Matches in SemOpenAlex for { <https://semopenalex.org/work/W2959014468> ?p ?o ?g. }
- W2959014468 abstract "Multiple response optimizations of ultrasound‐assisted water extraction (UAWE) conditions for the extraction of phenolic compounds from Morus nigra L. leaves were investigated. The experimental design and optimization of the UAWE were performed using response surface methodology (RSM) coupled with a central composite design (CCD). The optimum conditions of UAWE were determined as extraction time: 15 min, solvent:solid ratio: 85 mL/g and extraction temperature: 55°C. The optimized UAWE was compared with conventional extraction (CE) and it was observed that TPC (21.78 ± 0.50 mg GAE/g dw), TFC (11.70 ± 0.26 mg CAT/g dw), and TAA (66.37 ± 0.66% 1,1‐diphenyl‐2‐picrylhydrazyl [DPPH]) in UAWE were higher than CE. The polyphenolic profile of the extracts obtained from both methods was evaluated and most of the 16 phenolic compounds especially chlorogenic acid (3.47 ± 0.06 mg/g dw), kaempferol (1.39 ± 0.02 mg/g dw) and quarcetin hydrate (1.92 ± 0.01 mg/g dw) were found in higher amounts in UAWE extracts. PRACTICAL APPLICATIONS: Black mulberry leaf extract, which is an important source for antioxidants and especially phenolic compounds, has a potential to become a supplement and functional food. Herbal infusion or tea prepared from black mulberry leaves can be an alternative to mostly consumed tea. The extraction and purification of natural antioxidant substances from plant sources make it possible to use these substances in the food industry. It is therefore important to optimize the extraction conditions of natural antioxidants and identify the substances in the extracts obtained. In this study, UAWE for high extraction yield at low temperature was also preferred to extract high quantities of phenolic compounds, which are heat sensitive. UAWE for phenolic extraction from black mulberry leaves was optimized by RSM. The optimized and improved extraction technique obtained from this study can contribute to the food industry by being used in large‐scale industrial applications." @default.
- W2959014468 created "2019-07-23" @default.
- W2959014468 creator A5014714812 @default.
- W2959014468 creator A5068150154 @default.
- W2959014468 creator A5074262475 @default.
- W2959014468 creator A5082173236 @default.
- W2959014468 date "2019-07-10" @default.
- W2959014468 modified "2023-10-16" @default.
- W2959014468 title "Optimization of ultrasound‐assisted water extraction conditions for the extraction of phenolic compounds from black mulberry leaves ( Morus nigra L.)" @default.
- W2959014468 cites W1880867187 @default.
- W2959014468 cites W1899134642 @default.
- W2959014468 cites W1965606785 @default.
- W2959014468 cites W1965864482 @default.
- W2959014468 cites W1968098666 @default.
- W2959014468 cites W1972155313 @default.
- W2959014468 cites W1974658061 @default.
- W2959014468 cites W1974797818 @default.
- W2959014468 cites W1978409566 @default.
- W2959014468 cites W1978791478 @default.
- W2959014468 cites W1984535989 @default.
- W2959014468 cites W1987608257 @default.
- W2959014468 cites W1989838657 @default.
- W2959014468 cites W1990126291 @default.
- W2959014468 cites W2000201313 @default.
- W2959014468 cites W2003522273 @default.
- W2959014468 cites W2004587319 @default.
- W2959014468 cites W2009240125 @default.
- W2959014468 cites W2013372160 @default.
- W2959014468 cites W2017657818 @default.
- W2959014468 cites W2023812636 @default.
- W2959014468 cites W2024352719 @default.
- W2959014468 cites W2024818458 @default.
- W2959014468 cites W2025834910 @default.
- W2959014468 cites W2030209548 @default.
- W2959014468 cites W2033131420 @default.
- W2959014468 cites W2034951053 @default.
- W2959014468 cites W2040491193 @default.
- W2959014468 cites W2044335036 @default.
- W2959014468 cites W2044344623 @default.
- W2959014468 cites W2069454879 @default.
- W2959014468 cites W2071378525 @default.
- W2959014468 cites W2072862601 @default.
- W2959014468 cites W2073186739 @default.
- W2959014468 cites W2078135174 @default.
- W2959014468 cites W2078550570 @default.
- W2959014468 cites W2080481198 @default.
- W2959014468 cites W2081963497 @default.
- W2959014468 cites W2090146571 @default.
- W2959014468 cites W2093657150 @default.
- W2959014468 cites W2093751113 @default.
- W2959014468 cites W2100757875 @default.
- W2959014468 cites W2110488111 @default.
- W2959014468 cites W2126969624 @default.
- W2959014468 cites W2127039838 @default.
- W2959014468 cites W2134482383 @default.
- W2959014468 cites W2164159809 @default.
- W2959014468 cites W2169437161 @default.
- W2959014468 cites W2264108361 @default.
- W2959014468 cites W2295806570 @default.
- W2959014468 cites W2408587190 @default.
- W2959014468 cites W2556091366 @default.
- W2959014468 cites W2560577928 @default.
- W2959014468 cites W2563851118 @default.
- W2959014468 cites W2578364439 @default.
- W2959014468 cites W2582429662 @default.
- W2959014468 cites W2586839281 @default.
- W2959014468 cites W2770408014 @default.
- W2959014468 cites W2793381427 @default.
- W2959014468 cites W596920516 @default.
- W2959014468 doi "https://doi.org/10.1111/jfpe.13132" @default.
- W2959014468 hasPublicationYear "2019" @default.
- W2959014468 type Work @default.
- W2959014468 sameAs 2959014468 @default.
- W2959014468 citedByCount "11" @default.
- W2959014468 countsByYear W29590144682020 @default.
- W2959014468 countsByYear W29590144682021 @default.
- W2959014468 countsByYear W29590144682022 @default.
- W2959014468 crossrefType "journal-article" @default.
- W2959014468 hasAuthorship W2959014468A5014714812 @default.
- W2959014468 hasAuthorship W2959014468A5068150154 @default.
- W2959014468 hasAuthorship W2959014468A5074262475 @default.
- W2959014468 hasAuthorship W2959014468A5082173236 @default.
- W2959014468 hasConcept C126838900 @default.
- W2959014468 hasConcept C143753070 @default.
- W2959014468 hasConcept C144027150 @default.
- W2959014468 hasConcept C185592680 @default.
- W2959014468 hasConcept C2778395939 @default.
- W2959014468 hasConcept C43617362 @default.
- W2959014468 hasConcept C4725764 @default.
- W2959014468 hasConcept C556039675 @default.
- W2959014468 hasConcept C59822182 @default.
- W2959014468 hasConcept C71924100 @default.
- W2959014468 hasConcept C86803240 @default.
- W2959014468 hasConceptScore W2959014468C126838900 @default.
- W2959014468 hasConceptScore W2959014468C143753070 @default.
- W2959014468 hasConceptScore W2959014468C144027150 @default.
- W2959014468 hasConceptScore W2959014468C185592680 @default.
- W2959014468 hasConceptScore W2959014468C2778395939 @default.
- W2959014468 hasConceptScore W2959014468C43617362 @default.
- W2959014468 hasConceptScore W2959014468C4725764 @default.