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21.
微藻生物柴油研发态势分析   总被引:3,自引:0,他引:3  
微藻是光合效率最高的原始植物之一,与农作物相比,单位面积的产率可高出数十倍。微藻生物柴油技术首先包括微藻的筛选和培育,获得性状优良的高含油量藻种,然后在光生物反应器中吸收阳光、CO2等,生成微藻生物质,最后经过采收、加工,转化为微藻生物柴油。完整的微藻生物柴油成套技术链涵盖多个技术环节,是一个复杂的系统工程,包括微藻生物工程技术、微藻高效规模化养殖技术,以及微藻生物质采收、加工与转化技术等。其中,降低生产成本是当前微藻生物柴油研究面临的主要挑战,各国的研究机构为此开展了多方面的研究。  相似文献   
22.
CO2对牟氏角毛藻高密度培养的影响   总被引:5,自引:0,他引:5  
以牟氏角毛藻为材料,通过对比实验研究了CO2和CO2通入方式对光合生物反应器中高密度培养的牟氏角毛藻的生长速度和细胞密度的影响;并以水体pH值为指标,控制CO2的通入数量,进而研究了牟氏角毛藻在我们自行研制的卧式光合生物反应器中的生长情况.结果表明细胞悬浮培养达到一定密度之后,CO2的供应,可以有效地提高生长速度和细胞密度.对CO2通入方式的实验结果表明,不同的CO2通入方式,产生的效果不同,其中以空气和纯CO2混合后通入,效果最好.  相似文献   
23.
Synechocystis sp. PCC 6803 was grown in a 2.5 l enclosed photobioreactor on medium with or without glucose. The incident light intensities ranged from 1.5 klux to 7 klux. The highest average specific growth rates of mixotrophic culture and photoautotrophic culture were, respectively, 1.3 h–1 at a light intensity of 7 klux on 3.2 g l–1 glucose and 0.3 h–1 at both light intensities of 5 klux and 7 klux. The highest cell density 2.5 g l –1 was obtained at both of light intensities 5 klux and 7 klux on 3.2 g glucose l–1. Glucose consumption decreased with decreasing light intensity. The energy yields of mixotrophic cultures were 4 to 6 times higher than that of photoautotrophic cultures. Light favored mixotrophic growth of Synechocystis sp. PCC 6803, especially at higher light intensities (5–7 klux).  相似文献   
24.
Because algal cells are so efficient at absorbing incoming light energy, providing more light energy to photobioreactors would simply decrease energy conversion efficiency. Furthermore, the algal biomass productivity in photobioreactor is always proportional to the total photosynthetic rate. In order to optimize the productivity of algal photobioreactors (PBRs), the oxygen production rate should be estimated. Based on a simple model of light penetration depth and algal photosynthesis, the oxygen production rate in high-density microalgal cultures could be calculated. The estimated values and profiles of oxygen production rate by this model were found to be in accordance with the experimental data. Optimal parameters for PBR operations were also calculated using the model.  相似文献   
25.
The light distribution profiles of plate-type photobioreactors were investigated. Light reaching individual channels of a plate module is dependent on the orientation of the module to the sun, the position of the channel within a plate and the position of the plate. The highest incident radiation was measured at the south oriented side of the first channel of the front plate. The light intensity decreased from top to ground channels. Different types of light diffusing optical fibers (LDOF) were characterized with respect to their applicability in photobioreactor systems.  相似文献   
26.
Microalgae are a promising feedstock for biofuel production. Lipid content in microalgae could be enhanced under nutrient depletion. This work investigated the effect of the nutrient on lipid accumulation in Ankistrodesmus sp. culture. Batch cultures were carried out using fresh BG11 medium, and after the harvest, the medium was reused for the next culture; this method was repeated two times. The maximum lipid productivity of 29.75 mg L?1 day?1 was obtained from the culture with the second reuse medium. In continuous cultures, Ankistrodesmus sp. was cultured in both fresh and modified BG11 mediums. The modified BG11 medium was adjusted to resemble the content of the first reuse medium. As a comparison between batch and continuous cultures, it was proven that the productivity in the continuous culture was better than in the batch, where the achievable maximum biomass and lipid were 188.30 and 38.32 mg L?1 day?1. The maximum lipid content of 34.22% was obtained from the continuous culture at a dilution rate of 0.08 day?1, whereas the maximum saturated and unsaturated fatty acid productivities of 79.96 and 104.54 mg L?1 day?1 were obtained at a dilution rate of 0.16 day?1.  相似文献   
27.
