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首页> 外文期刊>Journal of Applied Phycology >Outdoor open thin-layer microalgal photobioreactor: potential productivity
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Outdoor open thin-layer microalgal photobioreactor: potential productivity

机译:户外开放式薄层微藻光生物反应器:潜在的生产力

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摘要

We have previously estimated the productivity and photosynthetic efficiency of the microalga Chlorella sp. grown in an outdoor open thin-layer photobioreactor under climate conditions typical of the Middle European region, i.e. with many days unsuitable for intensive growth of algae (cloudy and rainy days, low air temperature, low solar PAR input).To estimate the real potential productivity of the bioreactor, we collected data on algae yields obtained during clear summer day periods. Cultivation was performed in fed-batch cycles in a bioreactor with a 224 m(2) culture area (length 28 m, slope 1.7%), and a 6-7 mm-thick layer of algal culture. The suspension volume in the bioreactor was 2,000 L. The mean values found for T angstrom (TM) ebo angstrom (49A degrees N), Czech Republic, as an average of several sunny summer cultivation periods in July, were: net areal productivity, P (net) = 38.2 g dry weight (DW) m(-2) day(-1); net volumetric productivity, P-vol,P- = 4.3 g algal DW L-1 day(-1), photosynthetic efficiency (based on PAR), eta(net) = 7.05%. The peak values were: P (net) about 50 g (DW) m(-2) day(-1), eta(net) about 9%. Algal growth rate was practically linear up to high biomass densities (40-50 g DW L-1, corresponding to an areal density of 240-300 g DW m(-2)), at which point the culture was harvested. The concentration of dissolved oxygen increased from about 10 mg L-1 at the beginning to about 23 mg L-1 at the end of culture area at noon. Use of the above-described technology for economical production of bioethanol is proposed.
机译:我们之前已经估算了微藻小球藻的生产力和光合效率。在室外开放式薄层光生物反应器中生长,生长条件是中欧地区典型的气候条件,即许多天不适合藻类的密集生长(阴天和雨天,气温低,太阳PAR输入低)。估算实际潜力生物反应器的生产力,我们收集了在晴朗的夏日期间获得的藻类产量数据。在具有224 m(2)培养区域(长度28 m,斜率1.7%)和6-7毫米厚的藻类培养层的生物反应器中,以分批补料循环进行培养。生物反应器中的悬浮液体积为2,000L。在7月份几个晴天的夏季种植期的平均值下,捷克共和国的T埃博埃博埃(49A度)的平均值为:净面积生产力P (净重)= 38.2克干重(DW)m(-2)天(-1);净容积生产力,P-vol,P- = 4.3克藻DW L-1天(-1),光合作用效率(基于PAR),eta(净)= 7.05%。峰值为:P(净)约50 g(DW)m(-2)天(-1),eta(净)约9%。藻类的生长速度实际上是线性的,直到高生物质密度(40-50 g DW L-1,对应于240-300 g DW m(-2)的面密度),此时收获了培养物。溶解氧的浓度从开始时的约10 mg L-1增加到中午培养区末时的约23 mg L-1。建议将上述技术用于经济地生产生物乙醇。

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