Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses

Sierrathrissaleonensis (SL) is a low valued fish in Nigeria because of its small size and availability of fleshy alternatives. Therefore, an alternative utilization of SL is crucial. In this study, SL was used to produce fish cracker (SLC). The SLC, being an intermediate product was dried to achieve...

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Main Authors: Abiola John Adeyi, Oladayo Adeyi, Emmanuel Olusola Oke, Clinton E. Okonkwo, Akinola David Ogunsola
Format: Article
Language:English
Published: Elsevier 2021-07-01
Series:Scientific African
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2468227621001113
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spelling doaj-64a5e3b2475540f3a5d24e85460267642021-08-04T04:20:18ZengElsevierScientific African2468-22762021-07-0112e00807Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analysesAbiola John Adeyi0Oladayo Adeyi1Emmanuel Olusola Oke2Clinton E. Okonkwo3Akinola David Ogunsola4Department of Mechanical Engineering, Ladoke Akintola University of Technology, P.M.B. 4000, Ogbomoso, Oyo State. Nigeria; Forestry Research Institute of Nigeria Ibadan, P.M.B. 5054, Oyo State, Nigeria.; Corresponding author at: Mechanical Engineering, Ladoke Akintola University of Technology Faculty of Engineering and Technology, Ogbomoso, Oyo, NigeriaDepartment of Chemical Engineering, Michael Okpara University of Agriculture, P.M.B 7267, Umudike Abia State NigeriaDepartment of Chemical Engineering, Michael Okpara University of Agriculture, P.M.B 7267, Umudike Abia State NigeriaLandmark University, P.M.B 1001, Omu-Aran, kwara State, NigeriaDepartment of Mechanical Engineering, Ladoke Akintola University of Technology, P.M.B. 4000, Ogbomoso, Oyo State. NigeriaSierrathrissaleonensis (SL) is a low valued fish in Nigeria because of its small size and availability of fleshy alternatives. Therefore, an alternative utilization of SL is crucial. In this study, SL was used to produce fish cracker (SLC). The SLC, being an intermediate product was dried to achieve moisture stability. During drying process, the influence of drying factors (oven air velocity, sample thickness and oven temperature) on the effective moisture diffusivity (EMD) of SLC was investigated using response surface methodology (RSM) in Design Expert software. The uncertainty of the result and the sensitivity analyses of the drying factors to the variations of EMD were conducted using Monte Carlo simulation in oracle crystal ball (OCB) software. Results showed that fish cracker could be successfully developed with SL. The initial moisture content (d.b) of the SLC was 149.23%. Increment in oven drying temperature and oven air velocity increased the EMD of the SLC while increment in SLC sample thickness decreased the EMD of the SLC. The model developed had an R2 value of 0.9865. Model terms were significant at 5% confidence level. The theoretical optimum drying condition given by RSM showed that SLC should be processed at oven air velocity, SLC sample thickness and oven temperature of 3 m/s, 3 mm and 60°C, respectively to give an EMD of 2.75E-08. The validated SLC optimum drying condition was 2.69E-008. The certainty of achieving the experimental data range was 99.831%. The EMD of SLC drying process had +80.4%, -16.2% and +3.4% sensitivity to oven temperature, sample thickness and air velocity, respectively. These results are useful for the economic utilization of SL and will also assist in energy economics and product standardization during drying processing of SLC.http://www.sciencedirect.com/science/article/pii/S2468227621001113SierrathrissaleonensisSensitivity analysisUncertainty analysisEffective moisture diffusivityCracker
collection DOAJ
language English
format Article
sources DOAJ
author Abiola John Adeyi
Oladayo Adeyi
Emmanuel Olusola Oke
Clinton E. Okonkwo
Akinola David Ogunsola
spellingShingle Abiola John Adeyi
Oladayo Adeyi
Emmanuel Olusola Oke
Clinton E. Okonkwo
Akinola David Ogunsola
Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
Scientific African
Sierrathrissaleonensis
Sensitivity analysis
Uncertainty analysis
Effective moisture diffusivity
Cracker
author_facet Abiola John Adeyi
Oladayo Adeyi
Emmanuel Olusola Oke
Clinton E. Okonkwo
Akinola David Ogunsola
author_sort Abiola John Adeyi
title Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
title_short Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
title_full Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
title_fullStr Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
title_full_unstemmed Effective moisture diffusivity of Sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
title_sort effective moisture diffusivity of sierrathrissaleonensis cracker: optimization, sensitivity and uncertainty analyses
publisher Elsevier
series Scientific African
issn 2468-2276
publishDate 2021-07-01
description Sierrathrissaleonensis (SL) is a low valued fish in Nigeria because of its small size and availability of fleshy alternatives. Therefore, an alternative utilization of SL is crucial. In this study, SL was used to produce fish cracker (SLC). The SLC, being an intermediate product was dried to achieve moisture stability. During drying process, the influence of drying factors (oven air velocity, sample thickness and oven temperature) on the effective moisture diffusivity (EMD) of SLC was investigated using response surface methodology (RSM) in Design Expert software. The uncertainty of the result and the sensitivity analyses of the drying factors to the variations of EMD were conducted using Monte Carlo simulation in oracle crystal ball (OCB) software. Results showed that fish cracker could be successfully developed with SL. The initial moisture content (d.b) of the SLC was 149.23%. Increment in oven drying temperature and oven air velocity increased the EMD of the SLC while increment in SLC sample thickness decreased the EMD of the SLC. The model developed had an R2 value of 0.9865. Model terms were significant at 5% confidence level. The theoretical optimum drying condition given by RSM showed that SLC should be processed at oven air velocity, SLC sample thickness and oven temperature of 3 m/s, 3 mm and 60°C, respectively to give an EMD of 2.75E-08. The validated SLC optimum drying condition was 2.69E-008. The certainty of achieving the experimental data range was 99.831%. The EMD of SLC drying process had +80.4%, -16.2% and +3.4% sensitivity to oven temperature, sample thickness and air velocity, respectively. These results are useful for the economic utilization of SL and will also assist in energy economics and product standardization during drying processing of SLC.
topic Sierrathrissaleonensis
Sensitivity analysis
Uncertainty analysis
Effective moisture diffusivity
Cracker
url http://www.sciencedirect.com/science/article/pii/S2468227621001113
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