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    Optimization of Spray Drying Parameters for Pink Guava Powder Using RSM

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    https://www.riss.kr/link?id=A104490123

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The optimization of pink guava was executed using central composite face-centred design to optimize the spray drying parameters of inlet temperature, maltodextrin concentration (MDC) and feed flow (FF). The experimental results were significantly (p<0.01) fitted into second-order polynomial models to describe and predict the response quality in terms of the final moisture, particle size and lycopene with R2 of 0.9749, 0.9616, and 0.9505, respectively. The final moisture content significantly (p<0.01) decreased with increasing inlet temperature and MDC, whereas the particle size increased. In contrast, the lycopene content significantly (p<0.01) decreased with the higher temperature and increased with increasing MDC. However, according to multiple response optimization, the optimum conditions of 150oC inlet temperature, 17.12% (w/v) MDC and 350 mL/h FF-predicted 3.10% moisture content, 11.23 μm particle size and 58.71 mg/100 g lycopene content. The experimental observation satisfied the predicted model within the acceptable range of the responses.
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    The optimization of pink guava was executed using central composite face-centred design to optimize the spray drying parameters of inlet temperature, maltodextrin concentration (MDC) and feed flow (FF). The experimental results were significantly (p&l...

    The optimization of pink guava was executed using central composite face-centred design to optimize the spray drying parameters of inlet temperature, maltodextrin concentration (MDC) and feed flow (FF). The experimental results were significantly (p<0.01) fitted into second-order polynomial models to describe and predict the response quality in terms of the final moisture, particle size and lycopene with R2 of 0.9749, 0.9616, and 0.9505, respectively. The final moisture content significantly (p<0.01) decreased with increasing inlet temperature and MDC, whereas the particle size increased. In contrast, the lycopene content significantly (p<0.01) decreased with the higher temperature and increased with increasing MDC. However, according to multiple response optimization, the optimum conditions of 150oC inlet temperature, 17.12% (w/v) MDC and 350 mL/h FF-predicted 3.10% moisture content, 11.23 μm particle size and 58.71 mg/100 g lycopene content. The experimental observation satisfied the predicted model within the acceptable range of the responses.

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    참고문헌 (Reference)

    1 Martinelli L, "Thermodynamic and quality properties of lemon juice powder as affected by maltodextrin and arabic gum" 25 : 2035-2045, 2007

    2 Quek SY, "The physicochemical properties of spray-dried watermelon powders" 46 : 386-392, 2007

    3 Sommano S, "The impact of thermal processing on bioactive compounds in Australian native food products (bush tomato and Kakadu plum)" 50 : 557-561, 2013

    4 Nijdam JJ, "The effect of surface composition on the functional properties of milk powders" 77 : 919-925, 2006

    5 Abreu JR, "Sugar fractionation and pectin content during the ripening of guava cv. Pedro Sato" 32 : 156-162, 2012

    6 Carrillo-Navas H, "Storage stability and physicochemical properties of passion fruit juice microcapsules by spray-drying" 10 : 421-430, 2011

    7 Somayajula A, "Sonoelectrochemical oxidation for decolorization of Reactive Red 195" 19 : 803-811, 2012

    8 Cabral ACS, "Retention of the enzymatic activity and product properties during spray drying of pineapple stem extract in presence of maltodextrin" 12 : 536-548, 2009

    9 Myers RH, "Response surface methodology: Process and product optimization using designed experiments" John Wiley and Sons, Inc. 704-, 2002

    10 Yadava UL, "Progress in New Crops" ASHS Press 451-457, 1996

    1 Martinelli L, "Thermodynamic and quality properties of lemon juice powder as affected by maltodextrin and arabic gum" 25 : 2035-2045, 2007

    2 Quek SY, "The physicochemical properties of spray-dried watermelon powders" 46 : 386-392, 2007

    3 Sommano S, "The impact of thermal processing on bioactive compounds in Australian native food products (bush tomato and Kakadu plum)" 50 : 557-561, 2013

    4 Nijdam JJ, "The effect of surface composition on the functional properties of milk powders" 77 : 919-925, 2006

    5 Abreu JR, "Sugar fractionation and pectin content during the ripening of guava cv. Pedro Sato" 32 : 156-162, 2012

    6 Carrillo-Navas H, "Storage stability and physicochemical properties of passion fruit juice microcapsules by spray-drying" 10 : 421-430, 2011

