Pengaruh Perbedaan Jenis dan Konsentrasi Sumber Nitrogen (NaNO3 dan urea) terhadap Produksi Biomasa Spirulina Platensis

Eksergi Pub Date : 2023-07-03 DOI:10.31315/e.v20i2.9367
Iqbal Syaichurrozi, Yustinus Selis Toron, Sharfan Dwicahyanto, Wardalia Wardalia
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Abstract

The goal of this study was to investigate the effect of the concentration and the type of nitrogen sources in the cultivation medium on the production of biomass and biochemical content (carbohydrates, proteins, fats) in the Spirulina platensis biomass. Types of nitrogen sources included NaNO3 and urea, where the concentrations were varied from 0.5 to 3.5 g/L. The results showed that the use of urea tended to produce more S. platensis biomass than the use of NaNO3. The best concentrations that produced the highest biomass were NaNO3 2.5 g/L (biomass 0.6745 g/L) and urea 0.5 g/L (biomass 0.7158 g/L). The use of urea also tended to produce a higher specific growth rate and a shorter doubling time than the use of NaNO3. The high concentration of nitrogen sources caused the pH of the medium to increase more rapidly due to the accumulation of ammonium in the medium. Using NaNO3 can produce biomass with a higher protein content (28.34-36.98%) than using urea (25.86-33.52%).
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氮源(纳米3和尿素)对水晶体生物生成的不同类型和浓度的影响
本研究的目的是研究培养基中氮源的浓度和类型对螺旋藻生物量生产和生物化学含量(碳水化合物、蛋白质、脂肪)的影响。氮源的类型包括NaNO3和尿素,其中浓度在0.5至3.5 g/L之间变化。结果表明,尿素的使用比NaNO3的使用产生更多的S.platensis生物量。产生最高生物量的最佳浓度是NaNO3 2.5 g/L(生物量0.6745 g/L)和尿素0.5 g/L(生物产量0.7158 g/L)。与使用NaNO3相比,使用尿素也倾向于产生更高的比生长率和更短的倍增时间。由于铵在培养基中的积累,高浓度的氮源导致培养基的pH增加得更快。使用NaNO3可以产生蛋白质含量(28.34-36.98%)高于使用尿素(25.86-33.52%)的生物质。
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