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Functionality and Storability of Cookies Fortified at the Industrial Scale with up to 75% of Apple Pomace Flour Produced by Dehydration

Thumbnail
2019
4964.pdf (1.858Mb)
Autori
Zlatanović, Snežana
Kalušević, Ana
Micić, Darko
Laličić-Petronijević, Jovanka
Tomić, Nikola
Ostojić, Sanja
Gorjanović, Stanislava
Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
Apple pomace flour (APF) with high content of dietary fibers (DF), total polyphenolics (TPCs) and flavonoids (TFCs) was produced at the industrial scale. Bulk and tapped density, swelling, water and oil holding capacity, solubility and hydration density of fine and coarse APF with average particle size 0.16 and 0.50 mm were compared. The effect of wheat flour substitution with 25%, 50% and 75% of fine and coarse APF was studied upon cookies production at the industrial scale and after one year of storage. Coarse APF performed better in respect to sensorial properties, content and retention of dietary compounds and antioxidant (AO) activity. The cookies with optimal share of coarse APF (50%) contained 21 g/100 g of DF and several times higher TPC, TFC as well as AO activity than control cookies, retained well health promoting compounds and maintained an intensely fruity aroma and crispy texture. They were acceptable for consumers according to the hedonic test.
Ključne reči:
antioxidant / apple pomace / dietary fiber / cookies / gluten free / polyphenolics
Izvor:
Foods, 2019, 8, 11
Izdavač:
  • MDPI, BASEL
Finansiranje / projekti:
  • Modifikacije antioksidativnog metabolizma biljaka sa ciljem povećanja tolerancije na abiotski stres i identifikacija novih biomarkera sa primenom u remedijaciji i monitoringu degradiranih staništa (RS-43010)
  • Osmotska dehidratacija hrane - energetski i ekološki aspekti održive proizvodnje (RS-31055)
  • Uticaj sorte i uslova gajenja na sadržaj bioaktivnih komponenti jagodastog i koštičavog voća i dobijanje biološki vrednih proizvoda poboljšanim i novim tehnologijama (RS-31093)

DOI: 10.3390/foods8110561

ISSN: 2304-8158

PubMed: 31717294

WoS: 000502298100039

Scopus: 2-s2.0-85075073859
[ Google Scholar ]
23
11
URI
http://aspace.agrif.bg.ac.rs/handle/123456789/4967
Kolekcije
  • Radovi istraživača / Researchers’ publications
Institucija/grupa
Poljoprivredni fakultet
TY  - JOUR
AU  - Zlatanović, Snežana
AU  - Kalušević, Ana
AU  - Micić, Darko
AU  - Laličić-Petronijević, Jovanka
AU  - Tomić, Nikola
AU  - Ostojić, Sanja
AU  - Gorjanović, Stanislava
PY  - 2019
UR  - http://aspace.agrif.bg.ac.rs/handle/123456789/4967
AB  - Apple pomace flour (APF) with high content of dietary fibers (DF), total polyphenolics (TPCs) and flavonoids (TFCs) was produced at the industrial scale. Bulk and tapped density, swelling, water and oil holding capacity, solubility and hydration density of fine and coarse APF with average particle size 0.16 and 0.50 mm were compared. The effect of wheat flour substitution with 25%, 50% and 75% of fine and coarse APF was studied upon cookies production at the industrial scale and after one year of storage. Coarse APF performed better in respect to sensorial properties, content and retention of dietary compounds and antioxidant (AO) activity. The cookies with optimal share of coarse APF (50%) contained 21 g/100 g of DF and several times higher TPC, TFC as well as AO activity than control cookies, retained well health promoting compounds and maintained an intensely fruity aroma and crispy texture. They were acceptable for consumers according to the hedonic test.
PB  - MDPI, BASEL
T2  - Foods
T1  - Functionality and Storability of Cookies Fortified at the Industrial Scale with up to 75% of Apple Pomace Flour Produced by Dehydration
IS  - 11
VL  - 8
DO  - 10.3390/foods8110561
ER  - 
@article{
author = "Zlatanović, Snežana and Kalušević, Ana and Micić, Darko and Laličić-Petronijević, Jovanka and Tomić, Nikola and Ostojić, Sanja and Gorjanović, Stanislava",
year = "2019",
abstract = "Apple pomace flour (APF) with high content of dietary fibers (DF), total polyphenolics (TPCs) and flavonoids (TFCs) was produced at the industrial scale. Bulk and tapped density, swelling, water and oil holding capacity, solubility and hydration density of fine and coarse APF with average particle size 0.16 and 0.50 mm were compared. The effect of wheat flour substitution with 25%, 50% and 75% of fine and coarse APF was studied upon cookies production at the industrial scale and after one year of storage. Coarse APF performed better in respect to sensorial properties, content and retention of dietary compounds and antioxidant (AO) activity. The cookies with optimal share of coarse APF (50%) contained 21 g/100 g of DF and several times higher TPC, TFC as well as AO activity than control cookies, retained well health promoting compounds and maintained an intensely fruity aroma and crispy texture. They were acceptable for consumers according to the hedonic test.",
publisher = "MDPI, BASEL",
journal = "Foods",
title = "Functionality and Storability of Cookies Fortified at the Industrial Scale with up to 75% of Apple Pomace Flour Produced by Dehydration",
number = "11",
volume = "8",
doi = "10.3390/foods8110561"
}
Zlatanović, S., Kalušević, A., Micić, D., Laličić-Petronijević, J., Tomić, N., Ostojić, S.,& Gorjanović, S.. (2019). Functionality and Storability of Cookies Fortified at the Industrial Scale with up to 75% of Apple Pomace Flour Produced by Dehydration. in Foods
MDPI, BASEL., 8(11).
https://doi.org/10.3390/foods8110561
Zlatanović S, Kalušević A, Micić D, Laličić-Petronijević J, Tomić N, Ostojić S, Gorjanović S. Functionality and Storability of Cookies Fortified at the Industrial Scale with up to 75% of Apple Pomace Flour Produced by Dehydration. in Foods. 2019;8(11).
doi:10.3390/foods8110561 .
Zlatanović, Snežana, Kalušević, Ana, Micić, Darko, Laličić-Petronijević, Jovanka, Tomić, Nikola, Ostojić, Sanja, Gorjanović, Stanislava, "Functionality and Storability of Cookies Fortified at the Industrial Scale with up to 75% of Apple Pomace Flour Produced by Dehydration" in Foods, 8, no. 11 (2019),
https://doi.org/10.3390/foods8110561 . .

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