• 제목/요약/키워드: Bio-Oil

검색결과 541건 처리시간 0.022초

Chemical Composition of Cactus Pear Seed Oil: phenolics identification and antioxidant activity

  • Ali, Berraaouan;Abderrahim, Ziyyat;Hassane, Mekhfi;Marianne, Sindic;Marie-Laure, Fauconnier;Abdelkhaleq, Legssyer;Mohammed, Aziz;Mohamed, Bnouham
    • 대한약침학회지
    • /
    • 제25권2호
    • /
    • pp.121-129
    • /
    • 2022
  • Objectives: The chemical composition of cactus pear seed oil (Opuntia ficus-indica [L.] Mill.) was analyzed in terms of its fatty acid composition, tocopherol content, phenolic identification, and the oil's phenolic-rich fraction antioxidant power was determined. Methods: Fatty acid profiling was performed by gas chromatography coupled to an FI detector. Tocopherols and phenolic compounds were analyzed by LC-FLD/UV, and the oil's phenolic-rich fraction antioxidant power was determined by phosphomolybdenum, DPPH assay and β-carotene bleaching test. Results: Fatty acid composition was marked by a high unsaturation level (83.22 ± 0.34%). The predominant fatty acid was linoleic acid (66.79 ± 0.78%), followed by oleic acid (15.16 ± 0.42%) and palmitic acid (12.70 ± 0.03%). The main tocopherol was γ-tocopherol (172.59 ± 7.59 mg/kg. In addition, Tyrosol, vanillic acid, vanillin, ferulic acid, pinoresinol, and cinnamic acid were identified as phenolic compounds in the analyzed seed oil. Moreover, the oil's phenolics-rich fraction showed a significant total antioxidant activity, scavenged DPPH up to 97.85%, and effectively protected β-carotene against bleaching (97.56%). Conclusion: The results support the potential use of cactus pear seed oil as a functional food.

전력분야의 바이오 기반 친환경 전기 절연유 적용에 관한 개발 동향 분석 (Analysis of Development Trends on Bio-based Environmental Transformers Oils in Power Sector)

  • 김재곤;민영제;김목연;곽병섭;박현주
    • Tribology and Lubricants
    • /
    • 제38권2호
    • /
    • pp.41-52
    • /
    • 2022
  • Mineral electrical insulating oil, which is widely used in transformers, exhibits excellent cooling performance and transformer efficiency. However, given that it is composed of petroleum-based components, it is weak in terms of biodegradability. This causes environmental problems in case of leakage and a low flash point, which is a factor that would cause great damage in the event of a fire in a substation. In this context, the use of eco-friendly electric insulating oil composed of bio-based vegetable oil and synthetic ester, which has excellent biodegradability and flame retardancy performance, has recently been expanded to the field of electric power, and various research and development (R&D) studies are in progress. According to different research results, vegetable oil and synthetic ester manufacturing technology, thermal stability, oxidation stability, property change, and quality control, which are characteristics of eco-friendly electrical insulating oils, are major factors affecting the maintenance of insulating oil properties. In addition, power companies have established and operated quality control standards according to the use of eco-friendly electrical insulating oil as they expand the exploitatoin of renewable energy in electricity production. In particular, deterioration and oxidation characteristics were jointly identified in R&D as an important influencing factor according to the content of saturated and unsaturated fatty acids present in vegetable oils and synthetic esters in power transformer applications.

반응온도에 따른 팜 부산물(empty fruit bunch)의 열화학적 분해 특성에 관한 연구 (Study on The Thermochemical Degradation Features of Empty Fruit Bunch on The Function of Pyrolysis Temperature)

