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Using the heat generated from electrically conductive concrete slabs to reduce antibiotic resistance in beef cattle manure

机译:使用从导电混凝土板产生的热量来降低牛粪粪便中的抗生素抗性

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摘要

Proper treatment is necessary to reduce antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs) in livestock manure before land application. Conventional stockpiling suffers unreliable removal efficiency, while composting can be complicated and expensive. The objective of this study was to test the feasibility of a novel heat-based technology, i.e., stockpiling manure on conductive concrete slabs, to inactivate ARB and ARGs in beef cattle manure. In this study, two independent bench-scale trials were conducted. In both trials, samples were taken from manure piles on conductive concrete slabs and regular slabs (i.e., heated and unheated piles). In the heated pile of the first trial, 25.9% and 83.5% of the pile volume met the EPA Class A and Class B biosolids standards, respectively. For the heated pile of the second trial, the two values were 43.9% and 74.2%. In both trials, nearly all forms of the total and resistant Escherichia coli and enterococci were significantly lower in the heated piles than in the unheated piles. Besides, significant reduction of ARGs in heated piles was observed in the first trial. Through this proof-of-concept study, the new technology based on conductive concrete slabs offers an alternative manure storage method to conventional stockpiling and composting with respect to reduce ARB and ARGs in manure.
机译:在土地应用前,需要适当的治疗方法以减少畜禽粪便中的抗生素抗性细菌(ARB)和抗生素抗性基因(Args)。传统的储存效率不可靠,而堆肥可以复杂且昂贵。本研究的目的是测试一种新型热基技术的可行性,即导电混凝土板上的储存粪便,在肉牛粪便中灭活arb和args。在这项研究中,进行了两个独立的替补型试验。在这两种试验中,样品从导电混凝土板和常规板上的粪便桩(即,加热和未加热的桩)取出。在第一次试验的加热桩中,25.9%和83.5%的桩批量分别达到了EPA A类和B类生物溶解标准。对于第二次试验的加热桩,两种值为43.9%和74.2%。在两种试验中,在加热桩中几乎所有形式的总和抗性大肠杆菌和肠泡会显着降低,而不是未加热的桩。此外,在第一次试验中观察到加热桩中的args的显着减少。通过这种概念验证研究,基于导电混凝土板的新技术为传统的储存和堆肥提供了一种替代的粪便储存方法,并在粪肥中减少arb和args。

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