Javascript must be enabled to continue!
Production of gluconic acid from sweet potato peels using naturally occurring fungi by submerged fermentation
View through CrossRef
The oxidation of glucose produces gluconic acid, a significant organic acid. The aim of this study was to produce gluconic acid from sweet potato peels by submerged fermentation. Isolation and identification of fungi were done using standard microbiological methods. Proximate analysis of substrate and screening of fungal isolates for gluconic acid production was done using standard procedures. Gluconic acid yields were determined using High Performance Liquid Chromatography. A standard gluconic acid producer, Aspergillus niger ATCC 10577, was used as control. A sum of six different fungal species were isolated and identified. They included Aspergillus niger, Aspergillus flavus, Penicillum sp., Cladosporium sp., Rhizopus stolonifer and Aspergillus terreus. Proximate composition of the sweet potato peels showed percentage carbohydrate of 20.81 ± 0.07, percentage moisture of 64.02 ± 0.27. Screening for gluconic acid production showed that Aspergillus niger had the highest zone of clearance and identified as Aspergillus niger UFMGCB 14248. Our data further showed that gluconic acid concentrations (mg/ml) was highest at substrate concentration 50 g/L, carbon source starch, incubation day 7 and pH 6 for both Aspergillus niger UFMGCB 14248 and Aspergillus niger ATCC 10577. The findings showed that the fungal isolates used in this study were good gluconic acid producers
Title: Production of gluconic acid from sweet potato peels using naturally occurring fungi by submerged fermentation
Description:
The oxidation of glucose produces gluconic acid, a significant organic acid.
The aim of this study was to produce gluconic acid from sweet potato peels by submerged fermentation.
Isolation and identification of fungi were done using standard microbiological methods.
Proximate analysis of substrate and screening of fungal isolates for gluconic acid production was done using standard procedures.
Gluconic acid yields were determined using High Performance Liquid Chromatography.
A standard gluconic acid producer, Aspergillus niger ATCC 10577, was used as control.
A sum of six different fungal species were isolated and identified.
They included Aspergillus niger, Aspergillus flavus, Penicillum sp.
, Cladosporium sp.
, Rhizopus stolonifer and Aspergillus terreus.
Proximate composition of the sweet potato peels showed percentage carbohydrate of 20.
81 ± 0.
07, percentage moisture of 64.
02 ± 0.
27.
Screening for gluconic acid production showed that Aspergillus niger had the highest zone of clearance and identified as Aspergillus niger UFMGCB 14248.
Our data further showed that gluconic acid concentrations (mg/ml) was highest at substrate concentration 50 g/L, carbon source starch, incubation day 7 and pH 6 for both Aspergillus niger UFMGCB 14248 and Aspergillus niger ATCC 10577.
The findings showed that the fungal isolates used in this study were good gluconic acid producers.
Related Results
In silico advancement of Aspergillus niger gluconic acid hyperproduction recommends plans for switching acid productivity
In silico advancement of Aspergillus niger gluconic acid hyperproduction recommends plans for switching acid productivity
Background: Non-toxic, non-volatile organic acid, gluconic acid (pentahydroxycaproic acid) is found in abundance in honey and plants and in wines. Gluconic acid and its salts are u...
Penerapan Model Geographically Weighted Regression(GWR) Pada Produksi Ubi Jalar
Penerapan Model Geographically Weighted Regression(GWR) Pada Produksi Ubi Jalar
Sweet potatoes are a major source of carbohydrate, after rice, corn, and cassava. Sweet potato is consumed as an additional or side meal, except in Irian Jaya and Maluku, sweet pot...
On Farm Diversity and Genetic Erosion of Sweet potato [Ipomoea batatas (L.) Lam.] inHaramaya District, East Haraghe, Ethiopia
On Farm Diversity and Genetic Erosion of Sweet potato [Ipomoea batatas (L.) Lam.] inHaramaya District, East Haraghe, Ethiopia
Abstract
Sweet potato [Ipomoea batatas (L.) Lam.] varieties can be distinguished by their flesh and skin colors (white, yellow, orange, and purple). Loss of crop diversity ...
British Food Journal Volume 46 Issue 11 1944
British Food Journal Volume 46 Issue 11 1944
1. From the information given to the Committee by members of the trade the following conclusions were drawn : (i) Four main types of product are sold under a name commonly includin...
Comparison of Functional and Nutritional Properties of Potato Peel Waste as Alternative for Potato Flour
Comparison of Functional and Nutritional Properties of Potato Peel Waste as Alternative for Potato Flour
Abstract
The primary objective of this study was to assess the bio-functional, nutritional, physicochemical, and morphological characteristics of potato peel flour derive...
Analysis of Factors Influencing Orange Fleshed Sweet Potato Adoption among Smallholder Farmers in Sierra Leone
Analysis of Factors Influencing Orange Fleshed Sweet Potato Adoption among Smallholder Farmers in Sierra Leone
This study examined the factors influencing the OFSP adoption among smallholder farmers in Sierra Leone. Logistic regression was used to examine factors affecting the adoption of i...
The Effects of Additioning Purple Sweet Potato Flour (Ipomoea batatas L.) on The Characteristics of White Dragon Fruit Pudding (Selenicereus undatus)
The Effects of Additioning Purple Sweet Potato Flour (Ipomoea batatas L.) on The Characteristics of White Dragon Fruit Pudding (Selenicereus undatus)
Pudding is one of the processed foods made by mixing agar powder into water, milk, fruit pulp, to vegetable pulp which can produce a gel and has a soft texture. White dragon fruit ...
Pemanfaatan Tanaman Menjalar Menjadi Makanan Ubi Crispy Pedas
Pemanfaatan Tanaman Menjalar Menjadi Makanan Ubi Crispy Pedas
Ubi jalar merupakan salah satu komoditas pangan lokal yang mudah untuk dibudidayakan, khususnya di Papua Barat ada beberapa varietas lokal ubi jalar yang dihasilkan. Selama ini ubi...

