• 제목/요약/키워드: Total volatile basic nitrogen (TVBN)

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Effects of green tea leaf, lotus leaf, and kimchi powders on quality characteristics of chicken liver sausages

  • Choe, Juhui;Kim, Gye-Woong;Kim, Hack-Youn
    • Journal of Animal Science and Technology
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    • 제61권1호
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    • pp.28-34
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    • 2019
  • Liver sausage is flavorful and highly nutritious. However, liver has a relatively short shelf life due to acceleration of oxidation in the presence of endogenous enzymes and metals. Powders derived from natural sources, including plants or fruits, are applied to meat products for inhibiting oxidation without adverse effects on their quality. Hence, this study investigated the effects of natural powders derived from green tea leaf (GTL), lotus leaf (LL), and kimchi (KC) on the quality and change in lipid oxidation and freshness of chicken liver sausages during two weeks of storage. Chicken liver sausages were manufactured with chicken breast (70%) and liver (20%), pork back fat (5%), iced water (5%), various additives, and GTL, LL, and KC [0 (control) or 1%]. They were processed in three batches. For determination of the quality characteristics of chicken liver sausages with various plant powders, pH, color, and texture properties were assessed. In addition, lipid oxidation and freshness using thiobarbituric acid reactive substances (TBARS) and total volatile basic nitrogen (TVBN) were analyzed at day 0 and week 2 of refrigerated storage. Higher values were obtained for pH and cooking yield in sausage samples with LL and KC powders than in samples with the other treatments. For a* values, the sausage samples with KC showed similar (p > 0.05) values, whilst others had significantly lower values than the control. The addition of the three powders to sausage samples induced an increase (p < 0.05) in hardness, gumminess, and chewiness. The addition of plant powders did not influence TBARS and TVBN of sausage samples at the initial stage. However, after two weeks of storage, significantly lower TBARS and TVBN values were observed, and the sausage with KC (p < 0.05) showed the lowest values of both TBARS and TVBN. The results showed the potential ability of the three powders to improve the quality and inhibit lipid oxidation in liver sausages. Particularly, the addition of KC did not adversely affect the $a^*$ values of sausage samples. The effects on sensory properties and inhibition mechanisms of GTL, LL, and KC in meat products should be further studied.

휘발성 질소화합물 감응형 색변환 센서를 활용한 연어 신선도 모니터링 (Freshness Monitoring of Raw Salmon Filet Using a Colorimetric Sensor that is Sensitive to Volatile Nitrogen Compounds)

  • 김재만;이현지;현정호;박준식;김용신
    • 센서학회지
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    • 제29권2호
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    • pp.93-99
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    • 2020
  • A colorimetric paper sensor was used to detect volatile nitrogen-containing compounds emitted from spoiled salmon filets to determine their freshness. The sensing mechanism was based on acid-base reactions between acidic pH-indicating dyes and basic volatile ammonia and amines. A sensing layer was simply fabricated by drop-casting a dye solution of bromocresol green (BCG) on a polyvinylidene fluoride substrate, and its color-change response was enhanced by optimizing the amounts of additive chemicals, such as polyethylene glycol, p-toluene sulfonic acid, and graphene oxide in the dye solution. To avoid the adverse effects of water vapor, both faces of the sensing layer were enclosed by using a polyethylene terephthalate film and a gas-permeable microporous polytetrafluoroethylene sheet, respectively. When exposed to basic gas analytes, the paper-like sensor distinctly exhibited a color change from initially yellow, then to green, and finally to blue due to the deprotonation of BCG via the Brønsted acid-base reaction. The use of ammonia analyte as a test gas confirmed that the sensing performance of the optimized sensor was reversible and excellent (detection time of < 15 min, sensitive naked-eye detection at 0.25 ppm, good selectivity to common volatile organic gases, and good stability against thermal stress). Finally, the coloration intensity of the sensor was quantified as a function of the storage time of the salmon filet at 28℃ to evaluate its usefulness in monitoring of the food freshness with the measurement of the total viable count (TVC) of microorganisms in the food. The TVC value increased from 3.2 × 105 to 3.1 × 109 cfu/g in 28 h and then became stable, whereas the sensor response abruptly changed in the first 8 h and slightly increased thereafter. This result suggests that the colorimetric response could be used as an indicator for evaluating the degree of decay of salmon induced by microorganisms.