  • 이재훈;문재관;최인규;최준원
    • Journal of the Korean Wood Science and Technology
    • /
    • 제44권3호
    • /
    • pp.350-359
    • /
    • 2016
  • 본 연구에서는 팜 부산물인 empty fruit bunch (EFB)의 시료 특성을 분석하고 유동형 열분해기를 이용하여 $400{\sim}550^{\circ}C$ 범위에서 체류시간 1.3초간 급속열분해 공정을 진행하였다. 또한, 반응온도에 따른 열분해 주요 산물(바이오오일, 바이오차, 가스)의 수율과 물리화학적 특성 변화를 구명하였다. EFB의 화학조성 및 원소분석을 통해 시료 내 칼륨 함량이 8400 ppm으로 많은 것을 확인하였다. 열중량분석에서 나타난 특성으로 볼 때 EFB 시료 내 칼륨의 촉매작용에 의해 셀룰로오스의 분해가 촉진된 것으로 추측된다. $500^{\circ}C$까지의 온도범위에서는 바이오오일의 수율이 증가하고 가스의 수율이 감소하였으며 바이오차는 수율에 큰 변화가 없었던 반면, $500{\sim}550^{\circ}C$까지의 온도범위에서는 바이오오일과 바이오차의 수율이 감소하였고 가스의 수율이 증가하였다. 각 조건별로 생성된 바이오오일은 수분함량 20~30%, 발열량 15~17 MJ/kg 범위의 값을 나타냈으며, 점도 11 cSt (centistoke), 전산가(total acid number) 100 mg KOH/g oil 미만으로 나타났다. 기체크로마토그래프 분석을 통해 EFB 바이오오일로부터 셀룰로오스계 화합물(9종)과 리그닌계 화합물(17종)을 확인하였다. 리그닌계 화합물 중 특히 phenol이 다량 검출되었으며 이는 전체 화합물 농도의 25%에 해당하는 양이다.

경유의 윤활 성능 향상을 위한 식물유 기반 알칸올 아마이드의 합성 (Synthesis of Vegetable-based Alkanol Amides for Improving Lubricating Properties of Diesel Fuel)

  • 육정숙;김영운;유승현;정근우;김남균;임대재
    • 공업화학
    • /
    • 제23권4호
    • /
    • pp.421-427
    • /
    • 2012
  • 초저유황 경유의 윤활성능을 향상시킬 목적으로 식물유 기반 알칸올 아마이드 유도체를 합성하여 윤활성능을 평가하였다. 알칸올 아마이드 유도체는 폐식물유(다크오일), 팜유, 코코넛유를 메탄올과의 연속 전이에스테르화 반응을 통하여 합성한 지방산 메틸에스테르와 디에탄올아민(DEA)의 아마이드화 반응을 행하여 합성하였다. 합성한 알칸올 아마이드 유도체는 1 wt% 범위 내에서 초저유황 경유에 잘 용해되었으며, 이 유도체를 120 ppm 포함한 초저유황 경유의 윤활성능을 HFRR법으로 측정하였다. 그 결과, 초저유황 경유의 마모흔의 직경이 581 ${\mu}m$에서 아마이드 첨가 후 305~323 ${\mu}m$으로 현저히 작아져 초저유황 경유의 윤활성능을 향상하는 것으로 확인되었다. 한편, 식물유의 종류에 따른 마모흔의 차이는 크지 않아 알칸올 아마이드 유도체의 알킬기의 구조에 따른 윤활성능의 차이는 크게 나타나지 않았다. 알칸올 아마이드 한 종류를 선정하여 첨가 농도에 따른 윤활성능을 평가한 결과, 농도에 따라 마모흔의 직경이 현저히 작아지는 결과를 얻었는데 이는 윤활성능이 첨가 농도에 따라 향상되는 것을 의미한다.

Ru-Mg-Al-oxide 촉매 상에서 크라프트 리그닌의 저분자화 연구 (Depolymerization of Kraft Lignin over a Ru-Mg-Al-oxide Catalyst)

