Statistical optimization of cultural parameters for the optimized production of alginic acid using apple (Malus domestica) peels through solid-state fermentation

被引:0
作者
Shagufta Saeed
Tahir Mehmood
Muhammad Irfan
机构
[1] University of Veterinary and Animal Sciences-UVAS,Institute of Biochemistry and Biotechnology
[2] University of Sargodha,Department of Biotechnology
来源
Biomass Conversion and Biorefinery | 2023年 / 13卷
关键词
Alginate; Apple peels (; ); Solid-state fermentation; Response surface methodology;
D O I
暂无
中图分类号
学科分类号
摘要
The industrially significant biopolymer, alginic acid, is mainly obtained from farmed brown seaweeds. Owing to differences in structural composition of alginate isolated from various species, the bacterial alginate has gained significant importance. Pakistan meets the industrial demand of alginate by importing it from developed countries. The current research was planned to assess the potential of apple peels (Malus domestica) for alginate production by using Azotobacter vinelandii through solid-state fermentation. Various cultural parameters were optimized using CCD of response surface methodology (RSM) like incubation days, pH, temperature and inoculum volume. Maximum yield of alginate (180.64 mg/gds) was achieved by fermentation of apple peels at substrate water ratio of 1:3 for 2 days with 3 mL volume of inoculum at pH 7.5 and 37.5 °C. Statistical analysis showed the F value and p value as 10.93 and 0.00 that indicates that the proposed model was highly significant. The goodness of fit of the model was determined by a coefficient of determination (R2) having a value of 90.5% indicating the accuracy of the model. Alginate produced was quantified by HPLC method and was found to be 97% pure in contrast to standard (100% pure of Sigma-Aldrich). The results indicated that alginate can be efficiently produced through solid-state fermentation by utilizing cheap fruit by-product as the substrate.
引用
收藏
页码:1269 / 1277
页数:8
相关论文
共 104 条
[11]  
Mustapha WA(2014)Small scale production and characterization of alginate from JAPS 24 1430-2536
[12]  
Sarmidi MR(2012) using different substrates under various stress conditions Food Bioprod Process 90 597605-1519
[13]  
Aziz R(2019)Potential of Waste Biomass Valor 10 2527-324
[14]  
Enshasy HAE(2016) waste for the production of alginic acid by fermentation JAPS 26 1514-166
[15]  
Moresi M(2019)Bioconversion of agricultural waste to butyric acid through solid state fermentation by J Chem Soc Pak 4 319-38
[16]  
Sebastiani I(2018)Potential use of agricultural wastes for the production of lipase by MOJ Biol Med 3 160-214
[17]  
Wiley DE(2014) under solid state fermentation Life Sci J 11 29-145
[18]  
Hay ID(2013)Utility of apple pomace as a substrate for various products: a review J Chromatogr Sci 51 208-193
[19]  
Rehman ZU(2014)Pectinase production from Rev Romaine Chim 59 135-519
[20]  
Moradali MF(1991) through central composite design using citrus waste and its immobilization for industrial exploitation Carbohydr Res 15 171-75