Quality Attributes and Storage Stability of Bread from Wheat–Tigernut Composite Flour

2017 ◽  
Vol 17 (1) ◽  
pp. 75-88 ◽  
Author(s):  
Emmanuel Kehinde Oke ◽  
Michael Ayodele Idowu ◽  
Olajide Philip Sobukola ◽  
H. Adegoke Bakare
2016 ◽  
Vol 39 (6) ◽  
pp. 649-657 ◽  
Author(s):  
Pavan Kumar ◽  
Manish Kumar Chatli ◽  
Nitin Mehta ◽  
O.P. Malav ◽  
Akhilesh K. Verma ◽  
...  

2018 ◽  
Vol 13 (2) ◽  
pp. 10
Author(s):  
G. Mahapatra ◽  
S. Biswas ◽  
G. Patra ◽  
A. K. Vidyarthi ◽  
R. Banerjee

Processes ◽  
2021 ◽  
Vol 9 (9) ◽  
pp. 1522
Author(s):  
Zhiyuan Cheng ◽  
Xiaoping Li ◽  
Jingwei Hu ◽  
Xin Fan ◽  
Xinzhong Hu ◽  
...  

In this study, the effects of gaseous chlorine dioxide treatment on the physicochemical properties of buckwheat-based composited flour (buckwheat-wheat-gluten) and shelf-life of fresh buckwheat noodles (FBNs), as well as the textural qualities and sensory properties of noodles were investigated. Chlorine dioxide treatment significantly reduced the total plate count (TPC) and the total flavonoids content in the mixed flour (p < 0.05), but the whiteness, development time and stability time were all increased. During storage, the microbial growth and darkening rate of FBNs made from chlorine dioxide treated buckwheat-based composite flour (CDBF) were delayed significantly, slowing the deterioration and improving storage stability of buckwheat noodles. In addition, chlorine dioxide treatment had no apparent adverse effect on the cooking loss and sensory characteristics during noodle storage. This finding would provide a new concept for the production of “low bacterial buckwheat-based flour” and have important consequences for the application of gaseous chlorine dioxide in food industry.


2019 ◽  
Vol 50 (2) ◽  
pp. 402-414 ◽  
Author(s):  
Niraj S. Jagtap ◽  
Rajesh V. Wagh ◽  
Manish Kumar Chatli ◽  
Om Prakash Malav ◽  
Pavan Kumar ◽  
...  

Purpose This paper aims to highlight the candidature of papaya/Carica papaya L. extracts (PLE) and oregano/Origanum vulgare leaves extract (OLE) as novel natural antioxidants, which was further fortified into goat meat nuggets to evaluate quality changes and storage stability at refrigeration temperature (4 ± 1ºC) for 20 days. Design/methodology/approach Three different products, namely, control (without phyto-extracts), T−1: PLE (0.5 per cent) and T-2: OLE (1.0 per cent) fortified goat meat nuggets, were prepared and subjected for various quality attributes with relation to storage stability. Findings It was observed that pH significantly (p = 0.14) decreased till 10th day of storage i.e. from 6.49 to 6.32 (control), 6.37 to 6.28 (T−1) and 6.45 to 6.43 (T-2) afterword showed increasing trend till further storage of 20 days in control, as well as treated products. Water activity was non-significant (p = 0.01) on first day of storage and decreased up to 20th day. PLE treated product showed good margin of microbiological protection followed by OLE and least was found in control. L* value showed increasing trend (p = 0.03) throughout storage and ranged from 50.15 to 54.27, while a* values were decreased significantly from 10.36 to 9.06, 10.86 to 9.49 in PLE (p = 0.02) and OLE (p = 0.03), respectively. Sensory panel awarded the highest score for fortified goat meat nuggets, justifying the best quality attributes in term of texture attributes of the treated products. Thus, papaya and oregano leave extracts proved in the extension of shelf life and can be further harvested to develop functional goat meat nuggets. Research limitations/implications In search of novel bioactive phyto-extract, meat industry focussed most of the research towards natural anti-oxidants. In the view of same, the present research strategy was planned to examine candidature of Carica papaya L. and OLEs as novel natural antioxidant into meat system during aerobic packaging storage. Goat meat nuggets are amongst the most convenient and famous snack, as well as nutritious meat products, but lacks functional properties. Therefore, with implication of present research at practical level, meat industry can develop function goat meat nuggets by incorporating Carica papaya L. and Origanum vulgare extracts as natural and novel bioactive antioxidants with improved functionality. Originality/value This is the first attempt to develop functional goat meat nuggets incorporated with papaya/Carica papaya L. and oregano/OLE. This research can lead to be a pioneer work in meat science.


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