• Title/Summary/Keyword: Water Column

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Identification and Characterization of Fibrinolytic Compound from Cornus officinalis S. et Z (산수유(Cornus officinalis)로부터 혈전용해물질의 확인 및 특성 연구)

  • Kim, Jun-Ho
    • Korean Journal of Plant Resources
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    • v.33 no.4
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    • pp.237-244
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    • 2020
  • The objective of this study was to identify and characterize fibrinolytic compound from Cornus officinalis. Cornus officinalis. Hot water extract was fractionated into hexane, chloroform, ethyl acetate, butanol, and water fractions. Assays for fibrinolytic activity indicated that only the ethyl acetate fraction had significant efficacy at 1.36 plasmin units/mL. Isolation of fibrinolytic compound was carried out on Amberlite IRA-400, Sephadex LH-20 and active charcoal column chromatography. HPLC analysis of the purified fibrinolytic compound showed retention time (RT) same as authentic malic acid. LC / MS / MS in negative mode showed the same peak at m/z 133, confirming that the purified compound was malic acid with a molecular weight 134 Da. The compound showed fibrinolytic activity of 0.69 plasmin units/mL, 14.62% of thrombin inhibitory activity, 6.42% of antioxidative activity, and 17.28% of α-glucosidase inhibitory activity. The purified compound hydrolyzed γ subunits of human fibrinogen. In conclusion, malic acid isolated from Cornus officinalis might have potential to be developed as ingredient for biofunctional foods to prevent cardiovascular diseases.

Purification and Identification of Phenol Compounds with Inhibitory Activity on Helicobacter pylori from Rhododendron mucronulatum Flos. Extracts (진달래꽃(Rhododendron mucronulatum Flos.) 추출물로부터 Helicobacter pylori 억제 효과를 가지는 phenol성 물질의 정제 및 동정)

  • Ju, In-Sik;Cho, Young-Je
    • Journal of Life Science
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    • v.19 no.8
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    • pp.1125-1131
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    • 2009
  • The antimicrobial activities of Helicobacter pylori as a functional food source with water and 60% ethanol extracts from Rododendron mucronulatum Turcz. flowers were examined. The total phenol content of 60% ethanol extracts (30.6${\pm}$0.14 mg/g) from Rododendron mucronulatum Turcz. flowers was higher than that of water extracts (23.2${\pm}$0.21 mg/g). The inhibitory activities of Rododendron mucronulatum Turcz. extracts on H. pylori was determined to clear zone of 15 mm in 80% ethanol extracts. Purification of inhibitory compounds was carried out in Sephadex LH-20 and MCI-gel CHP-20 column chromatography using a gradient procedure, with increasing ethanol(0${\rightarrow}$100%) in $H_2O$. The chemical structure of the purified inhibitory compounds of H. pylori was identified to be quercitrin (quercetin-3-O- rhamnopyranoside), myricitrin (myricetin-3-O-rhamnopyranoside), quercetin by FAB-MS, NMR and IR spectra.

Hydrolysis of Ginseng Saponins and Quantifications of Saponins, Prosapogenins and Sapogenins in Crude Drug Extracts for Quality Contyol

  • Ko, Sung-Ryong;Choi, Kang-Ju;Cho, Byung-Goo;Nho, Kil-Bong;Kim, Seok-Chang;Jeon, Byeong-Seon;Kim, Chun-Suk
    • Journal of Ginseng Research
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    • v.29 no.3
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    • pp.126-130
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    • 2005
  • Ginseng saponins have been known as main active principles and are quantified as the index components of ginseng and its products for quality control. However ginseng saponins are easily hydrolyzed in acidic solutions of crude drug preparations. Due to the hydrolysis of saponins in acidic condition, it is generally difficult to determine ginseng saponins In crude drug preparations. Ginseng saponins, prosapogenins and sapogenins of crude drug extracts were quantified by HPLC. Ginseng saponins were quantified by HPLC on $Lichrosorb-NH_2$ column with acetonitrile/water/1-butanol(80:20:10, v/v). Ginseng $prosapogenin-Rg_2$ and $-Rg_2$ were extracted with ethyl acetate from $50\%$ acetic acid hydrolyzates of saponin fractions and quantified by HPLC on $Lichrosorb-NH_2$ column with acetonitrile/water(90:10, v/v). Ginseng sapogenins, panafadiol and panaxatriol, were extracted with diethyl ether from $7\%-sulfuric$ acid hydrolyzates of saponin fractions and quantified by HPLC on ${\mu}-Bondapak\;C_{18}$ column with acetonitrile/methano1/chloroform(83:10:7, v/v). These methods of analyses of sapogenins and prosapogenins were more useful for quality control than those of ginseng saponins in some of crude drug preparations.

