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61篇 您的检索式:作者名="Apak R"
    题名 作者 年代 出处 被引量
1Simultaneous spectrophotometric determination of cystine and cysteine in amino acid mixtures using copper-neocuproin reagent 显示文摘 APAK R 1991Anal Chim Acta1991,255,:1
2Modeling of copper(11) and lead(11) adsorption on kaolinite-based clay minerals individually and in the presence of humic acid显示文摘Hizal H Apak R 2006J Colloid Interface Sci2006,295,1:1
3Heavy metal cation retention by unconventional sorbents显示文摘Apak R Tütem E Hügül M 1998Water Resource1998,32,:1
4Modeling of copper(Ⅱ),Cadmium ( Ⅱ ),and Lead( Ⅱ ) adsorption on red mud from metal-EDTA mixture solu- tions 显示文摘Guclu K Apak R 2000Journal of Colloid Interface Science2000,228,2:1
5Novel total antioxidant capacity index for dietary polyphenols and vitamins C and E, using their cupric iron reducing capability in the presence of neocuproine: CUPRAC method显示文摘APAK R GUCLU K G OZYUREK M 2004J Agric Food Chem2004,52,26:1
6Total antioxidant capacity assay using optimized ferricyanide/prussian blue method 显示文摘Berker KI Guclu K Tor I Demirata B Apak R 2010Food Anal Methods2010,3,3:1
7Novel total antioxidant capacity index for dietary polyphcnols and vitamins C and E, using their cupric iron reducing capability in the presence of neocuproine: CUPRAC method显示文摘APAK R GUCLU K OZYUREK M 2004Journal of Agricultural and Food Chemistry2004,52,:1
8Adsorptive removal of methylene blue from simulated dyeing wastewater with melamine-formaldehyde-urea resin显示文摘OZDEMIR F A DEMIRATA B APAK R 2009Journal of Applied Polymer Science2009,112,6:1
9Novel total antioxidant capacity index for dietary polyphenols and vitamins C and E, using their cupricion reducing capability in the presence of neocuproine: CUPRAC method显示文摘Apak R Guclu K Ozyurek M 2004Journal of A- gricultural and Food Chemistry2004,52,26:1
10Release and degradation of the anthocyanins and phenolics from blueberry po- mace during thermal acid hydrolysis and dry heating显示文摘Bener M Shen Y Apak R 2013Journal of Agricultural and Food Chemistry2013,61,27:1
11Mechanism of antioxidant capacity assays and the CUPRAC ( cu- pric ion reducing antioxidant capacity) assay 显示文摘APAK R GUCIU K OZYUREK K 2008Mi- crochim Acta2008,160,:1
12Modeling the kinetics of UV/hydrogen peroxide oxidation of some mono-, di-, and trichlorophenols 显示文摘Hugtil M Apak R Demirci S 2000Journal of Hazardous Materials2000,77,123:1
13Mechanism of antioxidant capacity assays and the CUPRAC ( cu- pric ion reducing antioxidant capacity ) assay 显示文摘APAK R GUClU K OZYUREK K 2008Mi- crochim Acta2008,160,:1
14Adsorptive removal of chlorophenols from water by bituminous shale显示文摘Tutem E Apak R Unal C F 1998Water Research1998,32,8:1
15The main and modified CUPRAC methods of antioxidant measurement显示文摘0zytirek M Gii~lii K Apak R 2011Trend Anal Chem2011,30,4:1
16Modeling of copper(Ⅱ) , cadmium( Ⅱ ), and lead( Ⅱ ) adsorption on red mud 显示文摘APAK R GUCLU K TURGUT M H 1998J Colloid Interface Sci1998,203,1:1
17Adsorptive removal ofmethylene blue from simulated dyeing wastewater with melamine- formaldehyde-urea resin显示文摘OZDEMIR F A DEMIRATA B APAK R 2009Journal of Applied Polymer Science2009,112,6:1
18Fumace smelting and extractive metallurgy of red mud:recovery of TiO2,Al2O3 and pig iron显示文摘 R Apak 1997Chemtechnol and Biotechnol1997,,70:1
19Modeling of copper ( Ⅱ ), cad- mium( Ⅱ),and lead (Ⅱ) adsorption on red mud显示文摘Apak R Gtiqlti K Turgut M H 1998Journal of Colloid and Interface Science1998,203,1:1
20Modeling of copper ( Ⅱ ) and lead ( Ⅱ ) adsorption on kaolinite-based clay minerals individually and in the presence of humic acid显示文摘Hizal J Apak R 2006Journal of Colloid and Interface Science2006,295,:1
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