Application of syntrophic co-culture Chlorella sorokiniana and Streptomyces thermocarboxydus in semi-continuous system for cassava wastewater treatment and biomass production

Mohamad Padri , Nittaya Boontian , Maisarah Munirah Latief , Misdar Amdah , Mohamed Sahrul Tamzil
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Abstract

Application of microalgae and mutualistic symbionts have been widely developed for wastewater treatment and algal biomass production. This study aimed to examine and compare the application of single and co-culture of alga Chlorella sorokiniana P21 with Streptomyces thermocarboxydus BMI in semi-continuous system to treat biogas effluent wastewater and generate algal biomass. A sequence of batch and semi-continuous system was applied to assess the single and co-culture nutrients removal (N, P, and COD) along with the biomass productivity for sterilized and raw (unsterilized) wastewater. Different Hydraulic Retention Times (HRTs) were applied to the system, and it was found that 5 days HRT resulted the highest nutrients removals in single and co-culture conditions. Nevertheless, this HRT was also in line with the predicted optimum HRT based on the growth rate in the batch conditions. However, low HRTs were found not to allow the algae to increase the pH and DO in the culture. This result exhibits the massive potencies of microalgae-bacterial co-culture to apply on wastewater treatment in larger scale with reliable removal and biomass production.

Abstract Image

sorokiniana小球藻和热羧酸链霉菌共生培养在木薯废水处理和生物质生产半连续系统中的应用
微藻和共生共生体在污水处理和藻类生物质生产方面的应用得到了广泛的发展。本研究旨在研究和比较在半连续系统中单培养和共培养sorokiniana小球藻P21与热羧酸链霉菌BMI在处理沼气废水和生成藻类生物量中的应用。采用间歇式和半连续式系统对灭菌废水和未灭菌废水进行单次和共培养的营养物去除(N、P和COD)以及生物质生产力进行了评估。采用不同的水力保留时间(HRT)对该体系进行处理,结果发现,在单独培养和共培养条件下,HRT时间为5 d时,营养物去除率最高。然而,该HRT也符合基于成批条件下生长速率预测的最佳HRT。然而,发现低hrt不能使藻类增加培养物中的pH值和DO。这一结果显示了微藻-细菌共培养的巨大潜力,可以应用于更大规模的废水处理,并具有可靠的去除和生物质生产。
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