Determination of Point of Sale and Consumption for Hanwoo Beef Based on Quality Grade and Aging Time

  • Koh, Kyung Chul;Chung, Ku-Yong;Kim, Hyun-Seok;Kang, Se-Joo;Choi, Chang-Bon;Jo, Cheorun;Choe, Juhui
    • 한국축산식품학회지
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    • 제39권1호
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    • pp.139-150
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    • 2019
  • This study aimed to determine the suitable point of sale and consumption of different quality grade (QG) Hanwoo short loin during aging period, based on physicochemical, sensory, and microbiological quality. Short loins obtained from the carcasses of 13 Hanwoo steers and 2 bulls with 5 different QGs (1++, 1+, 1, 2, and 3) were analyzed over 28 d. QG and aging time had significant effect on water holding capacity, color, shear force, total volatile basic nitrogen (TVBN) content, and sensory traits. Higher QG groups generally exhibited a lower shear force, nucleotide content, and water holding capacity, and higher $L^*$, $a^*$, and $b^*$ values. Acceptable tenderness (shear force <5.4 kg) in QG 1++, 1+, 1, and 2 was achieved on days 7, 14, 16, and 18, respectively, and QG 3 showed a shear force of 6.8 kg, even after 28 d. Regardless of QG, TVBN content below threshold levels (20-30 mg%) was observed throughout the 28 d aging period, while total plate counts above 7 Log CFU/g were seen at 21 d. In conclusion, it is recommended that Hanwoo beef with QG 1++, 1+, and intermediate QG (1 and 2) should be sold or consumed between 7 and 21, 14 and 21, 16 and 21 d, respectively. Beef with QG 3 should be sold or consumed within 21 d, based on microbial growth, even though it has not achieved desirable tenderness. For this reason, an additional tenderizing process is recommended before this beef is ready for consumption.

Effects of Deep Freezing Temperature for Long-term Storage on Quality Characteristics and Freshness of Lamb Meat

  • Choi, Mi-Jung;Abduzukhurov, Tolibovich;Park, Dong Hyeon;Kim, Eun Jeong;Hong, Geun-Pyo
    • 한국축산식품학회지
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    • 제38권5호
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    • pp.959-969
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    • 2018
  • This study investigated the effects of deep freezing and storage temperature ($-50^{\circ}C$, $-60^{\circ}C$, and $-80^{\circ}C$) on the quality and freshness of lamb. To compare the qualities of deep frozen and stored lamb, fresh control and normal freezing conditions ($-18^{\circ}C$) were adopted. As quality and freshness parameters, drip loss (thawing loss and cooking loss), water-holding capacity (WHC), texture profile analysis (TPA), thiobarbituric acid reactive substances (TBARS), and total volatile basic nitrogen (TVBN) were evaluated during 5 months of storage. Temperature influenced the drip loss and WHC, and deep freezing minimized the moisture loss during frozen storage compared to the normal freezing condition. Lamb frozen and stored at deep freezing temperature showed better tenderness than that stored in normal freezing conditions. In particular, lamb frozen at lower than $-60^{\circ}C$ exhibited fresh lamb-like tenderness. Regardless of temperature, evidence of lipid oxidation was not found in any frozen lamb after 5 months, while TVBN was dependent on the applied temperature. Therefore, this study demonstrated that deep freezing could potentially be used to maintain freshness of lamb for 5 months. From the quality and economic aspects, the freezing and storage condition of $-60^{\circ}C$ is estimated as the optimum condition for frozen lamb.

