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THE EFFECT OF LIGHT INTENSITY AND THICKNESS OF CULTURE SOLUTION ON OXYGEN PRODUCTION BY ALGAE

机译:光强度和文化溶液厚度对藻类生产氧气的影响

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Data from a small cylindrical culture unit with variable annular culture chambers indicate that; (a) the rate of oxygen evolution by an algal culture in the linear phase of growth is a logarithmic function of light intensity, and (b) the rate of oxygen evolution per unit volume of suspension is linearly related to the recip¬rocal of culture thickness. These two relationships have been combined in an empirical equation, which gives the expected variation of the oxygen production rate with light intensity, culture thickness, and suspension volume. The applica¬bility of this equation has been tested on a larger, multi-light culture unit in this laboratory. The agreement between the experimental and calculated oxygen pro¬duction rates was very satisfactory, suggesting that the equation is not limited to a particular culture unit but may have wide applicability.nThe efficiency of the culture unit from the viewpoint of electrical power utilization has been calculated, and it was found that the maximum conversion of electrical energy to chemical energy based on oxygen evolution was only 0.51 per¬cent. The maximum efficiency in converting light energy to chemical energy was approximately 12 percent.

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