In this paper, the mechanical properties of glass fiber reinforced plastic (GFRP) rebar, which has been applied as an concrete reinforcement, and produced carbon fiber reinforced plastic (CFRP) grid were compared to develop a concrete reinforcement material with excellent mechanical properties. In addition, the mechanical properties of CFRP prepared with each molding process were evaluated. Three molding processes were evaluated: prepreg oven bagging, reaction injection molding (RIM), and pultrusion. The tensile strength of the CFRP grid prepared through pultrusion was 2.85GPa, the elastic modulus was 169.81GPa, and the strain was 1.68%, which was 2.85 times better in tensile strength, and 2.83 times better in elastic modulus compared mechanical properties of GFRP rebar. The strain was confirmed to be equivalent to GFRP rebar.
Background: This study was conducted to acquire basic information on the phenotypic and genotypic characteristics of the germplasm of Panax ginseng C. A. Meyer collected from China and Korea, and identify the variations that can be utilized in ginseng breeding programs. Methods and Results: Quantitative parameters were evaluated, and used to compare and analyze on genetic polymorphisms in the germplasm. The genetic characteristics and classifications were compared and analyzed for each character. Stem length followed a normal frequency distribution ranging from 15.5 ㎝ to 40.5 ㎝, with showing approximately 40% having a stem length of 20 - 30 ㎜. Stem diameters ranged from 2.7 ㎜ to 11.3 ㎜. Stem number per plant ranged from 1 to 3; approximately 50% had a single stem, and 45% had two stems. A non-normal frequency distribution was observed for petiole number, with approximately 60% of the germplasm having 3 - 5 petioles. Petiole length exhibited a normal frequency distribution, raging from 4.5 to 10.6. Petiole angle in the germplasm ranged from 28° to 89° and seedstalk length ranged from 5.6 ㎝ to 27.3 ㎝. Conclusions: The genetic polymorphisms identified by complete linkage clustering based on the quantitative characteristics of Panax ginseng C. A. Meyer collected from Korea and China were classified to 6 groups, namely I, II, III, IV, V, and VI with frequencies of 6.7%, 20.0%, 31.7%, 8.3%, 6.7%, and 26.7%, respectively.
본 연구는 환자용 균형영양식으로 제조하여 감마선 조사처리를 통해 살균한 모델식품의 유전독성 여부를 평가하기 위해 수행되었다. 4 kGy 이상의 흡수선량으로 감마선 조사처리한 시료에서 생균수가 1 log CFU/g의 검출한계 이하로 나타났기 때문에 살균을 위한 조사처리 선량으로 4 kGy를 설정하였다. 복귀돌연변이 유발성 평가 결과, 모델식품의 열수 추출물과 메탄올 추출물은 처리한 용량과 대사활성계존재 여부와는 상관없이 음성대조구(멸균증류수 또는 DMSO)와 유사한 수준의 복귀돌연변이 발생빈도를 나타내었다. 염색체 이상 시험에서 실험군들의 정상 염색체의 수는 음성대조군과 유사하였으며, 용량 및 대사활성계에 대한 비의존성을 나타내어 염색체 이상 유발능은 없는 것으로 판단하였다. 또한 최고 2,000 mg/kg 체중의 농도로 모델식품을 경구 투여한 마우스의 골수세포에서도 소핵 다염성적 혈구의 발생빈도는 음성대조군에 비해 유의적인 차이를 나타내지 않았다. 따라서 4 kGy의 흡수선량으로 감마선 조사처리한 환자용 균형영양식은 본 실험 조건하에서 유전독성을 나타내지 않는 것으로 사료된다.
본 연구는 면역저하 환자용 신선편의 채소류의 위생화를 위해 당근, 오이고추, 방울토마토, 파프리카를 모델식품으로 선정하여 다양한 흡수선량으로 엑스선 조사처리한 후 미생물학적, 이화학적, 관능적 품질 평가를 수행하였다. 당근과 오이고추의 경우 0.4 kGy, 방울토마토와 파프리카의 경우 0.2 kGy 이상의 흡수선량으로 엑스선 조사처리 시멸균이 확인되었으며, 총 호기성세균 및 대장균군을 제외한 병원균들은 1 log 수준의 검출한계 이하로 나타났다. 모델식품에 접종된 E. coli. L. monocytogenes, S. Typhimyrium에 대한 엑스선의 D10값은 0.11-0.32 kGy로 나타나, 0.4 kGy의 흡수선량을 신선편의 채소류의 멸균을 위한 잠정적인 최소 흡수선량으로 설정하였다. 최대 0.6 kGy의 흡수선량으로 엑스선 조사처리된 신선편의 채소류에 대한 전체 선호도의 경우 7점 척도에서 모두 5.0 점 이상으로 나타나 이들의 관능적 품질이 수용 가능한 수준인 것으로 판단하였다. 또한, 암환자를 대상으로 엑스선 멸균처리(0.4 kGy)된 신선편의 채소류에 대한 선호도 설문조사에서 오이고추와 방울토마토, 파프리카의 경우 모든 항목에 대한 평균 선호도 점수는 5점 척도에서 모두 4.0점 이상으로 나타났다. 따라서 엑스선으로 멸균처리된 오이고추, 방울토마토, 파프리카는 면역력이 저하된 환자들을 위한 위생학적으로 안전한 신선편의 채소로 제공이 가능할 것으로 판단된다.