Effect of coating with combined chitosan and gallic acid on shelf-life stability of Jeju black cattle beef

  • Van-Ba Hoa;Dong-Heon Song;Kuk-Hwan Seol;Yun-Seok Kim;Hyun-Wook Kim;In-Seon Bae;Soo-Hyun Cho
    • Animal Bioscience
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    • 제37권1호
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    • pp.123-130
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    • 2024
  • Objective: Beef of Jeju black cattle (JBC) is considered as a healthy meat type due to its significantly higher unsaturated fatty acids (UFA). Lipid (e.g., UFA) is highly susceptible to oxidizing agents, which results in the quality deterioration and economic value loss of meat products. Therefore, development and application of novel preservative techniques is necessary to improve the shelf-life stability of high-UFA beef. The objective of this study was to assess the applicability of chitosan-based coatings in preservation of JBC beef. Methods: Different coating solutions: 2% chitosan alone, and 2% chitosan containing 0.1% or 0.3% gallic acid were prepared to investigate their applicability in preservation of fresh beef during storage. Jeju black cattle beef (2-cm thick steaks) were non-coated (control) or coated with the above coating solutions, placed on trays, over-wrapped with plastic film and stored at 4℃. The microbiological indices, color, total volatile basic nitrogen (TVBN) and lipid oxidation of the beef were investigated after 1, 10, and 21 days of storage. Results: Coating with 2% chitosan alone reduced the spoilage bacteria count, TVBN and thiobarbituric acid reactive substances levels in the beef compared with control during storage (p<0.05). Noticeably, coating with 2% chitosan containing 0.1% or 0.3% gallic acid was more effective on retardation of spoilage bacteria growth, lipid oxidation and discoloration in the beef compared to the chitosan coating alone over the storage period (21 days) (p<0.05). Conclusion: Taken together, the combined chitosan and gallic acid coating could be used as a bio-preservative technique in the meat industry.

Effects of Ohmic Thawing on the Physicochemical Properties of Frozen Pork

  • Kim, Jee-Yeon;Hong, Geun-Pyo;Park, Sung-Hee;Lee, Sung;Min, Sang-Gi
    • Food Science and Biotechnology
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    • 제15권3호
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    • pp.374-379
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    • 2006
  • This study was carried out to investigate the physicochemical properties of frozen pork muscle which has been thawed using the ohmic thawing process, and to establish the optimal ohmic power intensity. The samples were frozen at $-40^{\circ}C$ and thawed at 0, 10, 20, 30, and 40 V by ohmic thawing. Increasing ohmic power intensity correlated with increased thawing rates. The relationship between ohmic power intensity and thawing rate can be represented as a polynomial function. The pH value decreased with increasing ohmic power intensity (p<0.05). With regard to color measurement, the $L^*$, a, and b values of thawing at all ohmic power intensities were not significantly different. The water holding capacity showed a peak value of 41.62% with an ohmic thawing intensity of 30 V. Cooking losses were lowest at the lowest ohmic thawing intensity of 10 V. Thiobarbituric acid reactive substance (TBARS) levels with all thawing processes were slightly higher than that of the control (p<0.05). Increasing ohmic power intensity did not tend to change the total volatile basic nitrogen (TVBN) value.

Models of Pseudomonas Growth Kinetics and Shelf Life in Chilled Longissimus dorsi Muscles of Beef

