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首页> 外文期刊>Journal of Environmental Management >Treatment of Rose Oil Processing Effluent with Chlorella sp. Using Photobioreactor and Raceway
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Treatment of Rose Oil Processing Effluent with Chlorella sp. Using Photobioreactor and Raceway

机译:用小球藻处理玫瑰油处理玫瑰油加工流出物。 使用PhotoBioreActor和滚道

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摘要

The integration of treatment of wastewater from agro-based industries with microalgae cultivation can reduce costs associated with cultivation while treating wastewater to meet the discharge limits for chemical quality of irrigation in agriculture and to obtain biofertilizers. Rose Oil Processing Effluent (ROPE) can be utilized as a growth medium for Chlorella sp. and thus can be used for biofertilizer production. The present study is aimed at determining the feasibility of the cultivation of Chlorella sp. in ROPE using a tubular photobioreactor with a capacity of 50 L and a raceway to treat ROPE while consuming less energy. The optimum mixing ratio ([ROPE/ (ROPE + Bold Basal Medium (BBM)] × 100) was determined as 50% using 2-L Erlenmeyer flasks based on the COD removal efficiency. Better removal efficiencies with regard to COD, BOD_5, NH_4~+ - N, and NO_3 - N were obtained from the raceway compared to the tubular photobioreactor. The effluents from both systems met the chemical quality of irrigation water. The results of the biomasses harvested from both systems in macro and microelements revealed that they have a potential as a biofertilizer in agriculture. The energetic analysis of the ROPE treatment using the tubular photobioreactor and raceway showed that the raceway system had a better net energy ratio while consuming less energy and producing more energy during cultivation. Overall, the raceway appeared to be a better option to treat ROPE with production of biofertilizer and irrigation water quality while consuming less energy.
机译:从农业血糖栽培的农业基础上融合废水的整合可以降低与栽培相关的成本,同时处理废水,以满足农业灌溉的化学品质的排放限制,并获得生物化ilizers。玫瑰油加工流出物(绳索)可用作小球藻SP的生长培养基。因此可用于生物分析器生产。本研究旨在确定小球藻SP培养的可行性。在绳索使用管状光学生物反应器,容量为50升和滚道来处理绳索,同时消耗较少的能量。基于COD去除效率,最佳混合比([绳索/(绳索+粗体介质介质(BBM)]×100)用2-L Erlenmeyer烧伤确定为50%。关于COD,BOD_5,NH_4的更好的去除效率与管道光伏侵蚀器反应器相比,从滚道获得〜+ - N和NO_3 - N.两种系统的流出物都符合灌溉水的化学品质。从宏观和微量元素中的两个系统收获的生物量的结果显示它们农业中的潜力。使用管状光生物反应器和滚道的绳索处理的能量分析表明,滚道系统具有更好的净能量比,同时消耗更少的能量,在培养过程中产生更多能量。总的来说,赛道似乎是一种更好的选择绳索,并在消耗较少的能量时产生生物化器和灌溉水质。

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