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Microwave combination heatingDATTA, Ashim K; GEEDIPALLI, Srikanth S. R; ALMEIDA, Marialuci F et al.Food technology (Chicago). 2005, Vol 59, Num 1, pp 36-40, issn 0015-6639, 5 p.Article

Active Regeneration of Diesel Particulate Filter Employing Microwave HeatingPALLAVKAR, Sameer; KIM, Tae-Hoon; RUTMAN, Dan et al.Industrial & engineering chemistry research. 2009, Vol 48, Num 1, pp 69-79, issn 0888-5885, 11 p.Article

Microwave Heating Application To Produce Dehydrated Castor OilNEZIHE, Azcan; ELIF, Demirel; ÖZLEM, Yilmaz et al.Industrial & engineering chemistry research. 2011, Vol 50, Num 1, pp 398-403, issn 0888-5885, 6 p.Article

Effect of microwave heating of kafirin on the functional properties of kafirin filmsBYARUHANGA, Yusuf B; ERASMUS, Corinda; TAYLOR, John R. N et al.Cereal chemistry. 2005, Vol 82, Num 5, pp 565-573, issn 0009-0352, 9 p.Article

Microwave Radiation Heating in Pressurized Vessels for the Rapid Extraction of Coal Samples for Broad Spectrum GC-MS AnalysisMAHAT, Rajendra K; RODGERS, Wesley; BASILE, Franco et al.Energy & fuels. 2014, Vol 28, Num 9-10, pp 6326-6335, issn 0887-0624, 10 p.Article

Examining for possible non-thermal effects during heating in a microwave ovenSHAZMAN, Asher; MIZRAHI, Shimon; COGAN, Uri et al.Food chemistry. 2007, Vol 103, Num 2, pp 444-453, issn 0308-8146, 10 p.Article

Effects of Frying and Microwave Heating on Decomposition of Benzoyl Peroxide in FlourCHUNYE LIU; JIAN ZHANG; BEI QIN et al.Cereal chemistry. 2011, Vol 88, Num 4, pp 352-355, issn 0009-0352, 4 p.Article

Treatment of oil-contaminated drill cuttings by microwave heating in a high-power single-mode cavityHUI SHANG; SNAPE, Colin E; KINGMAN, Sam W et al.Industrial & engineering chemistry research. 2005, Vol 44, Num 17, pp 6837-6844, issn 0888-5885, 8 p.Article

Effect of incident power intensity on temperature distribution in microwave heated foodSAKAI, Noboru; YUDONG CHENG; SHIMODA, Humihiko et al.Journal of chemical engineering of Japan. 2003, Vol 36, Num 12, pp 1432-1439, issn 0021-9592, 8 p.Article

Mikrowellentechnik zur schonenden Trocknung keramischer Materialien = Microwave technology for gentle drying of sensitive productsSUHM, J.Keramische Zeitschrift. 2000, Vol 52, Num 8, pp 678-680, issn 0023-0561, 3 p.Article

EFFECT OF MICROWAVE HEATING ON THE VISCOELASTIC PROPERTY AND MICROSTRUCTURE OF SOY PROTEIN ISOLATE GELLIU, Hsiao-Hui; KUO, Meng-I.Journal of texture studies. 2011, Vol 42, Num 1, pp 1-9, issn 0022-4901, 9 p.Article

Solid-Acid-Catalyzed Esterification of Oleic Acid Assisted by Microwave HeatingMELO JUNIOR, Carlos A. R; ALBUQUERQUE, Carlos E. R; CARNEIRO, Juliana S. A et al.Industrial & engineering chemistry research. 2010, Vol 49, Num 23, pp 12135-12139, issn 0888-5885, 5 p.Article

Heating concentrations of microwaves in spherical and cylindrical foods. Part one: in planes wavesZHANG, H; DATTA, A. K.Food and bioproducts processing. 2005, Vol 83, Num 1, pp 6-13, issn 0960-3085, 8 p.Article

Heating by high frequency microwaveSAWIRES, Lian.Glass (Redhill). 2004, Vol 81, Num 4, issn 0017-0984, p. 93Article

Le réacteur-autoclave micro-onde : Intérêts et efficacité du chauffage micro-onde pour la chimie propre = Microwave autoclave-reactor : uses and performance of microwave heating for wasteless chemistrySTUERGA, D; PRIBETICH, P; RIGNEAU, P et al.Colloque annuel - SFT. 1998, pp 257-262, issn 1258-164X, isbn 2-84299-048-XConference Paper

Application of Carbon Nanocatalysts in Upgrading Heavy Crude Oil Assisted with Microwave HeatingKEWEN LI; BINCHI HOU; LEI WANG et al.Nano letters (Print). 2014, Vol 14, Num 6, pp 3002-3008, issn 1530-6984, 7 p.Article

Preparation of Reduced Iron Powders from Mill Scale with Microwave Heating: Optimization Using Response Surface MethodologyQIANXU YE; HONGBO ZHU; JINHUI PENG et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2013, Vol 44, Num 6, pp 1478-1485, issn 1073-5615, 8 p.Article

Modeling of microwave heating of particulate metalsMISHRA, P; SETHI, G; UPADHYAYA, A et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2006, Vol 37, Num 5, pp 839-845, issn 1073-5615, 7 p.Article

Heating concentrations of microwaves in spherical and cylindrical foods. Part two: in a cavityZHANG, H; DATTA, A. K.Food and bioproducts processing. 2005, Vol 83, Num 1, pp 14-24, issn 0960-3085, 11 p.Article

Hochtemperaturtechnik mit Mikrowellenanlagen = High-temperoture technology based on microwove systemsPÜSCHNER, P.-A.Keramische Zeitschrift. 1998, Vol 50, Num 4, pp 268-271, issn 0023-0561Article

Enhancing enzymatic saccharification of water hyacinth through microwave heating with dilute acid pretreatment for biomass energy utilizationAO XIA; JUN CHENG; WENLU SONG et al.Energy (Oxford). 2013, Vol 61, pp 158-166, issn 0360-5442, 9 p.Article

Investigation of the Dissolution of Colemanite Ore in Water and Boric Acid Solutions Including Highly Acidic Ion Exchangers under Microwave HeatingTEKIN, Ciğdem Eymir; OKUR, Hüseyin.Industrial & engineering chemistry research. 2011, Vol 50, Num 21, pp 11833-11842, issn 0888-5885, 10 p.Article

Cleaning action of old and new vessels of microwave digestionILGEN, Gunter; GUTWERK, Dieter.GIT laboratory journal Europe. 2005, Vol 9, Num 4, pp 43-44, issn 1611-6038, 2 p.Article

Mikrowellen-Hybrid-Trocknung: Der Weg in die Zukunft im keramischen Herstellungsprozess = Microwave hybrid drying : the way to the future in the ceramic production processHADJUK, Andreas.CFI. Ceramic forum international. 2001, Vol 78, Num 10, issn 0173-9913, p. D13Article

Rapid wave microwave technology for drying sensitive productsSUHM, J.American Ceramic Society bulletin. 2000, Vol 79, Num 5, pp 69-71, issn 0002-7812Article

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