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Increasing microalgal carbohydrate content for hydrothermal gasification purposes

机译:增加微藻碳水化合物的含量以进行水热气化

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This research examines the growth of Chlorella sp. microalgae under nutrient limitation (10-200 mg NaNO3 L-1 and 10-70 mg K2HPO4 L-1) and different light intensities (60-450 mu mol photons m(-2) s(-1)) for achieving maximum carbohydrate content and biomass productivity using Response Surface Methodology (RSM) technique. According to the results, nutrition limitation had considerable effect on carbohydrate accumulation especially phosphorus concentrations; as in constant light intensities, maximum carbohydrate content was obtained in minimum concentration of K2HPO4. Under favorable circumstances; i.e. K2HPO4 = 10 mg L-1, NaNO3 = 105 mg L-1, and light intensity = 255 mu mol photons m(-2) s(-1) the highest carbohydrate content by 60.9% was achieved. Moreover, Supercritical Water Gasification (SCWG) of carbohydrate enriched microalgal biomass is able to produce much more hydrogen gas in comparison to the basic microalgal biomass. In addition, a 1.85 times increase in amount of produced gas is appeared as a result of a change in biochemical composition of the microalgal biomass. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究检查了小球藻的生长。在营养限制下(10-200 mg NaNO3 L-1和10-70 mg K2HPO4 L-1)和不同的光强度(60-450μmol光子m(-2)s(-1))的微藻类,以实现最大的碳水化合物含量和响应面方法(RSM)技术的生物量生产率。根据结果​​,营养限制对碳水化合物的积累,特别是磷的浓度有相当大的影响。如在恒定的光照强度下,在最低浓度的K2HPO4中可获得最大的碳水化合物含量。在有利的情况下;即K2HPO4 = 10 mg L-1,NaNO3 = 105 mg L-1,光强度= 255μmol光子m(-2)s(-1),可实现60.9%的最高碳水化合物含量。此外,与基本微藻生物质相比,富含碳水化合物的微藻生物质的超临界水气化(SCWG)能够产生更多的氢气。另外,由于微藻生物质的生化组成改变,产生的气体量增加了1.85倍。 (C)2017 Elsevier Ltd.保留所有权利。

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