• Title/Summary/Keyword: 페놀물질

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The Methanogenic Toxicity of Wood Resin Constituents (메탄생성균에 대한 Wood resin 구성성분의 독성에 관한 연구)

  • 장봉기;허준무;손부순;박종안
    • Journal of environmental and Sanitary engineering
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    • v.12 no.3
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    • pp.139-147
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    • 1997
  • 펄프폐수 내에 존재하는 대표적인 수지 구성성분의 일종인 wood resin 화합물이 메탄생성균에 미치는 독성을 평가하기 위한 회분식 독성실험을 수행하였다. 수지는 극성용매로 추출가능한 몇몇 wood 구성성분의 혼합물로서 수지의 주요 구성성분은 긴 사슬 휘발성유기산, terpenes, resin acids, 리그난과 극성 페놀류들이다. 메탄생성균의 독성실험은 $30^{\circ}C$에서 표준회분식 실험방법을 채택하였고 식종물질로서는 입상슬러지를 사용하였다. 극성페놀의 한 종류인 4-hydroxystilbene가 가장 높은 독성을 나타내었으며, 50% 저해를 일으키는 농도는 $20mg/\ell$이었다. Resin acid와 휘발성 terpene 역시 메탄생성균에 독성을 나타내었으며, 50% 독성을 일으키는 농도는 $43{\;}~{\;}330mg/\ell$이었다. 반면에 triterpenes은 1,000 to $1,300{\;}mg/\ell$의 상대적으로 높은 농도에서도 메탄생성균에 독성을 일으키지 않았다. 따라서 wood resin의 구성성분이 몇몇 펄프폐수의 혐기성 처리에 있어서 독성을 일으키는 주요물질이었다.

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Red-Colored Phenomena and Morphochemical Characteristics of Red-Colored Substances in Ginseng Roots (Panax ginseng C.A. Meyer) (인삼 적변현상과 적변물질의 형태-화학적 특성)

  • 윤길영;양덕조
    • Journal of Ginseng Research
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    • v.24 no.3
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    • pp.107-112
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    • 2000
  • One of the physiologically important ginseng diseases is red-colored phenomena (RCP) that is caused by accumulation of red-colored substances on the epidermis of ginseng roots. Although RCP severely deteriorates the quality of ginseng products, there has been little information on what red-colored substance is and how RCP occurs. Therefore, the heavy losses of cultivators and ginseng industry are suffering by RCP, For this reason, we have investigated with the morphochernical characteristics of RCP to find out main cause of it. The red-colored substances (RS) on the epidermis of red-colored ginseng (RCG) were examined using inverted light microscope, confocal laser scanning microscope (CLSM)and furier transform infrared (FT/IR) spectrometer. Red brown substances were accumulated in the cell wall of the epidermis from early stage to late stage of RCC. Especially, cell wall of the late stage of RCG was covered with the sub-stances with 80~ 130 fm thick. Therefore, the cell wall of RCG cannot protect the ginseng root cells from the mechanical damages, bacteria and fungi. To analyse red substances of roots, RS were isolated from epidermis of RCG and extracted using various solvents. RS is strongly insoluble but it was bleached by oxidizing agents including 12% (v/v) NaOCl. Therefore, RS was Presumed to make up of high chelation power. The proriles of FT/IR spectra or both healthy ginseng (HEG) and RCG showed a significant difference at two wavelength,2857 cm$\^$-1/(C-H) and 1032 cm$\^$-1/(S=O), respectively. Furthermore, absorption peak of 2857cm$\^$-l/ appears on the only epidermis of RCG. The other peak is shown lower absorption rate on the epidermis of RCG than that of healthy ginseng. Also, FT/IR spectra of the mixture of carboxym-ethylcellulose (CMC) and iron (Fe$\^$3+/) were very similar to RCG spectrum profiles. One of a interesting fact is that the contents of phenolic compounds at the epidermis of healthy ginseng were highest. The results of these experiments sup-port the RCP was closely related with the chemical interaction between inorganic elements (Fe) of rhizosphere and organic matters (cellulose, cellobiose, cell sap, etc.) of ginseng roots.

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A Study on Removal Efficiency of VOCs using Vortex Cyclones (보텍스 사이클론을 이용한 VOCs 제거효율에 관한 연구)

  • Lim, Gye-Gyu
    • Applied Chemistry for Engineering
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    • v.16 no.2
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    • pp.194-199
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    • 2005
  • The principle of vortex cyclone was applied to enhance the treatment efficiency of waste air streams containing particulate matters, phenol, and others. Adsorption, condensation, and/or coagulation could be induced at low temperature zone formed by Joule-Thomson expansion as the pressurized air and pulverized activated carbon were introduced at the tangential direction into the cyclone system applied with the coaxial funnel tube of vortex cyclone. Easily condensible vapors were adsorbed and/or condensed forcibly on coagulated or condensed materials which were formed as cores for coagulation or condensation by themselves or on pulverized activated carbons. These types of coagulation or condensation rates were rapidly promoted by increase in their diameter. The maximum removal efficiency obtained from this experiment for the removal of carbon dioxide and phenol was about 87.3 and 93.8 percent, respectively. Phenol removal efficiency was increased with the relative humidities and enhanced by pulverized activated carbon added. The Joule-Thomson coefficients were increased with the pressure of air injected in the range of the relative humidities between 10% and 50%. It is believed that the moisture, particulate matters, and the pressure of the process air introduced could control the removal efficiency of VOCs.

