• Title/Summary/Keyword: defatted rice bran

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Quality Properties of Kochujang Added Defatted Rice Bran Powder During Storage (탈지미강을 첨가한 고추장의 저장 중 품질특성)

  • Jeon, Eun-Raye;Jung, Lan-Hee
    • Korean journal of food and cookery science
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    • v.27 no.4
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    • pp.89-98
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    • 2011
  • The physicochemical and sensory properties of kochujang added defatted rice bran powder were periodically examined during storage at 30$^{\circ}C$ for 45 days. The pH of kochujang added defatted rice bran powder increased gradually according to the added level, whereas pH decreased gradually during storage. But the acidity to be appeared opposite of pH. The L-, a and b-values of samples increased gradually according to the amount of added defatted rice bran powder, whereas they decreased gradually during storage. The salinity of samples decreased gradually according to the amount of added defatted rice bran powder and storage. Amino nitrogen content of kochujang added defatted rice bran powder was higher than that of the control during storage. Electron donating activities of kochujang added defatted rice bran powder increased gradually according to the amount added. As a result of the sensory evaluation, the 3% treatment was superior in color, aroma, and overall preference. The sensory evaluation revealed that adding 3% defatted rice bran powder was optimum for improving kochujang quality.

Chemical composition of banana meal and rice bran from Australia or South-East Asia

  • Natalia S. Fanelli;Leidy J. Torres-Mendoza;Jerubella J. Abelilla;Hans H. Stein
    • Animal Bioscience
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    • v.36 no.10
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    • pp.1568-1577
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    • 2023
  • Objective: A study was conducted to determine the chemical composition of banana meal and rice bran from Australia or South-East Asia and test the hypothesis that there are no differences in rice bran produced in different countries, but there are differences between full-fat and defatted rice bran. Methods: Two sources of banana meal and 22 sources of rice bran (full-fat or defatted) from Australia or South-East Asia were used. All samples were analyzed for dry matter, gross energy, nitrogen, amino acids (AA), acid hydrolyzed ether extract (AEE), ash, minerals, total starch, insoluble dietary fiber, and soluble dietary fiber. Banana meal was also analyzed for sugars including glucose, fructose, maltose, sucrose, stachyose, and raffinose. Results: Chemical analysis demonstrated that banana meal from the Philippines is primarily composed of starch. Full-fat rice bran from Australia had greater (p<0.05) concentrations of AEE, lysine, and glycine than samples from the Philippines and Vietnam. Full-fat rice bran from Australia and Thailand had greater (p<0.05) concentrations of gross energy and most AA than rice bran from Vietnam. Full-fat rice bran from Australia had greater (p<0.05) concentrations of tryptophan and manganese than all other sources, but full-fat rice bran from the Philippines contained less (p<0.05) zinc than all other sources of rice bran. Gross energy, AEE, and copper were greater (p<0.05) in full-fat rice bran compared with defatted rice bran, but defatted rice bran contained more (p<0.05) crude protein, ash, insoluble dietary fiber, total dietary fiber, AA, and some minerals than full-fat rice bran. Conclusion: Banana meal is a high-energy source that can be used as an alternative ingredient in livestock diets. Full-fat rice bran from Australia and Thailand contained more concentrations of AEE and AA than samples from the Philippines or Vietnam. Full-fat rice bran had more gross energy and AEE than defatted rice bran, whereas defatted rice bran contained more crude protein, ash, and total dietary fiber.

Antioxidant Activities of Rice Bran Extracts for Wellness Convergence (융복합적인 웰리스를 위한 미강추출물의 항산화 활성)

  • Lee, Jae-Hyeok;Park, Jeong-Suk
    • Journal of Digital Convergence
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    • v.13 no.2
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    • pp.401-406
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    • 2015
  • The aim of present study is to investigate antioxidative effect of the Rice Bran Extracts and Defatted Rice Bran Extracts. Rice Bran Extracts used Rice Bran Water Extract, Rice Bran Ethanol Extract, Defatted Rice Bran Water Extract, Defatted Rice Bran Ethanol Extract. This study was carried out to examine quenching effects of Rice bran extracts on DPPH-, Riboflavin-, and Xanthin oxidase- originated superoxide activities. In addition, in order to determine whether Rice Bran Extract can be safely applied to human skin, the cytotoxic effects of Rice Bran Extract in Human Dermal Fibroblast cells were determined using MTS Assay. These results demonstrated that RBE and DRBE had anti-oxidative properties and did not induce the cytotoxic effects in Human Dermal Fibroblast cells. Therefore, these findings suggest that anti-oxidative properties of RBE and DRBE may be considered convergence with skin care.

