• 제목/요약/키워드: waste oil

검색결과 530건 처리시간 0.02초

식품가공폐유를 이용한 비누의 계면활성과 세척성에 관한 연구 (A Study on the Surface Activity and Detergency of the Soap Made from the Waste Oil from Food Manufacturing Proces)

  • 정명섭;유덕환
    • 한국의류학회지
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    • 제18권5호
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    • pp.661-673
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    • 1994
  • We have gathered a fatty acid to recycle the waste oil of food manufacturing process, and then made a soap from the waste oil by alkali saponification. Effects of the washing elements such as the concentration of the soap, temperature and time were evaluated to find out the optimum washing conditions, and results are as follows. 1. We could find soaps made from the soybean oil (A), corn oil (B), rape seed salad oil (C), cotton seed oil (D) and a soap consisting of the each oil 25% respectively (I) had the lowest surface tension at the concentration of 0.225% -0.25%. Compared with the single fatty-acid soap, the multi-component soap I showed the lower surface tension at the cmc. 2. All the samples of A-I showed the lowest contact angle for the solid material at the concentration of 0.25%. The multi-component soap of I showed higher contact angle than the single.component soaps of A, B, C and D. 3. The soap G, made from the waste oil, show lower surface tension than 5, made from the complex raw fats of the eatable fatty oil acid and H, commercial soap. 4. The washing efficiency depends on the washing time. Especially the 25-minute was found to be the optimum washing time. 5. The highest washing efficiency was found at the 0.25% cont. reagardless of the washing temperature. At 0.15% concentration level the washing efficiency reduces as washing tem- perature increases. At 0.3% concentration level the highest washing efficiency was found between $50^{\circ}$-$60^{\circ}$. 6. The soap made from the waste oil showed the highest washing efficiency in terms of concentration, temperature, and time. 7. The soap made from the waste oil showed the similiar concentration of hydrogen ion to the synthetic detergent. 8. The hand value of the fabric washed by the soap made from the waste oil was a little lower value than those washed by the synthetic detergent.

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폐타이어로부터 유용성분의 회수에 관한 연구 (A study on the recovery of useful components from waste tire)

  • 이덕수
    • 환경위생공학
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    • 제9권2호
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    • pp.88-100
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    • 1994
  • A study on the recovery of useful components from waste tire. This study was carried out investigate the recovery of fuel oil condensed from gases formed in the pyrolysis of waste tire. Energy to require the pyrolysis of waste tire was used the heat that was produced by the combustion of the gases from the pyrolysis of waste tire itself. The results are as follows; 1. Energy to require forming the fuel oil by the pyrolysis of waste tire was used only 1/6 quantities of waste tire for forming fuel oil. 2. The formed fuel oil were light oil, Kerosene and gasoline 3. The pollutants of combustion gas of patronizable gases was lower than standard Value.

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타르성 기름찌꺼기 해상방제 방안에 관한 연구 (A Study of Marine Response system for the tar type waste oil)

  • 장덕종;김태호;양경욱;나선철;남광희
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2008년도 춘계학술발표회
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    • pp.117-120
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    • 2008
  • 금번 태안 해안에서 발생한 해상 기름유출 사고에서도 탈 수 있듯이 유출유는 시간이 경과함에 따라하고 고점도화 되어 타르 형태의 기름찌꺼기로 변화하고 조류를 따라 이동하다 수온이 높아질 경우 그 점도가 낮아져 주변해역에 유막을 형성하는 과정을 반복하기 때문에 조류가 미치는 넓은 범위를 지속적으로 오염시키는 요인이 되고 있다. 지금까지 해상에서 타르 형태의 기름찌꺼기를 수거하는 방법은 개인이 쪽대를 이용하여 회수하는 형태로, 넓은 범위에 걸쳐있는 기름찌꺼기가 해안으로 밀려들기 전에 제거하기는 한계가 있다. 본 연구는 이러한 기름찌꺼기를 효율적으로 수거한 수 있는 방안을 찾고자 기름찌꺼기의 흡착성을 이용 한 붐 형태의 흡착 매트와 기 보고한 Net형 부유 폐기물수거기구를 이용하여 태안 기름유출 사고 현장에서 그 가능성을 시험한 것이다. 그 결과 Net형 수거기구는 개인의 수작업으로 수거작업을 했을 때에 비해 단시간에 훨씬 높은 수거성능을 보여 타르성 기름찌꺼기 수거기구로 이용할 수 있음을 확인할 수 있었다.

