• Title/Summary/Keyword: 화학첨가제

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Development of Analytical methods for Chinomethionat in Livestock Products (축산물 중 살균제 Chinomethionat의 개별 잔류분석법 확립)

  • Yang, Seung-Hyun;Kim, Jeong-Han;Choi, Hoon
    • Korean Journal of Environmental Agriculture
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    • v.40 no.2
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    • pp.134-141
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    • 2021
  • BACKGROUND: The analytical method was established for determination of fungicide chinomethionat in several animal commodities using gas chromatography (GC) coupled with electron capture detector (ECD). METHODS AND RESULTS: In order to verify the applicability, the method was optimized for determining chinomethonat in various livestock products including beef, pork, chicken, milk and egg. Chinomethionat residual was extracted using acetone/dichloromethane(9/1, v/v) with magnesium sulfate and sodium chloride (salting outassociated liquid-liquid extraction). The extract was diluted by direct partitioning into dichloromethane to remove polar co-extractives in the aqueous phase. The extract was finally purified with optimized silica gel 10 g. CONCLUSION: The method limit of quantitation (MLOQ) was 0.02 mg/kg, which was in accordance with the maximum residue level (MRL) of chinomathionate as 0.05 mg/kg in livestock product. Recovery tests were carried out at two levels of concentration (MLOQ, 10 MLOQ) and resulted in good recoveries (84.8~103.0%). Reproducibilities were obtained (Coefficient of variation <5.2%), and the linearity of calibration curves were reasonable (r2>0.995) in the range of 0.01-0.2 ㎍/mL. This established analytical method was fully validated and could be useful for quantification of chinomathionat in animal commodities as official analytical method.

A Study on The Effect of Current Density on Copper Plating for PCB through Electrochemical Experiments and Calculations (전기화학적 해석을 통한 PCB용 구리도금에 대한 전류밀도의 영향성 연구)

  • Kim, Seong-Jin;Shin, Han-Kyun;Park, Hyun;Lee, Hyo-Jong
    • Journal of the Microelectronics and Packaging Society
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    • v.29 no.1
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    • pp.49-54
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    • 2022
  • The copper plating process used to fabricate the submicron damascene pattern of Cu wiring for Si wafer was applied to the plating of a PCB pattern of several tens of microns in size using the same organic additives and current density conditions. In this case, the non-uniformity of the plating thickness inside the pattern was observed. In order to quantitatively analyze the cause, a numerical calculation considering the solution flow and electric field was carried out. The calculation confirmed that the depletion of Cu2+ ions in the solution occurred relatively earlier at the bottom corner than the upper part of the pattern due to the plating of the sidewall and the bottom at the corner of the pattern bottom. The diffusion coefficient of Cu2+ ions is 2.65 10-10 m2/s, which means that Cu2+ ions move at 16.3 ㎛ per second on average. In the cases of small damascene patterns, the velocity of Cu2+ ions is high enough to supply sufficient ions to the inside of the patterns, while sufficient time is required to replenish the exhausted copper ions in the case of a PCB pattern having a size of several tens of microns. Therefore, it is found that the thickness uniformity can be improved by reducing the current density to supply sufficient copper ions to the target area.

Degradation of Poultry Feathers by Bacillus amyloliquefaciens Y10 With Plant Growth-promoting Activity and Biological Activity of Feather Hydrolyzates (식물 성장 촉진 활성을 가진 Bacillus amyloliquefaciens Y10에 의한 가금 우모의 분해 및 생산된 우모 분해산물의 생리활성)

  • Yedam Kim;Young Seok Lee;Youngsuk Kim;Jinmyeong Song;Yeongbeen Bak;Gyulim Park;O-Mi Lee;Hong-Joo Son
    • Journal of Life Science
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    • v.34 no.5
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    • pp.304-312
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    • 2024
  • This study was conducted to characterize strain Y10, isolated from discarded chicken feathers. Strain Y10 was identified as Bacillus amyloliquefaciens through phenotypic and 16S rRNA gene analysis. B. amyloliquefaciens Y10 exhibited plant growth-promoting activities, including the production of fungal cell-degrading enzymes (cellulase, lipase, protease, and pectinase), siderophores, ammonia, and indoleacetic acid. Furthermore, strain Y10 was able to inhibit the mycelial growth of several phytopathogenic fungi. When 0.1% sucrose as a carbon source and 0.05% casein as a nitrogen source were added to the basal medium, adjusted to pH 10, and cultured at 35℃, the degradation rate of chicken feathers by strain Y10 was about two times higher than that of the basal medium, with the feathers almost completely degraded in four days. Strain Y10 also degraded various keratin substrates, including duck feathers, wool, and human nails. It was confirmed that the feather hydrolyzates prepared using strain Y10 exhibited antioxidant activities, such as 1,1-diphenyl-2-picrylhydrazyl radical scavenging activity (EC50 = 0.38 mg/ml) and superoxide dismutase-like activity (EC50 = 183.7 mg/ml). These results suggest that B. amyloliquefaciens Y10 is a potential candidate for the development of bioinoculants and feed additives applicable to the agricultural and livestock industries, as well as the microbiological treatment of keratin waste.

