首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Magnetic field intervention on growth of the filamentous microalgae Tribonema sp. in starch wastewater for algal biomass production and nutrients removal: Influence of ambient temperature and operational strategy
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Magnetic field intervention on growth of the filamentous microalgae Tribonema sp. in starch wastewater for algal biomass production and nutrients removal: Influence of ambient temperature and operational strategy

机译:磁场干预丝状微藻纤维肿瘤综合征的生长。 在藻类生物量生产和营养的淀粉废水中去除:环境温度和操作策略的影响

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This paper investigated the effects of temperature and cultivation methods (batch or semi-continuous culture) on the filamentous microalgae Tribonema sp. biomass production and nutrients removal in starch wastewater under low intensity magnetic field (MF) intervention. The MF significantly promoted algal growth in the late logarithmic-phase of batch cultivation, and the effect was even more obvious at lower temperatures. The MF treated group at 30 degrees C accumulated the highest biomass of 4.44 g/L of batch culture, an increase of 15.0% compared with the control group. The oil content of Tribonema sp. was enhanced with the MF intervention, especially for the batch culture. In the semi-continuous culture under MF intervention, Tribonema sp. reached the high biomass of 18.45 g/L after 25 days. When gradually reducing hydraulic retention time (HRT) to 1 day, the average removal rates for COD, TN, NH3-N and TP were all more than 90% in the semi-continuous cultivation.
机译:本文研究了温度和培养方法(批量或半连续培养)对丝状微藻纤维蛋白酶的影响。 低强度磁场(MF)干预下的淀粉废水中的生物质生产和营养物去除。 MF显着促进了分批栽培晚期对数阶段的藻类生长,在较低温度下效果更加明显。 30摄氏度的MF处理组累计了4.44g / L分批培养的最高生物质,与对照组相比增加了15.0%。 Tribonema sp的油含量。 通过MF干预增强,特别是对于分批培养。 在MF干预下的半连续文化中,Tribonema sp。 25天后达到18.45克/升的高生物量。 当逐渐减少液压保留时间(HRT)至1天时,在半连续培养中,COD,TN,NH 3-N和TP的平均除去速率大于90%以上。

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