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초음파 캐비테이션에 의한 선박 폐유 처리에 관한 연구 (A Study on the Treatment of Shipborne Waste Oils by Ultrasonic Cavitation)

  • 한원희;이진열
    • Tribology and Lubricants
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    • 제19권5호
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    • pp.285-291
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    • 2003
  • Ultrasonic vibrator is an equipment which atomizes and homogenization the oils by breaking the oil particles with ultrasonic cavitation, and would improve the properties. The present study deal with the ultrasonic breaking systems which recycle the shipborne waste oil into usable oil to be burnt. The first place, experimental studies were carried out to investigate the homogenizing effect of the waste oils by ultrasonic cavitation. Variation of the properties(viscosity, specific gravity and pH) and the matrix structures for the various shipborne waste oils were interpreted to analyse the breaking, dispersion effects by ultrasonic cavitation. The experimental results can be useful to the development of waste oil disposing systems.

고체 촉매를 이용한 대두유와 폐식용유의 에스테르화 (Esterification of the Soybean Oil and Waste Vegetable Oil by Solid Catalysts)

  • 신용섭
    • 한국환경과학회지
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    • 제13권1호
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    • pp.79-87
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    • 2004
  • Esterification of soybean oil with methanol was investigated. First of all, liquid-liquid equilibriums for systems of soybean oil and methanol were measured at temperatures ranging from 40 to 65$^{\circ}C$. Profiles of conversion of soybean oil with time were determined from the glycerine content in reaction mixtures for the different kinds of catalysts, such as NaOH, CaO, Ca(OH)$_2$, MgO, Mg(OH)$_2$, and Ba(OH)$_2$. The effects of dose of catalyst, cosolvent and reaction temperature on final conversion were examined. Esterification of waste vegetable oil with methanol was investigated and compared to the case of soybean oil. Solubility of methanol in soybean oil was substantially greater than that of soybean oil in methanol. When the esterification reaction of soybean oil was catalyzed by solid catalyst, final conversion was strongly dependent on the alkalinity of the solid catalyst, and increased with the alkalinity of the metal. Hydroxides from the alkali metals were more effective than oxides. When Ca(OH)$_2$ was used for the esterification catalyst, maximum value of final conversion was measured at dose of 4%. When CHCl$_3$ as a cosolvent, was added into the reaction mixture of soybean oil which catalyzed by Ba(OH)$_2$, maximum value of final conversion was appeared at dose of 3%. When waste vegetable oil was catalyzed by NaOH and solid catalysts, high final conversion, over 90%, and fast reaction rate were obtained.

폐 수용성 절삭유의 화학처리효과 및 물성변화 (Effect of chemical treatment and variations of the physical properties of waste water-soluble cutting oil)

  • 신춘환;장정국
    • 한국환경과학회지
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    • 제13권4호
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    • pp.403-412
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    • 2004
  • Waste water-soluble cutting oil was treated with WI type #1 and WI type #2. The properties of the original water-soluble cutting oil were pH=l0.4, viscosity=1.4cP, CODcr=44,750 ppm, and TOC=10,569 ppm. However, the properties of the oil used for more than 3 months were changed to pH=7.82, viscosity=2.1cP, CODcr=151,000 ppm, and TOC=74,556 ppm. It might be attributed to the fact that molecular chains were cut due to thermal oxidation and impurities such as metal chips were incorporated in to the oil during the operation processes. To prevent the putrefaction of oil, the sterilization effect of ozone and UV on the microorganism in the oil was investigated. Ozone treatment showed that 99.99% of the microorganism was annihilated with 30 minutes contact time and 60 minutes were necessary for the same effect when UV was used. Ozone treatment could cut molecular chains of the oil due to strong sterilization power, which was evidenced by the increase of TOC from 25,132 ppm at instantaneous contact to 28,888 ppm at 30 minutes contact time. However, UV treatment didn't show severe changes in TOC values and thus, seemed to cause of severe cut of molecular chains. When the activated carbon was used to treat the waste water-soluble cutting oil, TOC decreased to 25,417 ppm with 0.lg carbon and to 15,946 ppm with 5.0g carbon. This results indicated that the waste oil of small molecular chains could be eliminated by adsorption. From the results, it could be concluded that these treatment techniques could be proposed to remove the waste oil of small molecular chains resulting in the degradation of the oil properties. In addition, these experimental results could be used for the correlation with future works such as investigation of the molecular distribution according to the sizes, lengths, and molecular weight of the chains.