Ultra Dry-Cleaning Technology Using Supercritical Carbon Dioxide (초임계 이산화탄소를 이용한 초순수 건식 세정기술)

  • Joung, Scung Nam;Kim, Sun Young;Yoo, Ki-Pung
    • Clean Technology
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    • v.7 no.1
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    • pp.13-25
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    • 2001
  • With fast advancement of fine machineries and semiconductor industries in recent decades, the ultra-cleaning of organic chemicals, submicron particles from contaminated unit equipments and products such as silicon wafers becomes one of the most important steps for further advancement of such industries. To date, two kinds of ultra cleaning techniques are used; one is the wet-cleaning and the other is the dry cleaning. In case of wet cleaning, removal of organic contaminants and submicron particles is made by DIW with additives such as $H_2O_2$, $H_2SO_4$, HCl, $NH_4OH$ and HF, etc. While the wet cleaning method is most widely adopted for various occasions, it is inevitable to discharge significant amount of toxic waste waters in environment. Dry cleaning is an alternative method to mitigate environmental pollution of the wet cleaning with maintaining comparable degree of cleaning to the wet cleaning. Although there are various concept of dry cleaning have been devised, the dry cleaning with environmentally-benign solvent such as carbon dioxide proven to show high degree of cleaning from the contaminated porous surface as well as from the bare surface. Thus, special global attention has been placing on this technique since it has important advantages of simple process schemes and no environmentally concern, etc. Thus, this article critically reviews the state-of-the-art of the supercritical fluid drying with emphasis on the thermo-physical characteristics of the supercritical solvent, environmental gains compared to other dry cleaning methods, and the generic aspects of the basic design and processing engineering.

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Soybean Milk Production (대두유생산(大豆乳生産))

  • Kang, Choo-Whoi
    • Korean Journal of Food Science and Technology
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    • v.2 no.1
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    • pp.121-126
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    • 1970
  • The utilization of soybean milk has lasted for past several thousand years, mostly in Orient as a Precious food or as a substitute for cow's milk. There are several hundred varieties in soybean that is called Glycine max Merryl There are three typical varieties, Yellow, Black and Green. However, these are due to pigment in soybean cuticle while their chemical constituents are similar (Table 2). Soybean milk is constituted of protein, fat and carbohydrate of soybean, and these constituents are extracted by hot water. Thus becomes emulsion which is highly digestible and nutritious for human diet. However, it was not found any report on the water extractability comparison between two different varieties Black cuticle soybean which is common in India and Yellow cuticle soybean which is common in Korea. Also there was no report on the comparison on the yield and organoleptic quality derived by varied process. Also several attempts were carried out to improve nutritional value as well as acceptability by use of food additives. A model of continuous soybean milk plant was introduced.

