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Effects of graphene oxide on the performance, microbial community dynamics and antibiotic resistance genes reduction during anaerobic digestion of swine manure

机译:石墨烯氧化物对猪粪厌氧消化过程中减少性能,微生物群落动态和抗生素抗性基因的影响

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The role of graphene oxide (GO) on anaerobic digestion (AD) of swine manure concerning the performance, microbial community and antibiotic resistance genes (ARGs) reduction was investigated. Results showed that methane production was reduced by 13.1%, 10.6%, 2.7% and 17.1% at GO concentration of 5 mg/L, 50 mg/L, 100 mg/L and 500 mg/L, respectively, but propionate degradation was enhanced along with GO addition. Both bacterial and archaeal community changed little after GO addition. AD could well reduce ARGs abundance, but it was deteriorated at the GO concentration of 50 mg/L and 100 mg/L and enhanced at 500 mg/L, while no obvious changes at 5 mg/L. Network and SEM analysis indicated that changes of each ARG was closely associated with variation of microbial community composition, environmental variables contributed most to the dynamics of ARGs indirectly, GO influenced the ARGs dynamics negatively and (heavy metal resistance genes (MRGs)) influenced the most directly.
机译:研究了石墨烯氧化物(GO)对具有性能,微生物群落和抗生素抗性基因(ARGS)减少的猪粪厌氧消化(Ad)的作用。 结果表明,甲烷产量分别降低了13.1%,10.6%,2.7%和17.1%,分别为5mg / L,50mg / L,100mg / L和500mg / L,但增强了丙酸脱硫 随着Go补充。 在加入后,细菌和古群落都会发生变化。 广告可以很好地减少args丰富,但它在50 mg / L和100mg / L的GO浓度下劣化,增强500mg / L,而5mg / L没有明显变化。 网络和SEM分析表明,每个ARG的变化与微生物群落组成的变异密切相关,环境变量间接地为args的动态贡献,对args动力学产生负面影响(重金属抗性基因(MRGS))影响最多 直接地。

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