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首页> 外文期刊>Journal of soil & sediments >Biodegradation of biodiesel and toluene under nitrate-reducing conditions and the impact on bacterial community structure
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Biodegradation of biodiesel and toluene under nitrate-reducing conditions and the impact on bacterial community structure

机译:硝酸盐还原条件下生物柴油和甲苯的生物降解及其对细菌群落结构的影响

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PurposeBiodiesel is a renewable fuel that can be mixed with toluene and be accidentally released into anoxic ecosystems and impact soil microbial communities. Therefore, the aim of the present work was to examine, under nitrate-reduction conditions, the biodegradation of toluene in the presence of two different types of biodiesel (sunflower and rapeseed), and their impact on the bacterial community structure.Materials and methodsSediment samples were spiked individually with toluene, biodiesel, and their blends in laboratory-designed microcosms. Sunflower oil biodiesel was produced in the laboratory, while rapeseed oil biodiesel was a commercial product. Degradation of biodiesels and blends was monitored by directly measuring the substrate or indirectly by determining nitrate removal during the course of the experiment. Denitrification rates were estimated with the acetylene inhibition technique. Denaturing gradient gel electrophoresis was used to assess impacts on the bacterial community structure exposed to biodiesels, blends, and toluene.Results and discussionThe results of this study showed that toluene and biodiesel were completely degraded within 10days. Biodiesel significantly affected the bacterial community structure at a similar magnitude, independently of its origin. Additionally, toluene impacted the bacterial community and denitrification process to a lower extent than biodiesel and a clear decrease in the relative bacterial richness and diversity was shown in samples with biodiesel and blends. To the best of our knowledge, this is one of the first reports describing degradation of biodiesel alone and blends under nitrate-reducing conditions, and also the effects of these compounds on the denitrification process. In addition, due to the recently discovered oxygenic denitrification process, the acetylene inhibition technique and nitrous oxide quantification may not be the most adequate tool to estimate denitrification rates. Further detailed studies are advised to understand whether the identified bacterial community shift impacts ecosystem functions.ConclusionsOur results help to understand the biodegradation of toluene, biodiesel, and their blends in sediments under nitrate-reducing conditions and might be important in implementing bioremediation strategies in anoxic environments.
机译:用途生物柴油是一种可再生燃料,可与甲苯混合并意外释放到缺氧生态系统中并影响土壤微生物群落。因此,本研究的目的是在硝酸盐还原条件下研究在两种不同类型的生物柴油(向日葵和油菜籽)存在下甲苯的生物降解及其对细菌群落结构的影响。在实验室设计的缩影中分别加入甲苯,生物柴油及其混合物。向日葵油生物柴油是在实验室生产的,而菜籽油生物柴油是一种商业产品。通过直接测量底物或通过在实验过程中确定硝酸盐去除量来间接监测生物柴油及其混合物的降解。用乙炔抑制技术估算反硝化率。变性梯度凝胶电泳用于评估对暴露于生物柴油,混合物和甲苯的细菌群落结构的影响。结果与讨论本研究结果表明,甲苯和生物柴油在10天之内被完全降解。生物柴油以相似的程度显着影响细菌群落结构,而与起源无关。此外,与生物柴油相比,甲苯对细菌群落和反硝化过程的影响程度更低,并且在具有生物柴油和混合物的样品中,相对细菌丰富度和多样性明显降低。据我们所知,这是描述生物柴油在硝酸盐还原条件下单独降解及其混合物的首批报道之一,以及这些化合物对反硝化过程的影响。另外,由于最近发现了氧的反硝化过程,因此乙炔抑制技术和一氧化二氮定量可能不是估计反硝化速率的最合适工具。建议进行进一步的详细研究,以了解所识别的细菌群落转移是否会影响生态系统功能。结论我们的结果有助于了解甲苯,生物柴油及其混合物在硝酸盐还原条件下在沉积物中的生物降解,并且可能在缺氧环境中实施生物修复策略中很重要。

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