• Title/Summary/Keyword: process cheese

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Studies on the Taste of Korean for Cheese (한국인(韓國人)의 치이즈 기호성(嗜好性)에 관한 연구)

  • Kim, Jong Woo;Ko, Keun Hag
    • Korean Journal of Agricultural Science
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    • v.18 no.1
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    • pp.21-32
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    • 1991
  • This experiment was carried out to examine sensory testing for Mozzarella cheese, process cheese, Cheddar cheese and Cheddar cheese made with red pepper, garlic, ginger and welsh onion to develop new cheese varieties which can be prefered by Korean. The chemical composition and sensory testing of cheese were measured. The results were summarized as follows ; 1. Total nitrogen percentages in Cheddar cheese and spiced Cheddar cheeses were similar but those in process cheese and Mozzarella cheese were low. 5% NaCl soluble nitrogen percentages were highest in Cheddar cheese. 5% NaCl soluble nitrogen percentages in each cheese were different. Ripening degree, water soluble nitrogen, TCA soluble nitrogen and SSA soluble nitrogen percentages in each cheese were similiar level. 2. Spiced Cheddar cheeses were more breakdown than other cheese and ${\alpha}_s$-casein breakdowns faster than $\beta$-casein. 3. In the result of sensory evaluation, color score was high in Mozzarella cheese and process cheese. The color score of Cheddar cheese was high in 30's-40's and 50's- 50's. The color score of 10's and 20's was high in Cheddar cheese made with garlic. 4. Odor score was high in Mozzarella cheese and process cheese, too. The odor score of Spiced Cheddar cheeses was high in 10's. 5. Texture score was high in Mozzarella cheese, process cheese and Cheddar cheese. 6. Teste score was high in Mozzarella cheese, process cheese and Cheddar cheese. The taste score of spiced Cheddar cheese was higher in 10's and 20's than that in 30's-40's and 50's-50's.

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Properties of Cholesterol-reduced Block-type Process Cheese Made by Crosslinked β-Cyclodextrin (베타사이클로덱스트린 처리에 의한 콜레스테롤 저하 블록형 가공치즈의 특성)

  • Kim, S.Y.;Park, S.Y.;Ahn, J.;Kwak, H.S.
    • Food Science of Animal Resources
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    • v.28 no.4
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    • pp.463-469
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    • 2008
  • The objective of the present study was to compare the chemical, rheological and sensory properties of regular process cheese (control) and cholesterol-reduced block-type process cheese. The cholesterol-reduced process cheese was made by accelerated ripened cholesterol-reduced Cheddar cheese and cholesterol-reduced butter treated by crosslinked $\beta$-cyclodextrin ($\beta$-CD). The composition of the block-type process cheese was similar to the control cheese. Approximately 91.0% of cholesterol removal was observed when treated by crosslinked $\beta$-CD. The production of total free amino acids was significantly higher in cholesterol-reduced process cheese in all storage periods compared with those in the control. In sensory analysis, a significantly higher score of acidic, salty and bitterness. and lower score of elasticity were found. However, no difference was found in free fatty acids, rheological properties, and TBA test between the control and cholesterol-reduced process cheese. Therefore, the present study indicated that even though some of the significant difference was observed in sensory properties in the cholesterol-reduced block-type process cheese, most of chemical and rheological properties were comparable to the control process cheese.

A Mathematical Model for the Whole Ripening Process of Cheddar Cheese (체다치즈의 숙성 전과정에 대한 수학식)

  • 김중균
    • KSBB Journal
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    • v.9 no.1
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    • pp.72-84
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    • 1994
  • A model to explain the observed kinetics in a whole process of Cheddar-cheese ripening has been developed. It includes growth and lysis of cells in the cheese matrix, cell-wall bound protelnases and intracellular dipeptidases that are released into cheese upon cell lysis, and the production of dipeptides and amino acids from casein in cheese. Model simulations have been conducted to figure out the crucial factors in the process of the cheese ripening. The influential factors have been found to be the cell numbers and the dipeptidase activity at the beginning of the cheese ripening, and the cell-lysis rate of cheese starters. The simulation results have also suggested the use of a mixed culture as well as the experimental screening for a more suitable organism as a cheese starter hence, the model shows how to accelerate the cheese ripening.