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식품중의 발암성 물질 -니트로소 화합물-

  • 성낙주
    • Proceedings of the Korean Journal of Food and Nutrition Conference
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    • 1997.06b
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    • pp.11-12
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    • 1997
  • 니트로소디메틸아민이 발암성 물질이라는 것이 1954년 Barnes와 Magee에 의해 발견된 이래 이것이 지금까지 학자들에게 관심의 대상이 되고 있는 이유는 발암력이 강하여 극미량으로도 생체내에 암을 유발시킬 수 있을 뿐만 아니라, 대부분의 발암성 물질이 신체의 특정기관에 발암작용을 나타내는데 비해 이 물질은 신체의 여러 부위에 암을 유발시킬 수 있다는 점 그리고 이 물질이 햄, 소시지, 베이컨, 알코올음료, 김치 및 어류 가공품 등 어려 가지 식품에 널리 분포되어 있다는 사실 등을 들 수 있다. 니트로소 화합물은 구조로 보아 티트로소아민과 니트로소아미드로 구분되는데 전자는 제 2급 아연이 산화질소 유도체와 반응하여 생성된 니트로소 유도체이과 후자는 오소, 아미드 등이 치환된 니트로소 유도체로서 화학적인 성질이나 생물학적인 작용이 상이하다. 즉 니트로소아민은 식품에서 안정한 화합물인 반면에 대부분의 니트로소아미드는 불안정하다. 지금까지 연구된 바에 의하면 3백 여종의 니트로소 화합물에 대하여 동물실험을 행한 결과 발암성이 90% 이상 인정되었다. 식품 중 니트로소 화합물의 전구물질 중 질산염과 아질산염은 식품의 가공 저장 및 조리과정 중 니트로화의 된 전구물질인데 이는 육가공품의 색소고정, Cl. Botulinum에 의한 식중독 방지 및 풍미의 향상을 위하여 수 세기 동안 식품첨가제를 사용되어 왔으며, 유럽이나 미국 등지에서는 아직도 육가공품에 아질산염의 첨가가 논란의 대상이 되고 있다. 식품 중 니트로소 화합물에 대한 북유럽 식품 3천여 점을 분석한 결과 검출된 니트로소 화함물은 니트로소디메틸아민이 대부분이며 맥주에서 66%로 검출률이 가장 높았고 다음으로 염지육 및 치즈의 순 이었다. 조리한 일본산 해산 식품 중에 니트로소디메틸아민이 최고 313$\mu$g/kg, 캐나다산 해산 건조 식품에서는 67$\mu$g/kg, 홍콩산 염건어에는 1,400 $\mu$g/kg , 훈연어류에는 N-nitrosothiazolidine이 13,700 $\mu$g/kg , 우리 나라 해산 식품 중 니트로소디메틸아민은 건조가오리, 동결건조명태, 건조오징어, 굴비 및 소건새우 등에서 2.8~86.0 $\mu$g/kg 으로서 비교적 높은 양이 검출되었을 뿐 아니라 이들 식품을 조리할 경우 3.6~13배 증가하였다. 또한 김치와 젓갈류 중에서도 니트로소디메틸아민이 검출된다는 연구가 있다. 식품 중 니트로소 화합물의 생성율 억제시키기 위하여 최근 20여년간 연구된 바를 요약하면 아스코르브산과 같은 억제제의 첨가, 가공방법 및 조리방법의 개선이 비교적 바람직한 방법으로 인정되고 있다. 위의 방법을 적용하여 베이컨을 조리한 결과 낮은 온도에서 오랜 시간 가열하는 것이 높은 온도에서 짧은 시간 가열한 것보다 니트로화 반응이 훨씬 낮았고 또 마이크로웨이브로 조리하는 것이 니트로소아민을 최소화 시키는 방법이었다. 염지육은 아스코르브산이나 토코페롤 등의 니트로화 억제제를 첨가할 경우 니트로소 화합물이 현저히 감소 하였는데 이는 산화질소의 소거 능력이 우수하기 때문인 것으로 밝혀졌다. 가공방법의 개선으로서는 가공시 식품을 공기에 노출시킬 경우 특히 직화로 가열된 공기에 노출되면 니트로소아민의 생성이 매우 높은 것으로 보고되어 있는데 그 대표적인 예로 맥아를 직화로 건조할 경우 맥주 중에 니트로소 화합물이 훨씬 높은 양이 검출된다고 보고되어 있다. 대체로 식품의 가공 조리 및 저장 중 니트로소화합물에 대한 메커니즘은 상세히 밝혀져 있으나 생체내에서의 생성이나 억제 등에 대한 연구는 아직도 미흡한 실정이라이 분야에 대한 연구가 절실히 요구된다.

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Enhanced Migration of Gasohol Fuels in Clay Soils and Sediments (Gasoline-ethanol(Gasohol)혼합액의 점토층 내 이동에 대한 연구)

  • Hee-Chul Choi;W.M. Stallard;Kwang-Soo Kim;In-Soo Kim
    • Journal of Korea Soil Environment Society
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    • v.1 no.1
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    • pp.67-79
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    • 1996
  • Clay soils typically have low hydraulic conductivities in the presence of high polarity pore fluid, such as water. Low polarity fluids, such as hydrocarbon fuels and halogenated organic solvents, typically cannot migrate into clay pores because they cannot displace the pore water. Oxygenated additives in gasoline, such as alcohols and methyl-tert-butyl ether, are increasingly used to control air pollution emissions. These relatively polar and highly water-soluble compounds may facilitate displacement of pore water and enhance migration of fuels and solvents through clay-rich soil strata. In the reported research, the migration of gasoline-alcohol fuel mixtures (gasohol) through consolidated clay was examined. Prepared kaolinite clay samples were consolidated from slurry, and various combinations of gasoline, alcohol, and water were applied to the clays under 152 Pa gauge pressure. Movement of the fluids into the clay samples was monitored by measur ing displaced pore fluid and by magnetic resonance imaging of the samples. The structures of selected samples were examined using environmental scanning electron microscopy. Results of the research suggest that alcohol added to hydrocarbon fuels can enhance migration through some clays significantly. Gasoline did not migrate appreciably into water saturated clay, even after 14 days under pressure. The gasohol mixture migrated readily into the clay in only 20 minutes. Increased hydraulic conductivity of the clay in the presence of gasohol is hypothesized to be due to the collapse of the clays pore structure when ethanol is present, creating larger pores. Increasing pore diameter decreases the capillary pressure needed for the gasohol to replace water and allows gasohol to migrate through the clay.

