• 제목/요약/키워드: Vegetable cooking oil

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Viscosity Characteristics of Waste Cooking Oil with Ultrasonic Energy Irradiation

  • Kim, Tae Han;Han, Jung Keun
    • Journal of Biosystems Engineering
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    • 제37권6호
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    • pp.429-433
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    • 2012
  • Purpose: While rapeseed oil, soy bean oil, palm oil and waste cooking oil are being used for biodiesel, the viscosity of them should be lowered for fuel. The most widely used method of decreasing the viscosity of vegetable oil is to convert the vegetable oil into fatty acid methyl ester but is too expensive. This experiment uses ultrasonic energy, instead of converting the vegetable oil into fatty acid methyl ester, to lower the viscosity of the waste cooking oil. Methods: For irradiation treatment, the sample in a beaker was irradiated with ultrasonic energy and the viscosity and temperature were measured with a viscometer. For heating treatment, the sample in a beaker was heated and the viscosity and temperature were measured with a viscometer. Kinematic viscosity was calculated by dividing absolute viscosity with density. Results: The kinematic viscosity of waste cooking oil and cooking oil are up to ten times as high as that of light oil at room temperature. However, the difference of two types of oil decreased by four times as the temperature increased over $83^{\circ}C$. When the viscosity by the treatment of ultrasonic energy irradiation was compared to one by the heating treatment to the waste cooking oil, the viscosity by the treatment of ultrasonic energy irradiation was lower by maximum of 22% and minimum of 12%, than one by the heating treatment. Conclusions: Ultrasonic energy irradiation lowered the viscosity more than the heating treatment did, and ultrasonic energy irradiation has an enormous effect on fuel reforming.

Performance characteristics of a single-cylinder power tiller engine with biodiesel produced from mixed waste cooking oil

  • Choi, Hwon;Woo, Duk Gam;Kim, Tae Han
    • 농업과학연구
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    • 제47권1호
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    • pp.29-41
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    • 2020
  • Biodiesel is a clean energy resource that can replace diesel as fuel, which can be used without any structural changes to the engine. Vegetable oil accounts for 95 percent of the raw materials used to produce biodiesel. Thus, many problems can arise, such as rising prices of food resources and an imbalance between supply and demand. Most of the previous studies using waste cooking oil used waste cooking oil from a single material. However, the waste cooking oil that is actually collected is a mixture of various types of waste cooking oil. Therefore, in this study, biodiesel produced with mixed waste cooking oil was supplied to an agricultural single-cylinder diesel engine to assess its potential as an alternative fuel. Based on the results, the brake specific fuel consumption (BSFC) increased compared to diesel, and the axis power decreased to between 70 and 99% compared to the diesel. For emissions, NOx and CO2 were increased, but CO and HC were decreased by up to 1 to 7% and 16 to 48%, respectively, compared to diesel. The emission characteristics of the mixed waste cooking oil biodiesel used in this study were shown to be similar to those of conventional vegetable biodiesel, confirming its potential as a fuel for mixed waste cooking oil biodiesel.

알칼리 촉매와 고정화 효소를 이용한 폐식용유로 부터 바이오 디젤 생산 1. 지방산 조성 (Biodiesel Production from Waste Cooking Oil Using Alkali Catalyst and Immobilized Enzyme 1. Fatty Acid Composition)

  • 신춘환
    • 한국환경과학회지
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    • 제19권10호
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    • pp.1247-1256
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    • 2010
  • Since biodiesel as bioenergy is defined as ester compounds formed by esterification of animal/vegetable oils, in this study three vegetable cooking oils (market, waste and refined waste ones) were esterified by reactions of alkali catalyst and immobilized enzyme. The fatty acid composition of the formed ester compounds was analyzed to investigate the feasibility of biodiesel production. By lipolysis (i.e, hydrolysis of Triglyceride (TG)), all three vegetable oils used in this study were found to produce Diglyceride (DG), Monoglyceride (MD) and Fatty acid ethylester (FAEE). However, the amount of produced FAEE (which can be used as an energy source) was in the increasing order of market cooking oil, waste one and refined waste one. With NaOH catalyst, FAEE was produced about 24.92, 17.63 and 11.31 % for the respective oils while adding Lipozyme TL produced FAEE about 43.54, 38.16 and 24.47 %, respectively. This indicates that enzyme catalyst is more effective than alkali one for transesterification. In addition, it was found that the composition of fatty acids produced by hydrolysis of TG was unchanged with alkali and immobilized enzyme reactions. Thus it can be expected that stable conditions remain in the course of mixing with gasoline whose composition is similar to that of the fatty acids.

