• Title/Summary/Keyword: Microwave-assisted

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A Review of Microwave-assisted Technology for Biodiesel Production (마이크로파를 이용한 바이오디젤 전환 기술 동향 분석)

  • PARK, JO YONG;JEON, CHEOL-HWAN;KIM, JAE-KON;PARK, CHEON-KYU
    • Transactions of the Korean hydrogen and new energy society
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    • v.28 no.5
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    • pp.584-599
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    • 2017
  • Biodiesel is renewable, eco-friendly, clean burning diesel replacement that is consisted of short chain alkyl ester. Biodiesel is derived from the transesterification of vegetables oils or animal fats with alcohol. The process has some technical problems that must be resolved to reduce the high operation cost. Eco-friendly physical technologies by using microwave have successfully improved the transesterification for biodiesel production. This paper attempts to extensively review microwave-assisted technology for biodiesel production. Additionally, different types of catalyst for biodiesel production have been summarized. It is concluded that the microwave-assisted technique improves the reaction rate significantly in comparison with conventional methods. Therefore it can be a suitable method of reducing the reaction time and can also decreases the cost of biodiesel production.

Microwave-Assisted Extraction of Effective Constituents from Ginseng (마이크로파를 이용한 인삼으로부터 유효성분의 추출)

  • Lee, Dong-Won;Park, Young-Sin;Kim, Dok-Chan
    • Applied Chemistry for Engineering
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    • v.16 no.3
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    • pp.427-433
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    • 2005
  • The use of the microwave-assisted process for the extraction of effective constituents from ginseng was investigated at various operating conditions. The influence of solvent (ethanol-water, 50% v/v) to ginseng ratio, particle size and applied microwave power on the efficiency of extraction was examined. The microwave extraction system used was custom manufactured so that the intensity of microwave may be varied by using anode-voltage controller. It was found that the ratio of 6 : 1 (vol/mass) gave a good extraction efficiency. Small particle size gave high yield but it caused difficulties in the separation of solvent from the sludge. The higher power was no guarantee of the efficient extraction yield. The more important factor than the employed power was the adequate temperature under sufficient contact time. Using deionized-water as swelling agent, the degree of swelling of ginseng by microwave heating and conventional heating in water-bath was also studied. It was observed that the microwave heating enhanced the swelling much more than the conventional heating. It is believed that this enhanced swelling was responsible for the rapid microwave-assisted extraction rate.

Functional Activities of Microwave-Assisted Extracts from Lyophyllum ulmarium (마이크로웨이브 추출공정에 의한 만가닥버섯의 기능적 특성)

  • 김현구;최윤정;정승원;김공환
    • Food Science and Preservation
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    • v.9 no.4
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    • pp.385-390
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    • 2002
  • Functional activities of Lyophyllum ulmarium microwave-assisted extracts under different conditions including electron donating ability, tyrosinase inhibition activity and nitrite scavenging effect were examined. Total polyphenol content increased as increasing microwave power up to 90 W in the water extracts. Electron donating ability increased with microwave power up to 90 W in 50% ethanol extract and 99% ethanol extract. Tyrosinase inhibition activity and nitrite scavenging effect in the extract increased as microwave power increased during extraction. Total polyphenol content increased as extending extraction time up to 5 min in the water extract. But the highest electron donating ability and tyrosinase inhibition activity was obtained after 10 min extraction. Significantly higher total polyphenol content and electron donating ability were found in the water extract whereas greater tyrosinase inhibition activity and nitrite scavenging effect were observed in 99% ethanol extract. The maxium nitrite scavenging effect was found at pH 1.2 and decreased as pH increased.

Optimization of Microwave-Assisted Extraction under Atmospheric Pressure Condition for Soluble Ginseng Components (상압조건의 마이크로웨이브 추출공정에서 가용성 인삼성분의 추출조건 최적화)

  • Kwon, Joong-Ho;Kim, Kyung-Eun;Lee, Gee-Dong
    • Korean Journal of Food Science and Technology
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    • v.32 no.1
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    • pp.117-124
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    • 2000
  • Considering the thermal unstableness of ginseng components, microwave-assisted extraction(MAE) was performed under the atmospheric pressure condition. The monitoring of extraction characteristics and the optimization of extraction conditions were made by response surface methodology. The extraction efficiency of soluble ginseng components was high at lower ethanol concentration and at higher microwave power, while crude saponin content was easily extracted at higher ethanol concentration. Estimated conditions for the maximized extraction of soluble components including crude saponin, total phenolics and electron donating ability were $54{\sim}60%$ in ethanol concentration, $41{\sim}90$ W in microwave power, and within 4 min in extraction time. Predicted values at the optimum condition(60% ethanol, 80 W microwave power and 4 min extraction time) were in good agreement with observed values.