Quantitative Analysis of Total Phenolic Content in Apple (사과의 총 페놀함량 정량분석)

  • Whang, Hea-Jeung;Han, Wan-Soo;Yoon, Kwang-Ro
    • Analytical Science and Technology
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    • v.14 no.5
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    • pp.377-383
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    • 2001
  • Total amounts of phenolic compounds of Korean apples were determined by UV-visible spectrphotometry of Folin-Dennis, Prussian-blue and vanillin-HCI, respectively. The analytical data from the method of Folin-Dennis were estimated to be the most reasonable to determine the total amounts of phenolic compounds in Korean apples. It was also confirmed that the amounts of total phenolics could be calculated as chlorogenic acid equivalence, more effectively than that of other phenolic compound equivalence.

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염소계유기용제 및 유류물질에 의한 산업단지 지하수 오염특성

  • Kim Jong-Ho;Kim Rak-Hyeon;Ryu Gwan-Hui;Park Jeong-Gu;Seo Chang-Il;Jeon Gwon-Ho;Jeong Jang-Sik
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2006.04a
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    • pp.355-359
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    • 2006
  • 토양에 누적된 오염물질은 지하수 유동과 연계하여 점차 주변지역으로 확산된다. 본 조사는 오염의 개연성이 높은 산업단지를 선정하고 그 중에서도 유해화학물질의 사용이 많은 지역을 대상으로 토양과 지하수의 오염도조사를 수행하였다. 토양오염도 조사는 160개 지점에서 토양시료를 채취하여 오염물질을 분석하였으며 분석결과 TPH물질은 최고 23,151mg/kg, BTEX는 최고 1,657mg/kg로 검출되었다. 오염특성은 유류(TPH, BTEX) 물질 이외에도 TCE, PCE◎물질과같은 염소계 유기용제에 의한 오염도 확인할 수 있었으나 중금속 물질에 의한 오염은 우수 방류구와 같은 일부 지역에서 검출되었다. 지하수 수질의 경우 페놀, 비소, 납, BTEX, TCE, PCE 물질들이 복합적으로 오염되어있는 것으로 나타났다.

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Antioxidative Activity of Rooibos Tea(Aspalathus linearis) Extracts (용매에 따른 Rooibos Tea(Aspalathus lineais) 추출물의 항산화 효과)

  • Lee, Cho-Rong;Lee, Jeung-Hee;Park, Sang-Hyun;Lee, Ki-Teak
    • Food Science and Preservation
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    • v.15 no.4
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    • pp.582-586
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    • 2008
  • Total phenolic compounds and antioxidative activities of rooibos tea(Aspalathus linearis) fractions were studied. Three extracts, using hexane, ethyl acetate, and ethanol, were prepared. Total phenolic compounds were 3069.3 mg/100 g extract in the hexane fraction, 18604.4 mg/100 g extract in the ethyl acetate fraction, and 13458.8 mg/100 g extract in the ethanol fraction. Levels of vanillic acid, caffeic acid, syringic acid, 4-coumaric acid, and ferulic acid were analyzed by RP-HPLC, and totals of 3452.6 and 3156.1 mg/100 g of extract were found in the ethanol and ethyl acetate fraction, respectively. In the DPPH assay, the ethanol fraction(82.2% of contol) and the ethyl acetate fraction(78.9%) showed the highest free radical scavenging capacities. The induction period of each tea fraction in the fish oil rancimat assay was measured. When 500 ppm of the ethanol fraction was applied, a 1.19 h induction period was observed. This was 2-fold greater than the induction period of the control.

Degradation of Phenolic Compounds in a Slurry Reactor (슬러리 반응기를 이용한 페놀류 화합물의 분해거동)

  • Lee, Jamyoung;Jung, Yonkyu;Lee, Taejin
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.5
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    • pp.949-957
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    • 2000
  • This study investigates the remediation of the phenol or PNP(p-Nitrophenol) contaminated soils in a slurry reactor by a pure culture, P-99. The application of a pure culture for the phenol decontamination make the degradation rate three times faster than that of the mixed activated sludge. The destruction of 300 mg/L phenol was completed in 26 hours. As 1 mg of phenol was added, 0.1457 mg of microorganism was grown in the medium. The pure culture could not utilizes PNP, one of the xenobiotics, as a growth substrate. When the bacteria was induced by phenol enrichment medium. PNP could be effectively transformed with cometabolic process. The induction of the bacteria requires 1 mg of phenol for the destruction of 0.027 mg PNP. When PNP concentration in the medium contained phenol and PNP increased. the degradation rate of phenol was decreased. The degradation rate of phenol and PNP in the slurry reactor was about two times faster than in the reactor without slurry because of higher dissolved oxygen supply in the aqueous phase and adsorption on the surface of the soil.

