• Title/Summary/Keyword: cooking conditions

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Effect of sous-vide cooking conditions on the physicochemical, microbiological and microstructural properties of duck breast meat

  • Dong-Min Shin;Jong Hyeok Yune;Dong-Hyun Kim;Sung Gu Han
    • Animal Bioscience
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    • v.36 no.10
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    • pp.1596-1603
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    • 2023
  • Objective: Sous-vide cooking offers several advantages for poultry meat, including enhanced tenderness, reduced cooking loss, and improved product yield. However, in duck meat, there are challenges associated with using the sous-vide method. The prolonged cooking time at low temperatures can lead to unstable microbial and oxidative stabilities. Thus, we aimed to assess how varying sous-vide cooking temperatures and durations affect the physicochemical and microbial characteristics of duck breast meat, with the goal of identifying an optimal cooking condition. Methods: Duck breast meat (Anas platyrhynchos) aged 42 days and with an average weight of 1,400±50 g, underwent cooking under various conditions (ranging from 50℃ to 80℃) for either 60 or 180 min. Then, physicochemical, microbial, and microstructural properties of the cooked duck breast meat were assessed. Results: Different cooking conditions affected the quality attributes of the meat. The cooking loss, lightness, yellowness, Hue angle, whiteness, and thiobarbituric acid reactive substance (TBARS) values of the duck breast meat increased with the increase in cooking temperature and time. In contrast, the redness and chroma values decreased with the increase in cooking temperature and time. Cooking of samples higher than 60℃ increased the volatile basic nitrogen contents and TBARS. Microbial analysis revealed the presence of Escherichia coli and Coliform only in the samples cooked at 50℃ and raw meat. Cooking at lower temperature and shorter time increased the tenderness of the meat. Microstructure analysis showed that the contraction of myofibrils and meat density increased upon increasing the cooking temperature and time. Conclusion: Our data indicate that the optimal sous-vide method for duck breast meat was cooking at 60℃ for 60 min. This temperature and time conditions showed good texture properties and microbial stability, and low level of TBARS of the duck breast meat.

Changes in Volatile Sulfur Compounds of Garlic under Various Cooking Conditions (조리조건에 따른 마늘의 휘발성 함황화합물의 변화)

  • 배현주;전희정
    • Korean journal of food and cookery science
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    • v.18 no.3
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    • pp.365-371
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    • 2002
  • This study was performed to find the changes in volatile sulfur compounds of garlic under various cooking conditions. The volatile sulfur compounds of garlic were identified with GC and GC/MS. The results of the study were summarized as follows : Chopped garlic boiled for 30min and 60min had more volatile sulfur compounds than that of fresh garlic, while 2-vinyl-4H-1,3-dithiin decreased by boiling. Whole garlic boiled for 30min and 60min had less volatile sulfur compounds than that of fresh garlic, while allyl methyl trisulfide diallyl trisulfide increased by boiling. Analyzing the change of volatile sulfur compounds under cooking methods, the order that showed more volatile sulfur compounds was as follows : grilling > frying > steaming > boiling > microwave oven cooking > pressure cooking.

Optimization of Cooking Conditions of Brown Sauce by Sensory Evaluation and Response Surface Method (관능검사와 반응표면분석에 의한 브라운소스 제법의 최적화)

  • Kim, Sung-Kook;Lee, Seung-Ju
    • Applied Biological Chemistry
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    • v.42 no.1
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    • pp.58-62
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    • 1999
  • Method to access qualities of brown sauce and optimize its cooking conditions was studied by sensory evaluation and response surface methodology. Cooks of an hotel, sauce experts, were selected as sensory panelists, and the brown sauce cooking conditions practically used in an hotel were adopted to prepare sauce samples for the sensory test. The cooking conditions were designed with two factors, i.e., one factor of roux contents with three levels and the other factor of cooking times with three levels, which were known as most important in sauce cooking. Sensory acceptance evaluation with intensity 7 grades was applied for several sauce attributes such as color, flavour, viscosity, taste and overall. Ability of each panel to perceive the differences between the brown sauces prepared under different cooking conditions was judged, and only data of the 9 panelists proved as reliable among the 12 panelists were reflected. The acceptances by different cooking conditions were found to be in the order of 11 > 9 > 13% roux contents and 8 > 9 > 7 hr cooking times. Response surface methodology was treated with second-order model on the sensory data and the optimum cooking conditions with the highest acceptances were $10.3{\sim}10.8%$ roux content and 8 hr cooking time.

