首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pilot-scale continuous recycling of growth medium for the mass culture of a halotolerant Tetraselmis sp. in raceway ponds under increasing salinity: A novel protocol for commercial microalgal biomass production
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Pilot-scale continuous recycling of growth medium for the mass culture of a halotolerant Tetraselmis sp. in raceway ponds under increasing salinity: A novel protocol for commercial microalgal biomass production

机译:中试连续回收生长培养基,用于大量加盐的Tetraselmis sp。盐度不断增加的水道池中生长:商业化微藻生物质生产的新方案

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摘要

The opportunity to recycle microalgal culture medium for further cultivation is often hampered by salinity increases from evaporation and fouling by dissolved and particulate matter. In this study, the impact of culture re-use after electro-flocculation of seawater-based medium on growth and biomass productivity of the halotolerant green algal strain Tetraselmis sp., MUR 233, was investigated in pilot-scale open raceway ponds over 5 months. Despite a salinity increase from 5.5% to 12% (w/v) NaCl, Tetraselmis MUR 233 grown on naturally DOC-enriched recycled medium produced 48-160% more ash free dry weight (AFDW) biomass daily per unit pond area than when grown on non-recycled medium. A peak productivity of 37.5 ± 3.1 g AFDW m~(-2) d~(-1) was reached in the recycled medium upon transition from ~14% to ~ 7% NaCl. The combination of high biomass-yielding mixotrophic growth under high salinity has been proven to be a successful sustainable cultivation strategy.
机译:由于盐分的增加,蒸发和结垢的溶解性和颗粒性会增加盐度,因此常常无法回收利用微藻培养基进行进一步培养的机会。在这项研究中,在五个月的中试规模开放水道池塘中,研究了电絮凝海水基培养基后培养物再利用对耐盐绿色藻类Tetraselmis sp。,MUR 233的生长和生物量生产力的影响。 。尽管NaCl的盐度从5.5%增至12%(w / v),但在天然DOC丰富的再生培养基上生长的Tetraselmis MUR 233每天每单位池塘面积产生的无灰干重(AFDW)生物量比生长时多48-160%在不可回收的介质上。从约14%的NaCl过渡到约7%的NaCl,在回收的介质中达到了37.5±3.1 g AFDW m〜(-2)d〜(-1)的峰值生产率。高盐度下高生物量产量的混合营养生长的组合已被证明是成功的可持续栽培策略。

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