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Studies on the Textural Characteristics and the Standard for Cheese Products (치즈 제품의 조직특성 및 규격연구)

  • 함준상;정석근;김현수;홍경현;조은정;안종남;이종문
    • Food Science of Animal Resources
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    • v.23 no.1
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    • pp.70-74
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    • 2003
  • Cheese consumption in Korea has continuously increased far the last decades by industrialization and globalization. In addition, import of fresh cheese has increased from 2 tons, and 30 thousand dollars in 1991 to 20 thousand tons, and 49 million dollars in 2001. However, Korea standard for cheese differs from CODEX, and is not consistent. To investigate more proper standards for cheese, 20 natural cheeses and 17 process cheeses were obtained from market and analysed. All the cheeses except 1 soft cheese met the standard, but 'unripened cheese' was not different from 'soft cheese' in milk solid content. Natural cheese firmness showed exponential inverse relationship(R=0.8226) to moisture on a fat-free basis(MFFB) which is used for the natural cheese standard in CODEX. Therefore, it was thought appropriate to refer to CODEX standard for using textural terminology in Korea standard for natural cheese. For process cheese, milk solid cant be estimated by the analysis, and there are no merits and penalties by the classification. It was thought proper to classify the process cheese by types, such as 'Powder', 'Slice', 'Spread', and 'Portion'. Rule for 15∼34% milk solid content of products should be prepared in standard for animal products as 'Process cheese products' for the promotion of development and consumption of cheese.

Manufacture of Gouda Cheese from the Concentrated Milk by the Use of Ultrafiltration (Ultrafiltration을 이용한 Gouda Cheese의 제조)

  • Lee, Yong-Lim;Kim, Sang-Pil;Park, Hee-Kyung;Heo, Tae-Ryeon
    • Microbiology and Biotechnology Letters
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    • v.22 no.1
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    • pp.99-105
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    • 1994
  • In this study we compared traditional cheesemaking process with the process utilizing ultrafiltration(UF) system. The whole milk retentates were prepared by ultrafiltration to volume concentration ratio(VCR) of 2.00:1, 2.25:1 and 2.50:1. Along with the untreated whole milk, there were studies in terms of the change of pH, titratable acidity and Soxhlet-Henkel($\circ $SH) value by mesophilic lactic starter and curd formation by rennet during Gouda cheese manufacture. Due to the increase of buffering effect titratable acidity and $\circ $SH value increased with the higher concentration ratio. When inoculated with the same volume of mesophilic lactic starter, less pH change occurred in UF retentates than in control milk. When added 0.0025% rennet, UF retentates coagulated 16~ 17 minutes ealier then the control milk. Gouda cheese yield from raw milk and UF retentates was 12.5~13.1% equally, but yield efficiency of UF retentate cheese was slightly higher than that of the raw milk cheese. Quantity of whey from retentate cheese was inversely related to VCR. But whey from retentate cheese contained higher percentage of amjor components than that from control milk cheese. In early ripening, the concentrations of lactose and soluble nitrogen compound were higher in retentate cheeses. Lactose content of control milk cheese was 3.49% and that of 2.00:1. 2.25:1, 2.50:1 VCR retentate was 3.77%, 4.89%, 7.03%, respectively. Thus, the more concentrated cheese contained a higher amount of lactose and all the lactose was hyerolyzed durion 35-day ripenion period. Soluble nitrogen compound of control milk cheese was 1.22% and that of UF cheeses was 1.82~2.06%. After 20-day ripening, soluble nitrogen compound increased starply in UF cheese.

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Importance of Ripening during Natural Cheese Making (자연치즈의 제조과정 중 숙성의 중요성)

  • Hong, Youn-Ho
    • Journal of Dairy Science and Biotechnology
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    • v.31 no.2
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    • pp.195-200
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    • 2013
  • The ripening of cheese allows for the development of characteristic taste and flavour, nutritional substances, bio-active components and texture, helping to improve quality. Many different microbiological, biochemical and nutritional changes occur during the process depending on the quality of raw milk, added cultures and enzymes, as well as specific processing and ripening conditions. During the ripening lactose is hydrolyzed to lactic, propionic and acetic acid, helping to reduce potential effects of the problem of lactose intolerance. Fat is hydrolyzed to butyric, propionic and conjugated linoleic acid, which function as bio-active substances. Protein is hydrolyzed to different peptides and amino acids which all show various bio-activities. However, errors of cheese ripening can happen and affect the quality of the product. To guarantee good quality cheese the process needs to be managed carefully with the right microbes used and ensuring cleanliness of processing facilities, staff, ventilation and hazard analysis and critical control points (HACCP). Research into and controlling of ripening technology is crucial for producing high quality cheeses.

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Effects of Fat Reduction on the Stability, Microstructure, Rheological and Color Characteristics of White-Brined Cheese Emulsion with Different Emulsifying Salt Amounts

