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Growing Picochlorum oklahomensis in Hydraulic Fracturing Wastewater Supplemented with Animal Wastewater

机译:在补充动物废水的水力压裂废水中生长丘脑俄克叶莫酮

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Hydraulic fracturing is used to enhance oil and gas extraction from tight shale formations and generates millions of gallons of wastewater which needs to be cleaned up prior to disposal or reuse. The current technologies used for the management of this wastewater present technical, economic, and environmental challenges. Hence, the main objective of this study was to examine the potential of algal remediation of hydraulic fracturing wastewater (PW) as an alternative method. Considering that PW contains very low concentration of the nutrients needed for algae growth PW supplemented with animal wastewater (AW-PW) was also examined. Biomass production capacity, average biomass productivity, and specific growth rate of the microalgae strain used in the study, Picochlorum oklahomensis, were 1.87 g L-1, 268 mg L-1 day(-1), and 0.35 day(-1), respectively, when grown in PW. Complete nitrate, ammonia, and phosphate removal could be achieved by growing algae in PW. Supplementation of PW with animal wastewater enhanced biomass production (1.87-2.40 g L-1) and lipid content (15-25% wt) in the produced algal biomass. A mathematical model with a correlation coefficient of greater than 0.94 was developed to describe the growth kinetics of algae grown in AW-PW.
机译:液压压裂用于增强来自婴儿岩层的油和气体提取,并在处理或重用之前产生数百万加仑废水。目前用于管理此废水的技术目前提供技术,经济和环境挑战。因此,本研究的主要目的是检查液压压裂废水(PW)的藻类修复作为替代方法的潜力。考虑到PW含有非常低浓度的藻类生长PW所需的营养素,还检查了动物废水(AW-PW)。生物量生产能力,平均生物质生产率和研究中使用的微藻菌株的特异性生长速率,Picochlorum oklahomensis为1.87g l-1,268mg l-1天(-1)和0.35天(-1),分别在PW中生长时。通过在PW中生长藻类,可以实现完全硝酸盐,氨和磷酸盐去除。用动物废水补充PW增强生物量生产(1.87-2.40g L-1)和生产的藻类生物量中的脂质含量(15-25%wt)。具有大于0.94的相关系数的数学模型是为了描述在AW-PW中生长的藻类的生长动力学。

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