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Dairy Wastewaters for Algae Cultivation, Polyhydroxyalkanote Reactor Effluent Versus Anaerobic Digester Effluent

机译:藻类养殖乳品废水,多羟基烷基反应器废水与厌氧消化池废水

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摘要

Nutrients in dairy wastewaters can be remediated through assimilation into algal biomass. Anaerobically digested manure creates an effluent (ADE) that is useful for algal cultivation while alternate processing of manure through a polyhydroxyalkanoate reactor generates a distinct effluent (PHAE), not previously characterized for algal cultivation. Each effluent was evaluated for growth rate, biomass production, and nutrient recovery using type algae species Chlorella vulgaris. Growth rates were elevated in 5, 10, and 20 % dilutions of PHAE (0.59, 0.53, 0.42 days−1) compared to equal concentrations of ADE (0.40, 0.36, 0.37 days−1). In addition, the growth phase lasted up to twice as long for PHAE, resulting in a fourfold higher stationary phase algal concentration (cells∙mL−1) compared to ADE. Growth in ADE was limited by specific inhibitory properties: high concentrations of dissolved organic matter, ammonia, and elevated bacterial load. Maximum nutrient removal rates for ADE and PHAE were 0.95 and 3.46 mg·L−1·day−1 for nitrogen and 0.67 and 0.04 mg·L−1·day−1 for phosphorus, respectively. Finally, biomass derived from PHAE was higher in lipids (11.3 % versus 7.2 %) and thus has a greater potential as a feedstock for biofuel compared to ADE.
机译:乳制品废水中的营养物质可以通过同化成藻类生物质来加以修复。厌氧消化的粪便会产生一种废水(ADE),可用于藻类培养,而通过聚羟基链烷酸酯反应器对粪便进行交替处理会产生独特的废水(PHAE),而以前的藻类培养没有这种特点。使用类型藻类小球藻(Chlorella vulgaris)评估每种废水的生长速率,生物量生产和养分回收。与等浓度的ADE(0.40、0.36、0.37天-1)相比,在5%,10和20%的PHAE稀释液(0.59、0.53、0.42天-1)中,生长速率有所提高。此外,PHAE的生长期持续时间是其两倍,导致固定相藻类浓度(细胞∙mL-1)是ADE的四倍。 ADE的生长受到特定抑制特性的限制:高浓度的溶解性有机物,氨和增加的细菌载量。氮和磷的最大养分去除率分别为0.95和3.46 mg·L-1·day-1,磷为0.67和0.04 mg·L-1·day-1。最后,源自PHAE的生物质的脂质含量更高(分别为11.3%和7.2%),因此与ADE相比,其作为生物燃料原料的潜力更大。

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