    7 Somayajula A, "Sonoelectrochemical oxidation for decolorization of Reactive Red 195" 19 : 803-811, 2012

    8 Cabral ACS, "Retention of the enzymatic activity and product properties during spray drying of pineapple stem extract in presence of maltodextrin" 12 : 536-548, 2009

    9 Myers RH, "Response surface methodology: Process and product optimization using designed experiments" John Wiley and Sons, Inc. 704-, 2002

    10 Yadava UL, "Progress in New Crops" ASHS Press 451-457, 1996

    11 Cai YZ, "Production and properties of spray-dried amaranthus betacyanin pigments" 65 : 1248-1252, 2000

    12 Ng Lay Tze, "Physicochemical and Nutritional Properties of Spray-dried Pitaya Fruit Powder as Natural Colorant" 한국식품과학회 21 (21): 675-682, 2012

    13 Hong JH, "Physico-chemical properties of protein-bound polysaccharide from Agaricus blazei Murill prepared by ultrafiltration and spray drying process" 42 : 1-8, 2007

    14 Flores G, "Phenolicrich extract from the Costa Rican guava (Psidium friedrichsthalianum) pulp with antioxidant and anti-inflammatory activity. Potential for COPD therapy" 141 : 889-895, 2013

    15 Barbosa-Canovas GV, "Particle size distribution in food powders" 1 : 303-328, 2012

    16 Patil V, "Optimization of the spray-drying process for developing guava powder using response surface methodology" 253 : 230-236, 2014

    17 Atalar I, "Optimization of spray drying process parameters for kefir powder using response surface methodology" 60 : 751-757, 2015

    18 Manivannan P, "Optimization of process parameters for the osmotic dehydration of beetroot in sugar solution" 34 : 804-825, 2011

    19 Kong KW, "Optimization of oven drying conditions for lycopene content and lipophilic antioxidant capacity in a by-product of the pink guava puree industry using response surface methodology" 43 : 729-735, 2010

    20 Anekella K, "Optimization of microencapsulation of probiotics in raspberry juice by spray drying" 50 : 17-24, 2013

    21 Kim SO, "Optimization of homogenization–evaporation process for lycopene nanoemulsion production and its beverage applications" 79 : 1604-1610, 2014

    22 Ilaiyaraja N, "Optimisation of extraction of bioactive compounds from Feronia limonia (wood apple) fruit using response surface methodology (RSM)" 173 : 348-354, 2015

    23 AOAC, "Official methods of analysis of AOAC. 15th e d. M eth od 9 34.01"

    24 Anguelova T, "Lycopene stability in tomato powders" 65 : 67-70, 2000

    25 Goula AM, "Influence of spray drying conditions on tomato powder properties" 22 : 1129-1151, 2004

    26 Tonon RV, "Influence of process conditions on the physicochemical properties of acai (Euterpe oleraceae Mart.) powder produced by spray drying" 88 : 411-418, 2008

    27 Shrestha AK, "Glass transition behavior of spray dried orange juice powder measured by differential scanning calorimetry (DSC) and thermal mechanical compression test (TMCT)" 10 : 661-673, 2007

    28 Kha TC, "Effects of spray drying conditions on the physicochemical and antioxidant properties of the gac (momordica cochinchinensis) fruit aril powder" 98 : 385-392, 2010

    29 Nora CD, "Effect of processing on the stability of bioactive compounds from red guava (Psidium cattleyanum Sabine) and guabiju (Myrcianthes pungens)" 34 : 2014

    30 Heredia A, "Effect of osmotic pre-treatment and microwave heating on lycopene degradation and isomerization in cherry tomato" 123 : 92-98, 2010

    31 Mishraa P, "Effect of maltodextrin concentration and inlet temperature during spray drying on physicochemical and antioxidant properties of amla (emblica officinalis) juice powder" 92 : 252-258, 2014

    32 Design-expert, "Design of expert, Version, 7.1.5" State-Ease, Inc. 2008

    33 Rodriguez-Amaya DB, "Critical Review:Updated Brazilian database on food carotenoids: Factors affecting carotenoid composition" 21 : 445-463, 2008

    34 Flores G, "Chemical composition and antioxidant activity of seven cultivars of guava (Psidium guajava) fruits" 170 : 327-335, 2015

    35 Mercadante AZ, "Carotenoids from guava (Psidium guajava L): Isolation and structure elucidation" 47 : 145-151, 1999

    36 Ojowole JAO, "Anti-inflammatory and analgesic effects of Psidium guajava Linn (Myrtaceae) leaf aqueous extract in rats and mice" 28 : 441-446, 2006

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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.75 0.17 0.56
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.49 0.43 0.364 0.06
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