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首页> 外文期刊>Water Science and Technology >Effects of operation parameters on nutrient removal from wastewater and high-protein biomass production in a duckweed-based (Lemma aequinoctialis) pilot-scale system
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Effects of operation parameters on nutrient removal from wastewater and high-protein biomass production in a duckweed-based (Lemma aequinoctialis) pilot-scale system

机译:基于浮萍的中试规模系统中操作参数对废水中养分去除和高蛋白生物量生产的影响

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摘要

The effects of water depth, coverage rate and harvest regime on nutrient removal from wastewater and high-protein biomass production were assessed in a duckweed-based (Lemna aequinoctialis) pilot-scale wastewater treatment system (10 basins × 12 m2) that is located near Dianchi Lake in China. The results indicated that a water depth of 50 cm, a coverage rate of 150% and a harvest regime of 4 days were preferable conditions, under which excellent records of high-protein duckweed (dry matter production of 6.65 g/m2/d with crude protein content of 36.16% and phosphorus content of 1.46%) were obtained at a temperature of 12–21 WC. At the same time, the system achieved a removal efficiency of 66.16, 23.1, 48.3 and 76.52% for NH_4~+-N, TN, TP and turbidity, respectively, with the considerable removal rate of 0.465 g/m~2/d for TN and 0.134 g/m~2/d for TP at a hydraulic retention time of 6 days. In additionally, it was found that a lower duckweed density could lead to higher dissolved oxygen in the water and then a higher removal percentage of NH4 t-N by nitrobacteria. This study obtains the preferable operation conditions for wastewater treatment and high-protein biomass production in a duckweed-based pilot-scale system, supplying an important reference for further large-scale applications of duckweed.
机译:在基于浮萍的(Lemna aequinoctialis)中试规模废水处理系统(10盆×12 m2)中,评估了水深,覆盖率和收获方式​​对废水中养分去除和高蛋白生物量产生的影响。滇池在中国。结果表明,最好的条件是水深为50 cm,覆盖率为150%,收获方式为4天,在此条件下,高蛋白浮萍(干物质产量为6.65 g / m2 / d蛋白质含量为36.16%,磷含量为1.46%)是在12-21 WC的温度下获得的。同时,该系统对NH_4〜+ -N,TN,TP和浊度的去除效率分别为66.16%,23.1%,48.3和76.52%,其中去除率相当高,为0.465 g / m〜2 / d。 TN和0.134 g / m〜2 / d的TP在水力停留时间为6天时。此外,还发现较低的浮萍密度可导致水中溶解氧更高,然后通过硝化细菌去除更高的NH4 t-N百分比。该研究为浮萍中试系统获得了废水处理和高蛋白生物质生产的优选操作条件,为浮萍的进一步大规模应用提供了重要的参考。

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