Department of Urban & Environmental Engineering, UNIST, Ulsan 44919, Republic of Korea.
Department of Urban & Environmental Engineering, UNIST, Ulsan 44919, Republic of Korea; Graduate School of Carbon Neutrality, UNIST, Ulsan 44919, Republic of Korea.
Bioresour Technol. 2023 Nov;387:129650. doi: 10.1016/j.biortech.2023.129650. Epub 2023 Aug 8.
This study examined continuous mixed-culture microalgae cultivation for nutrient removal from anaerobic digestion (AD) effluents in photobioreactors, while altering the NH-N loading rate (NLR) by adjusting either the hydraulic retention time (HRT) (reactor set RH) or the influent NH-N concentration (reactor set RS). Both RH and RS demonstrated efficient nutrient removal and microalgae cultivation at NLRs of 4-10 mg NH-N/L∙d, reaching peak performance at 10 mg NH-N/L∙d. Within this range, RH obtained greater biomass yield and productivity, while RS maintained higher microalgal concentrations. The cultivated biomasses obtained from RH and RS had good settleability and suitable fatty acid compositions as a biodiesel feedstock, although their organic composition varied considerably with NLR and HRT. Parachlorella overwhelmingly dominated the reactors' microalgal communities throughout the experiment, co-existing with various microalgae-associated bacteria. Changes in NLR significantly influenced the bacterial community structures, underscoring its critical role in determining reactor performance and microalgal-bacterial community behavior.
本研究在光生物反应器中考察了连续混合培养微藻从厌氧消化 (AD) 废水中去除营养物的情况,同时通过调整水力停留时间 (HRT)(反应器设定 RH)或进水 NH-N 浓度(反应器设定 RS)来改变 NH-N 负荷率 (NLR)。RH 和 RS 均在 NLR 为 4-10 mg NH-N/L·d 时表现出高效的养分去除和微藻培养能力,在 10 mg NH-N/L·d 时达到峰值性能。在这个范围内,RH 获得了更高的生物量产量和生产力,而 RS 则保持了更高的微藻浓度。从 RH 和 RS 中培养得到的生物质具有良好的沉降性能和适合生物柴油原料的脂肪酸组成,尽管它们的有机成分随 NLR 和 HRT 变化很大。在整个实验过程中,角毛藻在反应器的微藻群落中占绝对优势,与各种微藻相关的细菌共存。NLR 的变化显著影响了细菌群落结构,突出了其在确定反应器性能和微藻-细菌群落行为方面的关键作用。