  • Zhang, Yimin;Mao, Yanwei;Li, Ke;Dong, Pengcheng;Liang, Rongrong;Luo, Xin
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권5호
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    • pp.713-722
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    • 2011
  • The aim of this study was to confirm Pseudomonas spp. as the specific spoilage organism (SSO) of chilled beef during aerobic storage and to establish a model to predict the shelf life of beef. Naturally contaminated beef was stored at $4^{\circ}C$, and the spoilage limit of Pseudomonas organisms was determined by measuring several quality indicators during storage, including the number of Pseudomonas organisms, total number of bacteria, total volatile basic nitrogen (TVBN) values, L value color scale scores and sensory evaluation scores. The beef was then stored at 0, 4, 7, 10, 15 or $20^{\circ}C$ for varying amounts of time, and the number of Pseudomonas organisms were counted, allowing a corresponding growth model to be established. The results showed that the presence of Pseudomonas spp. was significantly correlated to each quality characteristic (p<0.01), demonstrating that Pseudomonas spp. are the SSO of chilled beef and that the spoilage limit was $10^{8.20}$ cfu/g. The Baranyi and Roberts equation can predict the growth of Pseudomonas spp. in beef, and the $R^2$ value of each model was greater than 0.95. The square root model was used as follows, and the absolute values of the residuals were less than ${0.05:\;{\mu_{max}}^{1/2}$ = 0.15604 [T+(-0.08472)] (p<0.01), $R^2$ = 0.98, $\lambda^{-1/2}$ = 0.0649+0.0242T (p<0.01, $R^2$ = 0.94). The model presented here describes the impact of different temperatures on the growth of Pseudomonas spp., thereby establishing a model for the prediction of the shelf life of beef stored between 0 to $20^{\circ}C$.

The Effect of Thawing Rate on the Physicochemical Properties of Frozen Ostrich Meat

  • Hong, Geun-Pyo;Park, Sung-Hee;Kim, Jee-Yeon;Lee, Chi-Ho;Lee, Sung;Min, Sang-Gi
    • Food Science and Biotechnology
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    • 제14권5호
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    • pp.676-680
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    • 2005
  • This study investigated the effect of thawing rate on the physicochemical properties of frozen ostrich meat. Five different thawing rates (0.33, 0.54, 0.61, 0.68, and 0.78 cm/h) were delivered by controlling the air velocity as heat convection at $15^{\circ}C$. The pH value decreased with increasing thawing rate (p<0.05). In color measurement, $L^*$-values of all treatments were lower and $b^*$-values higher than those of control, but $a^*$-values were not significantly different among the treatments except at the thawing rate of 0.33 cm/h. Increasing thawing rate tended to improve the water holding capacity (WHC) of the samples. Thawing loss decreased with increasing thawing rate and significantly higher cooking loss was observed at the thawing rate of 0.33 cm/h. Thiobarbituric acid reactive substance (TBARS) levels of all treatments were significantly higher than that of control (p<0.05). Increasing thawing rate tended to decrease the total volatile basic nitrogen (TVBN) value. These results indicated that a rapid thawing process at $15^{\circ}C$ improved the quality of frozen ostrich meat.

Assessment of frozen storage duration effect on quality characteristics of various horse muscles

  • Seong, Pil Nam;Seo, Hyun Woo;Kim, Jin-Hyoung;Kang, Geun Ho;Cho, Soo-Hyun;Chae, Hyun Seok;Park, Beom Young;Ba, Hoa Van
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권12호
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    • pp.1756-1763
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    • 2017
  • Objective: The study aimed at assessing the effects of frozen storage duration on quality characteristics, lipid oxidation and sensory quality of various horse muscles. Methods: Five representative muscles: longissimus dorsi (LD), gluteus medius (GM), semimembranosus (SM), biceps femoris (BF), and triceps brachii (TB) at 24 h post-mortem obtained from 28-mo-old Jeju female breed horses (n = 8) were used in the present investigation. The muscles were vacuumpackaged and frozen at $-20^{\circ}C$ for 120, 240, and 360 days. All the samples were analyzed for thawing and cooking losses, pH, Warner-Bratzler shear forces (WBSF), color traits, total volatile basic nitrogen (TVBN), thiobarbituric acid reactive substances (TBARS) and sensory traits. The muscle samples analyzed on day 0 of frozen storage (fresh, non-frozen) were used for comparison. Results: Results revealed that thawing and cooking losses significantly (p<0.05) increased in all the muscles after 120 days and then remained unchanged up to 360 days of frozen storage. The TBARS and TVBN contents significantly increased as increasing frozen storage time up to 360 days (p<0.05). While, significant decreases in WBSF values were observed for all the muscles with increased frozen storage time (p<0.05). Frozen storage variously affected the color traits of the muscles for instance; the redness of LD, GM, and BF muscles showed a decreasing tendency during frozen storage while it was not changed in TB and SM muscles. Furthermore, the frozen storage did not produce detrimental effects on sensory quality as it did not cause flavor and juiciness defects whereas it partially improved the tenderness of all the muscles studied. Conclusion: Based on the results obtained from our work, it is concluded that frozen storage could be applied to increase the long-term shelf life of horsemeat while still retaining its sensory quality.

