首页> 外文期刊>International Journal of Phytoremediation >Phytofiltration of anaerobically digested sugarcane ethanol stillage using a macrophyte with high potential for biofuel production
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Phytofiltration of anaerobically digested sugarcane ethanol stillage using a macrophyte with high potential for biofuel production

机译:使用具有高潜力的生物燃料生产的巨粒细胞植物嗜血丁烷乙醇静止的植物嗜血

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Anaerobically digested stillage (ADS) requires treatment before being discharged into water bodies or soils to avoid adverse effects. Phytofiltration systems are eco-friendly technologies for wastewater treatment, and they simultaneously serve as a source of biomass for biofuel production. The aim of the present study was to investigate the phytofiltration of ADS using Azolla sp. The effects of the ADS strength (dilutions 1:50 and 1:25 v/v) and initial biomass density (IBD) [15.44 (IBD1) and 23.16 (IBD2) g dry weight (dw) m(-2)] on plant growth and pollutant removal were assessed. Productivities obtained at ADS 1:50 (2.93 and 3.04 g m(-2) d(-1) for IBD1 and IBD2, respectively) were not significantly different from those of a synthetic medium (2.56 and 3.15 g m(-2) for IBD1 and IBD2, respectively). Higher organic matter removal was found using ADS at 1:25 than that obtained using ADS 1:50 (52.16-53.34 vs 32.29-38.16%), while no IBD effect was observed. The nutrient concentrations in ADS were reduced significantly, especially the concentrations of NH4-N (75.11-82.54%), PO4-P (88.72-92.90%) and SO4-S (55.95-66.61%). The conversion of nutrients from ADS into Azolla biomass may result in an effective way to produce an attractive feedstock for biofuel production.
机译:厌氧消化的静止(ADS)在排出水体或土壤之前需要治疗,以避免不良反应。植物过滤系统是用于废水处理的环保技术,它们同时作为生物燃料生产的生物量来源。本研究的目的是使用Azolla SP研究ADS的植物浮选。 ADS强度(稀释1:50和1:25V / V)和初始生物质密度(IBD)的影响[15.44(IBD1)和23.16(IBD2)(DW)M(DW)M(-2)]]评估生长和污染物去除。在ADS 1:50(2.93和3.04gM(-2)D(-2)D分别用于IBD1和IBD2的(-2)D(-1)的生产率与IBD1的合成培养基(2.56和3.15克(-2)显着不同IBD2分别)。在1:25中使用比使用ADS 1:50获得的ADS(52.16-53.34与32.29-38.16%)使用较高的有机物质去除,而没有观察到IBD效应。 ADS中的营养浓度显着降低,特别是NH4-N(75.11-82.54%),PO4-P(88.72-92.90%)和SO 4-S(55.95-66.61%)。将营养素从ADS转化为Azolla生物量可能产生有效的方法来生产用于生物燃料生产的有吸引力的原料。

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