• Title/Summary/Keyword: 화학적 반응

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A Study on the Preparation and Application of Au/TiO2 Nanofiber from AAO Template (AAO Template를 이용한 Au/TiO2 나노섬유 제조 및 응용에 관한 연구)

  • Eom, Seon-Mi;Park, Sang-Sun;Kim, Young-Deok;Kim, Yong-Rok;Shul, Yong-Gun
    • Journal of the Korean Electrochemical Society
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    • v.12 no.1
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    • pp.47-53
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    • 2009
  • In this study, highly ordered AAO (Anodic Aluminum Oxide) with nanopores was prepared by commercial grade Al substrate containing 3.5 wt.% impurities through two step anodizing method. Nanopores of prepared AAO arrays were used as templates for preparing nanofiber. $TiO_2$ was deposited by using DP (deposition-precipitation) method into AAO pores to grow nanofiber. Au particles were loaded on this $TiO_2$ nanofiber which was grown vertically. Prepared 2 wt.% $Au/TiO_2$ nanofiber was characterized by XRD, SEM and Raman. The crystal structure was analyzed by the XRD. SEM was used to observe pore size and pore wall thickness. Photocatalytic activity of co-oxidation was compared with $TiO_2$ and $Au/TiO_2$ nanofiber on AAO arrays.

Development of a Nutriculture System for Fruit Vegetables Using Perlite and Its Mixtures with Other Substrates II. Effects of Substrates on the Growth and Fruit Quality of Hydroponically Grown Tomato (Perlite 단용 및 혼용처리를 이용한 과채류 양액재배 기술 개발 II. 배지의 종류가 양액재배 토마토의 생장과 과실품질에 미치는 영향)

  • 정순주;서범석;이범선;이정현
    • Journal of Bio-Environment Control
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    • v.5 no.1
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    • pp.7-14
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    • 1996
  • This experiment was carried out to investigate the growth and yield responses of hydroponically grown tomato as affected by the different substrates using perlite and mixtures with perlite. Substrates used in this experiment were perlite (fine and coarse granule), peatmoss, rice hull and carbonized rice hull. The results obtained were as follows ; The best results in terms of total fruit yield and average fruit weight obtained in the single treatment of perlite, followed by perlite mixture with rice hull and carbonized rice hull. Leaf area was also higher in the plots of perlite mixture and optimum mixing ratio of perlite, peatmoss and carbonized rice hull was determined as 5:3:2 by volume. The more the rice hull was added to the mixed substrates, the less in fruit production was observed. However, adding perlite to other substrates brought higher fruit yield. Single treatment of rice hull showed the lowest fruit yield but enhanced in soluble solids contents over 6.0 $^{\circ}$Brix at each cluster.

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Cellular Protective Effects and Mechanisms of Kaempferol and Nicotiflorin Isolated from Annona muricata against 1O2-induced Damage (그라비올라로부터 분리된 Kaempferol 및 Nicotiflorin의 1O2으로 유도된 세포손상에 대한 보호 효과와 그 메커니즘)

  • Park, So Hyun;Shin, Hyuk Soo;Lee, Nan Hee;Hong, In Kee;Park, Soo Nam
    • Applied Chemistry for Engineering
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    • v.29 no.1
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    • pp.49-55
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    • 2018
  • In this study, we investigated the cellular protective effects and mechanisms of nicotiflorin and its aglycone kaempferol isolated from Annona muricata. The protective effect of these components against $^1O_2$-induced cell damage was also studied by using L-ascorbic acid and (+)-${\alpha}$-tocopherol as controls. Kaempferol exhibited the most potent protective effect, followed by (+)-${\alpha}$-tocopherol and nicotiflorin. L-Ascorbic acid did not exhibit any cellular protective effects. To elucidate the mechanism underlying protective effects, the quenching rate constant of the singlet oxygen, free radical-scavenging activity, ROS-scavenging activity, and uptake ratio of the erythrocyte membrane were measured. The results showed that the cell membrane penetration is a key factor determining the cellular protective effect of kaempferol and its glycoside nicotiflorin. The result from L-ascorbic acid demonstrated that the cellular protective effect of a compound depends on its ability to penetrate the cell membrane and is independent of its antioxidant capacity. In addition, it is suggested that cellular protective effects of kaempferol and (+)-${\alpha}$-tocopherol depend not only on the cell permeability, but also on free radical- and ROS-scavenging activities. These results indicate that the cell permeability and free radical- and ROS- scavenging activities of antioxidants are major factors affecting the protection of cell membranes against the oxidative damage induced by photosensitization reaction.

