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Tezel, Habibe Işıl.
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Hydrogen Production From Ethanol Over Silica Supported Cu And Zn Oxide Catalysts/ Tezel, Habibe
2.
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Ateş, Selcan.
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Oxidation of ethanol and carbon monoxide on alumina-supported metal/metal oxide xerogel catalysts/
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by
Üçüncü, Can.
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El Yazması
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Chemical composition analysis of agroindustrial waste and their potential usage in bio-ethanol
by
Dal, Orkan, author.
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El Yazması
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Production of bio-oil from haelnut shell waste by using supercritical ethanol, acetone and their
by
Doğru, Kevser, author.
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El Yazması
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Ethanol as fuel.
by
Öcal, Bulutcem, author.
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performed using various solvents besides water, such as ethanol, 1- butanol, and 1,4-dioxane. The
by
Bozlak, Esma Nur, author.
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activity in the presence of calcium, ethanol. The enzyme showed extremely high stability up to 25°C above
by
Çavdaroğlu, Çağrı, author.
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El Yazması
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monitored using both chemical parameters (total acidity, pH, brix, ethanol etc.) and mid-infrared (mid-IR
by
Çapkın, İrem Yaren, author.
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El Yazması
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, formic acid, acetic acid, sulfuric acid, ethanol, acetone, and organic solvents. It also evaluates the
by
Semiz, Şevval, author.
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results in terms of sensory. Caffeine, chlorogenic acid, and ethanol levels were significantly altered
by
Gümüşbulut, Gülin, author.
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El Yazması
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in high rates in our country. In this context, the effect of various solvent types (ethanol, methanol
by
Başkurt, Mehmet, author.
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El Yazması
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detection of volatile organic compounds (VOC) such as methanol and ethanol by graphene-based sensors is
by
Acar, İrem, author.
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El Yazması
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, ethanol, isopene etc.) are detected from ppm to ppb range and reproducible and reliable responses are
by
Şengün, Duygu, author.
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extraction. Also, higher yield was obtained from methanol and ethanol extraction because of the higher
15.
by
Ahmad, Bilal, author.
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El Yazması
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. In this study, various phytochemicals and total antioxidant activities in the ethanol extracts of
by
Süngüç, Ceren.
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El Yazması
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conditions were determined as zein concentration of 5% (w/v) in 70% aqueous ethanol solution, flow rate of 0
by
Özturk İlgü, Ekin.
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of the silica nanoparticles. By varying the amounts of ethanol and ammonia the size of nanoparticles
by
Yücesoy, Dila.
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dried), raw material (only suma or suma and ethanol) and production process (double or triple distilled
by
Aytul, Kerem Kaan.
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In this study, aqueous/ethanol extract of olive leaves (OLE) was examined for its antimicrobial and
by
Kaçar, Diren.
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El Yazması
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In this study aqueous/ethanol extracts of 42 plant species collected from same geographic region
by
Erdoğan, Demet.
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sulfate and Hexadecyltrimethyl ammonium bromide were used as collectors. Ethanol /MIBC were used as
by
Erdoğan, Duygu, author.
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sensitivity was validated by varied concentrations of sucrose, ethanol and BSA solutions, showing that the
23.
by
Güzelaydın, Abdurrahman Halis, author.
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El Yazması
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. Dispersions of each modified nanoparticle in 3 mL ethanol were prepared and sonicated for 12 h in order to
by
Ayaz, İlyasa Umur, author.
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percentages, however, the immobilized CA exhibited no activity in ethanol at percentages above 10%. Stability
by
Yağmurcukardeş, Nesli.
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ITO substrates were kept in 1mM MPPBA-ethanol solution. As a hole transport layer (HTL), N,N'-bis(3
by
Atik, İsa Doğan
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, plasticizer concentration, and plasticizer type while ethanol concentration was found to be as less effective
by
Genç, Ömer Sinan.
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model techniques. To investigate the modeling techniques, ethanol fermentation with Saccharomyces
by
Hızal, Bayçın Deniz.
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ethanol solution.After adsorption of oleuropein and rutin, the antioxidant capacity of silk fibroin
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Mecitoğlu Güçbilmez, Çiğdem.
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release rates of 9 to 29 U/cm2/min. The ethanol used in film making caused significant activation of the
by
Göktaş, Selda.
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processes were performed with 80% ethanol aqueous solution due to its being non-toxic in nature and
by
İnanç, Dilce, author.
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morphologies when compared to ethanol. For the detection of VOCs such as acetone, ethanol, and hexane in human
by
Karakaya, Alihan.
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extract is distilled to remove ethanol. This process ends with a certain amount of residual ethanol
by
Molva, Murat.
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, polyurethane foam, and organic solvents such as methanol, ethanol, toluene, hexane and benzene were also
by
Gönen, Mehmet.
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El Yazması
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, supercritical ethanol drying, and freeze drying techniques to obtain nanosized products. Zinc borate samples
by
Temelli, Nuran, author.
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XOS production was observed with the biomass pretreated at 150°C for 1 h with 70% ethanol and 0.1 M
by
Bostan, Okan, author.
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El Yazması
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and time of flight, velocity of longitudinal bulk waves was calculated. Mixtures of ethanol-pure water
by
Depboylu, Can Okan.
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temperature (400 °C, 500 °C), solvent type (ethanol, 2-pentanol), catalyst activation without calcination
by
Üzüm, Çağrı.
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(nZVI) was synthesized in ethanol by borohydride reduction method in atmospheric conditions. It was
by
Arslan, Mine Özge.
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-pyrrolidinone (NMP)/water, PSf/tetrahydrofurane (THF)/water, PSf/NMP/ethanol, PSf/THF/ethanol, polymethyl
by
Eser, Hülya.
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were methanol, ethanol, propanol, butanol, methyl acetate, ethyl acetate, propyl acetate
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Altıok, Evren.
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ethanol, methanol, acetone and their aqueous forms were used. The maximum extraction yield was achieved
by
Atikler, Ulaş.
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ethanol solution in the presence of fibers at weight percents of 0.5, 1 and 2.5 with respect to fiber
by
Sazova, Yeliz.
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3 In this study, dicofol (2,2,2-trichloro-1,1-bis (4-chlorophenyl) ethanol) and endosulfan (6,7,8
by
Deliismail, Özgün, author.
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Kitap
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obtained in the presence of the catalyst which was 6 wt. % of lipids, in 30 min. at ethanol: lipid molar
by
Uçar, Şule.
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El Yazması
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temperatures, amount of catalysts, ethanol sources, catalyst metal loadings and catalysts preparation methods
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Özdemir, Peruze.
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biomass using sodium hydroxide, formaldehyde, nitric acid and ethanol decreased the sorption of nickel (II
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