by
Umdu, Emin Selahattin.
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El Yazması
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Hydrogen production from biomass on structured catalysts Umdu, Emin Selahattin.
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Dadenov, Saken, author.
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Hydrothermal treatment of biomass in hot-pressurized water / Dadenov, Saken, author.
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by
Öcal, Bulutcem, author.
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El Yazması
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Valorization of biomass for fuel and chemicals production/ Öcal, Bulutcem, author.
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Karanfil, Gülperi, author.
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Succinic acid production from Lignocellulosic biomass by actinobacillus succinogenes / Karanfil
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Şen, Şevval, author.
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Enhancement of xylanase activity in xylooligosaccharide production from lignocellulosic biomass/
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Altınbaş, Bekir Fırat, author.
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Synthesis of natural adsorbents from lignocellulosic biomass for the recovery of boron from water
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Şeker, Utku, author.
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Energy, exergy and enviromental assessment of a novel multi-generation system fed by biomass and
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Dal, Orkan, author.
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Biomass.
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Çağlar, Emre.
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Biomass energy.
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Akın, Okan, author.
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Biomass chemicals.
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Gözaydın, Gökalp, author.
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Biomass chemicals.
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Uçaroğlu, Merve, author.
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Biomass energy.
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Deliismail, Özgün, author.
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Kitap
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Biomass energy.
14.
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Yanak, Senem, author.
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Biomass conversion.
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Doğru, Kevser, author.
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Biomass energy.
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Özdoğru, Bertan, author.
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Biomass energy.
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Demir, Ozan, author.
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Biomass energy
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Üçüncü, Can.
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Biomass energy.
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Baştuğ, Muhammed, author.
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aboveground parts, bioconcentration factors (BCF), translocation factors (TF), biomass production, and soil
by
Sapmaz, Aycan, author.
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The goal of this study was to add high value to cellulose as the most abundant source of biomass
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Şelale, Hatice, author.
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apical dominance. Increased shoot biomass and leaf water content with a reduction in fruit yield were
by
Yücel, Arzu, author.
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experiment were 2.5 and 4.0 kg OMW-5 and OMW-15 respectively. The highest biomass growth rate (149%) and
by
Kök, Aysu Başak, author.
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and produces a large biomass. It can also hyperaccumulate extreme concentrations of boron and tolerate
24.
by
Umdu, Sabrettin.
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The lipid production and biomass growth of microalgae Isochrysis galbana was investigated under the
by
Sezgin, Tuğçe, author.
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T.pseudonana 2135. The highest biomass protein contents were about 30%, which were obtained under silicon
by
Binkanat, Tahir Burak, author.
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model-based final biomass concentrations and the production rate constants. Thus, the peak productivities were
by
Öztürk, Tuba, author.
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root biomass was 6.52 g/DW for hypocotyl and 9.83 g/DW for cotyledon-derived clones. Biochemical
by
Kalkandelen, Mustafa, author.
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Soybean oil is an abundant, cheap and nontoxic biomass source and contains triglycerides with
by
Göğüş, Nihan, author
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glucoseamine content determination methods were applied. With the new sampling port, reasonable biomass results
by
Doğan, Nergiz.
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(20.61 U/ml) and maximum biomass (34.23 g/l) were obtained at high maltrin (150 g/l) and high CSL (10
by
Alper, Seda.
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. Mucorrouxii which gave the maximum biomass concentration was also grown on molasses. The maximum biomass
by
Karaca, Meral.
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electrostatic attraction between the negatively charged functional groups on the surface of the biomass and the
by
Temelli, Nuran, author.
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aimed to develop a process that could overcome those limitations. Corn cob was used as the model biomass
by
Göğüş, Nihan.
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optimization step improved the PG activity by 74 % and the biomass by 40 %. Furthermore characterization of the
by
Öncü, Şelale
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parameters under study. An uncontrolled pH increased biomass and PG activity by 27% and 38%, respectively
by
Altıok, Duygu.
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concentration fermentation (S0. 95.7 g l-1), the same model explains only the exponential phase of biomass and
by
Polat, Zelal.
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experiments were applied both to model lactic acid and to biomass free fermentation broth. The ion exchange
by
Büyükkileci, Ali Oğuz.
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acid production was associated with the biomass growth up to a certain time, but then a non-growth
by
Özdemir, Peruze.
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, biosorption process described in this study may represent a cheap alternative to conventional methods.Biomass
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Üzelyalçın, Berna
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/ kg dry yeast cells, 2106.46-2051.74 mg Mg2+ / kg dry yeast cells. Ion concentrations of biomass in
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