Background: The roots of Atractylodes macrocephala Koidzumi contain atractylone, which is used to suppress appetite and indigestion caused by gastrointestinal disturbance. The present study was conducted to investigate the effect of several organic compost on the growth and root yield of A. macrocephala with organic fertilizer.Methods and Results:When organic fertilizer was applied basally, the average yield of 10 a was 184.6 ㎏ in the HA (Hwanggeumjidae, organic material mix), 171.3 ㎏ in the GG (Gyunbaeyangchegreen, bacterial cuture filtrate) and 175.0 ㎏ in the CF (Customary fertilization, control) each other in practice of CF had no statistical significance. Atractylenolide I was significantly greater in the HA (0.036%) than the GG (0.034%) or CF (0.023%). With regard to the amount of organic fertilzer, 10 a yield ws the most common of 203.0 ㎏ at 2.0 times of the organic 1 (HA), conventional fertilization of 134.0 ㎏ and 173.0 ㎏ of no application was a statistically significant. Organic fertilizer 1 was 1.5 to 2.0 times, organic fertilizer was 2 to 1.5 times that were most suitable.Conclusions:The results of the present study indicated that HA and GG are the most suitable for the organic cultivation of A. macrocephala. The content of atractylone I was highest under the HA treatment and lowest under the CU (Chamjoa, oil cake), TG (Totogreen, plant oil cake) and HG (Heuksalgreen, Castor oil cake) treatment.
Background: This study aimed to investigate the effect of harvest time on the growth, yield characteristics and loganin content in Dipsacus asperoides Wall. Methods and Results: Dipsacus asperoides seedlings were planted within a nursery environment in early May 2015 and harvested in early, middle and late October 2015, and early November 2015. Harvest time did not result significant differences in the plant height, stem diameter, branch length, leaf width and aboveground dry weight moreover, no significant differences were observed in root length, number of roots and root diameter. However, the diameter of lateral roots was greater in the harvests from the late October and period thereafter. The highest values of root dry weight and yield were recorded in early November. Specifically, the yield significantly increased from 205 ㎏/10 a (index: 100) in early October to 358 ㎏/10 a (index: 175) in early November, in terms of root part weight. Loganin contents of D. asperoides differed significantly among harvest times raging from 0.0766% in early October to 0.1704% in late November, thereby showing an increasing trend in later harvest times. Conclusions: These results suggest that the optimum harvest time for D. asperoides is early November, when the yield is the highest. Harvest time significantly affected loganin contents, which constantly increased from early October until early November.
This study was carried out to have the basic and applied informations relating to develop the cultivation methods and to increase the productivity and quality of ginseng. 1 to 6 year old ginsengs of Jakyung cultivar were cultivated and the content and synthetic amount of carbohydrates were investigated with different plant tissues, growth stages, and years old. The concentration of total carbohydrates at six year old ginseng including water soluble and water insoluble carbohydrates was about 18.9%, 42.9%, and 43,6% in leaves, tap roots, and lateral roots, respectively. Water soluble carbohydrate of tap and lateral roots was slightly decreased from August until September, and then increased on November, whereas its water insoluble carbohydrate was increased from August to September and then decreased on November. Comparing with the content of carbohydrates of 1 to 6 year old ginsengs, it was continuously increased from one year old ginseng until five year old ginseng, however it was not increased much in six year old ginseng. The highest content of carbohydrates was at five year-old in all tissues of ginseng. Water soluble and water insoluble carbohydrates were significantly shown different in leaves, stems, tap roots, and lateral root at different growth stages and with different years old. The content of water soluble carbohydrate in the leaves was remarkedly higher compared to that of water insoluble carbohydrate, while in the root the content of water insoluble carbohydrate was clearly higher compared to the water soluble carbohydrate. Comparing with the synthetic amount of carbohydrates, water soluble carbohydrates was higher in the shoot than that in the root, whereas water-insoluble carbohydrates higher in the root than that in the shoot. Carbohydrates which would be utilized in ginseng tissues for short and long-term periods as major energy were appeared differently in between shoot and root, with different growth stages, and years old.