Sorption Kinetics of Hydrophobic Organic Compounds in Wetland Soils (습지 토양에서 소수성 유기화합물질의 흡착 동력학)

  • Park, Je-Chul;Shin, Won-Sik
    • Korean Journal of Ecology and Environment
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    • v.36 no.3 s.104
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    • pp.295-303
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    • 2003
  • Sorption kinetics of hydrophobic organic compounds (chlorobenzene and phenanthrene) in natural wetland soils was investigated using laboratory batch adsorbers. One -site mass transfer model (OSMTM) and two compartment first-order kinetic model (TCFOKM) were used to analyze sorption kinetics. Analysis of OSMTM reveals that apparent sorption equilibria were obtained within 10 to 75 hours for chlorobenzene and 2 hours for phenanthrene, respectively. For chlorobenzene, the sorption equilibrium time for surface soil was longer than that of deeper soil presumably due to physico-chemical differences between the soils. For phenanthrene, however, no difference in sorption equilibrium time was observed between the soils. As expected from the number of model parameters involved, the three-parameter TCFOKM was better than the two-parameter OSMTM in describing sorption kinetics, The fraction of fast sorption ($f_1$) and the first-order sorption rate constants for fast ($k_1$)and slow ($k_2$) compartments were determined by fitting experimental data to the TCFOKM. The results of TCFOKM analysis indicate that the sorption rate constant in the fast compartment($k_1$) was much greater than that of slow fraction($k_2$) . The fraction of the fast sorption ($f_1$) and the sorption rate constant in the fast compartment($k_1$) were increasing in the order of increasing $k_{ow}$, phenanthrene > chlorobenzene. The first-order sorption rate constants in the fast ($k_1$) and slow ($k_2$) compartments were found to vary from $10^{-0.1}\;to\;-10^{1.0}$ and from $10^{-4}\;to-10^{-2}$, respectively.

Influence Factors on Health of Dental Hygienist by Dental Office's Indoor Air Quality (치과위생사의 병원실내공기질에 의한 건강영향요인)

  • Park, Myung-Suk;Choi, Mi-Suk;Ji, Dong-Ha
    • Journal of dental hygiene science
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    • v.8 no.1
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    • pp.35-42
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    • 2008
  • This survey was compared and analyzed about the primary factor that dental office's working environment effect on physical subjective symptom and based on self-filling survey, 656 dental hygienists on July through August 2006, and analyzed using descriptive statics, ANOVA and Multiple Regression Analysis. The result of satisfaction degree of hospital working environment was pretty low about office air condition. Most people have complained that office's air quality makes it difficult to their work and mentioned that they were sore and dull all over the back, shoulder, and neck. The odor is major factor to be satisfied with office environment. Proper ventilates the way open the window more often was essential to maintain fresh indoor air quality and keep the extraction materials by separator and sealing tightly for remove the odor. Other factors were temperature, lighting fixture, ventilation facilities, and freshness of air. Dental hygienist was unsatisfied with hospital air condition and this polluted air condition was the cause of physical subjective symptom in work place. Furthermore, this research would be applied for improvement of working environment by decreasing of indoor air pollution.