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Prediction of Optimal Extraction Conditions in Microwave-Assisted Process for Antioxidant-Related Components from Thymus quinquecostatus (Microwave-Assisted Process에 의한 섬백리향의 항산화 관련 성분의 최적 추출조건 예측)

  • Kwon Young-ju;Noh Jung-eun;Lee Jung-eun;Lee Sung-Ho;Choi Yong-Hee;Kwon Joong-Ho
    • Food Science and Preservation
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    • v.12 no.4
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    • pp.344-349
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    • 2005
  • Microwave-assisted process (MAP) was applied to extract antioxidant-related components from Thymus quinquecostatus var. japonica Hara. Microwave power(2,450 MHz, $0{\sim}160$ W) and extraction time($1{\sim}5\;min$) were used as independent variables($X_i$) for central composite design to yield 10 different extraction conditions. Response surface methodology was applied to predict optimum extraction conditions for dependent variables of extracts, such as total yield, total phenolics, flavonoid, and electron donation ability depending on different powers and extraction times of MAP. Determination coefficients($R^2$) of regression equations for dependent variables were higher than 0.93 excluding that of total phenolics, and microwave power was predicted more influential than extraction time in MAP (p<0.05). The optimal extraction time for each dependent variable was ranged from 3.36 to 4.97 min, but microwave power showed wide ranges depending on variables. The superimposed contour maps for maximized dependent variables illustrated extraction conditions of 64 to 100 W in microwave power and 2.9 to 4.0 min in extraction time.

Microwave Assisted Extraction of Physiologically Active Materials from Agaricus blazei Fruiting Bodies (Agaricus blazei 자실체로부터 마이크로웨이브를 이용한 생리활성물질 추출공정)

  • 최정우;류동열;홍억기;권명상;한진수;이원홍
    • KSBB Journal
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    • v.15 no.3
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    • pp.307-312
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    • 2000
  • Physiologically active material ${\beta}$-glucan extracted from mushroom has an antitumor effect. Agaricus blazei murill(A blazel) fruiting bodies were reported to contain large amounts of ${\beta}$-glucan. The purpose of this study was to maximize ${\beta}$-glucn extraction from A. blazei by microwave assisted extraction method. Optimal extraction conditions were obtained under various extraction time and applied power which was examined as 200, 500 and 650 watt. The structure and concentrations of the raffinates were analyzed by nuclear magnetic resonance spectroscopy(NMR) and infrared spectroscopy(IR) It was proved that the extraction yield of microwave assisted extraction method was higher than that of conventional solvent extraction method. It was also observed that microwave assisted extraction method requires less amounts of solvents and extraction time compared to the conventional solvent extraction method.

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Microwave-Assisted Synthesis of Flower-like and Plate-like CuO Nanopowder and Their Photocatalytic Activity for Polluted Lake Water

  • Xu, Ling;Xu, Hai-Yan;Wang, Feng;Zhang, Feng-Jun;Meng, Ze-Da;Zhao, Wei;Oh, Won-Chun
    • Journal of the Korean Ceramic Society
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    • v.49 no.2
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    • pp.151-154
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    • 2012
  • Flower-like and plate-like CuO nanopowder has been successfully synthesized using a facile microwave-assisted synthetic route. The morphology and size of the final products strongly depended on microwave power. The phase, structures and morphologies of the as-prepared products were investigated in detail by BET surface area analysis, X-ray diffraction (XRD) analysis, and scanning electron microscopy (SEM). In addition, the chemical oxygen demand of polluted lake water was employed for characterization of these new photocatalysts. The results showed correlations between the morphology of CuO micro-crystals and their catalytic properties.

Optimization of Microwave-Assisted Method for Accelerated Glycated Hemoglobin Quantification from Amino Acids to Proteins

  • Tran, Thi Thanh Huong;Jeong, Ji-Seon
    • Mass Spectrometry Letters
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    • v.8 no.3
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    • pp.53-58
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    • 2017
  • Glycated hemoglobin ($HbA_{1c}$) has been commonly used to screen and diagnose for patients with diabetes mellitus. Here the accelerated procedure of microwave-assisted sample treatment from acid hydrolysis to enzyme digestion followed by isotope dilution liquid chromatography-tandem mass spectrometry (ID-LC-MS/MS) was optimized and applied to measure $HbA_{1c}$ in an effort to speed up analysis time. First, two signature peptides of $HbA_{1c}$ and hemoglobin $A_0$ were certified with amino acid analysis by setting optimized acid hydrolysis conditions to $150^{\circ}C$, 1.5 h and $10{\mu}M$ sample concentration in 8 M hydrochloric acid. Consequently, the accurate certified peptides above were used as calibration standards to implement the proteolytic procedure with endoproteinase Glu-C at $37^{\circ}C$, 700 W for 6 h. Compared to the traditional method, the microwave heating not only shortened dramatically sample preparation time, but also afforded comparable recovery yields. The optimized protocol and analytical conditions in this study are suitable for a primary reference method of $HbA_{1c}$ quantification with full SI-traceability and other similar proteins in complex biological samples.