Effect of Egg Albumen, Vegetable Oil, Corn Bran, and Cooking Methods on Quality Characteristics of Chicken Nuggets Using Response Surface Methodology

  • Pathera, Ashok Kumar;Riar, Charanjit Singh;Yadav, Sanjay;Singh, Pradeep Kumar
    • 한국축산식품학회지
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    • 제38권5호
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    • pp.901-911
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    • 2018
  • Response surface methodology was used to study the effect of egg albumen (5-15 g), vegetable oil (5-15 g), and corn bran (5-15 g) on sensory and textural (firmness and toughness) quality of chicken nuggets cooked by the oven, steam, and microwave methods. The egg albumen and vegetable oil had a positive linear effect but corn bran had a negative linear effect at p<0.01 on sensory overall acceptability scores of nuggets. Firmness and toughness scores were increased significantly (p<0.01) with the increase in corn bran level in the formulation. The optimum level of egg albumen, vegetable oil, and corn bran were obtained and validated. Cooking methods also affected the sensory and textural quality of nuggets. Steam cooked nuggets had higher values of sensory scores than oven and microwave cooked nuggets. Oven cooked nuggets showed higher values of firmness and toughness than steam and microwave cooked nuggets. Results of this study suggest that emulsion based meat products can be enriched with dietary fiber source like corn bran without compromising the sensory and textural quality of the products.

ZnDTP를 첨가한 혼합윤활유(광유/식물성 오일)의 마모, 산화 및 전단 특성 (Wear, Oxidation and Shear Characteristics of Mixed Lubricating Oil (Mineral/Vegetable oil) with ZnDTP)

  • 임태윤;김양회;나병기
    • Tribology and Lubricants
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    • 제34권4호
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    • pp.160-167
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    • 2018
  • Vegetable oils can contribute to the goal of energy independence and security owing to their naturally renewable resources. One of the representative vegetable oils is biodiesel, which is being used in domestic and European markets as a blended fuel with automotive diesel. Vegetable oils are promising candidates as base fluids to replace petroleum lubricants because of their excellent lubricity and biodegradability. We prepared biodiesel with a purity of 99.9% via the esterification of waste cooking oil. Blended biodiesel and Petro-lube base oil were mixed to produce five types of mixed lubricating oil. We analyzed the various characteristics of the blended biodiesel with Petro-lube base oil for different blending ratios. The lubricity of the vegetable lubricant improves as the content of biodiesel increases. In addition, since zinc dialkyldithiophosphates (ZnDTPs) are widely used as multifunctional additives in petroleum-based lubricants, we optimized the blending ratio for lubricity, oxidation stability, and shear stability by adding ZnDTP as a performance additive to improve the biodiesel properties, such as oxidation stability and hydrolysis. The optimized lubricants improve by approximately 25% in lubricity and by 20 times in oxidation stability and shear stability after the addition of ZnDTP.

선박디젤기관에서 바이오디젤 폐혼합유의 배기배출물특성에 대한 연구 (A Study on the Characteristics of Exhaust Emissions by Biodiesel Blend Waste Oil in Marine Diesel Engine)

  • 조상곤
    • 동력기계공학회지
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    • 제19권2호
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    • pp.90-95
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    • 2015
  • Recently worldwide concern and research is being actively conducted on green energy which can reduce environmental pollution. A plant such as the natural rapeseed oil, soybean oil, palm, etc. is used as a bio source in home and industry. Biofuels is a sustainable fuel having economically benefits and decreasing environmental pollution problems caused due to fossil fuel, and it can be applied to the conventional diesel engine without changing the existing institutional structure. Waste vegetable oil contains a high cetane number and viscosity component, the low carbon and oxygen content. A lot of research is progressing about the conversion of waste vegetable oil as renewable clean energy. In this study, waste oil was prepared to waste cooking oil generated from the living environment, and applied to diesel engine to confirm the possibility and cost-effectiveness of biodiesel blend waste oil. As a result, brake specific fuel consumption and NOx was increased, carbon monoxide and soot was decreased.

Analysis of Trans Fat in Edible Oils with Cooking Process

  • Song, Juhee;Park, Joohyeok;Jung, Jinyeong;Lee, Chankyu;Gim, Seo Yeoung;Ka, HyeJung;Yi, BoRa;Kim, Mi-Ja;Kim, Cho-il;Lee, JaeHwan
    • Toxicological Research
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    • 제31권3호
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    • pp.307-312
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    • 2015
  • Trans fat is a unsaturated fatty acid with trans configuration and separated double bonds. Analytical methods have been introduced to analyze trans fat content in foods including infrared (IR) spectroscopy, gas chromatography (GC), Fourier transform-infrared (FT-IR) spectroscopy, reverses-phase silver ion high performance liquid chromatography, and silver nitrate thin layer chromatography. Currently, FT-IR spectroscopy and GC are mostly used methods. Trans fat content in 6 vegetable oils were analyzed and processing effects including baking, stir-frying, pan-frying, and frying on the formation of trans fat in corn oil was evaluated by GC. Among tested vegetable oils, corn oil has 0.25 g trans fat/100 g, whereas other oils including rapeseed, soybean, olive, perilla, and sesame oils did not have detectable amount of trans fat content. Among cooking methods, stir-frying increased trans fat in corn oil whereas baking, pan-frying, and frying procedures did not make changes in trans fat content compared to untreated corn oils. However, the trans fat content was so low and food label can be declared as '0' trans based on the regulation of Ministry of Food ad Drug Safety (MFDS) (< 2 g/100 g edible oil).

