• Title/Summary/Keyword: 페놀

Search Result 4,129, Processing Time 0.035 seconds

Interfacial Evaluation of Single-Carbon Fiber/Phenolic and Carbon Nanotube-Phenolic Composites Using Micromechanical Tests and Electrical Resistance Measurements (미세역학시험법과 전기저항 측정을 이용한 탄소섬유/페놀수지 및 탄소나노튜브-페놀수지 복합재료의 계면특성 평가)

  • Wang, Zuo-Jia;Kwon, Dong-Jun;Gu, Ga-Young;Park, Jong-Kyoo;Lee, Woo-Il;Park, Joung-Man
    • Journal of Adhesion and Interface
    • /
    • v.11 no.4
    • /
    • pp.149-154
    • /
    • 2010
  • Interfacial evaluation was investigated for single-carbon fiber/phenolic and carbon nanotube (CNT)-phenolic composites by micromechanical technique and electrical resistance measurement combined with wettability test. Compressive strength of pure phenol and CNT-phenolic composites were compared using Broutman specimen. The contact resistance of CNT-phenolic composites was obtained using a gradient specimen by two and four-point methods. Surface energies and wettability by dynamic contact angle measurement were measured using Wilhelmy plate technique. Since hydrophobic domains are formed as heterogeneous microstructure of CNT in the surface, the dynamic contact angle exhibited more than $90^{\circ}$. CNT-phenolic composites exhibited a higher apparent modulus than neat phenolic case due to better stress transferring effect. Work of adhesion, $W_a$ between single-carbon fiber and CNT-phenolic composites exhibited higher than neat phenolic resin due to the enhanced viscosity by CNT addition. It was consistent with micro-failure patterns in microdroplet test.

Change of Physical Property of Rubber Compound by Terpene Modified Phenolic Resin Structure (테르펜 개질 페놀 수지 구조에 따른 배합고무 물성 변화)

  • Kim, Kun Ok;Kim, Do-Heyoung;Song, Yo Soon
    • Applied Chemistry for Engineering
    • /
    • v.31 no.3
    • /
    • pp.310-316
    • /
    • 2020
  • Terpene-modified phenolic resins were used to improve the tires wet traction related to the driving safety and also rolling resistance related to fuel efficiency. In this work, alpha-pinene, beta pinene, and delta limonene resins, which constitute different basic structures of terpene-modified phenolic resins, were individually added to the tread compounds of tires and their physical properties were compared with those of the alkyl phenol resin compounds. Alkyl phenolic resins showed no significant difference in tangent delta from terpene-modified phenolic resins at 0 ℃, which is related to wet traction, but showed higher tangent delta at 80 ℃, which is related to rolling resistance, indicating smaller fuel efficiency improvement effects. Among the terpene-modified phenolic resins, beta pinene one showed improved wet traction and fuel efficiency compared to those of other resins. Delta limonene resin showed the best wet traction improvement effect, and alkyl phenolic resins showed relatively high tensile strength and abrasion property. All terpene-modified resins exhibited better rolling resistance than those of alkyl phenolic ones so that they can be said to have better fuel efficiency improvement effects and also to improve other properties compared to those of blanks. Terpene-modified phenolic resins could be used when mixing tire compounds referring to the properties of the phenolic resins revealed in this work, which could result in preparing compounds with improved wet traction and rolling resistance.

Degradation of Phenol by Activated Sludge Immobilized with Photo-crosslinked Resin (광경화성 수지에 고정화된 활성슬러지에 의한 페놀 분해)

  • 김선일;윤영재정경훈
    • KSBB Journal
    • /
    • v.11 no.5
    • /
    • pp.577-585
    • /
    • 1996
  • Effects of various factors on the phenol degradation by activated sludge immobilized with the photo-crosslinked resin were investigated. The optimum pH on the degradation of phenol in both free and immobilized activated sludge was 7. When the pH of the reaction was varied from 5 to 10, the relative activity of the phenol degradation by the immobilized activated sludge was higher than that by the free activated sludge. A higher rate of phenol degradation was observed when a bead size was smaller. The phenol degradation in the free activated sludge was inhibited at the 3000 mg/L of phenol, while that in the immobilized activated sludge was maintained at the same concentration for 28 hrs without an inhibition. The degradation rates of phenol were not directly proportional to the increasing amount of immobilized beads dosage, but the phenol degradation was made in a rather short time than that for a free sludge system. The relative activities of the immobilized activated sludge after 7 runs of repeated reactions increased about 8 times as that of the first reaction. The activities for the phenol degradation remained stable for at least 80 days when the immobilized activated sludge was stored at an aerobic condition in the wastewater containing phenol. The loading rate as high as 5.59 kg-pheno1/㎥.d could have been achieved during the continuous treatment of phenol by the immobilized activated sludge.