Quality Characteristics of Defatted Rice Bran, Sansung Takju (Cloudy Korean Rice Wine) (탈지 미강 산성 탁주의 품질특성)

  • Seo, Bong-Hee;Hwang, Hyun-Ju;Sung, Ki-Hyup
    • Culinary science and hospitality research
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    • v.21 no.2
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    • pp.119-129
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    • 2015
  • In this study, rice bran containing biologically active substances, including oryzanol and dietary fiber, Korean food industry was used in glutinous rice Takju(a cloudy Korean rice wine) fermentation. During fermented in rice wine, four different amounts of defatted rice bran(0, 3, 6, and 10g) were formulated in a recipe and fermentation characteristics, physicochemical properties, and sensory characteristics of product were analyzed. An increase in the amount of defatted rice bran was witnessed by heightened pH values in the fermentation period. The titratable acidity of sansung takju was increased with high levels of defatted rice bran. The titratable acidity of defatted rice bran takju during the fermentation period significantly was decreased, and then increased. FRAP radical-scavenging activity of TDT6 2.56 g/moL, compare with the control group, showed the highest reducing power. The results of the sensory evaluation showed that overall-acceptability had the highest scores in the sansung takju containing TDT3(3%) level of defatted rice bran. In conclusion, sansung takju added with TDT3(3%) of defatted rice bran is rated most prefrence in the four groups in this parts quality and acceptability.

Selection of Suitable Organic Matter for To-jik Nursery in Panax ginseng C.A. Meyer (인삼 재배 시 토직모 생산에 적합한 유기물 선발)

  • Kim, Dong-Won;Kim, Hee-Jun;Park, Jong-Suk;Kim, Dae-Hyang;Cheong, Seong-Soo;Ryu, Jeong
    • Korean Journal of Medicinal Crop Science
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    • v.18 no.2
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    • pp.74-78
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    • 2010
  • This experiment was carried out to select suitable organic matter in To-jik nursery (self soil nursery) for complement To-jik nursery's defects that are deterioration of raw material by poor quality of seed ginseng and reduction of the quantity in seed ginseng production. Organic matter used were Yacto, rice bean, defatted rice bran, soybean cake and their mixture. As follows, bulk density in soil physical property by treating organic composts was the greatest in soybean cake and the next was followed by mix, Yacto, defatted rice bran, and rice bran treatment in order. Soil pore space ratio was totally the opposite; that was rice bran the first and followed by defatted rice bran, Yacto, mix and soybean cake treatment. The incidence rate of damping off by treating organic composts was 1.5% in both soybean cake and mix while the others was 1.0%. Emergence time was the same among treatment on April 16 and Emergence rate was the highest at 73% in Yacto. There was no significant differences among treatment in the growth of aboveground part but it was a little better in defatted rice bran treatment. In Yacto treatment, the growth of underground part, total root number per kan, rate of first grade ginseng seedling, and rate of usable ginseng seedling etc. were entirely higher but there was little differences. Using defatted rice bran was slightly lower in productivity compared to Yacto, but the possibility was high as a alternative for Yacto in a view of managing cost down.

Studies on the Wild Yeasts in Korea(IV) (한국산 야생효모에 관한 연구 4)