Isolation of a Calcium-Binding Fraction from a Hot-Water Extract of Smilax rhizoma (청미래덩굴 뿌리 열수 추출물로부터 칼슘 결합 물질의 분리)

  • Lee, Ji-Hye;Jeon, So-Jeong;Song, Kyung-Bin
    • Food Science and Preservation
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    • v.17 no.6
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    • pp.903-907
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    • 2010
  • We isolated a calcium-binding substance from Smilacis rhizoma hot-water extract using ion exchange, normal phase HPLC, and gel filtration chromatography; fractions were analyzed for calcium-binding activity. Fractions (F6) with the highest calcium-binding activity from the resource Q coulmn were pooled and further purified on an $NH_2$ column. Two major peaks were separated and the fraction (F61) with the higher calcium-binding activity was then loaded onto a $Superdex^{TM}$ column. A single peak (F611) with calcium-binding activity was finally obtained. These results suggest that the isolated calcium-binding fraction could be used as a functional food additive, similar to a calcium supplement, in the food industry.

Optimal Remediation of TCE-contaminated Groundwater using Direct Current and Fe$^0$ (직류전원과 0가 철을 이용한 지하수내 TCE정화효율의 최적화 연구)

  • Moon, Ji-Won;Moon, Hi-Soo;Roh, Yul;Kim, Heon-Ki;Song, Yun-Goo
    • Economic and Environmental Geology
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    • v.35 no.3
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    • pp.229-239
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    • 2002
  • The objective of this study was to design an optimal electro-remediation system for TCE contaminated water using zero talent iron (ZVI) and direct current (DC). A series of column experiments were conducted to evaluate the effects of electrode arrangement and the location of permeable iron barrier in the column on the TCE removal efficiency and iron corrosion process. In twelve different combinations of ZVI and/or DC application in the test columns, the rate of reductive degradation of TCE was improved with simultaneous application of both ZVI and DC compared to that used ZVI only. The moot effective arrangement of electrode and ZVI for TCE removal from water was a column set with ZVI and cathode installed at the down gradient, respectively.

Numerical Analysis of Wave Energy Extraction Performance According to the Body Shape and Scale of the Breakwater-integrated Sloped OWC

  • Yang, Hyunjai;Min, Eun-Hong;Koo, WeonCheol
    • Journal of Ocean Engineering and Technology
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    • v.35 no.4
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    • pp.296-304
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    • 2021
  • Research on the development of marine renewable energy is actively in progress. Various studies are being conducted on the development of wave energy converters. In this study, a numerical analysis of wave-energy extraction performance was performed according to the body shape and scale of the sloped oscillating water column (OWC) wave energy converter (WEC), which can be connected with the breakwater. The sloped OWC WEC was modeled in the time domain using a two-dimensional fully nonlinear numerical wave tank. The nonlinear free surface condition in the chamber was derived to represent the pneumatic pressure owing to the wave column motion and viscous energy loss at the chamber entrance. The free surface elevations in the sloped chamber were calculated at various incident wave periods. For verification, the results were compared with the 1:20 scaled model test. The maximum wave energy extraction was estimated with a pneumatic damping coefficient. To calculate the energy extraction of the actual size WEC, OWC models approximately 20 times larger than the scale model were calculated, and the viscous damping coefficient according to each size was predicted and applied. It was verified that the energy, owing to the airflow in the chamber, increased as the incident wave period increased, and the maximum efficiency of energy extraction was approximately 40% of the incident wave energy. Under the given incident wave conditions, the maximum extractable wave power at a chamber length of 5 m and a skirt draft of 2 m was approximately 4.59 kW/m.

A HPLC-UV method for quantification of ivermectin in solution from veterinary drug products

  • Kim, Young-Wook;Jeong, Wooseog
    • Korean Journal of Veterinary Service
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    • v.45 no.3
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    • pp.243-248
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    • 2022
  • The HPLC conditions for analysis of ivermectin in solutions dosage forms of commercial anthelmintics are different for each product. The purpose of this study was to establish a standardized chromatographic method for the quantification of ivermectin in solution. The separation was achieved on Waters Xbridge C18 column (4.6×150 nm, 5 ㎛) using different kinds of mobile phase composed of water/methanol/acetonitrile (15/34/51, v/v and 19.5/27.5/53, v/v), with UV detection at wavelengths 245 nm and 254 nm. A total of five commercial ivermectin in solution samples were analyzed. In this study, the optimal chromatographic conditions for analysis of ivermectin in solution were mobile phase of water/methanol/acetonitrile (15/34/51, v/v) at a flow rate of 1.0 mL/min and a detection wavelength of 245 nm using a Waters Xbridge C18 column (4.6×250 nm, 5 ㎛) at a column temperature of 25℃. The linearity was observed in the concentration range of 50~150 ㎍/mL, with a correlation coefficient, r2= 0.99999. The limit of detection and the limit of quantification were 0.88 and 2.68 ㎍/mL, respectively. The accuracy (% recovery) was found to be 98.9 to 100.3%. Intra-day and Intermediate precisions with relative standard deviations were less than 1.0%. The content of ivermectin for five market samples ranged 91.2~102.7%. The proposed method was also found to be robust, therefore, the method can be used for the routine analysis of ivermectin in solutions dosage forms.

