首页> 外文期刊>African Journal of Biotechnology >Removal of nitrogen from anaerobically digested swine wastewater using an anoxic/oxic (A/O) process complemented with a sulfur-packed biofilter
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Removal of nitrogen from anaerobically digested swine wastewater using an anoxic/oxic (A/O) process complemented with a sulfur-packed biofilter

机译:使用含有缺氧/氧(A / O)工艺从厌氧物质消化的猪废水中除去氮气(A / O)替补含硫填充的生物滤泡

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A modified lab-scale anoxic/oxic process was designed incorporating an upflow sulfur-packed biofilter for the treatment of anaerobically digested swine wastewater. In this study, chemical oxygen demand (COD), NH4+-N and NOx--N removal efficiencies were investigated. The experimental results showed that by increasing the internal recycle ratio from 1 to 3, the overall performance of the system improved. Organics removal efficiency was found to be fairly high and stable and the average total chemical oxygen demand (TCOD) removal efficiency ranged from 79 to 90%. This process removed up to 98% of the total NH4+-N from the nitrification reactor with proper pH control using excess alkalinity and a recycle ratio of 3. The average removal efficiency of NOx--N in the anoxic reactor was above 80% with the poor effluent quality (25 mg/l). This high concentration of NOx--N in the effluent of the anoxic reactor was removed by the sulfur-packed biofilter with the stable effluent concentrations between 0.4 and 4 mg/l. This result indicates that the sulfur-packed biofilter would be used as an efficient option for denitrification by autotrophic denitrifiers during swine wastewater treatment.
机译:改进的实验室规模的缺氧/氧化过程被设计成覆盖硫含量的生物过滤器,用于治疗厌氧消化的猪废水。在该研究中,研究了化学需氧量(COD),NH4 + -N和NOX - N去除效率。实验结果表明,通过提高1至3的内部循环比,系统的整体性能得到改善。有机去除效率被发现相当高且稳定,平均总化学氧需求(TCOD)去除效率范围为79至90%。该方法从硝化反应器中除去总NH 4 + -N的总NH 4 + -N,使用过量的碱度和循环比为3.缺氧反应器中NOx - N的平均去除效率高于80%污水质量不佳(25 mg / L)。通过硫包装的生物膜除去缺氧反应器的流出物中的这种高浓度的NOx-N,其稳定的流出物浓度在0.4和4mg / L之间。该结果表明,在猪废水处理过程中,通过自养脱氮剂将硫包装的生物滤器用作脱氮的有效选择。

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