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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Role of different additives and metallic micro minerals on the enhanced citric acid production by Aspergillus niger MNNG-115 using different carbohydrate materials.
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Role of different additives and metallic micro minerals on the enhanced citric acid production by Aspergillus niger MNNG-115 using different carbohydrate materials.

机译:不同的添加剂和金属微矿物质在黑曲霉MNNG-115使用不同的碳水化合物原料增强柠檬酸生产中的作用。

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The present investigation deals with the promotry effect of different additives and metallic micro minerals on citric acid production by Aspergillus niger MNNG-115 using different carbohydrate materials. For this, sugar cane bagasse was fortified with sucrose salt medium. Ethanol and coconut oil at 3.0% (v/w) level increased citric acid productivity. Fluoroacetate at a concentration of 1.0 mg/ml bagasse enhanced the yield of citric acid significantly. However, the addition of ethanol and fluoroacetate after 6 h of growth gave the maximum conversion of available sugar to citric acid. In another study, influence of some metallic micro-minerals viz. copper sulphate, molybdenum sulphate, zinc sulphate and cobalt sulphate on microbial synthesis of citric acid using molasses medium was also carried out. It was found that copper sulphate and molybdenum sulphate remarkably enhanced the production of citric acid while zinc sulphate was not so effective. However, cobalt sulphate was the least effective for microbial biosynthesis of citric acid under the same experimental conditions. In case of CuSO(4), the strain of Aspergillus niger MNNG-115 showed enhanced citric productivity with experimental (9.80%) over the control (7.54%). In addition, the specific productivity of the culture at 30 ppm CuSO(4) (Q(p) = 0.012a g/g cells/h) was several folds higher than other all other concentrations. All kinetic parameters including yield coefficients and volumetric rates revealed the hyper productivity of citric acid by CuSO(4) using blackstrap molasses as the basal carbon source.
机译:本研究探讨了不同添加剂和金属微矿物质对黑曲霉MNNG-115使用不同碳水化合物材料生产柠檬酸的促进作用。为此,用蔗糖盐培养基强化了甘蔗渣。乙醇和椰子油的含量为3.0%(v / w),可提高柠檬酸的生产率。浓度为1.0 mg / ml蔗渣的氟乙酸大大提高了柠檬酸的产量。但是,在生长6小时后添加乙醇和氟乙酸盐可使可利用的糖最大程度地转化为柠檬酸。在另一项研究中,一些金属微量元素的影响即。还进行了糖蜜培养基微生物合成柠檬酸的硫酸铜,硫酸钼,硫酸锌和硫酸钴的研究。已发现硫酸铜和硫酸钼显着提高了柠檬酸的产量,而硫酸锌却没有那么有效。但是,在相同的实验条件下,硫酸钴对微生物生物合成柠檬酸的效果最差。在使用CuSO(4)的情况下,黑曲霉MNNG-115菌株的柠檬酸生产率提高了,实验值(9.80%)比对照值(7.54%)高。此外,在30 ppm CuSO(4)(Q(p)= 0.012a g / g细胞/ h)的条件下,培养的比生产率比其他所有浓度高出几倍。所有动力学参数,包括屈服系数和体积比,均表明利用黑带糖蜜作为基础碳源,CuSO(4)可提高柠檬酸的生产率。

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