The present work reports on the daily cyclic variation of oxygen generation rates, carbon consumption rates, photosynthetic activities, growth rates and biochemical composition of the biomass in a pilot plant continuous outdoor culture of the microalgae Porphyridium cruentum. A linear relationship between the external irradiance and the average irradiance inside the culture was found. In addition, the oxygen generation and carbon consumption rates were found to be a function of the average irradiance inside the culture. A reduction in photosynthetic activity of the cells at noon and recovery in the afternoon was also observed. Therefore, the cells showed a short-term response of parameters such as oxygen generation rate as well as carbon consumption rate with external and average irradiance; a model of photosynthesis rate considering photoinhibition is proposed. This model is a useful tool for the operation and scaleup of tubular photobioreactors, and can be used for determining CO2 requirements of the system. The higher the photosynthesis rates, the lower the carbon losses, ranging from 25% at noon to 100% during the night. The growth rate showed a linear relationship with the daily mean average irradiance inside the culture with a long-term response. Likewise, a linear relationship among the oxygen generation rate and the growth rate was obtained. With respect to the biochemical composition of the biomass, the cells showed a long-term response of metabolic routes to mean daily culture conditions. During the illuminated period, energy was stored as carbohydrates and synthesis of proteins was low. During the night, the stored carbohydrates were consumed. The fatty acid dry weight (DW) content decreased during the daylight period, whereas the fatty acid profile, as total fatty acids, was a function of growth rate. A short-term variation of exopolysaccharides synthesis with solar irradiance was also observed, i.e. the higher the external irradiance the higher the excretion of exopolysaccharides as a protection against adverse culture conditions.  相似文献   
28.
In this study, a model of a continuous pilot photobioreactor for microalgae production is proposed. Three aspects have been studied: the modelling of kinetic growth, the gas-liquid transfer and the hydrodynamics in the photobioreactor. The modelling of each aspect has been developed with the dynamic simulation software SpeedUp, after experimental studies, then validated step-by-step. The connection of these three aspects aims to predict and optimise biomass production of the pilot plant.  相似文献   
29.
The economic and/or energetic feasibility of processes based on using microalgae biomass requires an efficient cultivation system. In photobioreactors (PBRs), the adhesion of microalgae to the transparent PBR surfaces leads to biofouling and reduces the solar radiation penetrating the PBR. Light reduction within the PBR decreases biomass productivity and, therefore, the photosynthetic efficiency of the cultivation system. Additionally, PBR biofouling leads to a series of further undesirable events including changes in cell pigmentation, culture degradation, and contamination by invasive microorganisms; all of which can result in the cultivation process having to be stopped. Designing PBR surfaces with proper materials, functional groups or surface coatings, to prevent microalgal adhesion is essential for solving the biofouling problem. Such a significant advance in microalgal biotechnology would enable extended operational periods at high productivity and reduce maintenance costs. In this paper, we review the few systematic studies performed so far and applied the existing thermodynamic and colloidal theories for microbial biofouling formation in order to understand microalgal adhesion on PBR surfaces and the microalgae–microalgae cell interactions. Their relationship to the physicochemical properties of the solid PBR surface, the microalgae cell surfaces, and the ionic strength of the culture medium is discussed. The suitability and the applicability of such theories are reviewed. To this end, an example of biofouling formation on a commercial glass surface is presented for the marine microalgae Nannochloropsis gaditana. It highlights the adhesion dynamics and the inaccuracies of the process and the need for further refinement of previous theories so as to apply them to flowing systems, such as is the case for PBRs used to culture microalgae.  相似文献   
30.
以新近分离的淡水绿藻--尖状栅藻(Scenedesmus acuminatus)为研究对象,将改良的BG-11培养基中的初始NaNO3浓度降低为6.0mmol/L和3.6mmol/L,利用新设计的内置拉筋平板式光生物反应器对尖状栅藻(S. acuminatus)进行大量培养。测定不同时相的生物量、总脂含量、脂组分含量及脂肪酸组成和含量,分析尖状栅藻(S. acuminatus)大量培养时的生长和油脂积累规律。当初始NaNO3浓度为6mmol/L时其最高生物量(6.27g/L)明显高于初始NaNO3浓度为3.6mmol/L时的生物量(5.30g/L);而最高的总脂含量在初始NaNO3浓度为3.6mmol/L时获得为干重的56.6%,高于初始NaNO3浓度为6mmol/L时的总脂含量(51.6%)。总脂经硅胶柱层析分级后得到三种类型的脂组分:中性脂、糖脂和磷脂,随着培养时间的延长中性脂含量逐渐增加,培养至18d后,中性脂的含量分别达到总脂的 90.9%(6 mmol/L NaNO3)和 92.0%(3.6 mmol/L NaNO3)及干重的 47.5%(6.0 mmol/L NaNO3)和 51.4%(3.6 mmol/L NaNO3)。主要脂肪酸组成为棕榈酸、棕榈油酸、硬脂酸、油酸、亚麻油酸和亚麻酸,这六种脂肪酸在不同时相的含量变化范围分别为89.92%~96.18%(占总脂肪酸)和12.5%~50.7%(占细胞干重)。总脂、中性脂及总脂肪酸单位体积产率分别为:0.18 g/L/d,0.16 g/L/d和0.15 g/L/d(6.0 mmol/L NaNO3)及0.16 g/L/d,0.15 g/L/d和0.15 g/L/d(3.6 mmol/L NaNO3)。研究结果表明,尖状栅藻(S. acuminatus)是一株易于规模化培养、脂肪酸组成适合于生物柴油生产的高产油微藻。  相似文献   
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