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Tertiary treatment of domestic wastewater by Spirulina platensis integrated with microalgal biorefinery

机译:螺旋藻结合微藻生物精制技术处理生活污水

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The present study aims at reclamation of secondarily treated water using the microalga Spirulina platensis. The objective is to consider wastewater pollutants as nutrients for microalgae cultivation. The process led to production of microalgal biomass that can be used for extraction of value-added products with the potential to be commercialized. An open raceway pond was used as a cultivation system. It can remove 2.86 g Chemical Oxygen Dmand (COD)/day, 0.12 g PO4-P/day, 0.82 g NH4-N/day, 0.13 g NO3-N/day and 0.88 g total nitrogen/day. The harvested microalgal biomass was used to produce biomethane at 0.1-L and 5-L capacities. The biomass was found to contain 26.65% (dry weight) of lipids with C:16 and C18:1 fatty acids. The residual biomass can produce 165.0 +/- 5.39 mL of biogas per g Volatile Solids (VS) with an average methane content of 62.38 +/- 2.12%. Different biomass pre-treatments methods were also studied to increase the biogas production. This study demonstrates the commercial potential of S. platensis cultivation using wastewater streams wherein it can reduce the cost of wastewater treatment and earn revenue from value-added products.
机译:本研究旨在利用微藻螺旋藻对二次处理水进行再生。目的是将废水污染物视为微藻培养的养分。该工艺导致了微藻生物质的生产,可用于提取具有商业化潜力的增值产品。一个开放的跑道池被用作栽培系统。它每天可以去除2.86克化学需氧量(COD),0.12克PO4-P /天,0.82克NH4-N /天,0.13克NO3-N /天和0.88克总氮/天。收获的微藻生物质用于生产容量为0.1-L和5-L的生物甲烷。发现该生物质包含26.65%(干重)的具有C:16和C18:1脂肪酸的脂质。残留生物量每克挥发性固体(VS)可产生165.0 +/- 5.39 mL沼气,平均甲烷含量为62.38 +/- 2.12%。还研究了不同的生物质预处理方法以增加沼气产量。这项研究证明了使用废水流进行马铃薯栽培的商业潜力,可以降低废水处理成本并从增值产品中获利。

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