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Degradation Properties and Production of Fuels from Hemicellulose by Pyrolysis-liquefaction (열분해액화반응에 의한 헤미셀룰로오스의 분해특성 및 연료물질 생성)

  • Lee, Jong-Jib
    • Applied Chemistry for Engineering
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    • v.19 no.2
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    • pp.199-204
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    • 2008
  • Hemicellulose, consisteing of pentose as xylose and mannose, is usable as high octane fuels and heavy oil additives if depolymerized to monomer unit. In this study, thermochemical degradation by pyrolysis-liquefaction of hemicellulose, the effects of reaction temperature, conversion yield, degradation properties and degradation products were investigated. Experiments were performed in a tube reactor by varying reaction temperatures from $200^{\circ}C$ to $400^{\circ}C$ at 40 min of reaction time. The liquid products from pyrolysis-liquefaction of hemicellulose contained various kinds of ketones. Ketones, as 2,3-dimethyl-2-cyclopenten-1-one, 2,3,4-trimethyl-2-cyclopentan-1-one, and 2-methyl-cyclopentanone, could be used as high-octane-value fuels and fuel additives. However, phenols are not valuable as fuels. Combustion heating value of liquid products obtained from thermochemical conversion processes of hemicellulose was in the range of 6,680~7,170 cal/g. After 40 min of reaction at $400^{\circ}C$ in pyrolysis-liquefaction of hemicellulose, the energy yield and mass yield were as high as 72.2% and 41.2 g oil/100 g raw material, respectively.

Rheological Characteristics and Molecular Weight of Ammonium-Sulfate Fractions of Tara Gum (염석법에 의한 타라검 분획들의 분자량 및 리올로지 특성)

  • Kim, Kyeong-Yee
    • Korean Journal of Food Science and Technology
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    • v.47 no.3
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    • pp.293-298
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    • 2015
  • This study aimed at characterizing the rheological properties and molecular weight of tara gum fractionated with ammonium sulfate. Tara gum was separated into six fractions (F1-F6) at different concentrations of ammonium sulfate, ranging from 12.21 to 28.67% (w/w). The yield of the tara gum fractions ranged between 4.98 and 17.47%, and their intrinsic viscosity ranged from 9.38 to 12.44 dL/g. The highest values of Huggins coefficient (k') and viscosity-molecular mass were observed in fraction F3. The shear viscosity of the tara gum fractions was measured by a cone-plate viscometer, clearly showing shear thinning behavior. Size-exclusion chromatography results showed that the molecular weight ranged between 635.42 and 776.71 kg/mol, and the F3 fraction exhibited higher values of molecular weight.

Development of Wide-Band Compensation Film to Improve Viewing Angle of Vertical Alignment Liquid Crystal Display (수직배향 액정디스플레이의 시야각 향상을 위한 광대역 보상필름 개발)

  • Choi, Yu-Jin;Lim, Young-Jin;Jeong, Kwang-Un;Lee, Seung-Hee
    • Polymer(Korea)
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    • v.35 no.4
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    • pp.337-341
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    • 2011
  • To expand the viewing angle of vertical alignment liquid crystal display (VA-LCD), a wide-band compensation film has been newly developed. VA-LCD needs a retardation film with improved oblique viewing property. The retardation film for VA-LCD has been fabricated by solvent casting and subsequent drawing triacetylcellulose (TAC) containing optical additives. Here, optical birefringence and wavelength dispersion of the retardation film strongly depend on the chemical structures of optical additives. Utilizing quantum mechanical computation, the polarizing anisotropy of retardation film was calculated with respect to additives. It is also realized that the wavelength dispersion of polarizing anisotropy depends on the type and location of substituent to the selected main isomer. When two propionates are substituted to the meta position of the selected main isomer, the wavelength dispersion of polarizing anisotropy shows the most gentle slop, which is well matched with the experimental results. The most gentle slop of wavelength dispersion means that the viewing angle characteristics of LCD are less influenced according to the wavelength of light source of LCD, and it's possible to make better image quality than the present level.