Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production

This study aimed to compare the performance and economic efficiency of greenhouse solar and hot air drying. These are widely used and inexpensive techniques for preserved fruit production in Thailand. Two drying methods were used to dry mango fruit, var. Nam Dok Mai. During the process of both dryin...

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Main Authors: Kanokwan Kingphadung, Patsanan Kurdkaew, Prasong Siriwongwilaichat, Suphaphat Kwonpongsagoon
Other Authors: Silpakorn University
Format: Article
Published: 2022
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/73650
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spelling th-mahidol.736502022-08-04T10:48:55Z Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production Kanokwan Kingphadung Patsanan Kurdkaew Prasong Siriwongwilaichat Suphaphat Kwonpongsagoon Silpakorn University Mahidol University Center of Excellence on Environmental Health and Toxicology (EHT) Chemical Engineering This study aimed to compare the performance and economic efficiency of greenhouse solar and hot air drying. These are widely used and inexpensive techniques for preserved fruit production in Thailand. Two drying methods were used to dry mango fruit, var. Nam Dok Mai. During the process of both drying methods, the moisture content of mango slices was reduced from an average 85.6% to 12.5% wet basis. To determine the most profitable dryer system for investment, economic analyses of greenhouse solar and hot air drying, involving the main variables affecting their profitability, were investigated, including production and maintenance cost, capital costs, revenue, and drying capacities. The internal rate of return (IRR), net present value (NPV), benefit to cost ratio (BCR) and payback period (PBP) were all evaluated. The results of economic evaluation revealed that high values of IRR, NPV, and BCR, and low value of PBP made the two drying systems cost efficient. However, when the incremental rate of return (ROR) was determined, 66% incremental ROR was much greater than the minimum attractive rate of return (MARR = 4.875%). Consequently, the greenhouse solar drying method proved to be the most suitable method for small-to-medium-scale entrepreneurs to produce crispy mango. 2022-08-04T03:48:55Z 2022-08-04T03:48:55Z 2022-02-01 Article Processes. Vol.10, No.2 (2022) 10.3390/pr10020311 22279717 2-s2.0-85124382786 https://repository.li.mahidol.ac.th/handle/123456789/73650 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85124382786&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Chemical Engineering
spellingShingle Chemical Engineering
Kanokwan Kingphadung
Patsanan Kurdkaew
Prasong Siriwongwilaichat
Suphaphat Kwonpongsagoon
Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production
description This study aimed to compare the performance and economic efficiency of greenhouse solar and hot air drying. These are widely used and inexpensive techniques for preserved fruit production in Thailand. Two drying methods were used to dry mango fruit, var. Nam Dok Mai. During the process of both drying methods, the moisture content of mango slices was reduced from an average 85.6% to 12.5% wet basis. To determine the most profitable dryer system for investment, economic analyses of greenhouse solar and hot air drying, involving the main variables affecting their profitability, were investigated, including production and maintenance cost, capital costs, revenue, and drying capacities. The internal rate of return (IRR), net present value (NPV), benefit to cost ratio (BCR) and payback period (PBP) were all evaluated. The results of economic evaluation revealed that high values of IRR, NPV, and BCR, and low value of PBP made the two drying systems cost efficient. However, when the incremental rate of return (ROR) was determined, 66% incremental ROR was much greater than the minimum attractive rate of return (MARR = 4.875%). Consequently, the greenhouse solar drying method proved to be the most suitable method for small-to-medium-scale entrepreneurs to produce crispy mango.
author2 Silpakorn University
author_facet Silpakorn University
Kanokwan Kingphadung
Patsanan Kurdkaew
Prasong Siriwongwilaichat
Suphaphat Kwonpongsagoon
format Article
author Kanokwan Kingphadung
Patsanan Kurdkaew
Prasong Siriwongwilaichat
Suphaphat Kwonpongsagoon
author_sort Kanokwan Kingphadung
title Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production
title_short Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production
title_full Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production
title_fullStr Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production
title_full_unstemmed Comparison of Performance and Economic Efficiency for Greenhouse Solar versus Hot Air Drying: A Case of Crispy Mango Production
title_sort comparison of performance and economic efficiency for greenhouse solar versus hot air drying: a case of crispy mango production
publishDate 2022
url https://repository.li.mahidol.ac.th/handle/123456789/73650
_version_ 1763487339288461312