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Adsorption Equilibrium, Kinetics and Thermodynamic Parameters Studies of Bismarck Brown R Dye Adsorption on Granular Activated Carbon (입상 활성탄에 대한 비스마르크 브라운 R 염료의 흡착평형, 동력학 및 열역학 파라미터에 관한 연구)

  • Lee, Jong-Jib
    • Applied Chemistry for Engineering
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    • v.24 no.3
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    • pp.327-332
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    • 2013
  • Batch experiments were carried out for adsorption equilibrium, kinetics and thermodynamic parameters of the brilliant brown R onto granular activated carbon. The operating variables studied were the initial dye concentration, contact time and temperature. Experimental equilibrium adsorption data were fitted to Langmuir and Freundlich adsorption isotherm by linear regression method. The equilibrium process was well described by Freundlich isotherm model and from the determined separation factor (1/n), granular activated carbon could be employed as an effective treatment for the removal of bismarck brown R. From kinetic experiments, the adsorption processes were found to confirm the pseudo second order model with a good correlation and the adsorption rate constant ($k_2$) increased with increasing adsorption temperature. Thermodynamic parameters like the activation energy, change of Gibbs free energy, enthalpy, and entropy were also calculated to predict the nature of adsorption in the temperature range of 298~318 K. The activation energy was determined as 8.73 kJ/mol for 100 mg/L. It was found that the adsorption of bismarck brown R on the granular activated carbon was physical process. The negative Gibbs free energy change (${\Delta}G$ = -2.59~-4.92 kJ/mol) and the positive enthalpy change (${\Delta}H$ = +26.34 kJ/mol) are indicative of the spontaneous and endothermic nature of the adsorption process.

Oxyfluorination of Pitch-based Activated Carbon Fibers for High Power Electric Double Layer Capacitor (고출력 전기이중층 캐패시터를 위한 핏치계 활성탄소섬유의 함산소불소화 처리)

  • Jung, Min-Jung;Ko, Yoonyoung;Kim, Kyung Hoon;Lee, Young-Seak
    • Applied Chemistry for Engineering
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    • v.28 no.6
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    • pp.638-644
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    • 2017
  • Pitch based activated carbon fibers for electric double layer capacitor (EDLC) electrodes were treated by oxyfluorination via varying the ratio of fluorine and oxygen gases to improve high power property. As the partial pressure of fluorine increased, the oxyfluorinated activated carbon fibers showed an increase of linear fluorine functional groups. While the oxygen functional groups increased, no changes was observed with respect to the partial gas pressure. The specific surface area and pore volume decreased due to the etching reaction on the activated carbon fiber surface through oxyfluorination, but the mesopore volume increased about 4.5 times. In the case of activated carbon fibers treated with 50% of the fluorine gas partial pressure, the specific capacitance increased to about 29% and 61% at scan rates of 5 and 50 mV/s, respectively. The improvement of the specific capacitance was believed to be due to the introduction of oxygen and fluorine functional groups on the activated carbon fiber surface and the increase of mesopores through oxyfluorination.

Influence and Application of an External Variable Magnetic Field on the Aqueous HCl Solution Behavior: Experimental Study and Modelling Using the Taguchi Method (염산 수용액 거동에 대한 가변 외부 자기장의 적용과 영향: 실험 연구 및 Taguchi 법을 이용한 모델링)

  • Hashemizadeh, Abbas;Ameri, Mohammad Javad;Aminshahidy, Babak;Gholizadeh, Mostafa
    • Applied Chemistry for Engineering
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    • v.29 no.2
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    • pp.215-224
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    • 2018
  • Influences of the magnetic field on 5, 10 and 15 wt% (1.5, 3 and 4.5 M) HCl solution behaviour, which has widespread applications in petroleum well acidizing, were investigated in various conditions. Differences in the pH of magnetized hydrochloric acid compared to that of normal hydrochloric acid were measured. Taguchi design of experimental (DoE) method were used to model effects of the magnetic field intensity, concentration, velocity and temperature of acid in addition to the elapsed time. The experimental results showed that the magnetic field decreases [$H^+$] concentration of hydrochloric acid up to 42% after magnetization. Increasing the magnetic field intensity (with 28% contribution), concentration (with 42% contribution), and velocity of acid increases the effect of magnetic treatment. The results also demonstrated that the acid magnetization was-not influenced by the fluid velocity and heating. It was also displayed that the acid preserves its magnetic memory during time. The optimum combination of factors with respect to the highest change of [$H^+$] concentration was obtained as an acid concentration of 10% and an applied magnetic field of 4,300 Gauss. Due to the reduction of HCl reaction rate under the magnetization process, it can be proposed that the magnetized HCl is a cost effective and reliable alternative retarder in the matrix acidizing of hydrocarbon (crude oil and natural gas) wells.

