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Optimization of Ozone Application in Post-Treatment of Cattle Wastewater from Organic Farms

机译:优化臭氧应用在有机农场牛废水后的应用

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In this study, an advanced oxidation process using ozone application in a fixed-bed reactor filled with bio-rings was used for purification and disinfection of cattle wastewater (CWW) previously treated in a UASB reactor. The O(3)concentration applied to the reactor was 7.8 mg L-1(+/- 1). Four ozonation times were tested in a batch process: T1 = 0.5 h, T2 = 1 h, T3 = 1.5 h and T4 = 2 h. The pH values tended to increase with the time of contact between liquid and gas. COD and BOD(5)removal of 55 and 64% was recorded in T4. Color and turbidity were reduced by 88.5 and 93.4%, while total solids and total suspended solids were reduced by 65.7 and 93.5%, respectively. Oils and greases were completely removed from the wastewater. Electrical conductivity did not vary significantly between treatments, and its association with the presence of cations, such as Na+, Ca(2+)and Mg2+, suggests good quality of the water ozonated in T(4)for application in the soil, with no risk of salinization. High concentrations of nitrogen compounds were removed, but the efficiency in removing phosphate compounds was low. Coliform removal of above 99% was achieved with T-3. Only the CWW ozonated in T(4)is recommended for irrigation of raw-consumed crops. Based on most parameters analyzed, the CWW treated in T(4)would also be suitable for discharge into water bodies according to Brazilian legislation, suggesting that this technology could be applied in the near future.
机译:在该研究中,使用在填充有生物环的固定床反应器中使用臭氧应用的先进氧化方法用于预先在UASB反应器中处理的牛废水(CWW)的纯化和消毒。施加到反应器上的O(3)浓度为7.8mg L-1(+/- 1)。在批处理过程中测试了四次臭氧化时间:T1 = 0.5小时,T2 = 1小时,T3 = 1.5小时和T4 = 2小时。用液体和气体之间的接触时倾向于增加pH值。在T4中记录了鳕鱼和BOD(5)去除55和64%。颜色和浊度降低88.5和93.4%,而总固体和总悬浮固体分别降低65.7和93.5%。从废水中完全除去油和润滑脂。在治疗之间的电导率没有显着变化,其与阳离子存在的关系,例如Na +,Ca(2+)和Mg2 +,表明在T(4)中臭杂化的水质良好,以在土壤中应用,没有盐渍化的风险。除去高浓度的氮化合物,但除去磷酸盐化合物的效率低。通过T-3实现了高于99%的大肠菌粒子去除。仅建议在T(4)中臭杂化的CWW用于灌溉生物消耗的作物。基于大多数参数分析,在T(4)中的CWW也适用于根据巴西立法将其排放到水上,这表明这项技术可以在不久的将来应用。

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