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Nitrogen and phosphorus removal from urban wastewater by the microalga Scenedesmus obliquus

机译:微藻斜角藻去除城市废水中的氮和磷

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The removal of phosphorus and nitrogen by the freshwater alga Scenedesmus obliquus, cultured in urban wastewater, previously submitted to secondary sewage treatment, was studied under different conditions of stirring and temperature. In all cases, the amount of NH3 lost, as well as biomass productivity and its biochemical composition, were evaluated. The specific growth rates proved greatest in the stirred cultures, the highest mu value being 0.0438 h(-1) at 30 degrees C. The stirring increased biomass productivity (P-B) in the linear growth phase after exponential growth, with the optimum appearing at 25 degrees C. For the temperatures studied stirring was not necessary to provide the highest percentage of P elimination (%P-max), but did reduce the time needed to reach that percentage (t(max)). The highest %P-max value, 98%, within the shortest time period, t(max) = 94.33 h, was found in the culture with stirring at 25 degrees C. Ammonium removal was determined by two factors - the consumption of ammonium for growth and elimination by desorption as ammonia. The highest percentage of ammonium removal (%N-max), 100%, resulted at the final culture time (t(f)) of 188.33 h, in the stirred culture at 25 degrees C. The biochemical composition of the biomass gave the normal values for this microalga reported by other authors. The protein content was notably low, around 11.8% by weight, and the polyunsaturated-fatty-acid content was high. The N:P ratio of the culture medium was 12.9. Finally, we proposed a dilution factor for the treated wastewater (f) to be dumped in order to regulate operation conditions and time for an optimal removal of nitrogen and phosphorus. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 35]
机译:在不同的搅拌和温度条件下,研究了在城市污水中培养的淡水藻斜角藻对磷和氮的去除方法,该藻先经过二次污水处理。在所有情况下,都要评估NH3的损失量以及生物量生产率及其生化组成。在搅拌的培养物中,特定的生长速率证明是最大的,最高的mu值在30摄氏度时为0.0438 h(-1)。在指数生长后,搅拌增加了线性生长期的生物量生产力(PB),最佳值出现在25在所研究的温度下,搅拌并不需要提供最高百分比的P消除(%P-max),但确实减少了达到该百分比所需的时间(t(max))。在最短的时间段t(max)= 94.33 h中,在25°C的搅拌下培养物中发现最高的%P-max值,为98%。铵的去除取决于两个因素-氨的消耗量通过解吸为氨而生长和消除。在25°C的搅拌培养中,最终培养时间(t(f))为188.33 h,去除铵的最高百分比(%N-max)为100%。生物质的生化组成正常其他作者报告的该微藻的数值。蛋白质含量特别低,约为11.8重量%,多不饱和脂肪酸含量高。培养基的N∶P比为12.9。最后,我们提出了将要处理的废水(f)倾倒的稀释因子,以便调节操作条件和时间以最佳地去除氮和磷。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:35]

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