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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Application of bioplastic moving bed biofilm carriers for the removal of synthetic pollutants from wastewater
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Application of bioplastic moving bed biofilm carriers for the removal of synthetic pollutants from wastewater

机译:生物塑料移动床生物膜载体在去除废水中合成污染物中的应用

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摘要

In this series of laboratory experiments, the feasibility of using moving bed biofilm carriers (MBBC) manufactured from existing bioplastic-based products for the removal of bisphenol A, oseltamivir, and atrazine from wastewater was evaluated. After 10-d incubation, cumulative evolution of (14)~CO _2 from control (no MBBC) wastewater spiked with (14)~C-labeled bisphenol A, oseltamivir or atrazine, accounted for approximately 18%, 7% and 3.5% of the total added radioactivity, respectively. When wastewater samples were incubated with freely moving carriers, greater removal of the three chemicals was observed. More specifically, cumulative (14)~CO _2 evolution of the three xenobiotics increased of 34%, 49%, and 66%, with respect to the control, respectively. Removal efficiency of MBBC was significantly increased by inoculating these bioplastic carriers with bioremediation bacterial strains. Results from this study suggest that the concept behind the moving bed biofilm reactor technology can also be extended to biodegradable carriers inoculated with bioremediation microorganisms.
机译:在这一系列实验室实验中,评估了使用现有生物塑料基产品制造的移动床生物膜载体(MBBC)去除废水中双酚A,奥司他韦和阿特拉津的可行性。孵育10天后,掺入(14)〜C标记的双酚A,奥司他韦或阿特拉津的对照废水(无MBBC)的累积排放量(14)〜CO _2分别约占18%,7%和3.5%分别增加的总放射性。当废水样品与自由移动的载体一起孵育时,观察到三种化学物质的去除率更高。更具体地,相对于对照,三种异生物的累积(14)〜CO _2释放分别增加了34%,49%和66%。通过用生物修复细菌菌株接种这些生物塑料载体,可显着提高MBBC的去除效率。这项研究的结果表明,移动床生物膜反应器技术的概念也可以扩展到接种了生物修复微生物的可生物降解载体。

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