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Urban Feguš
Personal bibliography for the period 2010-2021
2010
1.
FEGUŠ, Urban. Sinteza 1-fenil-5-hidroksi-1H-pirazol-4-karboksamidov pod mikrovalovi : diplomsko
delo. Ljubljana: [U. Fleguš], 2010. 48 f., ilustr. [COBISS.SI-ID 34233349]
2012
2.
FEGUŠ, Urban, DAIMINGER, Reiner, PETERMANN, Marcus, KNEZ, Željko. Comparison of different
drying methods used for preparation of fruit powders. In: CD-ROM of full texts. 20th International Congress of Chemical and Process Engineering [and] 15th Conference
PRES, 25 - 29 August 2012, Prague, Czech Republic. Prague: [s. n.], cop. 2012. Str.
1-9. ISBN 978-80-905035-1-9. [COBISS.SI-ID 16257558]
2015
3.
FEGUŠ, Urban, ŽIGON, Uroš, PETERMANN, Marcus, KNEZ, Željko. Effect of drying parameters
on physiochemical and sensory properties of fruit powders processed by PGSS-, vacuum-
and spray-drying. Acta chimica slovenica. 2015, vol. 62, no. 2, str. 479-487, ilustr. ISSN 1318-0207. Digital Library of the University of Maribor – DLUM, http://www.dlib.si/details/URN:NBN:SI:DOC-CES5CLE7. [COBISS.SI-ID 18856214]
4.
MILOŠEVIĆ, Mladena, ŠTERBAL, Ines, FEGUŠ, Urban, BAŠKOVČ, Jernej, PREK, Benjamin,
GROŠELJ, Uroš, STANOVNIK, Branko, SVETE, Jurij. Microwave-assisted direct amidation
of ethyl 1-phenyl-5-hydroxy-1H-pyrazole-4-carboxylate. Journal of heterocyclic chemistry. Mar. 2015, vol. 52, iss. 2, str. 556-561, ilustr. ISSN 0022-152X. http://onlinelibrary.wiley.com/doi/10.1002/jhet.2100/abstract, DOI: 10.1002/jhet.2100. [COBISS.SI-ID 1713967]
2016
5.
FEGUŠ, Urban. Process design for flavour encapsulation into carbohydrate melts using high pressure
homogenizer : doctoral dissertation. Maribor: [U. Feguš], 2016. XIII, 101 str., ilustr. Digital Library of the University of Maribor – DLUM, http://www.dlib.si/details/URN:NBN:SI:doc-AEXGZQEF. [COBISS.SI-ID 19685142]
2019
6.
TUTNJEVIĆ, Neven, JONAK, Radoslav, NOSE, Andrej, FEGUŠ, Urban, HUFNAGEL, Jan-Carlos,
CHRISTLBAUER, Monika, CHETSCHIK, Irene, DAIMINGER, Reiner, PETERMANN, Marcus, KILZER,
Andreas, KNEZ, Željko, NOVAK, Zoran, PERVA, Amra, HENSKE, Simon. Wax encapsulated flavour delivery system for tobacco : United States Patent US 10,383,360
B2, 2019-08-20. Alexandria: United States Patent and Trademark Office, 2019. 11 str. https://worldwide.espacenet.com/patent/search/family/049911269/publication/US10383360B2?q=pn%3DUS10383360B2. [COBISS.SI-ID 19569942]
patent family: US2016324209A1, 2016-11-10; US201361919047P, 2013-12-20; EP13198852A, 2013-12-20; AU2014369110B2, 2018-05-10; CN105934163B, 2019-07-30; JP6974940B2, 2021-12-01; RU2676255C1, 2018-12-26; UA119051C2, 2019-04-25; BR112016012753A8, 2020-05-19; CA2934413A1, 2015-06-25; KR20160094946A, 2016-08-10; MX2016007978A, 2016-09-19; EP3082480A1, 2016-10-26; HK1224151A1, 2017-08-18; IL245726A, 2020-02-27; PH12016500921A1, 2016-06-27; SG11201605056VA, 2016-07-28; WO2015092748A1, 2015-06-25
patent family: US2016324209A1, 2016-11-10; US201361919047P, 2013-12-20; EP13198852A, 2013-12-20; AU2014369110B2, 2018-05-10; CN105934163B, 2019-07-30; JP6974940B2, 2021-12-01; RU2676255C1, 2018-12-26; UA119051C2, 2019-04-25; BR112016012753A8, 2020-05-19; CA2934413A1, 2015-06-25; KR20160094946A, 2016-08-10; MX2016007978A, 2016-09-19; EP3082480A1, 2016-10-26; HK1224151A1, 2017-08-18; IL245726A, 2020-02-27; PH12016500921A1, 2016-06-27; SG11201605056VA, 2016-07-28; WO2015092748A1, 2015-06-25
2021
7.
TUTNJEVIĆ, Neven, JONAK, Radoslav, NOSE, Andrej, FEGUŠ, Urban, HUFNAGEL, Jan-Carlos,
CHRISTLBAUER, Monika, CHETSCHIK, Irene, DAIMINGER, Reiner, PETERMANN, Marcus, KILZER,
Andreas, KNEZ, Željko, NOVAK, Zoran, PERVA, Amra, HENSKE, Simon. Wax encapsulated zeolite flavour delivery system for tobacco : JP 6978200 B2, 2021-12-08. [Chiyada-ku Tokyo]: Japan Patent Office, 2021. 20 str. https://worldwide.espacenet.com/patent/search/family/049911271/publication/JP6978200B2?q=pn%3DJP6978200B2. [COBISS.SI-ID 19569686]
patent family: JP2017504309A, 2017-02-09; EP13198865A, 2013-12-20; US201361919059P, 2013-12-20; AU2014369111B2, 2018-08-09; CN105992522B, 2019-07-30; PH12016500970B1, 2016-06-20; RU2676074C1, 2018-12-25; UA118860C2, 2019-03-25; BR112016012759A8, 2020-05-19; CA2934476A1, 2015-06-25; EP3082481A1, 2016-10-26; KR20160094947A 2016-08-10; MX2016007979A, 2017-03-08; SG11201604929UA, 2016-07-28; US2017119041A1, 2017-05-04; WO2015092749A1, 2015-06-25
patent family: JP2017504309A, 2017-02-09; EP13198865A, 2013-12-20; US201361919059P, 2013-12-20; AU2014369111B2, 2018-08-09; CN105992522B, 2019-07-30; PH12016500970B1, 2016-06-20; RU2676074C1, 2018-12-25; UA118860C2, 2019-03-25; BR112016012759A8, 2020-05-19; CA2934476A1, 2015-06-25; EP3082481A1, 2016-10-26; KR20160094947A 2016-08-10; MX2016007979A, 2017-03-08; SG11201604929UA, 2016-07-28; US2017119041A1, 2017-05-04; WO2015092749A1, 2015-06-25