  • PDF

Effects of Proteins on the Reactivity of Various Phenolic Compounds with the Folin-Ciocalteu Reagent (다양한 페놀성 물질과 Folin-Ciocalteu 시약과의 반응성에 미치는 단백질의 영향)

  • Park, Kyung A;Choi, Yoo-mi;Kang, Smee;Kim, Mi-Ri;Hong, Jungil
    • Korean Journal of Food Science and Technology
    • /
    • v.47 no.3
    • /
    • pp.299-305
    • /
    • 2015
  • The Folin-Denis assay using the Folin-Ciocalteu (F-C) reagent has been commonly used for analyzing the total phenolic compound content in various food products. In the present study, the effects of proteins on the reactivity of the F-C reagent with different phenolic compounds were investigated. Bovine serum albumin (BSA) or skim milk proteins showed a concentration-dependent increase in color response in the Folin-Denis assay; these proteins decreased the color response of most phenolic compounds tested. The reactivity of phenolic compounds was significantly less pronounced in the presence of BSA and this interference was greater at higher concentrations of phenolic compounds. The reactivity of phenolic compounds with the F-C reagent was reduced significantly by their oxidation; the reaction of the oxidized products with the F-C reagent was more severely affected by BSA. The interfering effects in the Folin-Denis assay might be attributable to binding interactions of phenolic compounds with proteins.

Composition of Fatty Acid and Phenolic Acid in Rice with the Different Milling Fractions (제분 분획(Milling Fraction)을 달리한 쌀의 지방산 및 페놀산 함량 비교)

  • 김인호;전향숙
    • Journal of the Korean Society of Food Science and Nutrition
    • /
    • v.25 no.5
    • /
    • pp.721-726
    • /
    • 1996
  • Fatty acid composition and phenolic acid content of rice with different milling fractions were analyzed to provide basic data for nutrition, processing and storage of rice. Major fatty acids of rice were palmitic, oleic and linoleic acids and their respective contents were 20.0%, 33.3% and 43.0% of embryo, 17.3%, 45.1% and 34.5% of rice bran and 23.4%, 26.2% and 46.1% of milled rice. Outer fraction had a high content of oleic acid but a low content of linoleic acid in rice bran. As milling yields increased in milled rice, oleic acid content increased, but palmitic acid, linoleic acid, stearic acid and linolenic acid contents decreased. Contents of free, esterified and insoluble bound phenolic acid extracts from bran were 321.0mg%, 299.7mg% and 212.4mg%, respectively. Milled rice contained 118.0mg% of free phenolic acids, 56.0mg% of insoluble bound phenolic acids and no esterified phenolic acids. Rice bran contained 86.2% of ferulic acid as a principal phenolic acid. It also contained 35.7~36.6% of sinapic and syringic acids, 16.7% of p-coumaric acid and 0.13% of vanillic acid as minor component. Contents of total phenolic acid, expressed in terms of tannic acid, among rice with different milling fractions was highest in embryo. It was higher in outer fraction in bran, but rarely detected as fractionation of the component with milling in milled rice.

  • PDF

Phenol Removal by Ozone-Activated Carbon Hybrid Process (오존-활성탄 복합공정에 의한 페놀 제거)

  • Kim, Hwanik;Moon, Ji-Hoon;Chung, Jae Woo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.36 no.5
    • /
    • pp.311-316
    • /
    • 2014
  • Effects of operating parameters such as activated carbon dose and pH on the phenol oxidation in ozone-activated carbon hybrid process were investigated through a kinetic study. Activated carbon enhanced the self-decomposition of ozone, generating $OH{\cdot}$, thus promoting phenol degradation. The pseudo-first order rate constants of phenol degradation increased and half-life of phenol decreased with activated carbon dose. The increase of pH enhanced $OH{\cdot}$ generation through chain reactions initiated by $OH^-$, therefore increasing the phenol degradation rate. TOC removal efficiency increased about 3.2 times by adding activated carbon in ozonation process.

