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首页> 外文期刊>Journal of CO2 Utilization >Potential CO2 fixation and optimal Dunaliella tertiolecta cultivation: Influence of fertilizer, wavelength of light-emitting diodes, salinity and carbon supply strategy
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Potential CO2 fixation and optimal Dunaliella tertiolecta cultivation: Influence of fertilizer, wavelength of light-emitting diodes, salinity and carbon supply strategy

机译:潜在的CO2固定和最佳Dunaliella Tertiolecta培养:肥料,发光二极管波长,盐度和碳源策略的影响

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NPK-fertilizer based optimum culture medium was formulated for Dunaliella tertiolecta cultivation using 100% CO2 and different wavelength light emitting diodes (LEDs) involving green, white, red, pink and blue. The influence of decision variables like fertilizer, salinity, carbon supply strategy and LEDs with different wavelength was investigated to maximize algae-biomass, lipid and CO2 sequestration. NaCl was used to vary salinity of the culture medium, whereas carbon supply strategy was adopted for algae-biomass growth by varying NaOH dozing. Five levels and four variables response surface method (RSM) was used to fix the optimum values of the decision variables and the efficacy of RSM-oriented results were compared with the binary coded genetic algorithm (GA). Algae-biomass growth, lipid production and CO2 sequestration were enhanced significantly using optimally formulated fertilizer medium over standard artificial seawater based f/2 medium. Carbon supply strategy was found to be the most important variable for optimal algal cultivation, whereas (NPK-NaOH, NaCl-NaOH), (NaCl-LED, NPK-LED, NPK-NaOH) and (NaOH-LED, NPK-LED) were the most influencing interactions to maximize biomass growth, lipid productivity and CO2 sequestration, respectively. Following cultivation parameters, i.e., fertilizer (g L (-1)), NaCl (g L (-1)), LED, and NaOH (g L (-1)) were obtained to maximize algae-biomass (1.9696 g L (-1)), lipid (0.7068 g L (-1)) and CO2 sequestration (0.2434 g L (-1) d (-1)): (0.43, 32.99, red-72%/pink-28%, 1.09), (0.47, 59.24, red-86%/pink-14%, 1.29) and (0.46, 41.99, red-81%/pink-19%, 1.26), respectively, using simple GA. Three multi-objective optimization.
机译:使用100%CO 2和不同波长发光二极管(LED)的达良菌培养培养,配制基于NPK肥料的最佳培养基,涉及绿色,白色,红色,粉红色和蓝色。研究了施肥,盐度,碳源策略和具有不同波长的肥料,盐度,碳源策略和LED的影响,以最大化藻类生物量,脂质和CO2螯合。 NaCl用于改变培养基的盐度,而通过改变NaOH发音,采用碳供应策略进行藻类生物量增长。使用五个级别和四个变量响应表面方法(RSM)来确定决策变量的最佳值,并将RSM导向结果的功效与二元编码遗传算法(GA)进行比较。使用最佳配制的肥料介质在标准人工海水的F / 2培养基上显着增强了藻类生物量,脂质生产和CO2螯合。发现碳供应策略是最佳藻类种植的最重要变量,而(NPK-NaOH,NaCl-NaOH),(NaCl-LED,NPK-LED,NPK-NaOH)和(NaoH-LED,NPK-LED)最大化生物质生长,脂质生产率和二氧化碳封存的相互作用最多。获得培养参数,即肥料(G L(-1)),得到NaCl(GL(-1)),LED和NaOH(GL(-1))以最大化藻类 - 生物量(1.9696g L( -1)),脂质(0.7068g(-1))和CO2螯合(0.2434g l(-1)d(-1)):(0.43,32.99,Red-72%/粉红色-28%,1.09) ,(0.47,59.24,红-86%/粉红色-14%,1.29)和(0.46,41.99,Red-81%/粉红色-19%,1.26),使用简单的GA。三种多目标优化。

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