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A comparative study of citric acid production from different agro-industrial wastes by Aspergillus niger isolated from mangrove forest soil

机译:红霉属植物群中红豆杉林土的柠檬酸生产对比较研究

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Citric acid is an important organic acid having worldwide demand due to its huge application in the food and pharmaceutical industries.To overcome this increasing demand attempt has been made to use cheap agro-industrial waste products as sources of carbohydratefeedstock for citric acid production by fermentation with the fungus Aspergillus niger. In the present study, 12 fungal isolates wereisolated from soil samples collected from the Bhitarkanika mangrove swamps and named as Bhitarkanika Mangrove Fungi BMF-1 toBMF-12. Out of the 12 fungal isolates, three fungal isolates were identified as A. niger. These three fungal isolates were screened for theircitric acid production ability and found that the fungal isolate BMF-1 showed the widest yellow zone in Czapek-Dox agar medium,and hence was selected for further citric acid production studies. Fruit peels such as banana peel, rice straw, orange peel and sugarcanebagasses were used for the production of citric acid and compared with the control (sucrose) carbohydrate source of the medium.Maximum citric acid production (0.51%) was obtained with banana peel as a substrate after 6 days of incubation followed by sugarcanebagasses (0.46%), orange peel (0.44%) and rice straw (0.28%) with gradual reduction in pH of the fermentation medium. Maximumreduction in pH (3.3) of the fermentation medium (from initial pH 6.0) was observed after 144 h of incubation with maximum citricacid production by the isolate BMF-1 when banana peel was used as a substrate. To obtain higher citric acid production the fungalgrowth culture was optimized under different concentrations of banana peel, pH, temperature, nitrogen source, inoculum size andmethanol concentration. It has been observed that under optimized condition the production of citric acid was increased from 0.51% to0.62% which is considered assuitable for citric acid production.
机译:柠檬酸是一个重要的有机酸,由于其在食品和制药行业的巨大应用中,具有巨大的应用。克服这种日益增长的需求,已经尝试使用廉价农业废物废品作为碳水化合物FeedStock的来源,通过发酵产生柠檬酸生产。真菌曲霉菌尼日尔。在本研究中,从来自Bhitarkanika红树林沼泽收集的土壤样品中,12个真菌分离物均匀,并命名为Bhitarkana红树林真菌BMF-1 ToBMF-12。在12个真菌分离物中,将三种真菌分离物鉴定为尼日尔。将这三个真菌分离物筛选出酸性酸生产能力,发现真菌分离物BMF-1在Czapek-Dox琼脂培养基中显示了最宽的黄色区域,因此选择进一步的柠檬酸生产研究。使用香蕉皮,稻草,橙皮和甘蔗银等果皮用于生产柠檬酸,并与对照(蔗糖)碳水化合物的碳水化合物源。最大柠檬酸生产(0.51%)用香蕉剥离获得孵育6天后的基材,然后是甘油烷(0.46%),橙皮(0.44%)和稻草(0.28%),逐渐减少发酵培养基的pH。在使用香蕉剥离作为基材的孵育144小时后,观察到发酵培养基(来自初始pH6.0)的pH(3.3)的最终测量。为了获得更高的柠檬酸生产,在不同浓度的香蕉剥离,pH,温度,氮源,接种物尺寸和甲醇浓度下优化真菌生长培养。已经观察到,在优化条件下,柠檬酸的产量从0.51%达到0.62%增加,这被认为是对柠檬酸产生的合作。

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