  • Urgu, Muge;Unluturk, Sevcan;Koca, Nurcan
    • Food Science of Animal Resources
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    • v.38 no.5
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    • pp.866-877
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    • 2018
  • Cheese emulsion is an intermediate product for the production of cheese powder and needs to be stable, homogeneous and pumpable characteristics to convey to the spray drier. This study was conducted to evaluate the effects of fat reduction and emulsifying salt (ES) amount in cheese emulsion systems on the physicochemical characteristics. Reduced-fat (RF) and full-fat (FF) white-brined cheese emulsions were produced with different dry matters (DM; 15%-25% excluding ES) and ES concentrations (0%-3% based on cheese weight). Stable cheese emulsion was obtained at lower DM in RF cheese emulsion than that of FF cheese emulsion. Reduction in the amount of ES resulted in instability of both emulsions. Apparent viscosity with pseudoplastic flow behavior significantly increased with the decrease of fat content in stable cheese emulsions. Microstructure of emulsions appeared to be related to the fat content, stability and degree of emulsification. Reduction of fat content caused to get less lightness and more greenness in color, whereas yellowness was significantly decreased by increase in the amount of ES. In conclusion, fat reduction resulted in higher viscosities of cheese emulsion due to inducing the increment of protein, and the addition amount of ES considered as very important factor to produce stable cheese emulsion without protein precipitation or cream separation. Therefore, for preparation of RF cheese emulsion using a variety of white-brined cheese, lower amounts of DM would be suggested in this study to obtain homogenous droplets in the atomizing process of spray drying.

Quality Characteristics of Low-fat Mozzarella Cheese prepared at Different Cooking Temperatures (가온 조건에 따른 저지방 모짜렐라 치즈의 품질특성)

  • Yoo, Ja-Yeon;Park, Won-Seo;Han, Gi-Seong;Song, Min-Yu;Jeong, Seok-Geun;Ham, Jun-Sang
    • Journal of Dairy Science and Biotechnology
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    • v.35 no.1
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    • pp.47-54
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    • 2017
  • There has been an increasing interest in low-fat foods among consumers worldwide. However, very few dairy companies produce low-fat cheese in Korea. Therefore, low-fat cheese production must be studied to not only promote consumer health but also diversify the domestic natural cheese market. In this study, we attempted to soften the texture of low-fat Mozzarella cheese prepared from raw milk standardized to 2% by changing the temperature of the cooking process from $43^{\circ}C$ to $37^{\circ}C$ and $40^{\circ}C$. The protein and fat contents of low-fat Mozzarella cheese prepared at the selected temperatures was 5.10-7.01% higher and 5.24-6.38% lower, respectively, than that of control cheese. Moreover, the hardness of low-fat Mozzarella cheese decreased with increasing cooking temperature. Further research to improve the sensory characteristics of low-fat cheese is required.

Characteristics of Gouda Cheese Supplemented with Korean Traditional Yakju

  • Choi, Hee-Young;Yang, Chul-Ju;Choi, Kap-Seong;Kim, Hoi-Kyung;Chambers, Delores H.;Bae, In-Hyu
    • Food Science of Animal Resources
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    • v.31 no.6
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    • pp.872-878
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    • 2011
  • The quality properties of Gouda cheese supplemented with Korean traditional Yakju (Acanthopanax senticosus or Pueraria thunbergiana wines) were investigated. Yakju was added in the process of Gouda cheese preparation, and proximate composition, lactic acid bacterial population, pH, water-soluble nitrogen, sensory characteristics and proteolysis were determined. The electrophoretic patterns of cheese proteins, the target functional components and thiobarbituric acid values of the cheeses also were analyzed. The sensory characteristics including appearance of the cheeses were not affected by supplementing Yakju. Significantly higher amounts of crude ash, minerals and polyphenols were observed in the cheese supplemented with Yakju compared to the control cheese. The results suggest that the Gouda cheese prepared with Yankju has functional and additional nutrient values without changing cheese characteristics.

Effects of Carboxymethyl Chitosan on Yield and Whey Protein Loss in Cottage Cheese

  • Kim, Kyung-Tae;Kang, Ok-Ju
    • Preventive Nutrition and Food Science
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    • v.10 no.3
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    • pp.231-238
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    • 2005
  • A standard $1\%$ w/v solution of CM-chitosan made from squid pen was added to milk at levels of $0.5\sim3\%$ (v/v) to improve the yield and rheological properties of cottage cheese by whey protein retention. Cheese curd did not form at levels higher than $3\%$ (v/v) CM-chitosan standard solution. Yield and total protein of cottage cheese increased up to $2\%\;by\;11\;to\;42\%\;and\;17\;to\;38\%$ respectively, compared to control cheese. Whey protein losses were decreased by 11 to $42\%$ and thus accounted for all of the increase in yield. Anomalous results were obtained at the $0.8\%$ level, which neither improved yield or whey protein retention nor stabilized rheological parameters, and at the $0.5\%$ level, which improved yield and total protein without increasing whey protein retention. Elasticity and cohesiveness of CM-chitosan-containing cheese were generally improved and stabilized during storage. Monitoring of cheese chromaticity values for four weeks revealed a delay in the onset of yellowing in cheeses with CM-chitosan compared to the controls, while the concentration of added CM-chitosan had little influence on cheese chromaticity. The addition of CM-chitosan solution could be applied directly to industrial scale cottage cheese-making without the need for any modification of the production process.