  • 박명삼
    • Korean Journal of Microbiology
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    • v.11 no.4
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    • pp.157-166
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    • 1973
  • Fermented feed using rice, barley, wheat, and defatted rice brans as the raw materials were prepared by 3 species of wild yeasts which were selected among 35 strains of yeasts isolated, and their analytical values were examined. The results were as follows : 1. The three yeasts were identified as H.amomala var. anomala (No.225), Candida utilis (No.400), and Irpex-cellulase(consors) (no.403-A). 2. The optimum pH, and sugar concentration of these yeasts in liquid culture were pH 5.0 and Bllg. 10.deg. each. The optimum temperature was 30.deg.C for No.225 and No.403-A, 25.deg.C for No.400. The No.225 and No.403-A grow at higher temperature than 37.deg.C and 40.deg.C each. 3. The No.225 yeast had a large vegetative cell and strong sugar fermentability. The No.225 and 403-A could assimilate cellobiose, xylose, $KNO_2$ and $KNO_3$. These properties were fit for bran fermentation. 4. The No.403-A microorganism was a yeast-like microbe and showed cellulase activity which might help the propagation of other yeasts on the brans. 5. The analytical data of fermented feed indicated the following order of usable value ; rice-wheat-barley bran 4:4:2, rice-wheat bran 5:5, rice-barley bran 5:5, rice-defatted rice bran 5:5. 6. the fermented feed were prepared by mixing brans, 0.3% ammonium sulfate and 5%(w/w) inoculum of yeast suspension in 4% glucose solution. Water content 70-80%, fermentation temperature 25-30.deg.C, and fermentation time 2-3 days were given. 7. The rice-wheat bran 5:5 and rice-barley bran 5:5 fermented feed showed 11, 17-11.45% protein increase, and the rice-barley-wheat bran 4:4:2 and rice-defatted bran 5:5 showed 3.75-6.03% protein increase. 8. The fermented feed prepared in this experiment by the author might work as a nutritive feed using microbial cell body, enzymes produced by microbes and other microbial cell constituents.

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The optimum material mixture rate of the pressing media in Pleurotus ostreatus (느타리버섯 압축배지 재료에 대한 최적 배합 연구)

  • 장현유;노문기;최병국;변재면
    • Korean Journal of Plant Resources
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    • v.12 no.3
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    • pp.171-178
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    • 1999
  • The purpose of this study was to investigate the optimal mixture ratio for the mycelial culture of the Pleurotus ostreatus. The chief cultural media in this study were cotton hull, sawdust and rice straw and the supplemental media were zeolite, corn cob, defatted rice bran, white cotton, tobacco trash powder, rice hull and peat. The results of this study were as follows; the optimal mixture ratio of the chief cultural media were effective in 6 : 3 : 1(V/V, %), and the mycelial growth and density in the supplemental media were considerably better 1% zeolite,3% corn cob, 5% defatted rice bran, 1% white cotton, 1% tobacco trash powder, 7% rice hull in good order. The optimal mixture ratio be to the mixed supplemental media in the chief cultural media were as follows ; 2 : 2(V/V, %) at the conditions of mixed zeolite and corn cob; 3 : 2(V/V, %) at the conditions of mixed defatted rice bran and white cotton; 1 : 3(V/V, %) at the conditions of mixed tobacco trash powder and rice hull. At the conditions of the whole cultural media mixed, the mycelial growth and density were in good conditions ; cotton hull, sawdust, rice straw, zeolite, corn cob, defatted rice bran, white cotton, tobacco trash powder, rice hull, and peat were mixed 43.0 : 17.2 : 25.8 : 2.0 : 2.0 : 3.0 : 2.0 : 1.0 : 3.0 : 1.0 (V/V, %).

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Quality Characteristics of Garaedduk with Defatted Rice Bran (탈지 미강 첨가량에 따른 가래떡의 품질특성)

  • Choi, Eun-Hi
    • Culinary science and hospitality research
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    • v.19 no.3
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    • pp.130-141
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    • 2013
  • In this study, the mechanical and sensory quality characteristics of bar rice cake, Gareadduk, have been measured from the reference group and the sample groups with 10%, 20% 30% and 40% of defatted rice, containing high dietary fiber. From the general properties of rice powder and defatted rice, the crude protein, crude fat and crude ash of defatted rice were higher than those of rice powder, and especially dietary fiber content of defatted rice was 24.6%, 7-8 times higher than that of rice powder. The moisture content of Gareadduk has declined with increased mixing rate of defatted rice. According to the chromatography test result, its brightness, L-value has declined with increased mixing rate of defatted rice while there was no significant difference for different storage periods. Its redness, a-value, has declined with increased mixing rate of defatted rice and longer storage periods. Its yellowness, b-value, has inclined with increased mixing rate of defatted rice and longer storage periods, which showed no significant difference. Its hardness has significantly increased with increased mixing rate of defatted rice. Also, its hardness has gradually increased with longer storage periods. From the elasticity and viscosity test result, there was no specific tendency, but the chewiness of the sample groups was higher than that of the reference group. The sensory test result showed that the colour and scent of bar rice cake, Gareadduk, were getting stronger with increased mixing rate of defatted rice. The taste of the sample groups was stronger than that of the reference group, and the overall acceptability of the sample groups showed the order of 20%> 30%> 40%> 10%.