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Effects of cooking conditions on the physicochemical and sensory characteristics of dry- and wet-aged beef

  • Lee, Dongheon;Lee, Hyun Jung;Yoon, Ji Won;Ryu, Minkyung;Jo, Cheorun
    • Animal Bioscience
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    • v.34 no.10
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    • pp.1705-1716
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    • 2021
  • Objective: This study aimed to elucidate the effects of cooking conditions on the physicochemical and sensory characteristics of dry- and wet-aged beef strip loins. Methods: Dry- and wet-aged beef aged for 28 days were cooked using different cooking methods (grilling or oven roasting)×cooking temperatures (150℃ or 230℃), and their pH, 2-thiobarbituric acid reactive substances (TBARS), volatile compounds, and color were measured. Results: Cooking conditions did not affect pH; however, grilling resulted in lower TBARS but higher cooking doneness at the dry-aged beef surface compared to oven roasting (p<0.05). In descriptive sensory analysis, the roasted flavor of dry-aged beef was significantly stronger when grill-cooked compared to oven roasting. Dry-aged beef grill-cooked at 150℃ presented a higher intensity of cheesy flavor, and that grilled at 230℃ showed a greater intensity of roasted flavor compared to wet-aged beef at the same condition, respectively. Conclusion: Grilling may be effective for enhancing the unique flavor in dry-aged beef.

Soda-Anthraquinone Pulping and Alkaline Sulfite-Anthraquinone Pulping of Rice-Straw (볏짚을 이용한 소다-안트라퀴논 펄프 및 알칼리성 아황산염-안트라퀴논 펄프 제조)

  • 강진하;박성철;박성종
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.29 no.3
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    • pp.34-42
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    • 1997
  • This study was carried out to investigate the proper cooking conditions of soda-anthraquinone and alkaline sulfite-anthraquinone pulping of rice-straw, and get basic data f9r the use of rice-straw chemical pulp through the test of characteristics and physical properties of pulps made in the various cooking conditions From the experimental results , we can conclude as follows. In the soda-anthraquinone pulping of rice-straw, the optimum cooking conditions were 60 min. at $150^{\circ}C$ in the amount of caustic soda of 20% with the addition of anthraquinone(0.05%). And total yield, Kappa No. and brightness of pulp made in the condition above mentioned were 41.9%, 7.7 and 51.1 respectively. In the alkaline sulfite-anthraquinone pulping of rice-straw, the proper mixing ratio of cooking chemical(caustic soda : sodium sulfite) was 50:50. And the optimum cooking conditions were 60 min. at $150^{\circ}C$ in the amount of cooking chemical of 20% with the addition of anthraquinone(0.05%). At that time, the total yield, Kappa No, and brightness of pulp were 50.1%, 9.1 and 40.2 respectively. As a result, the alkaline sulfite-anthraquinone pulping was superior to the soda-anthraquinone pulping in the aspect of yield, but inferior in the viewpoints of Kappa No. and brightness. For the comparison of qualities of pulps made in the various cooking methods and conditions, the physical properties of four sorts of pulps were tested. As a result, soda-anthraquinone pulps were superior to alkaline sulfite-anthraquinone pulps in the various strengths excluding tear strength and brightness. On the other hand, pulps made in the condition of addition of cooking chemical of 20% were superior to pulps in the dosage of 15% in the aspects of all the strengths and brightness.

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Color Characteristics of Soybeans as Influenced by Freezing and Cooking Conditions

  • Lee, Jun-Ho;Seog, Eun-Ju;Park, Yong-Hee
    • Preventive Nutrition and Food Science
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    • v.3 no.2
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    • pp.105-110
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    • 1998
  • Color characteristic of thawed samples of frozen cooked soybean pree of selected cultivar (Gomultong) depending upon cooking temperature an dtime as well as freezing conditions were evaluated . Samples were either cooled in 4$^{\circ}C$ refrigerator (control), or frozen at - 4$0^{\circ}C$ deep freezer for 12 hrs and then stored in 4 $^{\circ}C$ refrigerator , or immersed in liquid nitrogen (LN2) and then each samples were cooked for 5, 10, 20 and 40 min at 65, 80 and 95$^{\circ}C$, respectively. Freezing effect was not significant for all color characteristics except for b. Significant cooking temperature by cooking time interacts were found for all characteristics excepts for L.

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Comparisons of Handling Practices of Culled Sheep Meat for Production of Mutton Curry

  • Mendiratta, S.K.;Kondaiah, N.;Anjaneyulu, A.S.R.;Sharma, B.D.
    • Asian-Australasian Journal of Animal Sciences
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    • v.21 no.5
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    • pp.738-744
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    • 2008
  • In most developing countries consumers purchase retail cuts from hot carcasses and prepare traditional meat products as per their convenience and requirements. In this study, effects of different post mortem handling practices on quality of meat curry from culled sheep meat have been studied. After slaughter, leg cuts were subjected to nine commonly prevalent handling conditions in India viz. deboning (boning out) and cooking within 2-3 h (1), deboning immediately and cooking after 5-6 h (2), deboning after 5-6 h and cooking (3), deboning immediately, storage at $4^{\circ}C$ for 24 h and cooking (4), chilling for 24 h at $4^{\circ}C$, deboning and cooking (5), deboning after 5-6 h, storage for 24 h at $4^{\circ}C$, and cooking (6), deboning after 5-6 h, storage for 48 h at 4??C and cooking (7), deboning after 5-6 h, freezing and cooking (8), deboning after 5-6 h, storage for 24 h at $4^{\circ}C$, freezing and cooking (9). Significant differences were observed in pH, water-holding capacity, cooking loss and shear force values. Sensory scores were significantly higher in conditions (1), (5) and (9), and significantly lower in conditions (4) and (6). From the results, it was concluded that, to have the best quality product, meat should be cooked either immediately after slaughter or should be deboned just before cooking. Storage of deboned meat at refrigerated temperature must be avoided.