Crosslinking Density Control and Its Carbonization Characteristics of Spherical Phenolic Resin Particles by Using Cresol as Comonomer (구형 페놀수지 입자의 크레졸을 이용한 가교조절 및 탄화물성 변화)

  • Hahn, Dongseok;Kim, Hongkyeong
    • Korean Chemical Engineering Research
    • /
    • v.58 no.4
    • /
    • pp.618-623
    • /
    • 2020
  • Spherical phenolic resin beads were synthesized by suspension polymerization at 98 ℃ from phenol, ortho-cresol, formaldehyde, with triethylamine as a basic catalyst, and spherical phenol-cresol copolymer resin beads with relatively low crosslinking density as well. Phenol reacts with formaldehyde at two ortho- and one para- positions to form a crosslinked structure, but ortho-cresol instead of phenol reduces the crosslinking density during copolymerization due to the methyl group at a ortho- position. As a result, spherical phenol-cresol copolymer beads showed more shrinkage with decreasing apparent density compared to the spherical phenol beads when carbonized at 700 ℃ under nitrogen. As the molecular weight of the cresol oligomer increases, the pore radius of the carbonized copolymer beads decreases, which is consistent with the density and shrinkage results. It was confirmed that the characteristics such as density decrease, shrinkage, yield and so on during carbonization can be controlled by controlling the degree of crosslinking of the spherical phenolic resin particles with cresol.

Effect of antioxidant treatment in axillary culture medium of walnut(Juglans sinensis) (호두 액아 배양시 산화방지제 처리 효과)

  • Kwon, Young Hee;Lee, Joung Kwan;Park, Jae Seong;Huh, Yoon Sun
    • Proceedings of the Plant Resources Society of Korea Conference
    • /
    • 2018.10a
    • /
    • pp.38-38
    • /
    • 2018
  • 최근 호두 기내 소비량은 급증하나 대부분 실생묘로 조림되어 결실까지 장기간 소요되며, 무성 번식률이 낮아 보급확대가 어렵다. 본 연구는 호두나무 관행 묘목 번식법 개선이 가능한 우량 국산묘 대량증식 기술 개발로 최적 배양조건을 구명하고자 수행하였디. 호두나무 등 목본류는 식물 조직배양 기본배지에서 산화방지제를 첨가하여 사용하는 경우, 배양체에서 생기는 페놀 화합물(Phenolic compound)의 작용을 억제하여 배양 식물체의 갈변(Browning) 또는 흑변(Blackening) 현상을 감소시키는 효과가 있다. 페놀 추출물은 배지로 빠져나와 갈변시키며 생존율을 저하시키는 원인이 되고 이를 제거하는 산화방지제는 배양 식물체의 생산효율을 높이는 효과를 나타내는 강력한 항산화제(Antioxidant) 역할을 한다. 호두나무의 액아를 배양하게 되면 조직 및 배지의 갈변화가 심하게 일어나는데, 휴면 정도가 깊을 수록 정단에서 추출되는 페놀성 물질의 함량이 증가하며, 식물 조직 내 페놀성 물질의 함량 정도와 배양의 고사율과는 상관관계가 있다. 이러한 식물 배양체에서 생기는 페놀 화합물에 의해 발생되는 배양상의 문제점을 해결하기 위하여 계대배양을 자주해 주거나 활성탄(Activated charcoal), Ascorbic Acid 등의 첨가물을 배지에 추가하는 방법이 있다. 이에 따라 호두 '신령' 품종의 액아배양의 페놀집적을 제거하기 위해 배지 내에 산화방지제 첨가물질 등을 농도별로 처리하였다. 호두나무 액아 배양 후 8주차 산화화방지제 첨가물질의 농도별 처리 효과는 생존율은 85.3%를 보였으며, 신초 형성율 76.4%, 신초수 1.9개/주, 신초장 27mm/주의 양호한 결과를 나타냈으며, 페놀 제거 및 유식물체 고사 억제 효과를 보였다.

  • PDF

Optimization of polyphenol extraction from non-edible parts of Aronia melanocarpa for the development of functional bioconvergence materials (아로니아 비가식 부위로부터 기능성 바이오융복합 소재 개발을 위한 폴리페놀의 추출 공정 최적화)

  • Kim, Hye Rim;Kim, Yeona;In, Man-Jin;Chae, Hee Jeong
    • Journal of the Korea Convergence Society
    • /
    • v.11 no.2
    • /
    • pp.85-91
    • /
    • 2020
  • Polyphenols extraction conditions including extraction solvent, temperature, pH and time were optimized for the development of functional bio-convergence materials using non-edible parts of Aronia melanocarpa including its berry. Water, ethanol, and methanol were used for the extraction of polyphenol from aronia leaves, stem and twigs. Water was selected as an extraction solvent because water gave the highest extraction yields. Among the non-edible parts, aronia leaves had the highest total polyphenol content. The polyphenol extraction conditions from aronia leaves were statistically optimized using a experimental design method: reaction time of 4.5 h, extraction temperature of 79.3℃, and pH 7.2. These optimized extraction conditions could be used for the production of functional bio-material.