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Optimization of Extraction and Purification of Phytic Acid from Defatted Rice Bran (탈지미강으로부터 Phytic Acid의 추출과 정제의 최적화)

  • Choi, Moon Sil;Han, Bok Kyung;Choi, Hyuk Joon;Park, Young-Seo
    • Food Engineering Progress
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    • v.15 no.3
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    • pp.276-281
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    • 2011
  • The optimum condition for the extraction and purification processes of phytic acid from defatted rice bran was examined. The phytic acid was efficiently extracted when the defatted rice bran was treated with 10 volumes of 0.5% HCl for 1 hr. For the neutralization of acid-treated extract, 0.5% NaOH was the most acceptable. To purify phytic acid, Diaion HP20 resin was used to remove impurities from the extract. The flow-through was then loaded onto ion exchange columns packed with various resins and among them, Amberlite IRA-416 resin showed highest recovery yield. When the phytic acid was absorbed onto Amberlite IRA-416 resin and then eluted with 0.5% NaOH, 89% of applied phytic acid was eluted. Most proteins were removed from the purified phytic acid and total protein content of the phytic acid was 0.14%(w/w).

Rancid Rice Bran Affects Growth Performance and Pork Quality in Finishing Pigs

  • Chae, B.J.;Lee, S.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.15 no.1
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    • pp.94-101
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    • 2002
  • Two experiments were conducted to evaluate the feeding value of rancid rice bran in finishing pigs. In exp. 1, fresh (FRB), rancid (RRB), pelleted and extruded rice bran were used to determine stability and nutrient digestibility. The free fatty acid (FFA) values of FRB and RRB were 8.2 and 15.3%, respectively. Some of the FRB was pelleted ($70^{\circ}C$) or extruded ($110^{\circ}C$). In exp. 2, a total of 48 pigs ($Landrace{\times}Yorkshire{\times}Duroc$, $51.12{\times}0.5kg$) were employed for a 56-d feeding trial with 3 treatments: Control (defatted rice bran+animal fat), 20% FRB (8.2% FFA), and 20% RRB (15.6% FFA). There was a significant difference (p<0.05) in FFA% between raw and pelleted, and extruded rice bran on d 10 after storage. On d 30 the extruded rice bran showed lower (p<0.05) FFA% than the pelleted one. Dry matter digestibility was higher (p<0.05) in processed rice brans (pelleted or extruded) than raw rice bran (FRB or RRB). Energy and protein digestibilities in extruded rice bran were higher (p<0.05) than those in raw rice brans. The digestibilities of isoleucine, leucine and phenylalanine were lower (p<0.05) in RRB than FRB. Pigs fed diets containing FRB grew faster (p<0.05) and showed better feed conversion ratio (p<0.05) than those fed diets containing defatted rice bran or RRB. Carcass characteristics including dressing percentage and backfat thickness were not affected (p>0.05) by dietary treatments. With increasing storage time, the raw pork from RRB showed higher (p<0.05) thiobarbituric acid reactive substance (TBARS) and peroxide value (POV) than those from FRB when stored at $1^{\circ}C$ for 3 weeks. Cooked pork showed rapid increase in TBARS and POV as compared to raw pork regardless of rice bran rancidity. As the storage time passed, Lightness (L) was lower (p<0.05) in RRB than FRB. Redness (a) was higher (p<0.05) in control than rice bran groups when stored 2-3 weeks. However, there was no difference (p>0.05) in redness (a) between the two rice bran groups. In conclusion, feeding rancid rice bran gave negative effects on growth performance and pork quality in finishing pigs.