• Title/Summary/Keyword: 파라핀 오일

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Effect of Paraffin Oil on Prolongation of Green Period in Zoysiagrass (파라핀오일 처리가 한국잔디의 녹색기간 연장에 미치는 영향)

  • Lee, Dong-Woon;Lee, Suk-Jun;Lee, Chae-Min;Choi, Tae-Hyuk;Lee, Sang-Hoon;Choi, Dae-Hong;Chang, Tae-Hyun
    • Asian Journal of Turfgrass Science
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    • v.26 no.1
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    • pp.35-43
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    • 2012
  • These studies were carried out to ascertain the effects of paraffin oil on prolongation of the green leaf color period in Zoysiagrass. Fifty-fold diluted 98% paraffin oil treatment obtained the lowest reduction rate of green color. In early October we sprayed 50-fold, 100-fold and 200-fold diluted 98% paraffin oil in a Zoysia japonica field in Hapcheon of Gyeongnam and Sangju of Gyeongbuk and in a Z. matrella field in Gumjung of Busan and Anseong of Gyeonggii. Leaf color maintained for 60 days after treatment in Zoysia japonica. Leaf color remained for 60 days after treatment in Anseong, Hapcheon and Sangju when treated in the mid-October. Chlorophyll content was higher in paraffin oil treatment areas than in control areas in early October. Weight reduction rate was lower in the paraffin oil treated than in untreated leaves of Zoysiagrass when sprayed in Gumjung and Anseong in early October and mid-October, respectively. The chlorophyll content in leaves of Z. japonica was increased by increasing the spray volume of paraffin oil in the same dose treated in Lexington, Kentucky, USA. Paraffin oil can be used to prolongate of Zoysiagrass leaf color.

Effect of Paraffin Oil on the Low Temperature Adhesion Properties of CR/SBS Modified Asphalt Sealants (CR/SBS 개질 아스팔트 실란트의 저온접착특성에서 파라핀 오일 첨가에 의한 효과)

  • Kim, Doo Byung;Lee, Dae Woo;Kim, Jong-Seok
    • Korean Chemical Engineering Research
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    • v.50 no.1
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    • pp.6-10
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    • 2012
  • The main objective of this work was studying the influence of paraffin oil(PO) on the adhesion properties at low temperature in styrene-butadiene-styrene(SBS) copolymer and crumb rubber(CR) modified asphalt. The temperature susceptibility of SBS/CR asphalt and PO/SBS/CR/asphalt blends were measured by penetration and softening point. Adhesion properties at low temperature and dispersion of modifiers in PO/SBS/CR/asphalt blends were evaluated by universal test machine and florescence microscopy, respectively. The adhesion properties of PO/SBS/CR/asphalt blends at low temperature increased in the proportion of SBS contents with both 5 and 10 wt % of paraffin oil. Results showed that the maximum tensile adhesion strength and toughness energy at $-20^{\circ}C$ were obtained when PO and SBS contents were 10 wt % and 6 wt %, respectively. The addition of PO is effective for enhancing the flexibility of SBS/CR/asphalt blends and leads to the increase of toughness at low temperature.

Application of Paraffin Oil for Control of Large Patch on Zoysia japonica (들잔디 갈색퍼짐병 방제를 위한 파라핀오일의 살포)

  • Lee, Dong-Woon;Lee, Sang-Myeong;Kim, Dong-Su;Choi, Tae-Hyuk;Chang, Tae-Hyun
    • Asian Journal of Turfgrass Science
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    • v.26 no.1
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    • pp.17-23
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    • 2012
  • Large patch caused by Rhizoctonia solani AG2-2 (IV) is one of the most serious diseases in zoysiagrass. The objectives of this research were to evaluate the in vitro fungicidal effect and in field control of large patch disease of Paraffin oil. In the field experiments, paraffin oil was applied with 1 L/$m^2$ after diluted at 5 ml to 20 ml of oil/1 L of water for the control of large patch on Zoysia japonica in golf course. The same material was tested for inhibition of mycelial growth in vitro. Paraffin oil at 0.5% and 2.0% had a fungicidal effect by 43 to 67% on R. solani AG2-2 (IV) in vitro. In two locations of the field experiments, the paraffin oil provided moderate protection of large patch. It was effective in suppressing large patch development by 48.0% in comparison with a water check after one time application on mid-September in golf course. Paraffin oil may be used as an alternative control agent for environment friendly management of large patch on Zoysiagrass in golf course.