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Oxidation of Phenol Using Ozone-containing Microbubbles Formed by Electrostatic Spray (전기장에 의해 생성된 미세기포를 이용한 페놀의 오존산화)

  • Shin, Won-Tae;Jung, Yoo-Jin;Sung, Nak-Chang
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.12
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    • pp.1292-1297
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    • 2005
  • The use of ozone in water and wastewater treatment systems has been known to be a process that is limited by mass transfer. The most effective way to overcome this limitation is to increase the interfacial area available for mass transfer by decreasing the size of the ozone gas bubbles that are dispersed in solution. Electrostatic spraying(ES) of ozone into water was investigated in this work as a method of increasing the rate of mass transfer of ozone into a solution and thereby increasing the rate of phenol oxidation. Results were obtained for ES at input power levels ranging from 0 to 4 kV and compared with two different pore-size bubble diffusers($10{\sim}15{\mu}m$ and $40{\sim}60{\mu}m$). It was determined that the rate of mass transfer could be increased by as much as 40% when the applied voltage was increased from 0 to 4 kV as a result of the smaller bubbles generated by ES. In addition, ES was shown to be more effective than the medium-pore-size($10{\sim}15{\mu}m$) bubble diffuser and the best results were achieved at low gas flow rates.

Phenolic Compounds and Antioxidant Activity in Cell Wall Materials from Deodeok (Codonopsis lanceolata) (더덕 부위별 세포벽 물질의 페놀성화합물과 항산화 활성)

  • Kan, Yoon-Han
    • Korean Journal of Food Science and Technology
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    • v.41 no.3
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    • pp.345-349
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    • 2009
  • This study measured the amounts of uronic acid, total sugars, non-cellulosic neutral sugars, phenolic compounds as well as antioxidants activity in cell wall materials (CWM) derived from different parts of deodeok (Codonopsis lanceolata). The values of the uronic acid (UA): neutral sugars (NS) ratio in polymers extracted from the CWM of the flesh and skin were 4 and 6, respectively. The total sugar contents of the flesh and skin were 788.6 and 824.9 ${mu}g/mg$ of CWM, respectively. Galactose and arabinose were the main noncellulosic neutral sugars. The chemical structure of five phenolic compounds from the CWM were analyzed and identified as vanillic acid, p-OH-benzaldehyde, vanillin, ferulic acid, and 8-O-4' diferulic acid by HPLC spectral data. Among them, p-OH-benzaldehyde, vanillin, and 8-O-4' diferulic acid were the first compounds identified from the deodeok. The content of 8-O-4' diferulic acid in the skin CWM was 56.1 ${mu}g/g$ AIR (alcohol insoluble residue). The ethanol-NaOH fractions from CWM had the highest oxygen radical absorbance capacity (ORAC) activities, followed by the AIR fractions and ethanol fractions.

Introduction of Various Amine Groups onto Poly(glycidyl methacrylate)-g-MWNTs and their Application as Biosensor Supports (폴리(글리시딜 메타크릴레이트)가 그래프트된 다중벽 탄소나노튜브에 다양한 아민 그룹의 도입과 바이오센서 지지체로서의 응용)

  • Chung, Da-Jung;Kim, Ki-Chul;Choi, Seong-Ho
    • Polymer(Korea)
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    • v.36 no.4
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    • pp.470-477
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    • 2012
  • A tyrosinase-immobilized biosensor was developed based on various amine-modified multi-walled carbon nanotube (MWNT) supports for the detection of phenolic compounds. MWNTs with various amine groups were prepared by radiation-induced graft polymerization of glycidyl methacrylate (GMA) onto MWNT supports and the subsequent amination of poly(GMA) graft chains. The physical and chemical properties of the poly(GMA)-grafted MWNT supports and the aminated MWNT supports were investigated by SEM, XPS, and TGA. Furthermore, the electrochemical properties of the prepared tyrosinase-modified biosensor based on MWNT supports with amine groups were also investigated. The response of the enzymatic biosensor was in the range of 0.1-0.9 mM for the concentration of phenol in a phosphate buffer solution. Various parameters influencing biosensor performance have been optimized: binder effects, pH, temperature, and the response to various phenolic compounds. The biosensor was tested on phenolic compounds contained in two different commercial red wines.