  • 김한웅;수잔 올리비아;제정호
    • 청정기술
    • /
    • 제27권2호
    • /
    • pp.190-197
    • /
    • 2021
  • 펄프 및 제지산업에서 목재의 셀룰로오스 성분 활용 후 남는 부산물인 크라프트 리그닌(kraft lignin)은 촉매적 저분자화 공정을 통해 바이오연료나 고부가가치 페놀 단량체로 전환될 수 있다. 본 연구에서는 크라프트 리그닌의 효율적인 저분자화를 위한 촉매로 수소화 금속 및 산-염기점을 동시에 지니는 Ru-Mg-Al-oxide 복합 촉매를 제조하고, 리그닌 분해 성능을 평가하고자 하였다. 촉매 내 다양한 활성점들(산점, 염기점, 수소화 금속)이 리그닌 분해 반응에 미치는 영향을 파악하기 위해 MgO, Mg-Al-oxide, Ru-Mg-Al-oxide의 세 가지 촉매를 제조하여 초임계 에탄올 용매 상에서 리그닌 분해 반응을 수행하였고, 리그닌 분해 성능은 바이오오일(bio-oil) 수율 및 분자량, 그리고 페놀계 단량체 수율을 통해 평가하였다. 그 결과, Ru-Mg-Al-oxide 촉매가 다양한 활성점들의 시너지 효과로 인해 가장 높은 수율의 바이오오일 및 페놀 단량체들을 생산한다는 것을 확인하였다. Ru-Mg-Al-oxide 촉매 상에서 분해 효율을 최적화하기 위해 다양한 반응 조건(온도, 시간, 촉매양)에 따른 분해 효율을 평가하였고, 최종적으로 반응온도 350 ℃, 리그닌 대비 촉매 비율 10%, 4 h 반응을 통해 72%의 높은 바이오오일 수율과 무촉매 대비 3.5배 이상 증가한 페놀 단량체를 생산할 수 있었다.

FDM 3D Printing of Environmental Friendly and High Strength Bio-based PC Filaments for Baby Toys

  • Park, Seong Je;Lee, Ji Eun;Park, Jean Ho;Lyu, Min-Young;Park, Keun;Koo, Myung Sool;Jin, Sun Chul;Kim, Ki Yong;Son, Yong
    • Elastomers and Composites
    • /
    • 제52권2호
    • /
    • pp.99-104
    • /
    • 2017
  • Due to the depletion of fossil oil and the increasing oil price, bio-plastic is currently topical. Bio-based plastics are synthesized from plant resources, unlike conventional petroleum-based counterparts. Therefore, the former minimizes global warming and reduces carbon dioxide emission. Fossil polycarbonate (PC)has good mechanical and optical properties, but its synthesis requires bisphenol-A and phosgene gas, which are toxic to humans. To address these problems, the fused deposition 3D printing process (hereafter, FDM) is studied using environmentally-friendly and high-strength bio-based PC. A comparisonof the environmental impact and tensile strength of fossil PC versus bio-based PC is presented herein, demonstrating that bio-based PC is more environmentally-friendly with higher tensile strength than fossil PC. The advantages of bio-based PC are applied in the FDM process for the fabrication of environmentally-friendly baby toys.

Quantitation of relationship and development of nutrient prediction with vibrational molecular structure spectral profiles of feedstocks and co-products from canola bio-oil processing

  • Alessandra M.R.C.B. de Oliveira;Peiqiang Yu
    • Animal Bioscience
    • /
    • 제36권3호
    • /
    • pp.451-460
    • /
    • 2023
  • Objective: This program aimed to reveal the association of feed intrinsic molecular structure with nutrient supply to animals from canola feedstocks and co-products from bio-oil processing. The special objective of this study was to quantify the relationship between molecular spectral feature and nutrient availability and develop nutrient prediction equation with vibrational molecular structure spectral profiles. Methods: The samples of feedstock (canola oil seeds) and co-products (meals and pellets) from different bio-oil processing plants in Canada (CA) and China (CH) were submitted to this molecular spectroscopic technique and their protein and carbohydrate related molecular spectral features were associated with the nutritional results obtained through the conventional methods of analyses for chemical and nutrient profiles, rumen degradable and intestinal digestible parameters. Results: The results showed that the spectral structural carbohydrates spectral peak area (ca. 1,487.8 to 1,190.8 cm-1) was the carbohydrate structure that was most significant when related to various carbohydrate parameters of canola meals (p<0.05, r>0.50). And spectral total carbohydrate area (ca. 1,198.5 to 934.3 cm-1) was most significant when studying the various carbohydrate parameters of canola seeds (p<0.05, r>0.50). The spectral amide structures (ca. 1,721.2 to 1,480.1 cm-1) were related to a few chemical and nutrient profiles, Cornell Net Carbohydrate and Protein System (CNCPS) fractions, truly absorbable nutrient supply based on the Dutch protein system (DVE/OEB), and NRC systems, and intestinal in vitro protein-related parameters in co-products (canola meals). Besides the spectral amide structures, α-helix height (ca. 1,650.8 to 1,643.1 cm-1) and β-sheet height (ca. 1,633.4 to 1,625.7 cm-1), and the ratio between them have shown to be related to many protein-related parameters in feedstock (canola oil seeds). Multi-regression analysis resulted in moderate to high R2 values for some protein related equations for feedstock (canola seeds). Protein related equations for canola meals and carbohydrate related equations for canola meals and seeds resulted in weak R2 and low p values (p<0.05). Conclusion: In conclusion, the attenuated total reflectance Fourier transform infrared spectroscopy vibrational molecular spectroscopy can be a useful resource to predict carbohydrate and protein-relates nutritional aspects of canola seeds and meals.

