• Title/Summary/Keyword: Organic functional groups

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Dehydration of Pyridine Aqueous Solution through Poly(acryionitrile-co-4-styrene sulfonic acid) Membranes by Pervaporation

  • Wang, Wun-Jae;Oh, Boo-Keun;Lee, Young-Moo
    • Proceedings of the Membrane Society of Korea Conference
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    • 1994.04a
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    • pp.55-56
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    • 1994
  • There has been many attempts to improve the membrane performance using pervaporation processes[l-3]. They are 1) blending polymer with the high flux and one with high selectivity, 2) an incorporation of functional groups interacting with permeants into a membrane through copolymerization or modification, 3) composite membrane or asymmetric membrane structure with a thin skin layer which acts as a selective layer. Among them, a polymeric membrane containing ion complex group receives an extensive attention recently because ionic complex is known to activate the water transport through ion-dipole interaction. It is especially advantageous in the separation of organic-water system. We applied the ideas of the activation of water transport through ion-dipole. We have reported on the in-sire complex membrane to separate water from aqueous aceiic acid and pyridme solution[4-5] based on the simple acid-base theory. Water transport was enhanced through in-situ complex between pyridine moiety in the membrane and the incoming acetic acid in the feed. In this case, catalytic transport mechanism was proposed. In the present study we used pyridine solution as a feed and the sulfonic acid group in the membrane.

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A New Combined Source of "CN" from N,N-Dimethylformamide and Ammonia in the Palladium-Catalyzed Cyanation of Aryl C-H Bonds

  • Choi, Ji-Ho;Kim, Jin-Ho;Chang, Suk-Bok
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.207-207
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    • 2011
  • Aromatic nitriles possess versatile utilities and are indispensible not only in organic synthesis but also in chemical industry. In fact, the nitrile group is an important precursor for various functional groups such as aldehydes, amines, amidines, tetrazoles, amides, and their carboxyl derivatives. Representative methods for the preparation of organonitriles with cyanide-containing reagents are the Sandmeyer and Rosenmund-von Braun reactions. Recently, a catalytic route to aryl nitriles has been reported on the basis of the chelation-assisted C-H bond activation or metal-catalyzed cyanation of haloarenes. In those cyanation protocols, the "CN" unit is provided from metal-bound precursors of MCN (M=Cu, K, Na, Zn), TMSCN, or K3Fe(CN)6. Additionally, it can be generated in situ from nitromethane or acetone cyanohydrin. Herein, we report the first example of generating "CN" from two different, readily available precursors, ammonia and N,N-dimethylformamide (DMF). In addition, its synthetic utility is demonstrated through the Pd-catalyzed cyanation of arene C-H bonds.

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The Influence of H+ and Cl- Ions on the Corrosion Inhibitive Effect of Poly(para-aminophenol) for Iron in Hydrochloric acid

  • Manivel, P.
    • Corrosion Science and Technology
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    • v.16 no.4
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    • pp.187-193
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    • 2017
  • Polymer amines are found to show distinct corrosion inhibition effects in acidic media. The functional groups of organic compounds have a wide role in the physical and chemical properties, for the inhibition efficiency with respect to steric factors, aromaticity, and electron density. The influence of $H^+$ ions and $Cl^-$ ions on the corrosion inhibitive effect of poly(p-aminophenol) for iron in hydrochloric acid was studied using electrochemical methods such as impedance, linear polarization, and Tafel polarization techniques. The experiments were conducted with and without the inhibitor, poly(p-aminophenol). The concentration range of $H^+$ ions and $Cl^-$ ions are from 1 M to 0.05 M and 1 M to 0.1 M, respectively. With the inhibitor poly(p-aminophenol), this study shows that inhibition efficiency decreases with the reduction of $H^+$ ion and $Cl^-$ ion concentrations in aqueous solution. Further, it reveals that the adsorption of an inhibitor on the surface of iron is dependent on the concentrations of $H^+$ and $Cl^-$ ions in the solution and the adsorption of inhibitor on the iron surface through the cationic form of amine.

Spermatogenic Effect of Sulfur and Methyl Sulfonyl Methane in Rats

  • Lee, Young-Lae;Park, Jeong-Sook;Hwang, Seock-Yeon;Han, Kun
    • Natural Product Sciences
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    • v.18 no.3
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    • pp.204-210
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    • 2012
  • Sulfur has been used as a general physical strengthening agent from ancient times in Asia. On the basis of this point, we measured spermatogenic effect of sulfur and methyl sulfonyl methane (MSM) which is used a functional food for arthritis in rats. MSM, a kind of organic sulfur, is used as an alternative of sulfur by some people. Sulfur was administered as a dietary supplement and MSM was administered orally as a solution to 7 week old rat for 6 weeks. All sulfur administered groups showed a significant dose dependent increase in the number of sperm in the testes compared with the control group. Moreover, a histological examination showed an apparent increase in the number of seminiferous tubular cell layers in the testes of the sulfur treated rats. However, there were no observed any increase of sperm in MSM dosing group. In sulfur treated rats, the weights of body, liver, spleen, kidney, testes and epididymides didn't show significantly differences compared with the control. Histopathological examination was not revealed any morphological change in the liver, spleen and kidney. Thus, sulfur may be effectively used to treat sperm deficiency of men, but not MSM.

