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Nitrate removal from aquaculture effluents using woodchip bioreactors improved by adding sulfur granules and crushed seashells

机译:使用木片生物反应器从水产养殖流出物中除去硝酸盐通过加入硫颗粒和碎贝壳改善

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This study examined the effects on nitrate removal when adding sulfur granules and crushed seashells to a woodchip bioreactor treating aquaculture effluents. Using a central composite design, the two components were added at three levels (0.000, 0.125 and 0.250 m3/ m3 bioreactor volume) to 13 laboratory-scale woodchip bioreactors, and a response surface method was applied to find and model the optimal mixture ratios with respect to reactor performance. Adding 0.125 m(3)/m(3) sulfur granules improved the total N removal rate from 3.27 +/- 0.38 to 8.12 +/- 0.49 g N/m(3)/d compared to pure woodchips. Furthermore, the inclusion of crushed seashells together with sulfur granules helped to maintain the pH above 7.4 and prevent a production (i.e., release) of nitrite. According to the modeled response surfaces, a sulfur granule: crushed seashell: woodchip mixture ratio containing about 0.2 m3 sulfur granules and 0.1 m(3) crushed seashells per m(3) reactor volume would give the best results with respect to high N removal and minimal nitrite release. In conclusion, the study showed that N removal in woodchip bioreactors may be improved by adding sulfur granules and seashells, contributing to the optimization of woodchip performance in treating aquaculture effluents.
机译:本研究检测了将硫颗粒和碎贝壳添加到木芯片生物反应器治疗水产养殖流出物时对硝酸盐去除的影响。使用中央复合设计,将两种组分加入三个水平(0.000,0.125和0.250m 3 / m 3生物反应器体积)至13实验室级木片生物反应器,并应用响应面方法来查找和模拟最佳混合比率尊重反应堆性能。加入0.125米(3)/ m(3)硫颗粒与纯木芯片相比,硫磺颗粒从3.27 +/- 0.38增加到8.27 +/- 0.38至8.12 +/- 0.49g n / m(3)/ d。此外,将压碎的贝壳与硫颗粒一起包含在7.4以上的pH值并防止亚硝酸盐的产生(即,释放)的颗粒保持。根据模拟的响应表面,硫磺颗粒:粉碎贝壳:含有约0.2m3硫颗粒的木片混合比,每M(3)反应器体积为0.1μm(3)碎贝壳,将给高N拆卸产生最佳效果最小的亚硝酸盐释放。总之,该研究表明,通过添加硫颗粒和贝壳,可以改善NoodChip生物反应器中的N去除,这有助于优化木芯片性能治疗水产养殖流出物。

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