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首页> 外文期刊>Journal of Environmental Management >Application of glycerol as carbon source for continuous drinking water denitrification using microorganism from natural biomass
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Application of glycerol as carbon source for continuous drinking water denitrification using microorganism from natural biomass

机译:甘油作为碳源在利用天然生物质微生物连续饮用水脱氮中的应用

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摘要

The contamination of water resources by nitrate is a global problem. Indeed, traditional treatment technologies are not able to remove this ion from water. Alternatively, biological denitrification is a useful technique for natural water nitrate removal. This study aimed to evaluate the use of glycerol as a carbon source for drinking water nitrate removal via denitrification in a reactor using microorganisms from natural biomass. The experiment was carried out in a continuous fixed bed reactor using immobilised microorganisms from the vegetal Phyllostachys aurea. The tests were started in batch mode to provide cells growth and further immobilisation on the support. Then, the treatment experiments were accomplished in an up-flow continuous reactor. Ethanol was used as the primary carbon source, and it was gradually replaced by glycerol. The C:N (carbon to nitrogen) ratio and the hydraulic residence time (HRT) were evaluated. It was possible to remove 98.14% of nitrate using a C:N ratio and HRT of 3:1 and 1.51 days, respectively. The results have demonstrated that glycerol is a potential carbon source for denitrification in a continuous reactor using immobilised cells from natural biomass.
机译:硝酸盐对水资源的污染是一个全球性的问题。实际上,传统的处理技术无法从水中去除该离子。另外,生物反硝化是去除天然硝酸水的有用技术。这项研究旨在评估使用甘油作为碳源,通过使用天然生物质中的微生物通过反应器中的反硝化去除饮用水中的硝酸盐。该实验是在连续固定床反应器中进行的,使用了固定在植物中的金黄色毛竹。以批处理模式开始测试,以提供细胞生长并进一步固定在支持物上。然后,在上流连续反应器中完成处理实验。乙醇被用作主要的碳源,并逐渐被甘油替代。评估了C:N(碳与氮)比和水力停留时间(HRT)。使用C:N比和HRT分别为3:1和1.51天可以除去98.14%的硝酸盐。结果表明,甘油是使用来自天然生物质的固定化细胞在连续反应器中反硝化的潜在碳源。

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