Effects of TDS on formation of THMs in drinking water treatment (정수처리에서 TDS가 THMs 생성에 미치는 영향)

  • Lee, Seulki;Kwak, Yeonwoo;Hong, Seongho
    • Journal of Korean Society of Water and Wastewater
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    • v.33 no.3
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    • pp.225-234
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    • 2019
  • This study is focused on effects of factors that affect the formation of THMs during chlorination in drinking water treatment. During the chlorination, chlorine consumption is increased by increasing the initial chlorine dose, the pH and the total dissolved solid (TDS) concentration. Also THMs formation is increased up to $58.82{\mu}g/L$ and $55.54{\mu}g/L$ by increasing initial chlorine concentration and increasing pH. However, concentration of chloroform is decreased by increasing TDS concentration. This is caused the cation($Na^+$) of the total dissolved solids preferentially reacts with the functional groups of the organic material which influence the trihalomethane formation. But total trihalomethane formation is increased up to $127.46{\mu}g/L$ by $Br^-$ contained in the total dissolved solids. DOC reduction was not influenced by any of the factors.

Effect of Oxygen Plasma Treatment on the Surface and Tensile Properties of Stainless Steel Fibers (산소 플라즈마 처리가 스테인레스 스틸 섬유의 표면 및 인장특성에 미치는 영향)

  • Kwon, MiYeon;Lim, Dae Young;Lee, Seung Goo
    • Textile Coloration and Finishing
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    • v.34 no.2
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    • pp.102-108
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    • 2022
  • The physicochemical properties of stainless steel fibers which were modified by oxygen plasma treatment were analyzed through microscopy and XPS analysis. The wettability of the surface of the stainless steel fiber was observed by measuring water contact angle to find out the effect of the plasma treatment time on the surface characteristics of the stainless steel fiber. In addition, in order to understand the effect of oxygen plasma treatment on the deterioration of the stainless steel fiber properties, the physical properties due to plasma treatment was investigated by measuring the weight reduction, tensile strength, elongation, tensile modulus of the stainless steel fibers according to the treatment time. As a result, the stainless steel fiber surface was etched by the oxygen plasma and the surface became more wettable by the introduction of hydrophilic functional groups. However the physical properties of the stainless steel fiber were not significantly deteriorated even if the surface of the stainless steel fiber made hydrophilic.

The Production of Metal-biochar through Co-pyrolysis of Lignin and Red Mud and Utilization for the Removal of Contaminants in the Water (리그닌과 적니의 공동 열분해를 통한 금속-바이오차 생산 및 수중 오염물질 제거를 위한 활용)

  • Kim Eunji;Kim Naeun;Park Juyeong;Lee Heuiyun;Yoon Kwangsuk
    • Journal of Soil and Groundwater Environment
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    • v.29 no.2
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    • pp.1-10
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    • 2024
  • With industrial development, the inevitable increase in both organic and inorganic waste necessitates the exploration of waste treatment and utilization methods. This study focuses on co-pyrolyzing lignin and red mud to generate metalbiochar, aiming to demonstrate their potential as effective adsorbents for water pollutant removal. Thermogravimetric analysis revealed mass loss of lignin below 660℃, with additional mass loss occurring (>660℃) due to the phase change of metals (i.e., Fe) in red mud. Characterization of the metal-biochar indicated porous structure embedded with zero-valent iron/magnetite and specific functional groups. The adsorption experiments with 2,4-dichlorophenol and Cd(II) revealed the removal efficiency of the two pollutants reached its maximum at the initial pH of 2.8. These findings suggest that copyrolysis of lignin and red mud can transform waste into valuable materials, serving as effective adsorbents for diverse water pollutants.

