disparity among the different groups of VAs in terms of removal rate with relatively higher efficiency for β-lactams and tetracyclines compared to the other groups. Some of sulfonamides, fluoroquinolones and macrolides were reported to be highly persistent with removal rates as low as zero. Within group differences were also reported in many literatures. Moreover, removal of ARGs and MGEs by AD was widely reported although complete removal was hardly possible. Even in rare scenarios, some AD conditions were reported to increase copies of specific groups of the genes. Temperature pretreatments and temperature phased advanced AD were also reported to improve removal efficiency of VAs while contributing to increased biogas production. Moreover, a few studies also showed the possibility of further removal by post-AD treatments such as liquid-solid separation, drying and composting. In conclusion, the various studies revealed that AD in its current technological level is not a guarantee for complete removal of VAs, ARGs and MGEs from manure. Consequently, their possible release to the soils with digestate could threaten the healthcare and disturb soil microbial ecology. Thus, intensive management strategies need to be designed to increase removal efficiency at the different manure management points along the anaerobic digestion process.
机译:本综述旨在总结和批判性地评估关于粪便消化(AD)的粪便消化(AD)的兽​​医抗生素(VAS),抗生素抗性基因(ARGS)和移动遗传元素(ad)的研究,并展示焦点领域,以提高去除效率。与释放相同的环境风险也严重评估。彻底评估了粪便上的AD和高级AD的潜力,综合评估了VAS,ARGS和MGES的去除率。此外,评估了柱和预临时治疗的作用及其支持VAS和ARGS去除效率的作用。总体审查结果表明,与其他组相比,除去率和四环素效率相对较高的除去速率,β-内酰胺和四环素的效率相对较高的差异。据报道,一些磺胺酰胺,氟喹诺酮和大溴化硼硼化合物高度持续,其去除率低至零。在许多文献中也报告了组中的差异。此外,虽然几乎不可能,但广泛报告了AD的args和MGES的去除。即使在罕见的情况下,据报道了一些AD条件增加了基因的特定群体的副本。还报道了温度预处理和温度相位的高级AD以提高VAS的去除效率,同时有助于增加沼气生产。此外,一些研究还表明,AD后的处理,例如液体固体分离,干燥和堆肥等可能进一步去除。总之,各种研究表明,其目前的技术水平的广告不是完全删除粪便中的VAS,ARG和升降的保证。因此,它们可能释放与消化物的土壤可能会威胁到医疗保健和扰乱土壤微生物生态学。因此,强化管理策略需要旨在提高沿着厌氧消化过程的不同粪便管理点处的去除效率。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第15期|137532.1-137532.21|共21页
  • 作者单位

    Department of Agricultural Food and Environmental Sciences Universita Politecnica delle Marche 60131 Ancona Italy;

    Department of Agricultural Food and Environmental Sciences Universita Politecnica delle Marche 60131 Ancona Italy;

    Department of Agricultural Food and Environmental Sciences Universita Politecnica delle Marche 60131 Ancona Italy;

    Department of Agricultural Food and Environmental Sciences Universita Politecnica delle Marche 60131 Ancona Italy;

    Department of Agricultural Food and Environmental Sciences Universita Politecnica delle Marche 60131 Ancona Italy;

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

    Aerobic composting; Manure management; Soil health; Solid digestate;

    机译:有氧堆肥;粪便管理;土壤健康;固体消化;
  • 入库时间 2022-08-18 22:36:15

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