MTBE를 포함한 기타 가솔린 첨가제의 생 분해 적용 가능성 평가(I) : 호기성 조건 (An Assessment of the Feasibility of (I) : Condition of Aerobic)

  • 정우진;장순웅
    • 한국환경과학회지
    • /
    • 제25권6호
    • /
    • pp.757-766
    • /
    • 2016
  • MTBE and other gasoline additives contained in gasoline are known to be a refractory substance resistant to biodegradation. As a method of removing these substances, a research of method using native microbes of polluted soil was progressed and among these, bio-degradation possibility under aerobic condition was evaluated. All of the experiments were progressed based on batch experiment of lab scale and analyzed by GC-FID using HS-SPME technique. The result of bio-degradation experiment based on MTBE and other additives(ETBE, TAME) was observed below 1 mg/L, which initial concentration were 100 mg/L for each method. And through production of by-product and CO2, partial mineralization was confirmed. Degradation velocity of each additive was promptly represented in the order of TBA>ETBE>MTBE>TAME. Through this study, bio-degradation possibility of native microbes of oil polluted soil, MTBE and other gasoline additives was confirmed and it was considered that the result could be used for basic experiment data in removing oil pollutants of soil.

이색법에 의한 바이오 디젤화염의 그을음과 온도 측정 (Measurement of Soot and Temperature on Bio Diesel Flame by Two-Color Method)

  • 김명수;강희영
    • 동력기계공학회지
    • /
    • 제16권4호
    • /
    • pp.5-11
    • /
    • 2012
  • There were some papers for diesel engine performance tests using BDF, but few article deals with the temperature and soot concentration of Bio diesel flame. Since the flame temperature of diesel engines is so high and change rapidly, an optical method for measurement of flame temperature is known as the most effective one. The two-color method regarding the visible wavelength radiation for the soot particles in flame was applied on Bio diesel flame in order to measure flame temperature and soot concentration in a diesel engine. Photo detecting device was newly designed and employed TSL250R, photo-diode, to pick-up the light information emitted from the combustion flame. As a result, real flame temperature T, as a flame brightness temperature, through Ta1, Ta2, were obtained and finally the characteristics of KL value as a soot concentration reveal the difference of combustion information between diesel fuel, blending oil and Bio diesel fuel oil.

중유회 탈취패널에 있어서 활성탄과 규조토의 탈취성능 영향평가 (Effect of Activated Carbon and Diatomite on Deodorant Efficiency of Recycled Fly Ash Panel)

  • 김민호;김영규;;김세중;김남수;홍성엽;한혜철
    • 대한환경공학회지
    • /
    • 제32권6호
    • /
    • pp.625-630
    • /
    • 2010
  • 본 연구는 발전소등에서 발생하는 중유회를 재활용한 탈취패널 제조시 활성탄, 규조토등의 첨가제를 활용함으로써 포름알데히드 및 톨루엔에 대한 제거성능을 향상시켜 중유회의 탈취패널 원료로서의 사용가능성을 확인하였다. 단일 첨가제를 사용하여 제작된 중유회 재활용 탈취패널의 경우 포름알데히드에 대해서는 93% 이상, 톨루엔에 대해서는 97% 이상의 제거성능을 보였으나 기준 패널에 비하여 압축강도가 27~63% 감소하였다. 반면에 두 가지 첨가제를 여러 가지 비율로 혼합하여 제조된 것 중 활성탄과 규조토가 5 wt%씩 첨가된 패널은 포름알데히드 84%, 톨루엔 96%의 제거성능을 보였으며 압축강도는 기준패널보다 32%증가하였다. 따라서 첨가제의 혼합사용을 통하여 중유회재활용 탈취패널을 제조할 경우 유해가스 제거성능과 패널의 강도를 향상 시키는 것이 확인되었다.