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Effects of strain, nutrients concentration and inoculum size on microalgae culture for bioenergy from post hydrothermal liquefaction wastewater

机译:菌株,养分浓度和接种量对水热液化废水后微藻培养生物能源的影响

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Cultivating microalgae in post hydrothermal liquefaction wastewater (PHWW) offers many benefits, including nutrients recovery and reuse, wastewater purification and biomass production. However, the high nutrients concentration and toxic substances in PHWW undermine the efficiency of biomass production and nutrient recovery. This study aimed to investigate the effects of the microalgae strains, initial nutrients concentrations and inoculum sizes on biomass production and nutrient recovery using PHWW as the cultivation medium. Results indicated that both biomass production and nutrients recovery were successfully improved by using the screened microalgae strain at the desirable initial nutrient concentration with the suggested algae inoculum size. Chlorella vulgaris 1067 probably demonstrated the strongest tolerance ability among the five microalgae strains screened, and performed well in the diluted PHWW, of which initial TN concentration was approximately 500 mg/L. The desirable inoculum size was determined to be 0.103-0.135 g/L. The biomass daily productivity was increased by 15.67-fold (reached 0.13 g/(L·d)). With the above optimal conditions, high biomass production and nutrient recovery from the PHWW to produce microalgae biomass for bioenergy production were achieved. Keywords: post hydrothermal liquefaction wastewater, microalgae strain screening, inoculum size, initial nutrient concentration, nutrient recovery, biomass production DOI: 10.3965/j.ijabe.20171002.2882 Citation: Zhang L, Lu H F, Y H Zhang, Ma S S, Li B M, Liu Z D, et al. Effects of strain, nutrients concentration and inoculum size on microalgae culture for bioenergy from post hydrothermal liquefaction wastewater. Int J Agric & Biol Eng, 2017; 10(2): 194–204.
机译:在热液化后废水(PHWW)中培养微藻具有许多好处,包括养分的回收和再利用,废水的净化和生物质的生产。但是,PHWW中较高的养分浓度和有毒物质破坏了生物质生产和养分回收的效率。本研究旨在研究以PHWW为培养基的微藻菌株,初始养分浓度和接种量对生物量生产和养分回收的影响。结果表明,通过在理想的初始养分浓度下使用建议的藻类接种物大小,使用筛选的微藻菌株成功地改善了生物量的生产和养分的回收。小球藻1067可能显示出在所筛选的五种微藻菌株中最强的耐受能力,并且在稀释的PHWW中表现良好,其初始TN浓度约为500 mg / L。确定所需的接种量为0.103-0.135 g / L。每天的生物量生产率提高了15.67倍(达到0.13 g /(L·d))。在上述最佳条件下,实现了从PHWW的高生物量生产和养分回收,以生产用于生物能源生产的微藻生物质。关键词:热液化后废水,微藻菌株筛选,接种量,初始养分浓度,养分回收,生物量生产DOI:10.3965 / j.ijabe.20171002.2882引文:张丽,卢华飞,YH Zhang,马卫军,李BM,刘ZD等。应变,养分浓度和接种量对水热液化废水后微藻培养生物能源的影响。国际农业与生物工程杂志,2017; 10(2):194–204。

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