Effect of $\gamma$-Irradiation of Volatile Organic Compounds of Houttuynia cordata Thunb. (방사선 조사에 의한 어성초의 휘발성 유기성분 변화)

  • Ryu, Keun-Young;Shim, Sung-Lye;Jung, Min-Seok;Jun, Sam-Nyeo;Jo, Cheor-Un;Song, Hyun-Pa;Kim, Kyong-Su;Kim, Youn-Soon
    • Food Science and Preservation
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    • v.15 no.3
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    • pp.411-420
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    • 2008
  • This study was performed to examine the effect of $\gamma$-irradiation on the volatile organic compounds in Houttuynia cordata Thunb.(H. cordata). 1be volatile compounds of non-irradiated and 10 kGy $\gamma$-irradiated H. cordata were isolated using SDE apparatus and analyzed by GC/MS. For each treatment the number of volatile compounds were detected at 83 and 85, respectively, 1be predominant functional groups of volatile organic compounds from H. cordata were identified as alcohols and ketones. H. cordata was mainly composed of hexahydrofarnesyl acetone (12.81 %), phytol, decanoic acid, dodecanoic acid, octadecanol, caryophyllene oxide, 2-undecanone and menthol. Houttuynum which is characteristic compound of H. cordata was found in all samples and there was no significant difference with irradiation doses. Consequently, $\gamma$-irradiation of H. cordata would be an effective process for sanitation and to increase extraction efficiency.

Trend and Future Strategy of Ammonia Gas Recovery based on Adsorption from Livestock Fields (축산현장에서 발생된 암모니아 기체의 흡착기반 회수 동향 및 향후 전략)

  • Sangyeop Chae;Kwangmin Ryu;Sang-hun Lee
    • Resources Recycling
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    • v.32 no.6
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    • pp.45-53
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    • 2023
  • This study discussed the trend and future strategy of adsorption technology R&D to effectively recover ammonia emitted from the livestock fields. A proper ammonia adsorbent should incorporate acidic or hydrogen bonding functional groups on the surface, as well as a high specific surface area and a good surface structure appropriate for ammonia adsorption. Activated carbon and minerals such as zeolite have widely been used as ammonia adsorbents, but their adsorption effects are generally low, so any improvement through surface modification should be necessary. For example, incorporation of metal chloride included in a porous adsorbent can promote ammonia adsorption effectiveness. Recently, new types of adsorbents such as MOFs (Metal-Organic Frameworks) and POPs (Porous Organic Polymers) have been developed and utilized. They have shown very high ammonia adsorption capacity because of adjustable and high specific surface area and porosity. In addition, Prussian Blue exhibited high ammonia adsorption and desorption performance and selectivity. This looks relatively advantageous in relation to the recovery of ammonia from livestock waste discharge. In the future, further research should be made to evaluate ammonia adsorption/desorption efficiency and purity using various adsorbents under conditions suitable for livestock sites. Also, effective pre- and/or post-treatment processes should be integrated to maximize ammonia recovery.

Evaluations on Salivary Flow Induction and Dissolution Patterns in Saliva of Pilocarpine Chewing Tablet in Healthy Human Volunteers (건강한 성인 지원자를 대상으로 한 필로칼핀 저작정의 타액분비 유도 및 타액중 용출패턴 평가)

  • Park, Kyoung-Ho
    • Journal of Pharmaceutical Investigation
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    • v.27 no.4
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    • pp.331-335
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    • 1997
  • Xerostomia is caused by organic or functional changes affecting the salivary system at different levels. Patients suffering from xerostomia may also complain of an oral burning sensation, ulceration or soreness, difficulty in swallowing, and poor denture retention. And pilocarpine is administered orally to induce salivary secretion. In Seoul National University Hospital(SNUH) pharmacy, the pilocarpine chewing tablets are prepared and supplied to patients of xerostomia in request of the dental hospital in SNUH. And we tested the salivary flow induction and the dissolution patterns of these products in saliva by a double-blind, sequential cross-over trials to eight healthy human volunteers with placebo. The pilocarpine chewing tablet contained 5 mg of pilocarpine, and placebo consisted of same materials as test drug, but didn't contain pilocarpine. In vivo experiment, all subjects were instructed to chew as 60-80 times/min. Mixed saliva was collected in the ranges of intervals such as 0-2, 2-5, 5-10, 10-15, 15-20, 20-30, 30-45 and 45-60 min after pilocarpine chewing tablet or placebo administration. Saliva volume was measured in each collecting time interval, and saliva pilocarpine concentrations were determined by reversed phase HPLC. The 82.5 percent $(4.13{\pm}0.69\;mg)$ of pilocarpine was extracted from chewing tablets during mastication of 60-80 times per minute for 60 minutes. Among these dissolved amounts, 90 percent was extracted within 20 minutes. The salivary flow rates were more increased in a group who administered pilocarpine chewing tablet at the interval of 5-10, 10-15, 20-30 and 45-60 min rather than a placebo-group, but only extracted amount of pilocarpine at 45-60 min interval is significanly different between two groups (p<0.05). But total amounts of saliva secreted for 1 hour in two group-pilocarpine and placebo treated- were $46.36{\pm}9.72\;ml\;and\;39.09{\pm}7.81\;ml$, respectively, and were not significantly different between two groups.

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