Changes in quality characteristics and shelf-life of two types of grill sausage manufactured by using pork hind leg and re-pasteurized after packaging were investigated during storage at 5$^{\circ}C$ and 10$^{\circ}C$ up to 30 days. The total aerobic plate counts(APC) of N rnberger style grill sausage(NGS) and vegetable added grill sausage(VGS) were initially 3.08 and 3.57 log$\sub$10/CFU/$\textrm{cm}^2$, respectively, and gradually increased during storage time. After 30 days, the APC of NGS stored at 5$^{\circ}C$ and 10$^{\circ}C$ maintained relatively low at the levels of 5.32 and 6.58 log$\sub$10/CFU/$\textrm{cm}^2$, respectively. However, the APC of VGS exceeded the level of 8 log$\sub$10/CFU/$\textrm{cm}^2$ after 30 days at 5$^{\circ}C$ and after 20 days at 10$^{\circ}C$. pH was decreased with storage period, however it tended to increase after 30 days. The values of TBA and VBN for both sausages tended to increase with storage time, and this trend was pronounced at 5$^{\circ}C$ rather than at 10$^{\circ}C$. The purge loss was apparently increased in the VGS compared to the NGS sample as the storage period extended. According to the sensory evaluation, the marketing values of grill sausages stored at 5$^{\circ}C$ and 10$^{\circ}C$ were maintained until day 20 for NGS and day 14 for VGS, respectively.
Kim, Chul-Hyun;Lee, Kyung-Wook;Baick, Seung-Chun;Kwak, Hae-Soo;Kang, Jong-Ok
Korean Journal of Food Science and Technology
/
v.28
no.4
/
pp.743-749
/
1996
This study was carried out to investigate the microencapsulatuion of ${\omega}-3$ fatty acid isolated from fish oil and to obtain fundamental information on the utilization of the ${\omega}-3$ fatty acid in the dairy foods field. To obtain the desirable microencapsulation efficiency, 1.5% agar and 0.5% gelatin were used as coating materials, and 0.5% SFAN 60 (HLB 4.5 value) was used to maintain the emulsion stability. The optimal mixing ratio of coating material to core material was 8:2 (w/w). The thermostability of microencapsulated product was not maintained above $60^{\circ}C$. Microencapsulation efficiency was kept at about 90% at $4^{\circ}C$ and $10^{\circ}C$ for 7 days storage at various temperatures. At $20^{\circ}C$ and $30^{\circ}C$, however, about 80% microencapsulatuion efficiency was obtained for 3 days storage. About 80.57% microcapsule was destroyed by 1%> pepsin solution at $37^{\circ}C$ for 10 min.
The objective of this study was to determine the effect of the meat from spent laying hen on the shelf-life and physicochemical properties of emulsified sausage. Four types of sausage were made: 0% (Control), 10% (T1), 20% (T2) and 30% (T3) of spent hen meat added. Each sausage type was tested in triplicate. The addition of spent hen meat resulted in decreased crude fat and cooking loss, and increased WHC (water holding capacity), CIE $a^*$ and hardness. Values for crude fat and cooking loss were significantly decreased by the addition of spent laying hen meat relative to the control (P<0.05). Especially, T3 was significantly (P<0.05) decreased compare to other treatment groups. Spent laying hen meat addition had no significantly effects on moisture, crude protein, crude ash, pH, WHC, TBARS (thiobarbituric acid reactive substance) values, shear force, total plate counts (TPC), CIE $L^*$ and $b^*$ values. In conclusion, this study demonstrates that the addition of spent laying hen meat to emulsified sausages tended to improve sausage quality.
Press ham were manufactured to investigate the effects of ginseng powder on quality characteristics of press ham. Each treatment added pork loin basis with Ginseng powder(0, 0.5, 1.0, 1.5 and 2.0%) were stored until 28 days at 4℃. The changes in shear force value, thiobarbituric acid reactive substances (TBARS), fatty acid composition and sensory evaluation of each treatment were measured until 28 days at 4℃. Shear force value was not significantly different between the control and ginseng treatment groups. The value for all treatments were decreased significantly by the passage of storage time (P<0.05). Remarkable differences were found in sensory properties(color, flavor and acceptability) among control and ginseng treatment groups. This was not clearly changed by the passage of storage time. Ginseng treatment groups showed significantly (p<0.05) lower TBARS value than the control. TBARS value was increased significantly during storage in all treatments. Fatty acid composition did not significantly differ between the control and ginseng treatment groups. Summing up the a forementioned results, press ham manufacturing with ginseng powder was not affected in shear force value, sensory evaluation, TBARS and fatty acid composition. Also, it may be assumed that the high quality press ham can be manufactured with the extend of storage period and saponin accumulation.
