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首页> 外文期刊>Applied Microbiology >Microbial Dynamics of Biosand Filters and Contributions of the Microbial Food Web to Effective Treatment of Wastewater-Impacted Water Sources
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Microbial Dynamics of Biosand Filters and Contributions of the Microbial Food Web to Effective Treatment of Wastewater-Impacted Water Sources

机译:生物砂滤池的微生物动力学和微生物食物网对污水处理水源有效处理的贡献

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Biosand filtration systems are widely used for drinking water treatment, from household-level, intermittently operated filters to large-scale continuous municipal systems. While it is well-established that microbial activity within the filter is essential for the removal of potential pathogens and other contaminants, the microbial ecology of these systems and how microbial succession relates to their performance remain poorly resolved. We determined how different source waters influence the composition, temporal dynamics, and performance of microbial communities in intermittently operated biosand filters. We operated lab-scale biosand filters, adding daily inputs from two contrasting water sources with differing nutrient concentrations and found that total coliform removal increased and became less variable after 4 weeks, regardless of water source. Total effluent biomass was also lower than total influent biomass for both water sources. Bacterial community composition, assessed via cultivation-independent DNA sequencing, varied by water source, sample type (influent, effluent, or sand), and time. Despite these differences, we identified specific taxa that were consistently removed, including common aquatic and wastewater bacteria. In contrast, taxa consistently more abundant in the sand and effluent included predatory, intracellular, and symbiotic bacteria.IMPORTANCE Although microbial activities are known to contribute to the effectiveness of biosand filtration for drinking water treatment, we have a limited understanding of what microbial groups are most effectively removed, colonize the sand, or make it through the filter. This study tracked the microbial communities in the influent, sand, and effluent of lab-scale, intermittently operated biosand filters over 8?weeks. These results represent the most detailed and time-resolved investigation of the microbial communities in biosand filters typical of those implemented at the household level in many developing countries. We show the importance of the microbial food web in biosand filtration, and we identified taxa that are preferentially removed from wastewater-impacted water sources. We found consistent patterns in filter effectiveness from source waters with differing nutrient loads and, likewise, identified specific bacterial taxa that were consistently more abundant in effluent waters, taxa that are important targets for further study and posttreatment.
机译:从家庭级间歇操作的过滤器到大规模的连续市政系统,生物砂过滤系统已广泛用于饮用水处理。众所周知,过滤器内的微生物活性对于去除潜在的病原体和其他污染物至关重要,但这些系统的微生物生态学以及微生物演替与其性能之间的关系仍然难以解决。我们确定了间歇性操作的生物滤池中不同的源水如何影响微生物群落的组成,时间动态和性能。我们操作了实验室规模的生物砂滤池,每天添加来自两个具有不同养分浓度的对比水源的投入物,发现不管什么水源,大肠菌群的去除总量在4周后都会增加并且变化较小。两种水的总出水生物量也低于总进水生物量。通过与培养无关的DNA测序评估的细菌群落组成,随水源,样品类型(进水,出水或沙子)和时间的不同而变化。尽管存在这些差异,我们还是确定了始终清除的特定分类单元,包括常见的水生细菌和废水细菌。相比之下,在沙子和污水中,分类单元始终丰富,包括掠食性,细胞内和共生细菌。重要信息尽管已知微生物活动有助于饮用水处理中生物砂过滤的效率,但我们对哪些微生物是有限的了解最有效的方法是将其去除,定居在沙子中或使其通过过滤器。这项研究追踪了实验室规模,间歇操作的生物砂滤池在8周内进水,出砂和出水中的微生物群落。这些结果代表了对生物砂滤池中微生物群落进行的最详细,最及时的调查,这是许多发展中国家在家庭一级实施的典型。我们展示了微生物食物网在生物砂过滤中的重要性,并且我们确定了优先从受废水影响的水源中去除的分类单元。我们发现来自不同养分负载的源水的过滤器效率具有一致的模式,同样,我们还确定了特定细菌类群在污水中的含量始终较高,这些类群是进一步研究和后处理的重要目标。

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