다양한 식물성유지에서 유래된 바이오디젤의 연료 특성 (Fuel Properties of Various Biodiesels Derived Vegetable Oil)

  • 김재곤;박조용;전철환;민경일;임의순;정충섭;이진휘
    • 한국응용과학기술학회지
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    • 제30권1호
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    • pp.35-48
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    • 2013
  • 바이오디젤은 식물성유지, 동물성유지 그리고 폐식용유를 전이에스테르화 반응을 시켜 만들어진 것으로 경유를 대체할 수 있는 연료이다. 본 연구에서는 다양한 원료의 식물성유지 (대두유, 폐식용유, 유채유, 면실유, 팜유)로부터 얻어진 바이오디젤의 연료 특성을 알아보았다. 다양한 식물성유지 원료로부터 얻어진 바이오디젤은 지방산메틸에스테르 함량, 동점도, 인화점, 필터막힘점, 글리세린 함량을 분석하였다. 바이오디젤의 품질기준과 시험방법은 한국 표준과 유럽 표준인 EN14214에 따라 시험하였다. 대두유, 폐식용유, 유채유, 면실유 바이오디젤은 불포화지방산이 많이 포함되어 있는 반면에 팜유 바이오디젤은 포화지방산이 많이 함유되어 있다. 저온특성, 동점도, 산화안정도와 같은 바이오디젤의 연료 특성은 지방산메틸에스테르의 구성 성분과 관련이 깊다.

식물 지방산 생산량의 증진을 위한 생명공학 연구현황 (Current biotechnology for the increase of vegetable oil yield in transgenic plants)

  • 이경렬;최윤정;김순희;노경희;김종범;김현욱
    • Journal of Plant Biotechnology
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    • 제38권4호
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    • pp.241-250
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    • 2011
  • 식물유의 거의 대부분은 triacylglycerol (TAG) 형태로 종자에 축적되어있으며 이는 종자가 발아할 때에 필수적인 에너지공급원이자 동물과 인간들에게 필수지방산과 중요한 에너지원이다. 최근 식용유의 건강기능성으로 수요증가와 더불어 바이오디젤과 산업원료 등의 산업적 수요도 증가함에 따라 더욱 중요한 자원이 되고 있다. 그래서 생명공학기술로 종자유의 함량을 증진하고자 하면 지질 생합성에 탄소의 유입에 관여하는 조절 유전자를 과발현 또는 억제하는 것이 결정적으로 중요하다. 본 총설에서는 지질함량에 영향을 미치는 것으로 여겨지는 후보 유전자들에 대해 기술하고 이들의 지방 함량 증대 가능성을 조사하였다. 식물의 지방산의 생합성과 종자유의 축적에 관여하는 유전자들은 크게 구분하자면 첫째, TAG가 생합성되기 위해 필요한 전구체를 합성하는 유전자, 둘째, 지방산합성과 TAG 축적에 관여하는 유전자, 셋째, 종자 발달과 종자유 축적에 관여하는 전사인자 유전자가 있다. 종자유 함량을 결정하는 대사들은 앞에서 언급했듯이 매우 복잡하기 때문에 최근에 전사인자의 조절이 다수의 지방생산 대사 유전자를 동시 조작하여 형질전환 식물에서 종자유 함량이 증진하는 것보다 더 바람직한 접근법으로 여겨지고 있다. 그러나 전사조절유전자의 과발현에 의해 나쁜 농업형질의 유도 같은 문제점도 해결해야 한다.

토장국의 문헌적 분석 고찰 (A bibliographical Study on the Tojangguk in Korea)

  • 이윤경;전희정;이효지
    • 한국식생활문화학회지
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    • 제7권1호
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    • pp.81-90
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    • 1992
  • The Guk had lessened to use Gang, Whak, Tang. The Guk was classified into cooking method as a soup stock, the used main substances, and the temperature of the Guk. According to the soup stock were divided clear soup, Tojangguk, and Gooumguk. Another classification of Guk by main substances were Yuktang (meat soup), Otang (fish soup), bongtang (poultry soup), Shotang (vegetable soup), Japtang (vary substance soup) and Yonpotang (soybean-curd soup), and by the temperature of the Guk were divided Doounguk (warm soup) and Naengguk (cold soup). In the thesis, according to the kinds of Tojangguk, the reference frequency to them, the adding foods in them, and the variety cooking method in the Tojangguk were analyzed by the cook books published from 1700 to 1988 in Korea. 1. There were 29 kinds of Tojangguk. 2. The main substances of Tojangguk were meat, poultry, fish, shellfish, vegetable, mushrooms and seasonings. 3. The Tojangguk was boiled with the rice water and fermented soybean paste and fermented soybean-pepper powder paste. For the development of taste were added beef, shellfish, dried anchovy, dried small prawn, and soup stock of beef bones in winter. Seasoning substances were green onion, garlic, black pepper, sesame powder and oil.

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