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Nutrient Reduction of Dairy Manure Through Solid-Liquid Separation with Flocculation and Subsequent Microalgal Treatment

机译:通过絮凝和随后的微藻治疗通过固液分离养成乳制品的营养减少

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High concentrations of dairy operations in Southern Idaho have brought up big challenges for proper manure management to alleviate the eutrophication stress. In order to explore more technologies confronting the high nutrient load in dairy manure, a sequential process combining enhanced solid-liquid separation through flocculation-centrifuge and the subsequent microalgal growth in the liquid part was studied in this study. Solid-liquid separation by flocculation-centrifuge process, using a natural flocculant chitosan and a flocculation aid kaolin, was optimized through response surface methodology (RSM) technique using central composite design (CCD) method. Under the optimal flocculation-centrifuge pretreatment, i.e., the maximal total suspended solid (turbidity) removal group, turbidity, COD, TKN, and TP have been removed by 92.7%, 72.6%, 58.7%, and 43.0%, respectively. Applying 2-fold dilution, the supernatant from this treatment was further used for microalgae Chlorella vulgaris cultivation. COD, TKN, and TP were further reduced by 82.2%, 90.1%, and 83.4%, respectively. Turbidity was largely removed from the original dairy manure, providing a relatively clear solution that became suitable for photo-mixotrophic culture of microalgae.
机译:南爱达荷州的高浓度乳制品业务为适当的粪便管理带来了大量挑战,以减轻富营养化的压力。为了探讨乳制品粪便中高营养负荷的更多技术,研究了通过絮凝离离心机的增强的固液分离和随后的微观液体分离的顺序过程。通过使用中央复合设计(CCD)方法的响应面方法(RSM)技术优化了使用天然絮凝壳聚糖和絮凝助剂高岭土的絮凝离心机方法的固液分离。在最佳絮凝离心预处理下,即,最大总悬浮固体(浊度)除去基团,浊度,鳕鱼,TKN和TP分别分别除去92.7%,72.6%,58.7%和43.0%。施用2倍稀释,从该处理中的上清液进一步用于微藻味栽培。 COD,TKN和TP进一步降低了82.2%,90.1%和83.4%。浊度大大从原始乳制品粪便中取出,提供了一种相对较清晰的解决方案,即适合于微藻的光纺织培养物。

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