Instant tea from Condonopsis javanica L. root extract via spray drying

Introduction. Codonopsis javanica L. root is a gingsen-like medicinal material with valuable bioactive compounds and alkaloids in its composition. However, the diversification of commercial products from Codonopsis javanica root extract is limited and poorly represented on the market. This study pre...

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Main Authors: Nguyen Phu Thuong Nhan, Nguyen Duong Vu, Le Van Thanh, Than Thi Minh Phuong, Long Giang Bach, Tran Quoc Toan
Format: Article
Language:English
Published: Kemerovo State University 2020-10-01
Series:Foods and Raw Materials
Subjects:
Online Access:http://jfrm.ru/files/archive/16/Nhan.pdf
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spelling doaj-5bd411190d37465e9dbe99a3811600ce2020-11-25T04:08:08ZengKemerovo State UniversityFoods and Raw Materials2308-40572310-95992020-10-018238539110.21603/2308-4057-2020-2-385-391Instant tea from Condonopsis javanica L. root extract via spray dryingNguyen Phu Thuong Nhan0Nguyen Duong Vu1Le Van Thanh2Than Thi Minh Phuong3Long Giang Bach4https://orcid.org/0000-0003-1160-6705Tran Quoc Toan5https://orcid.org/0000-0003-0760-5750Nguyen Tat Thanh University, NTT Hi-Tech InstituteNguyen Tat Thanh University, NTT Hi-Tech InstituteCenter of Research, Application and Service Science and Technology, Department of Science and TechnologyCenter of Research, Application and Service Science and Technology, Department of Science and TechnologyNguyen Tat Thanh University, NTT Hi-Tech InstituteInstitute of Natural Products Chemistry, Vietnam Academy of Science and TechnologyIntroduction. Codonopsis javanica L. root is a gingsen-like medicinal material with valuable bioactive compounds and alkaloids in its composition. However, the diversification of commercial products from Codonopsis javanica root extract is limited and poorly represented on the market. This study presents a new production process of an instant tea product from Codonopsis javanica root extract, which involved spray drying with maltodextrin as a drying additive. Study objects and methods. The research featured different process parameters including a drying additive concentration, a drying temperature, and a feed flow rate. Moisture content and drying yield were selected as the main outcomes. Results and discussion. In general, the improved drying yield was associated with an increased drying additive concentration, a lower drying temperature, and a higher feed flow rate. The best drying yield (78.35%) was obtained at the drying additive concentration of 30% (w/w), the drying temperature of 140°C, and the feed flow rate of 300 mL/h. The total saponin content in the product was 0.29% (w/w), and the ABTS free radical scavenging ability reached 59.48 μgAA/g. The obtained powder was spherical and exhibited fairly uniform particle morphology with shriveled and concave outer surface. Conclusion. The research results justified the use of Codonopsis javanica as an ingredient in beverage industry and suggested maltodextrin as an appropriate substrate for spray-drying natural extracts.http://jfrm.ru/files/archive/16/Nhan.pdfcodonopsis javanicaroot extractinstant teaspray dryingmaltodextrinprocess optimizationantioxidant activitysaponin
collection DOAJ
language English
format Article
sources DOAJ
author Nguyen Phu Thuong Nhan
Nguyen Duong Vu
Le Van Thanh
Than Thi Minh Phuong
Long Giang Bach
Tran Quoc Toan
spellingShingle Nguyen Phu Thuong Nhan
Nguyen Duong Vu
Le Van Thanh
Than Thi Minh Phuong
Long Giang Bach
Tran Quoc Toan
Instant tea from Condonopsis javanica L. root extract via spray drying
Foods and Raw Materials
codonopsis javanica
root extract
instant tea
spray drying
maltodextrin
process optimization
antioxidant activity
saponin
author_facet Nguyen Phu Thuong Nhan
Nguyen Duong Vu
Le Van Thanh
Than Thi Minh Phuong
Long Giang Bach
Tran Quoc Toan
author_sort Nguyen Phu Thuong Nhan
title Instant tea from Condonopsis javanica L. root extract via spray drying
title_short Instant tea from Condonopsis javanica L. root extract via spray drying
title_full Instant tea from Condonopsis javanica L. root extract via spray drying
title_fullStr Instant tea from Condonopsis javanica L. root extract via spray drying
title_full_unstemmed Instant tea from Condonopsis javanica L. root extract via spray drying
title_sort instant tea from condonopsis javanica l. root extract via spray drying
publisher Kemerovo State University
series Foods and Raw Materials
issn 2308-4057
2310-9599
publishDate 2020-10-01
description Introduction. Codonopsis javanica L. root is a gingsen-like medicinal material with valuable bioactive compounds and alkaloids in its composition. However, the diversification of commercial products from Codonopsis javanica root extract is limited and poorly represented on the market. This study presents a new production process of an instant tea product from Codonopsis javanica root extract, which involved spray drying with maltodextrin as a drying additive. Study objects and methods. The research featured different process parameters including a drying additive concentration, a drying temperature, and a feed flow rate. Moisture content and drying yield were selected as the main outcomes. Results and discussion. In general, the improved drying yield was associated with an increased drying additive concentration, a lower drying temperature, and a higher feed flow rate. The best drying yield (78.35%) was obtained at the drying additive concentration of 30% (w/w), the drying temperature of 140°C, and the feed flow rate of 300 mL/h. The total saponin content in the product was 0.29% (w/w), and the ABTS free radical scavenging ability reached 59.48 μgAA/g. The obtained powder was spherical and exhibited fairly uniform particle morphology with shriveled and concave outer surface. Conclusion. The research results justified the use of Codonopsis javanica as an ingredient in beverage industry and suggested maltodextrin as an appropriate substrate for spray-drying natural extracts.
topic codonopsis javanica
root extract
instant tea
spray drying
maltodextrin
process optimization
antioxidant activity
saponin
url http://jfrm.ru/files/archive/16/Nhan.pdf
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