• Title/Summary/Keyword: rice starch gel

Search Result 65, Processing Time 0.033 seconds

Characteristics of non-waxy rice starch/gum mixture gels (멥쌀 전분과 검물질 혼합물 겔의 특성)

  • Shin Malshick;Kwon Ji-Young;Song Ji-Young
    • Korean journal of food and cookery science
    • /
    • v.21 no.6 s.90
    • /
    • pp.942-949
    • /
    • 2005
  • To improve the textural properties and stabilize the structure and gel matrix of non-waxy rice starch gels, non-waxy rice starch/gum mixture gels were prepared from various food gums, gum arabic, guar, algin, deacyl gellan, xanthan and gellan gums. The morphological and textural properties and freeze-thaw stability of their gels were compared. Rice starch/gum mixture gels with various gums formed a more homogeneous gel matrix with smaller particle size than rice starch gel without Em, but the trends differed depending on the gum types. The textural properties of rice starch/gum mixture gels were changed with the gum types. The shape of the rice starch/gum mixture gel matrix was desirable when mixed with gellan and algin. The textural properties of gels hardened in the rice starch/algin mixture gel and softened in the rice starch/algin mixture gel. The rice starch gels showed V-type crystallinity by x-ray diffractometer, but the peak at $2\theta$ = $20^{o}$ was decreased with increasing gum addition. The freeze-thaw stability increased with increasing gum addition. Gellan and algin were especially effective.

Physicochemical Properties of Phosphorylated Rice Starch (인산 쌀 전분의 이화학적 특성)

  • 정재홍;이미현;오만진
    • Journal of the Korean Society of Food Science and Nutrition
    • /
    • v.23 no.2
    • /
    • pp.244-250
    • /
    • 1994
  • Starch phosphates were prepared by dry heating method using sodium triphosphate as a substitution reagent and their physicochemical properties were investigated with the chucheongbyeo and samkangbyeo. The solubility and swelling power of rice starches were increased by phosphorylation reaction. The solubility of the chucheongbyeo was greater than that of samkangbyeo , but the swelling power was appeared in vice versa. The transparency of raw starch was increased at the 6$0^{\circ}C$, but phosphorylated rice starch was begun to increase from 5$0^{\circ}C$. Light transmittance was higher inthe phosphorylate drice starch. The lightness of phosphyorylated rice starch decreased more than that of raw starch. Whereas the yellowness of phosphorylated rice starch increased. The temperature of initial gelatinization of the phosphorylated chucheong and samkang rice starch was shown to 5$0^{\circ}C$ and 53$^{\circ}C$, respectively. lowering 14-15$^{\circ}C$ in temperatureby the phosphorylation . The viscosity as well as by the phosphorylation reaction was raised 7.4-8.4 times, respectively. The hardness, adhesiveness, cohesiveness and texture which is rheological properties of starch gel increased by the phosphoryulation reaction. The chucheong rice starch gel was slightly higher in its rheolgocial values thanthat of the samkang rice starch gel. The rice starch particles were shown to polygonal structure, but they were deformed in the phosphorylated starch.

  • PDF

Studies on the Retrogradation Properties of Rice Starch (쌀 전분의 노화 특성에 관한 연구)

  • Lee, Chan
    • The Korean Journal of Food And Nutrition
    • /
    • v.16 no.2
    • /
    • pp.105-110
    • /
    • 2003
  • The effect of varietal differences of rice starches by amylose content and gel consistency on the retrogradation behavior was studied. The gel consistency test, which is designed to detect differences in the texture of cooked rice of varieties that have a similar amylose content, had been turned out to be useful in this study. Both Suwon 232 and San Li Cun had higher amylose content, but were greatly different in gel consistency values. The results showed that setback viscosity of rice flour measured in a Brabender amylograph was significantly affected by amylose content as well as gel consistency. Increase in the rigidity modulus (E) of rice starch gels during storage determined by using Texture analyzer indicated that amylose content was an important factor in terms of hardness development The study of Avrami kinetics of retrogradation showed that time constant of rice starch gels was influenced by amylose content, but not by gel consistency.

