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Characterization and utilization of hydrothermal carbonization aqueous phase as nutrient source for microalgal growth

机译:水热碳化水相对于微藻生长营养源的表征及利用

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This study investigated the feasibility of using hydrothermal carbonization (HTC) aqueous phase as an alternative nutrient source for microalgae cultivation, and the microalgae cultivation capability to treat this complex medium to a level enabling its reuse or discharge. HTC of activated sludge was optimized in terms of the energy content of the solid hydrochar and the nutrient content of the HTC aqueous phase adequate for microalgal growth. Growth rates of Coelastrella sp. and Chlorella sp. in the HTC aqueous phase based growth medium and a control medium (mBG11) were similar, indicating that the HTC aqueous phase does not inhibit the microalgae growth. Nitrogen and phosphorus concentrations were reduced by > 90% and dissolved organic carbon by 80% after 6 days of cultivation, resulting in water quality suitable for reuse or discharge. This study confirms the microalgae high potential in a circular bio-economy to valorize wet bio-waste streams from various treatment methods.
机译:本研究研究了使用水热碳化(HTC)水相作为微藻培养的替代营养源的可行性,并且微藻培养能力将该复合培养基视为一种能力或放电的水平。 在固体氢乙酰碳的能量含量和HTC水相的营养含量方面优化活性污泥的HTC,适用于微藻生长。 Coelastrella sp的增长率。 和小球藻sp。 在HTC水相水相的生长培养基中和对照培养基(MBG11)相似,表明HTC水相不会抑制微藻生长。 培养6天后,氮和磷浓度降低> 90%并溶解有机碳80%,导致适合重用或放电的水质。 本研究证实了微藻在循环生物经济中的高潜力,以从各种处理方法中储存湿生物废物流。

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