학교급식에 Cook/Chill System 적용을 위한 품질보증연구(II) - 돼지불고기 - (A Quality Assurance Study for the Application of Cook/Chill System in School Foodservice Operation (II) - Pork Bulgogi (Broiled Sliced Pork with Sauces) -)

  • 곽동경;문혜경;박혜원;홍완수;류경;장혜자;김성희;최은정
    • 한국식품위생안전성학회지
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    • 제13권4호
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    • pp.319-331
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    • 1998
  • 본 연구는 학교급식에서 Cook/chill system으로 생산 가능한 음식으로 돼지 불고기를 선정하고 모의실험을 통해 급식생산체계를 반복 실시함으로서 식품 위해 분석 중요관리점(HACCP)을 규명하고, 저장기간중의 음식품질 평가를 통해 합리적인 저장기한을 설정하고자 수행되었으며, 그 연구결과는 다음과 같다. 돼지불고기는 냉동상태로 운반되지 않아 온도상승이 일어난 검수 단계를 제외하면 각 생산 단계별 기준이 준수된 양호한 상태 하에서 생산된 것으로 나타난다. 생산단계별 미생물 분석결과, 원재료($4.26{\pm}0.11\;Log\;CFU/g$)에서 중온균수가 조리하지 않은 식품 기준 이내이나 다소 높게 나타났고, 양념장($5.97{\pm}0.04\;Log\;CFU/g$)에서는 조리하지 않은 식품 기준에 근접한 수준이었으며, 양념으로 재우는 과정($5.56{\pm}0.21\;Log\;CFU/g$)도 위험 수준이었다. 가열 조리 후 최종 음식온도가 $8.25{\pm}3.54^{\circ}C$에 도달하였으나 중온균수($5.17{\pm}0.04\;Log\;CFU/g$)가 급식 단계 음식기준을 초과한 위험한 수준이었고, 기타 미생물은 검출되지 않았다. 급속 냉각과 저장 1일, 3일, 5일 동안도 중온균수가 급식단계 음식 기준에 근접한 위험한 상태였고 기타 미생물은 검출되지 않았다. 재가열 처리에 의해 저장 1일($4.62{\pm}0.22\;Log\;CFU/g$), 3일($4.55{\pm}0.20\;Log\;CFU/g$), 5일($4.25{\pm}0.16\;Log\;CFU/g$) 모두 중온균수는 감소하여 급식단계 음식기준에 충족한 상태가 되었다. 배분 3조건에서도 급식단계 음식 기준 이내에 들었다. 저장 5일간 이화학 분석 결과 pH, 산가, 휘발성 염기 질소 모두 저장 5일에 유의적으로 증가하였고, 관능평가에서는 모든 항목들이 유의적인 차이를 보이지 않았다. 티아민 정량 분속 결과 ,가열 전의 티아민 함량을 100%으로 했을 때, 가열 후에는 78.6%로 손실이 일어났으며, 냉각과 저장 1일, 3일은 티아민 손실을 거의 일으키지 않는 것으로 나타났다. 그러나 저장 5일에는 티아민이 현저히 저하되어 62.5% 보유에 그쳤다. 저장기간에 따른 미생물적, 이화학적, 관능적 품질을 분석한 결과와 티아민 함량의 변화를 고려하여 돼지불고기의 저장기한을 3일로 제안하며, 생산 단계별 온도-소요시간 측정 및 미생물 분석을 통해 규명된 중요관리점은 돼지고기와 양념장재료인 파, 마늘, 생강의 구입 및 검수, 가열조리, 냉각, 저장, 재가열과 배식단계였다.

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