Effects of Amylose Contents and Degree of Gelatinization of Rice Flour on In Vitro Starch Digestibility, Physical Characteristics, and Morphological Properties

  • Park, Ji Eun;Bae, In Young;Oh, Im Kyung;Lee, Hyeon Gyu
    • Food Engineering Progress
    • /
    • v.21 no.4
    • /
    • pp.341-350
    • /
    • 2017
  • The relationship of in vitro starch digestibility and gel strength was investigated at various concentrations (10-30%) of rice cultivars with different amylose contents (27.9, 17.9, and 5.2%). As the rice flour concentration increased, predicted glycemic index decreased, but gel strength increased regardless of amylose contents. Gel strength correlated strongly with amylose content, whereas in vitro starch digestibility was more highly affected by rice flour concentration than by amylose contents. Moreover, the impact of degree of gelatinization on in vitro starch digestibility of high amylose rice was also examined in terms of structural features and rheological properties. The digestion rate of fully gelatinized flour was 1.7 times higher than that of native flour, while the disrupted structure with a different gelatinization degree during starch digestion was visually demonstrated through the X-ray diffraction and molecular distribution analysis. The rice flour changed from an A-type to a V-type pattern and showed difference in crystalline melting. The low molecular weight distribution increased with increasing degree of gelatinization during starch digestion. The apparent viscosity also increased with degree of gelatinization. These results demonstrated that the starch digestibility of rice was more affected by concentration than by amylose content, as well as by the degree of gelatinization due to structural difference.

Effect of Acetylated Rice Starch on Rheological Properties of Surimi Sol and Gel

  • Jung, Young-Hwa;Kim, Won-Woo;Yoo, Byoung-Seung
    • Food Science and Biotechnology
    • /
    • v.16 no.5
    • /
    • pp.817-821
    • /
    • 2007
  • The effect of acetylated rice (AR) starch at different concentrations (0, 4, 6, and 8%) on rheological properties of surimi sols and gels was studied. Dynamic frequency sweeps of surimi-AR starch sols at $10^{\circ}C$ showed that the magnitudes of storage moduli (G') decreased with an increase in starch concentration while those of tan ${\delta}$ increased, indicating that the effect of AR starch on the viscoelastic properties of surimi sols depended on starch concentration. In general, the G' thermograms of surimi sols showed the similar sol-gel transition pattern and they were also influenced by the addition of AR starch. The presence of AR starch in the surimi gel system reduced the gel strength and expressible moisture content (EMC). Surimi-AR starch gels showed better freeze-thaw stability compared to the control (0% starch concentration). The effect of AR starch on the rheological properties of surimi sols and gels appeared to be related to the swelling ability of starch granules in the presence of limited water available for starch.

Retrogradation Characteristics of Acetylated Rice Starches (초산화 쌀전분의 노화 특성)

  • 정재홍;오문헌;노영희;이희봉
    • Journal of the East Asian Society of Dietary Life
    • /
    • v.3 no.2
    • /
    • pp.139-145
    • /
    • 1993
  • Retrogradation characteristics of the acetylated and raw starch were investigated with the chucheongbyeo and Samkangbyeo. The freeze-thaw stability and syneresis on starch gel were more stable and lower in acetylated rice starch, suggested that the rice starch acetylated with acetyl group is more stable in the various conditions. The retrogradation time constant of acetylated rice starch gel from the Chucheongbyeo and Samkangbyeo which were measured at 5$^{\circ}C$ storage were 11.7 days and 10.2 days, respectively. In addition, the retrogradation time constant in 21$^{\circ}C$ were 50.5 days and 49.8 days, indicating that retrogradation was noticiably retarded in this occation.

  • PDF

Retrogradation Behavior of Rice Starches Differing in Amylose Content and Gel Consistency (아밀로오스 함량과 Gel Consistency의 차이에 의한 품종별 쌀전분의 노화특성)

  • Kum, Jun-Seok;Lee, Sang-Hyo;Lee, Hyun-Yu;Lee, Chan
    • Korean Journal of Food Science and Technology
    • /
    • v.28 no.6
    • /
    • pp.1052-1058
    • /
    • 1996
  • The effect of varietal differences of rice starches by amylose content and gel consistency on the retrogradation behavior was studied. Setback viscosity of rice flour measured in a Brabender amylograph was significantly affected by amylose content as well as gel consistency. Increase in the rigidity modulus (E) of rice starch gels during storage determined by using texture analyzer indicated that amylose content was an important factor in terms of hardness increase. Kinetics of retrogradation showed that time constant of rice starch gels was influenced by amylose content, but not by gel consistency.