The quality changes of hams and sausages in refrigerated storage were investigated. Seven types of hams and six types of sausages produced in Korea were collected from markets and stored at 1$0^{\circ}C$ according to the Food Code of Korea, and then chemical, microbiological, textural and sensory characteristics were evaluated at 30, 40 and 50 days. The proximal analysis showed considerable variation in fat with less variation in moisture and protein. The pH values of hams and sausages slightly changed with no consistent difference. Water activity values of all samples except one type of sausage were consistent over time in refrigerated storage. No purge losses of hams were observed except two types of samples in the intial stage. Several types of sausages showed purge losses with no consistency and one type of sausage showed consistent purge losses (0.44~11.29%) during the storage. The volatile basic nitrogen (VBN) content of hams and sausages was still within 20 mg% (Standard and Specification of Korea) on the 50th day, although the VBN of all samples significantly increased over time (p<0.05). The thiobarbituric acid (TBA) values of hams and sausages were well below 1.0 during the storage, although the TBA values of all samples significantly increased (p<0.05). However it was noticed that one type of ham and two types of sausages showed TBA values of 0.945, 0.928 and 0.978, respectively. All the standard plate counts (SPCs) of hams during the storage period showed a level below 30 CFU/g except one type of sample with 103 CFU/g at 50 days. All the SPCs of sausages showed a level below 50 CFU/g except one type of sample with 102 CFU/g and two types of samples with 104 CFU/g on the 50th day. Coliform groups were not counted in all samples during the storage. Instrumental texture analysis showed that springiness, cohesiveness, chewiness, gumminess and adhesiveness slightly changed with no consistent difference. The hardness of the hams showed a decreasing tendency, and the hardness of the sausages an increasing tendency with no significant difference. Sensory evaluation for color, flavor, taste, texture and overall acceptability showed decreasing tendencies over time (p<0.05). The scores of the five sensory characteristics maintained the medium level of quality at the termination of the experiment. Although the results indicated that the ham and sausage samples were acceptable after the 50 days' storage at 1$0^{\circ}C$, the shelf-life of the samples should be determined considering the rapid growth of bacteria and the high TBA values at 50 days.
Press ham were manufactured to investigate the effects of ginseng powder on quality characteristics of press ham. Each treatments added pork loin basis with ginseng powder(0, 0.5, 1.0, 1.5 and $2.0\%$) were stored until 28 days at $4^{\circ}C$. The changes in physico-chemical properties, texture and chemical composition of each treatments were measured during 1, 7, 14, 21 and 28 days at $4^{\circ}C$. There was a not significantly difference in chemical composition between control and ginseng treatment groups. pH value of ginseng treatment groups were decreased significantly than those of control(p<0.05). pH of control and ginseng treatments were increased significantly as the storage period passed(p<0.05). Meat color(CIE $L^{\ast},\;b^{\ast}$) of ginseng treatment groups were increased significantly than that of control(p<0.05). Meat color(CIE $a^{\ast}$) of ginseng treatment groups were decreased significantly than those of control(p<0.05). It was not clearly changed by the passage of storage time. There was a not significantly difference in texture between control and ginseng treatment groups. It was not clearly changed by the passage of storage time. Summing up the a forementioned result, press ham manufacturing with ginseng powder was not affected in physico-chemical properties and texture characteristics. Also, it may be assumed that the high quality press ham can be manufactured with saponin accumulation.
To investigate the effect of boning time and storage temperature on meat quality of duck breast, a total of thirty duck breasts were designed in frozen-thawed, chilled-storage, and cold-boning samples. No significant differences were found among pH of all samples. However, cold-boning samples showed significantly (p<0.05) lower cooking loss than the other samples. Frozen-thawed samples showed significantly (p<0.05) higher lightness ($L^*$) and yellowness($b^*$), shorter sarcomere length and higher shear force values compared to the other samples. The result speculated that muscle shortening was affected by lower temperature (frozen) hence tenderness was decreased. Sarcoplasmic protein solubility showed no significant differences among samples, whereas cold-boning samples showed significantly (p<0.05) higher myofibrillar and total protein solubility than the other samples. The result of sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) patterns, chilled-storage and cold-boning samples showed degradation at high molecular protein (nebulin), which was not observed in frozen-thawed samples. Therefore, this data suggested that muscle shortening, tenderness and protein degradation are not affected by boning time rather affected by rapid change of temperature in frozen-thawed samples.