The Effect of Superheated Steam Cooking Condition on Physico-Chemical and Sensory Characteristics of Chicken Breast Fillets (과열증기 처리조건에 따른 닭 가슴살의 물리·화학적 및 관능 특성)

  • Oh, Ji-Hye;Yoon, Sun;Choi, Yoon
    • Korean journal of food and cookery science
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    • v.30 no.3
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    • pp.317-324
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    • 2014
  • This study attempted to investigate the optimum cooking conditions of chicken breast fillets employing the superheated steam (SHS). The effects of SHS cooking conditions on the physico-chemical and sensory properties of chicken breast fillets were studied. Chicken breast fillets for SHS cooking were treated in six different combinations of steam temperature ($330^{\circ}C$ or $350^{\circ}C$) and cooking time (6, 8 and 10 min). As a result, when the chicken breast fillets were cooked for 8min at $330^{\circ}C$ and 6 min at $350^{\circ}C$ steam, the internal temperature of the chicken breast fillets reached $75{\sim}76^{\circ}C$. At that cooking condition, the chicken breast fillets demonstrated lower cooking loss, higher moisture content, lower hardness and fracturability, and higher springiness; further, they had more acceptable sensory properties compared to the other SHS conditions and conventional electric oven cooking (control). These results suggest that the application of SHS technology to chicken breast fillet products can reduce the cooking time and cooking loss; moreover, it can produce highly preferred chicken products compared to conventional electric oven cooking.

Effect of Pre-cooking Conditions on the Quality Characteristics of Ready-To-Eat Samgyetang

  • Triyannanto, Endy;Lee, Keun Taik
    • Food Science of Animal Resources
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    • v.35 no.4
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    • pp.494-501
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    • 2015
  • The aim of this study was to examine the effectiveness of pre-cooking conditions on the quality characteristics of ready-to-eat (RTE) Samgyetang. Raw chickens were steamed under the different conditions of 50℃/30 min (T1), 65℃/30 min (T2), 85℃/30 min (T3), and 90℃/10 min (T4) prior to retorting at 120℃ for 65 min. The results showed that pre-cooking conditions in all treated samples could reduce fat contents in breast and leg meats by 8.5-11.7% and 10.0-11.0% compared to the control, even though there were no significant differences among treatments (p>0.05). The L* and b* values of breast and leg meats treated with the higher temperature and longer time conditions were significantly higher than the control (p<0.05), while a* values tended to decrease despite of not to a significant extent (p>0.05). Moreover, apparent viscosity and water soluble protein showed insignificant differences (p>0.05) among the samples as a result of the retorting process, which might have more negative influences on the quality. T2 samples obtained significantly the highest average Quantitative Descriptive Analysis (QDA) score and transmittance value, representing the most clear broth among the samples, compared to the control. On the other hand, T3 showed the highest cooking loss among the treatments and the lowest QDA scores among the samples. In conclusion, pre-cooking treatment prior to retorting in manufacturing Samgyetang is a plausible way to reduce its fat content. A pre-cooking condition at either 65℃ for 30 min, or 90℃ for 10 min are recommended for producing Samgyetang with optimum quality.

Changes in Phytochemical Stability and Food Functionality during Cooking and Processing (식품의 조리.가공 공정 중 phytochemical 및 기능성의 변화)

  • Kim, Hyun-Jung;Chun, Hyang-Sook
    • Korean journal of food and cookery science
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    • v.22 no.3 s.93
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    • pp.402-417
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    • 2006
  • Research interest on functional food and phytochemicals has mainly focused on their health effects, mechanism of action and structure-activity relationship for the development of nutraceuticals. Considering the intake of phytochemicals via the normal diet, further information is required on changes in food functionality or individual phytochemicals that occur during the cooking or processing of foods, in order to increase the intake of these bioactive compounds, because many of the unit-operating procedures involved in cooking or food processing may result in physicochemical changes of food constituents. This study reviews the changes of selected phytochemicals, i.e. flavonoids, organosulfur compounds and carotenoids, or food functionality by major cooking or processing procedures such as heating, fermentation, and pH changes. In general, heating has a negative effect on food functionality, although in some cases, mild heating increases bioactive phytochemical contents. Some phytochemicals, including anthocyanins and catechins, are stabilized in lower pH conditions. The structures of phytochemicals, including isoflavones and catechins, are changed by fermentation. The loss of bioactive compounds may be decreased by recently developed cooking or processing methods such as microwave cooking or use of high hydrostatic pressure. However, the effects of cooking and processing procedures on food functionality and phytochemicals are so diverse and dependent on test conditions that further research efforts are needed to form accurate conclusions on the effects of cooking and processing of foods.