Antioxidant and Skin Whitening Effect of Graviola (Annona muricata) Leaf Extracts (Graviola (Annona muricata) 잎 추출물의 항산화 및 미백 효과)

  • Jo, Eun Hee;Kim, In Hae;Lee, Jae Hwa
    • Applied Chemistry for Engineering
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    • v.28 no.2
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    • pp.198-205
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    • 2017
  • In this study, graviola leaf extracts (GLE) was investigated for the effect of antioxidant, antibacterial, whitening, anti-wrinkle. The antioxidant effect of GLE was measured by an electron donating ability assay. As a result, GLE increased the electron donating ability in a concentration-dependent manner. The antibacterial effect of GLE was found to show the higher antibacterial effect in Methicillin-resistant Staphylococcus aureus CCARM3115 compared with that of ampicillin by a paper disc method. The whitening effect of GLE was also measured by tyrosinase inhibition assay, and it was found that the tyrosinase activity of GLE decreased as the concentration increased. The inhibition activity of tyrosinase involved in hydroxylation reaction which is related to converting L-tyrosine to (DOPA) was higher than that of arbutin's at the concentration ranging from 125 to $250{\mu}g/mL$. In addition, GLE reduced melanin contents of B16-F10 melanoma cells in a dose-dependant manner and decreased to about 76.7% at a concentration of $100{\mu}g/mL$ Regarding wrinkling formation of GLE, an elastase inhibition assay was performed. As a result, GLE and ursolic acid were 10.5% and 56.5%, respectively under the identical concentration. These results suggest that GLE has significant antioxidant and whitening activities, and also may be potentially used as a therapeutic agent for hyperpigmentation treatment as an ingredient of whitening cosmetics.

Changes of Adsorption Capacity and Structural Properties during in situ Regeneration of Activated Carbon Bed Using Ozonated Water (오존수 산화를 이용한 활성탄 흡착탑의 현장 재생 시 흡착용량 및 구조특성의 변화)

  • Lee, Jinjoo;Lee, Kisay
    • Applied Chemistry for Engineering
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    • v.31 no.3
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    • pp.341-345
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    • 2020
  • An in situ regeneration of activated carbon bed using an ozonated water was studied in order for avoiding the carbon loss, contaminant emission and time consuming for discharge-regeneration-repacking in a conventional thermal regeneration process. Using phenol and polyethylene glycol (PEG) as adsorbates, the adsorption breakthrough and in situ regeneration with the ozonated water were repeated. These organics were supposed to degrade by the oxidation reaction of ozone, regenerating the bed for reuse. As the number of regeneration increased, the adsorption capacity for phenol was reduced, but the change was stabilized showing no further reduction after reaching a certain degree of decrement. The reduction of adsorption capacity was due to the increase of pore size resulting in the decrease of specific surface area during ozonation. The adsorption capacity of phenol decreased after the ozonated regeneration because the in-pore adsorption was prevalent for small molecules like phenol. However, PEG did not show such decrease and the adsorption capacity was constantly maintained after several cycles of the ozonated regeneration probably because the external surface adsorption was the major mechanism for large molecules like PEG. Since the reduction in the pore size and specific surface area for small molecules were proportional to the duration of contact time with the ozonated water, careful considerations of the solute size to be removed and controlling the contact time were necessary to enhance the performance of the ozonated in situ regeneration of activated carbon bed.