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首页> 外文期刊>Environmental Science and Pollution Research >Analysis of a photobioreactor scaling up for tertiary wastewater treatment: denitrification, phosphorus removal, and microalgae production
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Analysis of a photobioreactor scaling up for tertiary wastewater treatment: denitrification, phosphorus removal, and microalgae production

机译:第三次废水处理的光生物反应器分析:反硝化,磷去除和微藻生产

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The present work studies the removal of nutrients (nitrate and phosphate) from a synthetic wastewater simulating a secondary treatment effluent using the microalgae Chlorella vulgaris in autotrophic photobioreactors, together with an analysis of the critical points affecting the scaling-up process from laboratory to pilot scale. Laboratory experiments were done in open agitated 1-L photobioreactors under batch operation mode, while pilot-scale experiments were done using a 150-L closed tubular photobioreactor under continuous operation mode. In both scales, nitrate was the limiting substrate and the effect of its concentration on microalgae performance was studied. From laboratory experiments, an average microalgae productivity of 85?mg~(VSS)?L_(?1)?day_(?1)and approximate maximum N-NO~(3)_(?)and P-PO~(4)_(3?)removal rates of 8?mg?N?g~(VSS)_(?1)?day_(?1), and 2.6?mg?P?g~(VSS)_(?1)?day_(?1)were found. Regarding pilot scale, the average microalgae productivity slightly decreased (76?mg~(VSS)?L_(?1)?day_(?1)) while the approximate maximum N-NO~(3)_(?)and P-PO~(4)_(3?)removal rates slightly were increased (11.7?mg?N?g~(VSS)_(?1)?day_(?1)and 3.04?mg?P?g~(VSS)_(?1)?day_(?1)) with respect to the laboratory-scale results. The pilot-scale operation worked under lower levels of turbulence and higher dissolved oxygen concentration and light intensity than laboratory experiments; those parameters were difficult to control and they can be identified as the critical points in the differences found on both nutrient removal and microalgae production.
机译:本工作研究中去除从合成废水使用微藻小球藻在自养光生物反应器模拟二级处理流出物的营养物质(硝酸盐和磷酸盐),具有影响从实验室到中试规模的缩放向上进程中的关键点的分析一起。在批量操作模式下在开放搅拌的1-L光生物反应器中进行实验室实验,同时在连续操作模式下使用150-L闭合管状光生物反应器进行导频实验。在两个鳞片中,硝酸盐是限制基底,研究了其浓度对微藻性能的影响。从实验室实验中,平均微藻生产率为85Ωmg〜(vss)?l _(?1)?日_(α1)和近似最大n-no〜(3)_(?)和p-po〜(4) _(3?)去除率为8?mg?n?g〜(vss)_(?1)?日_(?1)和2.6?mg?p?g〜(vss)_(?1)?day_ (?1)被发现。关于试点规模,平均微藻生产率略微下降(76?Mg〜(VSS)?L _(?1)?日_(?1)),而近似最大n-no〜(3)_(?)和p-po 〜(4)_(3?)略微增加去除率(11.7?mg?n?g〜(Vss)_(?1)?日_(?1)和3.04?mg?p?g〜(Vss)_ (?1)?关于实验室规模结果的日_(α1))。试验规模操作在湍流水平较低,较高的溶解氧浓度和比实验室实验更高的氧浓度和光强度下;这些参数难以控制,它们可以被鉴定为在营养消除和微藻生产上发现的差异中的关键点。

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