The Preparation of Non-Silicone Oil Based Adhesion Promoted Silicone Sealant (비실리콘 오일을 BASE로 한 접착력 강화 실리콘 실란트의 제조 개발)

  • Han, Gil-Soo;Jeong, Kyoung-Han;Chun, Yong-Jin
    • Proceedings of the KAIS Fall Conference
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    • 2008.05a
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    • pp.309-312
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    • 2008
  • We have prepared the silicone sealant using non silicone oil without silicone oil for solvent and using adhesion promotor against various substrate. We are replaced the silicone oil by the mineral oil and the normal adhesion promotor by mixed adhesion promotor at the multi purpose silicone sealant.

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Study on Paraffin Wax Precipitation using Model Oils (모델오일을 이용한 파라핀 왁스의 침전 연구)

  • Oh, Kyeong-Seok
    • Journal of the Korean Applied Science and Technology
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    • v.34 no.3
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    • pp.495-503
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    • 2017
  • Wax components can be precipitated when surrounding temperature decreases below wax precipitation temperature (WAT). WAT as well as pour point are important characteristics to evaluate the behavior of waxy oils. In this study, qualitative and quantitative evaluations of waxes in waxy model oils were presented after determining WAT and pour point. In case of anhydrous waxy model oils, ASTM D2500 may be most useful to determine WAT because of the transparent nature of model oils. With same apparatus, ASTM D97 is also applicable to determine the pour point of waxy oils in a serial determination. In case of emulsified model oils, however, it is difficult to measure WAT because of its opaque nature. This study employed FTIR spectroscopy to determine wax precipitation temperature and discussed the effect of emulsion state regarding the values of WAT. Further study would be needed to conclude the effect of water contents to WAT values in case of emulsified waxy oil.

A New Method to Identify PCA Oil Type through Solvent Extraction and Separation Skills in a SBR Vulcanizate (SBR 가황물에서 용매추출 및 분리에 의한 PCA 오일 Type 확인법)

  • Kim, Min-Saeng;Sohn, Kyung-Suk;Lee, Jung-Hun;Kim, Ik-Sik;Choi, Sung-Seen
    • Elastomers and Composites
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    • v.47 no.1
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    • pp.36-42
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    • 2012
  • More than 3 wt% of polycyclic aromatics (PCAs) in process oil is known to cause skin cancer. The criterion of distinguishing between low PCA oil and high PCA oil is based on 3 wt% of PCA. High PCA oil is called as a carcinogen like distillate aromatic extract (DAE). Low PCA oil is considered as safety oils like treated distillate aromatic extract (TDAE), mild extract solvate (MES), and paraffinic oil. Four types of process oils such as DAE, TDAE, MES, and paraffinic oil purified by solvent extraction and separation skills from SBR vulcanizates were measured by FT-IR techniques. The effects of rubber chemicals such as N-1,3-dimethylbutyl-N'-phenyl-p-phenylnenediamine (HPPD), polymerized 2,2,4-trimethyl-1,2-dihydroquinoline (TMDQ), paraffin wax as antidegradants, and processing aid like Structol 40MS on paraffinic oil from SBR vulcanizates were also studied. The type of low or high PCA was identified by the relative abundance of absorbance at the aromatic substitution patterns of 864, 810, and $754cm^{-1}$ and at the paraffinic or naphthenic pattern of $721cm^{-1}$.

