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首页> 外文期刊>Journal of Applied Phycology >Development of laboratory-scale photobioreactor for water purification by use of a biofilter composed of the aerial microalga Trentepohlia aurea (Chlorophyta)
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Development of laboratory-scale photobioreactor for water purification by use of a biofilter composed of the aerial microalga Trentepohlia aurea (Chlorophyta)

机译:通过使用由空中微藻金黄色葡萄球菌(Chlorophyta)组成的生物滤池,开发用于水净化的实验室规模的光生物反应器

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Biofilms formed by the green alga Trentepohlia aurea could be a useful tool in the removal of nitrate and phosphate from water. When a prepared biofilter was dampened with medium and incubated under low light intensity (10 omol photons mpo sp#) between 5 and 50 omol photons mpo sp#, the efficiency of removal of inorganic compounds from water was higher without the decomposition of chlorophylls in the cells. Algal cells immobilized on a glass fiber filter could be kept for 12 weeks under dark conditions at 4pC in the refrigerator. We tried to construct a laboratory-scale photobioreactor for the removal of inorganic nitrogen and phosphate from water by the biofilm. In this study, the synthetic wastewater was prepared by diluting 18-fold Bold's basal medium with deionized water. The photobioreactor could efficiently remove nitrate and phosphate from the synthetic wastewater under continuous illumination. The removal ability of nitrate and phosphate per sheet of the biofilter in the photobioreactor exhibited about an 8- and 16-fold increase, respectively, in 3 days, compared with the bath experimental results. This study showed that the cycling of wastewater in the reactor by the pump led to a significant improvement in the efficiency of the inorganic ion uptake from water.
机译:绿藻Trentepohlia aurea形成的生物膜可能是从水中去除硝酸盐和磷酸盐的有用工具。当将制备好的生物滤池浸入介质中并在5至50 omol光子mpo sp#的低光强度(10 omol光子mpo sp#)下孵育时,从水中去除无机化合物的效率更高,而在叶绿素中不会分解叶绿素。细胞。固定在玻璃纤维过滤器上的藻类细胞可在黑暗条件下于4pC的冰箱中保存12周。我们试图构建一个实验室规模的光生物反应器,以通过生物膜从水中去除无机氮和磷酸盐。在这项研究中,通过用去离子水稀释18倍的Bold基础培养基来制备合成废水。光生物反应器可以在连续照射下有效地从合成废水中去除硝酸盐和磷酸盐。与浴实验结果相比,光生物反应器中每片生物滤池中硝酸盐和磷酸盐的去除能力在3天内分别显示出约8倍和16倍的增长。这项研究表明,通过泵循环反应器中的废水可以显着提高水中无机离子的吸收效率。

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