Infiltration and Water Redistribution in Sandy Soil: Analysis Using Deep Learning-Based Soil Moisture Prediction (딥러닝 기반 함수비 예측을 이용한 사질토 지반 침투 및 수분 재분포 분석)

  • Eun Soo Jeong;Tae Ho Bong;Jung Il Seo
    • Journal of Korean Society of Forest Science
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    • v.112 no.4
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    • pp.490-501
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    • 2023
  • Laboratory column tests were conducted to analyze infiltration and water redistribution processes on the basis of rainfall. To efficiently measure moisture content within soil layers, this research developed a predictive model grounded in a convolutional neural network (CNN), a deep learning technique. The digital images obtained during the column tests were incorporated into the established CNN. The moisture content of each soil layer over time was effectively measured. The measured values were also in relatively good agreement with the moisture content determined using the moisture sensors installed for each soil layer. The use of CNN enabled a comprehensive understanding of continuous moisture distribution within the soil layers, as well as the infiltration process according to soil texture and initial moisture content conditions.

Active Exchange of Water and Nutrients between Seawater and Shallow Pore Water in Intertidal Sandflats

  • Hwang, Dong-Woon;Kim, Gue-Buem;Yang, Han-Soeb
    • Ocean Science Journal
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    • v.43 no.4
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    • pp.223-232
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    • 2008
  • In order to determine the temporal and spatial variations of nutrient profiles in the shallow pore water columns (upper 30 cm depth) of intertidal sandflats, we measured the salinity and nutrient concentrations in pore water and seawater at various coastal environments along the southern coast of Korea. In the intertidal zone, salinity and nutrient concentrations in pore water showed marked vertical changes with depth, owing to the active exchange between the pore water and overlying seawater, while they are temporally more stable and vertically constant in the sublittoral zone. In some cases, the advective flow of fresh groundwater caused strong vertical gradients of salinity and nutrients in the upper 10 cm depth of surface sediments, indicating the active mixing of the fresher groundwater with overlying seawater. Such upper pore water column profiles clearly signified the temporal fluctuation of lower-salinity and higher-Si seawater intrusion into pore water in an intertidal sandflat near the mouth of an estuary. We also observed a semimonthly fluctuation of pore water nutrients due to spring-neap tide associated recirculation of seawater through the upper sediments. Our study shows that the exchange of water and nutrients between shallow pore water and overlying seawater is most active in the upper 20 cm layer of intertidal sandflats, due to physical forces such as tides, wave set-up, and density-thermal gradient.

Evaluation of Adsorption Characteristics of Radioactive Iodine (I-131) for Various Materials of Granular Activated Carbon (GAC) (입상활성탄 재질별 방사성 핵종(I-131) 흡착 특성 평가)

  • Park, Hong-Ki;Son, Hee-Jong;Yeom, Hoon-Sik;Kim, Young-Jin;Choi, Jin-Taek;Ryu, Dong-Choon
    • Journal of Environmental Science International
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    • v.24 no.9
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    • pp.1123-1129
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    • 2015
  • This research was performed by means of several different virgin granular activated carbons (GAC) made of each coal, coconut and wood, and the GACs were investigated for an adsorption performance of iodine-131 in a continuous adsorption column. Breakthrough behavior was investigated that the breakthrough points of the virgin two coals-, coconut- and wood-based GACs were observed as bed volume (BV) 7080, BV 5640, BV 5064 and BV 3192, respectively. The experimental results of adsorption capacity (X/M) for iodine-127 showed that two coal- based GACs were highest (208.6 and $139.1{\mu}g/g$), the coconut-based GAC was intermediate ($86.5{\mu}g/g$) and the wood-based GAC was lowest ($54.5{\mu}g/g$). The X/M of the coal-based GACs was 2~4 times higher than the X/M of the coconut-based and wood-based GACs.