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首页> 外文期刊>Journal of Environmental Protection >Application of Green Technology Using Biological Means for the Adsorption of Micro-Pollutants in Water
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Application of Green Technology Using Biological Means for the Adsorption of Micro-Pollutants in Water

机译:绿色技术应用生物学手段在水中吸附微污染物的吸附

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It is true that the world we have today is not the world we use to know. The Covid-19 pandemic has paralyzed all sector, hence the need for safety and enabling environment for mankind is of high importance. Adsorption technology is far the best and cheapest treatment technology for water and has extensively proven its worth for the uptake of micro-pollutant from surface, ground and water which are the major channels of home water. Over the years activated carbon is considered as the most common and universally used adsorbent for the eradication of different types of micro-pollutants from water. The contamination of surface water by micro-pollutant is a potential threat for the production of high quality and safe drinking water. Adsorption operation onto granulated activated carbon (GAC) in fixed-bed filters is often applied as a remedying step in the synthesis of safe and drinkable water. Activated carbon actively tends to act as a carrier material for a thin usually resistant layer of microorganisms (mostly bacteria) that forms on the coat of various surfaces (biofilm), hence biological simplification can be an alternative removal approach that can be adopted in granulated activated carbon filters. To evaluate the capacity of biofilm to biologically simplify micro-pollutants, it is very imperative to distinguish adsorption from biological simplification (biodegradation) as a removal mechanism. Experiment was carried out under the operating condition of a temperature range of 6?C to 20?C with biologically activated and autoclaved GAC to assess the biological simplification by the biofilm adsorbed on the GAC surface. Five micro-pollutants were selected as model compounds, of which some of them were biologically simplified by the GAC biofilm. Additionally, we observed that temperature can increase or decrease adsorption. Conclusively, comparison was made on the adsorption capacity of granulated activated carbon used for more than 50,000 beds.
机译:我们今天的世界不是我们用来了解的世界。 Covid-19大流行瘫痪了所有部门,因此对人类的安全和有利环境的需求很高。吸附技术是迄今为止最佳和最便宜的水处理技术,并广泛证明是从表面,地面和水的微污染物吸收的价值,这些水域是家庭水的主要通道。多年来,活性炭被认为是最常见的和普遍使用的吸附剂,用于消除水中不同类型的微污染物。通过微污染物污染地表水是生产高质量和安全饮用水的潜在威胁。在固定床过滤器中的颗粒状活性炭(GAC)上的吸附操作通常被用作安全和饮用水的合成中的补救措施。活性炭积极倾向于用作薄的通常抗性微生物层(大多数细菌)的载体材料,其在各种表面(生物膜)的涂层上形成,因此生物简化可以是可以在粒状活化的替代去除方法中采用碳过滤器。为了评估生物膜对生物学简化的微污染物的能力,将吸附免受生物简化(生物降解)作为除去机制是非常迫切的。实验在6℃至20℃的温度范围内的操作条件下进行,具有生物活化和高压灭菌的GAC,以通过吸附在GAC表面上的生物膜来评估生物学简化。选择五个微污染物作为模型化合物,其中一些由GAC生物膜生物学简化。此外,我们观察到温度可以增加或降低吸附。结论,对粒状活性炭的吸附能力进行了比较,用于超过50,000张床。

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