붕소도핑 다이아몬드 전극을 이용한 수용성 폐절삭유의 전기화학적 특성연구 (A Study on the Electrochemical Properties of Water-soluble Waste Cutting Oil using Boron-Doped Diamond Electrodes)

  • 박진혁;김태규
    • 열처리공학회지
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    • 제35권6호
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    • pp.337-342
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    • 2022
  • In metal cutting, water-soluble cutting oil is used for cooling the surface of the workpiece and improving the surface roughness. However, waste cutting oil contains preservatives and surfactants, and if it is discarded as it is, it has an great influence on environmental pollution. For this reason, regulations on the use of cutting oil are being stricter. Hence, the development of eco-friendly treatment technologies is required. In this study, a diamond electrode doped with boron on a niobium substrate was deposited by thermal filament chemical vapor deposition and waste cutting oil was treated using an electrochemical method. Compared to the total amount of organic carbon contained in the waste cutting oil, it was confirmed that the boron-doped diamonds developed from this study showed much better performance than electrodes that has been widely used before.

티타늄 합금 폐기물의 연소 특성에 관한 실험적 연구 (Experimental study on the combustion characteristics of titanium alloy)

  • 이준식;남기훈
    • 한국산업융합학회 논문집
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    • 제22권2호
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    • pp.105-110
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    • 2019
  • Most titanium alloy waste with cutting oil was discarded without recycling process so that it can be caused by metal and oil fires. However, there is no fire management system and studies on the titanium or titanium alloy waste in spite of high fire risk. The purpose of this experimental study is to identify the fire risk of the titanium alloy waste with cutting oil. We collected the 120g waste which was made in the biomedical titanium alloy cutting process. The waste was burned and conducted thermal image analysis with infrared camera. The experimental results which illustrated the process, characteristics, and trends of fire are presented. Firstly, the cutting oil was burned and partially the titanium alloy waste was burned. The maximum temperature of the fire was more than $650^{\circ}C$ in some specific spots. These results means when a lot of titanium alloy waste with cutting oil was ignited, this fire could connect the titanium fire. In other words, the fire has a flammable liquid fire and combustible metal fire at the same time. The experimental study could be used fire prevention, response, and investigation of the titanium alloy waste.

수산화라디칼과 오존에 의한 수중 천연 지방산 분해 제거 연구 (Purification of the Waste Water Containing Natural Fatty Oil by Hydroxy Radical and Ozone)

  • ;원정하;김용주;고장면;송근한;이창훈
    • Korean Chemical Engineering Research
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    • 제51권4호
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    • pp.523-526
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    • 2013
  • 본 연구에서는 수질정화 기술개발을 위하여 수산화라디칼 및 오존 발생기를 이용하여 수중에 존재하는 천연 지방산 분해 제거 연구를 수행하였다. 천연 지방산은 수산화라디칼 및 오존에 의하여 1차 분해반응 형태로 제거되었으며, 천연 지방산의 분해반응에서 수산화라디칼 단독으로 사용하는 것 보다 오존과 함께 사용한 경우 분해 효율을 크게 향상시킬 수 있음을 알 수 있었다. 또한, 천연 지방산이 수산화라디칼과 오존에 의해 분해되는 화학반응 기구를 제안하였다.

저급 폐유지의 바이오디젤 원료 활용을 위한 중화탈산 및 FAME 전환 가능성 평가 (Evaluation of Neutralization and FAME Conversion of Low-grade Waste Oil as Biodiesel Feedstock)

  • 이준표;이진석;박지연;김민철;조재완;김덕근
    • 신재생에너지
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    • 제19권4호
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    • pp.2-10
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    • 2023
  • The current mandatory domestic biodiesel blending ratio is 3.5%, which is planned to be gradually increased to achieve carbon neutrality by 2050. The aim of this study was to improve domestic self-sufficiency in biodiesel raw oil by conducting a technical review on the possibility of utilizing waste oils, such as soup oil, chicken oil, and leather oil, as biodiesel feedstocks. These waste oils have an acid value that is too high to be converted directly into biodiesel. Therefore, a pretreatment to reduce the acid value is necessary. The neutralization process was examined as a potential technology for reducing the acid value. The oil recovery rate of the soup oil after neutralization was significantly low at 37.6 wt%. The oil recovery rates of leather oil and chicken oil were 66.49 wt% and 79.08 wt%, respectively. Based on biodiesel conversion experiment using waste oil with a reduced acid value, the conversions were analyzed as 89 wt%, 91.1 wt%, and 90.5 wt% for soup oil, leather oil, and chicken oil, respectively. Thus, it is technically possible to use soup oil, leather oil, and chicken oil as raw materials for producing biodiesel.