This study was conducted to investigate the influence of dietary sardine oil on storage and processing characteristics in meat sample of chicken meat. Broilers were randomly assigned to one of four dietary treatments: 1) Control(commercial feed) 2) T1(commercial feed supplemented with 1% sardine oil) 3) T2(commercial feed with 2% sardine oil) and 4) T3(commercial feed with 4% sardine oil). They were fed one of the experimental diets for five weeks and slaughtered. After that, the meat samples were vacuum packaged and stored at 4$\pm$1$\^{C}$. The storage and processing characteristics were analyzed for meat samples stored over a period of 0, 1, 3, 7 and 10 days. The pH of all treatments significantly increased during the storage periods (p<0.05). The TBARS(thiobarbituric acid reactive substances) af all treatments were significantly increased as storage period extended (p<0.05). After 1 days, the TBARS of treatment groups were significantly higher than that of the control (p<0.05). The T3 showed the highest TBARS among all treatments (p<0.05). The VBN(volatile basic nitrogen) of all treatments significantly increased during storage period (p<0.05). However, the VBN was not significantly different between control and treatment groups. The WHC(water holding capacity) and heating loss were significantly increased in both control and treatment groups during storage (p<0.05) and however, WHC was not significantly different among 3 treatment. The heating loss tended to increase in treatment groups compared to the control.
This study was conducted to investigate the influence of dietary activated carbon(0.9%) and sardine oil (0, 1, 2, 4%) on volatile basic nitrogen(VBN), thiobarbituric acid reactive substance(TBARS), and fatty acid in meat sample of chicken. Broilers were randomly assigned to one of the file dietary treatments: 1) Control(commercial feed) 2) T1(commercial feed supplemented with 0.9% activated carbon) 3) T2(commercial feed with 0.9% activated carbon and 1% sardine oil) 4) T3(commercial feed with 0.9% activated carbon and 2% sardine oil) 4) T4(commercial feed with 0.9% activated carbon and 4% sardine oil). They were fed one of the experimental diets for five weeks and slaughtered. After that, the meat samples were stored over a period of 0, 1, 3, 7 and 10 days at 4${\pm}$1$^{\circ}C$. The VBN of all treatments significantly increased during the storage periods(p<0.05). Also, the VBN was not significantly between control and treatment group. In VBN of breast was higher compared with that of thigh. The TBARS of all treatments were significantly increased as storage period extended (p<0.05). The TBARS of control and thigh tended to be higher than that of treatments and breast. Oleic acid, palmitic acid, linoleic acid, stearic acid were major fatty acid in chicken meat. Saturated fatty acid decreased and unsaturated fatty acid increased of all treatments during storage. Oleic acid, EPA, DHA contents was higher in treatment group than the control.
Kim, Eunmi;Seo, Sanghee;Choi, Younsang;Chun, Kihong;Lee, Eunjung
Food Science and Preservation
/
v.24
no.5
/
pp.593-599
/
2017
The objective of this study was to investigate the effect of superheated steam (SHS) and high hydrostatic pressure (HHP) techniques on the improvement of the quality of Bulgogi product during manufacturing process. Bulgogi product was treated with four different cooking/treatment process: conventional cooking (CC), SHS cooking (SHS), CC and then HHP cooking (CC-HHP), and SHS and HHP cooking (SHS-HHP) samples. SHS treated product increased moisture content, and decreased crude protein. Additionally, hardness, gumminess and shear force values were significantly different among the samples (p<0.05). In safety experiment after 14 days of storage at refrigeration temperature indicated that the bacterial population was lower in the case of SHS-HHP as compared to CC-HHP. Changes in texture during the storage periods at $10^{\circ}C$ for SHS-HHP was lowest values with compared to the initial, while shear force values for both tended to decrease with increasing storage period. The TBA and VBN values for SHS-HHP increased to 0.48 ($5^{\circ}C$)-1.68 ($10^{\circ}C$) mg MD/kg and 25.14 ($5^{\circ}C$)-45.14 ($10^{\circ}C$) mg%, respectively after 15 days of storage. Overall, it was found that the combination of SHS and HHP reduced microbial growth, thus leading to improved product quality and sanitation.
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