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首页> 外文期刊>Environmental Progress & Sustainable Energy >Controls of Microalgal Biomass and Lipid Production in Municipal Wastewater-Fed Bioreactors
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Controls of Microalgal Biomass and Lipid Production in Municipal Wastewater-Fed Bioreactors

机译:控制Microalgal生物量和脂质在市政Wastewater-Fed生产生物反应器

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摘要

The use of wastewater as a nutrient source for algal growth as a biodiesel feedstock could increase the viability of this process and reduce wastewater discharge of nitrogen-and phosphorus-bearing compounds. In this study, four algal bioreactors were fed continuously with municipal wastewater effluent over a 6-month period; these were monitored weekly to determine algal biomass and lipid production, nutrient removal, and carbon and nutrient availability. Algal biomass production ranged from 0.78 to 15.9 g dry weight m~(-2) d~(-1) over the experimental period. Algal reactors removed 19% of dissolved nitrogen and 43% of dissolved phosphorus from wastewater effluent. A stoichiometric analysis of particulates revealed that algal biomass had far lower C:P ratios (67:1) and N:P ratios (6:1), but higher C:N ratios (17:1), than Red-field values. These data suggest that the algae produced were rich in phosphorus, and that nitrogen was likely to be growth-limiting in these systems. Nonetheless, numerous studies suggest that algal biomass can be enhanced by providing CO2 in excess of normal atmospheric concentrations, and that algal biofuel production can contribute to CO2 sequestration efforts. To optimize nutrient removal in wastewater-fed algal reactors, and to determine the potential for CO2 sequestration, future reactor engineering research should continue to incorporate the expertise of ecological stoichiometry.
机译:使用废水作为营养来源藻类生物柴油原料可能增长增加这个过程的可行性,减少污水排放的氮和含磷化合物。藻类生物反应器不断喂食城市污水废水超过6个月期;藻类生物量和脂质生产、营养删除,碳和养分的可用性。藻类生物质生产从0.78到15.9不等g干重m ~ (2) d ~(1)实验时期。氮和43%的溶解磷废水污水。微粒透露,藻类生物量有远C:低P比值(67:1)和N: P比值(6:1),但是高C: N比率(1),比红色地区的价值观。这些数据表明,藻类生产富含磷,氮是可能的生存限制在这些系统。尽管如此,许多研究表明藻生物质可以增强通过提供二氧化碳超过正常的大气浓度,藻类生物燃料生产可以做出贡献二氧化碳封存工作。删除在wastewater-fed藻核反应堆,确定二氧化碳封存的潜力,未来反应堆工程研究继续合并的专长生态化学计量学。

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