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Microalgae for Co2 Reduction and Wastewater Treatment Application in Industrial Area

机译:微藻在工业区二氧化碳减排及废水处理中的应用

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摘要

The microalgae incorporated photobioreactor (PBR) is a highly efficient biological system for converting carbon dioxide (CO2) gases into biomass and treating wastewater. In this study, the freshwater microalgae Chlorella sp. was cultured in two unit photobioreactors which were connected to a boiler of dairy factory. The source of water for microalgae culture media (in the photobioreactors) are collected from the waste water treatment plant of the dairy factory itself. The objective of this microalgae photobioreactor activity were to reduce CO2, produce biomass and as a part of a waste water treatment in a dairy industry in Indonesia. Both photobioreactors were operated for 14 days culture interval in the semi continuous cultivation, with initial stocking rate of 2 x 105 cells/ml microalgae. Carbon dioxide concentration from the boiler stack was 10-11 % vol. The photobioreactors were injected with the specified CO2 concentration with flow rate of 2 l/min. and 1.5 l/min. The result showed that microalgae photobioreactors capability in CO2 absorption were 0.78 ± 0.25 and 0.92 ±0.36 g CO2/l media/day, respectively. Before and after utilized by the photobioreactors system, Nitrate and Phosphate concentration of the culture media (supplied from the waste water treatment plant) decreased from 3-4 mg/l to 0.05-0.1 mg/l. After 14 days cultivation, biomass concentration of microalgae which were injected with CO2 flow rate of 2 l/min. and 1.5 l/min. were 19 x 106 cells/ml and 15 x 106 cells/ml respectively. Results showed that microalgal photobioreactors operated in an industrial area could reduce CO2 concentration and produce biomass.
机译:包含微藻的光生物反应器(PBR)是一种高效的生物系统,用于将二氧化碳(CO2)气体转化为生物质并处理废水。在这项研究中,淡水微藻小球藻属。在两个单位的光生物反应器中培养,它们连接到乳制品厂的锅炉。微藻培养基(在光生物反应器中)的水源是从乳品厂本身的废水​​处理厂收集的。这种微藻光生物反应器活性的目标是减少二氧化碳,产生生物量,并作为印度尼西亚乳制品行业废水处理的一部分。在半连续培养中,两个光生物反应器都以14天的培养间隔运行,初始储存率为2 x 105个细胞/ ml微藻。来自锅炉烟囱的二氧化碳浓度为10-11体积%。向光生物反应器注入指定的CO2浓度,流速为2 l / min。和1.5升/分钟。结果表明,微藻光生物反应器的CO2吸收能力分别为0.78±0.25和0.92±0.36 g CO2 / l培养基/天。在光生物反应器系统使用前后,培养基(从废水处理厂提供)的硝酸盐和磷酸盐浓度从3-4 mg / l降低到0.05-0.1 mg / l。培养14天后,以2l / min的CO 2流速注入微藻的生物质浓度。和1.5升/分钟。分别为19 x 106细胞/ ml和15 x 106细胞/ ml。结果表明,在工业区操作的微藻光生物反应器可以降低CO2浓度并产生生物质。

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