Stable Liquid Paraffin-in-Water Nanoemulsions Prepared by Phase Inversion Composition Method (조성 상전이 방법으로 제조된 안정한 액상 파라핀-물 나노에멀젼)

  • Kim, Eun Hee;Cho, Wan Goo
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.40 no.2
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    • pp.133-139
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    • 2014
  • Oil-in-water nanoemulsions were prepared in the system of water/Span 80-Tween 80/long-chain paraffin oil via the PIC (phase inversion composition) method. With the increase of preparation temperature from $30^{\circ}C$ to $80^{\circ}C$, the diameter of emulsion droplets decreased from 120 nm to 40 nm, proving the formation of nanoemulsions. By varying the HLB (hydrophilic lipophilic balance) of mixed surfactants, we found that there was an optimum HLB around 12.0 ~ 13.0 corresponding to the minimum droplet size. The viscosity of nanoemulsions clearly increased with droplet volume fraction, f, but the droplet size slightly increased. Significantly, at ${\phi}{\leq}0.3$, the size distribution of nanoemulsions kept constant more than 2 months. These results proved that the viscous paraffin oil can hardly be dispersed by the PIC method at $30^{\circ}C$, but the increase in preparation temperature makes it possible for producing monodisperse nanoemulsions. Once the nanoemulsion is produced, the stability against Ostwald ripening is outstanding due to the extremely low solubility of the liquid paraffin oil in the continuous phase. The highly stable nanoemulsions are of great importance in cosmetic applications.

Development of Oil Mist Collector by using Exterior Filtration Method-1 (외면 여과식 오일 미스트 콜렉터의 개발-1)

  • 조진호;김태형;하현철
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.531-532
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    • 2003
  • 공작기계 가동시 윤활과 냉각 등의 목적으로 다양한 종류의 금속가공유 (MWFs : 절삭유, 윤활유, 방청유 둥)를 사용하고 있다. MWFs에는 포름알데히드, 니트로스아민, 염화파라핀 등의 발암물질이 포함되어 있는 것으로 알려져 있어 작업자 건강보호를 위해 효율적인 환기가 요구되고 있다. 현장에서 가장 많이 사용하고 있는 포켓 필터형 오일미스트 콜렉터는 제진 장치가 없기 때문에 필터 표면에 한번 부착된 오일 미스트와 먼지가 떨어지지 않기 때문에 일정시간 후 필터 표면에 막힘 현상이 발생한다. 필터 표면이 막히면 차압 증가와 함께 송풍량이 감소하기 때문에 미스트 제거 효율이 크게 저하되고, 결과적으로 오일미스트의 환기 효율이 크게 감소된다.(중략)

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Reaction characteristics of hydrocarbon fuels under various operation conditions of hydro-upgrading process for vegetable oil-based bio-jet fuel production (식물성 오일 기반 바이오항공유 제조공정에서 수소첨가 업그레이딩을 위한 운전조건에 따른 탄화수소화합물의 특성)

  • Kwak, Yeonsu;Jang, Jung Hee;Kim, Sungtak;Ahn, Minhwei;Lee, Eun-Sil;Han, Gi Bo;Jeong, Byung Hun;Han, Jeong Sik;Jeon, Cheol-Hwan
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.3
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    • pp.731-743
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    • 2018
  • In bio-jet fuel production, selecting operating conditions of hydro-upgrading is of great importance to make iso-Paraffin rich hydrocarbons with carbon distribution including jet fuel range. Herein, iso-Paraffin rich biofuel including jet fuel range hydrocarbons ($C_8-C_{16}$) is produced from simultaneous cracking and isomerization using n-Paraffin rich hydrocarbon derived from hydrotreated vegetable oil over 0.5 wt..% Pt/Zeolite catalyst. We report and analyze the yields and compositions in the produced hydrocarbons affected by various operating conditions, such as reaction temperature, reaction pressure, molar ratio of reactants, and weight hourly space velocity. Aforementioned operating conditions not only can help interpret the reaction dynamics of hydro-upgrading, but also further produce bio jet-fuel after distillation.