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Spectrometric Characteristic of Superficial Chlorella sp. Grown in Photo-bioreactor under Different Flow Rates

机译:浅表小球藻SP的光谱特征。 在不同的流速下在光生物反应器中生长

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In this study, photo-bioreactor designed with 4 L of volume to cultivate Chlorella sp. was conducted for comparing the differences of biomass increase among three gas flow rates. All experiments were controlled at light reaction of 12 hrs with 1,700 lux. The organic fluorescence of algae, expressed in excitation emission fluorescent matrix (EEFM), was obtained from algal solution deducted from EEFM of the filtrate obtained from the filtration of algal solution using 0.2μm membrane filter. Also, the surface charge and functional group for Chlorella sp. were respectively measured by zeta meter and Fourier transform infrared spectroscopy (FTIR). Biomass was measured by absorbance wavelength of 683 nm or dried biomass. Current results reveal that high flow rate produced more biomass than low flow rate did. Regarding to the fluorescent characteristic derived from Chlorella sp., two peaks were appeared in both wavelengths of excitation and Emission (EX/EM) respectively located at 280/330 nm (protein-like) and 440-480/680 nm (pigment). For the variation of autofluorescent intensities during algal incubation, algal image captured by epofluorescent microscope equipped with CCD (Charge-Coupled Device) could be further dealt using image software, showing that there were divergences of fluorescent intensities derived from varied amount of protein-like substance or pigment. Functional group of Chlorella sp. analyzed by FTIR, hydroxyl, peptidic bond, carboxylic acids and polysaccharide were existed with variations of transmittance (%) while gas flow rate was changed.
机译:在这项研究中,设计的光生物反应器设计有4 L体积的,以培养小球藻SP。进行了用于比较三种气流率之间生物质增加的差异。所有实验均以12小时的光反应控制,1,700勒克斯。在激发发射荧光基质(EEFM)中表达的藻类的有机荧光从使用0.2μM膜过滤器从藻类溶液的过滤中获得的滤液中扣除的藻类溶液获得。此外,小球藻SP的表面电荷和官能团。分别由Zeta仪表和傅立叶变换红外光谱(FTIR)测量。通过683nm或干燥生物质的吸光度波长测量生物质。目前的结果表明,高流量产生的生物质比低流速更高。关于源自小球藻SP的荧光特征,分别位于280/330nm(蛋白质)和440-480 / 680nm(颜料)的激发和发射(Ex / em)中出现两个峰的两个峰。为了在藻类孵化期间的自发荧光强度的变化,可以使用图像软件进一步讨论配备有CCD(电荷耦合器件)的积流显微镜捕获的藻类图像,表明源自不同量的蛋白质物质衍生的荧光强度分歧或颜料。小球藻官能团。通过FTIR,羟基,肽键,羧酸和多糖分析,透射率(%)的变化存在,而气体流速发生变化。

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