  • PDF

Investigation of Physical Property Change in Modified Rice Starch by Ultra Fine Pulverization (초미세분쇄를 이용한 쌀 변성전분의 물리적 특성 변화구명)

  • Han, Myung-Ryun;Chang, Moon-Jeong;Kim, Myung-Hwan
    • Applied Biological Chemistry
    • /
    • v.50 no.3
    • /
    • pp.160-166
    • /
    • 2007
  • This study was performed to analyze the molecular structural and physical properties changes of modified rice starch, which particle structure was broken using high impact planetary mill and ultra fine pulverizing techniques. The average diameter and specific surface area of rice starch after pulverization decreased 20% and increased 25%, respectively. Low molecular substances content in rice starch using GPC (gel permeation chromatography) increased from 36.5% to 59.5% after pulverizing of rice starch. Damaged starch contents in rice starch also increased from 16.4% to 99.2% after pulverizing of rice starch. Water holding capacity, solubility and transmittance of rice starch after pulverization increased compared to those of control. Apparent viscosity value of rice starch after pulverization decreased to 7% in control based on $30^{\circ}C$ and 20 RPM conditions.

Gelatinization and retrogradation characteristics of Korean rice cake in the presence of citric acid

  • Timilehin Martins Oyinloye;Won Byong Yoon
    • Journal of Applied Biological Chemistry
    • /
    • v.66
    • /
    • pp.90-97
    • /
    • 2023
  • The effect of citric acid on rice starch gelatinization and low-temperature (4 ℃) storage was studied in order to produce rice cake with a lower retrogradation rate. A citric acid solution in the ratio of 0, 0.5, 1.0, and 1.5% (w/w) of the water used during production was utilized. The gelatinization properties, gel strength, thermal properties, and texture analysis were evaluated to determine the retrogradation rate. The result showed that acid hydrolysis occurred in samples treated with citric acid. Thus, increasing citric acid decreased gelatinization temperature (58.63±1.98 to 45.84±1.24 ℃). The moduli of elasticity increased with increasing citric acid concentration, indicating an increased gel strength. Thermal analysis of starch showed that the onset, peak, and conclusion temperatures of retrogradation were increased significantly with the storage period and decreased with citric acid concentration. After 72 h of low-temperature storage (4 ℃), the retrogradation rate was lowest in the rice cake with 1.5% citric acid solution, with an increased ratio of 12.01 to 13.60% compared to the control sample, with a ratio of 12.99 to 43.54%. This shows a high retrogradation rate in the control sample. Additionally, sensory properties and retrogradation ratio suggest that the addition of 1.0% citric acid solution during rice cake production is efficient in retarding the retrogradation without an adverse effect on the rice cake modeling and acceptance.

Varietal Variation in Structure and Physical Characteristics of Rice Endosperm Strach (쌀 배유전분구조 및 물리적 특성의 품종 변이)

  • 강미영;최해춘
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.38 no.6
    • /
    • pp.513-523
    • /
    • 1993
  • Varietal difference in structural and physical characteristics of rice starch and interrelationships between these starch properties and the physicochemical components of rice grains were investigated for twenty four rice varieties, which were considerably different in amylose content, gelatinization temperature and gel consistency, to obtain the basic informations for diversifying the utility of rice grains and for developing various rice cultivars adaptable to rice food processing. Wave length of maximum absorbance for blue color reaction of starch-I$_2$ complex was 520nm for glutinous rice and 560~600nm for nonglutinous rice. The higher amylose rice showed the longer wave length but there was considerable difference of the wave length among rice materials with similar amylose content. Varietal difference in frequency distribution of debranched starch molecules by isoamylase hydrolysis was largest in amylose fraction, the longest fraction(Fr. I), and was next bigger in intermediate fraction(Int.Fr.) and the ratio between short and long glucose chain of amylopectin fraction(Fr. III /Fr. II). The Fr. III / Fr II ratio was higher in glutinous rice than in nonglutinous one but it was considerably different among nonglutinous rice varieties without any connection with amylose content. The lower alkali digestible rice showed the longer half-hydrolysis time in acid solution. Both soft and hard gel rice varieties in gel consistency test revealed significant varietal difference of 50% acid hydrolysis time. The harder rice in gel consistency exhibited the less frequency of short branch fraction of amylopectin (Fr. III) and the higher amylose content. Twenty four rice varieties were cleary classified by upper two principal components contracted from structural or physical traits of rice starch and some physicochemical properties of rice grain by principal component analysis. The 1st and 2nd principal components can be characterized to components related with amylose and amylopectin structure respectively.

  • PDF