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Effect of extraction method on the antioxidative activity of ground elder (Aegopodium podagraria L.)

LITERATURE CITED 1. Benzie, I.F. & Choi, S.W. (2014). Antioxidants in food: content, measurement, significance, action, cautions, caveats, and research needs. Adv. Food Nutr. Res . 71, 1–53. DOI: 10.1016/B978-0-12-800270-4.00001-8. 2. Valko, M., Leibfritz, D., Moncol, J., Cronin, M.T., Mazur, M. & Telser, J. (2007). Free radicals and antioxidants in normal physiological functions and human disease. Int. J. Biochem. Cell Biol . 39, 44–84. DOI: 10.1016/j.biocel.2006.07.001. 3. Rahal, A., Kumar, A., Singh, V., Yadav, B., Tiwari, R., Chakraborty

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Multiphase extraction of ephedrine from Pinellia ternata using bionic liquid-modified polymer

., Guo, C., Hou, S., Hua, Z., Lv, J., Zhang, Y. & Xu, J. (2018). Development and application of the diffusive gradients in thin fi lms technique for simultaneous measurement of methcathinone and ephedrine in surface river water. Sci. Total Environ. 618, 284–290. DOI: org/10.1016/j. scitotenv.2017.11.068. 22. Tian, S., Guo, Z., Zhang, X. & Wu, X. (2013). Synthesis of molecularly imprinted co-polymers for recognition of ephedrine. Anal. Methods 5, 5179–5187. DOI: 10.1039/C3AY41202D. 23. Dong, X., Wang, W., Ma, S., Sun, H., Li, Y. & Guo, J. (2005

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Cu(II), Co(II), Ni(II), Mn(II) and Zn(II) Schiff base complexes of 3-hydroxy-4-[N-(2-hydroxynaphthylidene)-amino]-naphthalene-1-sulfonic acid: Synthesis, Spectroscopic, thermal, and antimicrobial studies

transition metal complexes containing ONO tridentate Schiff base ligand. Spectrochimica Acta Part A , 149, 771–787. 15. Bauer, A.W., Kirby, W.M.M., Sherris, J.C. & Turck, M. (1966). Antibiotic susceptibility testing by a standardized single disk method. Am. J. Clin. Pathol ., 36, 493–496. 16. Geary, W. (1971). The use of conductivity measurements in organic solvents for the characterisation of coordination compounds. J. Coord. Chem. Rev ., 7, 81–122. 17. Kavitha, P. & Reddy, K.L. (2016). Synthesis, spectral characterisation, morphology, biological

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On the characteristic and stability of iron diet supplements

.R., Pesseguiero, A., Fulco, A.J., Cho, A.K., Cheesman, M.A., Walkinshaw, M.D. & Chapman, S.K. (2001). Structural and spectroscopic analysis of the F393H mutant of flavocytochrome P450 BM3. Biochemistry 40(45), 13430–13438. PMID:11695889. 17. Brittenham, G.M. & Badman, D.G. (2003). Noninvasive measurement of iron: report of an NIDDK workshop. Blood. 101(1), 15–9. DOI: 10.1182/blood-2002-06-1723. 18. Canavese, C., Bergamo, D., Ciccone, G., Longo, F., Fop, F., Thea, A., Martina, G. & Piga, A. (2004). Validation of serum ferritin values by magnetic susceptometry in

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Evaluation of fouling potential of nanofiltration membranes based on the dynamic contact angle measurements

.memsci.2003.08.032. 10. Lee, W., Hoon Ahn, Ch., Hong, S., Kim, S., Lee, S., Baek, Y. & Yoon , J. (2010). Evaluation of surface properties of reverse osmosis membranes on the initial biofouling stages under no fi ltration condition. J. Membr. Sci. , 351, 112-122. DOI:10.1016/j.memsci.2010.01.035. 11. Lee, S., Lee, E., Elimelech, M. & Hong, S. (2011). Membrane characterization by dynamic hysteresis: Measurements, mechanisms, and implications for membrane fouling. J. Membr. Sci. , 366, 17-24. doi:10.1016/j.memsci.2010

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PIV measurement of tube-side in a shell and tube heat exchanger

improve the flow distribution in the tube-side inlet of a shell and tube heat exchanger. Int. J. Heat Mass Trans . 80, 865–872. DOI: 10.1016/j.ijheatmasstransfer.2014.09.076. 9. Wang, K., Tu, X.C. & Kim, H.B. CFD simulation and PIV measurement of a shell and tube heat exchanger. The 9th Pacific Symposium on Flow Visualization and Image Processing, 25–28 August 2013. Busan, Korea. 10. Wang S., Wen, J. & Li, Y. (2009). An experimental investigation of heat transfer enhancement for a shell-and-tube heat exchanger. App. Therm. Enginee . 29(11–12), 2433

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An alternative and indirect statistical modeling method for viscosity estimation and its experimental validation for low styrene content polyester resin

properties of carbon-nanotube-silica-reinforced epoxy composite, Mater. & Desi. 88, 227-235. DOI: 10.1016/j.matdes.2015.08.149. 12. Vahedi, V., Pasbakhsh, P. & Chai, S.P. (2015). Toward high performance epoxy/halloysite nanocomposites: New insights based on rheological, curing, and impact properties, Mater. & Desi. 68(5), 43-53. DOI: 10.1016/j.matdes.2014.12.010. 13. Zhang, Y., An, Z., Bai, H., Li, Q. & Guo, .Z. (2015). Characterization and measurement of apparent viscosity of solid particles in fixed beds under high temperature, Powder

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Experimental study and mathematical modeling of the residence time distribution in magnetic mixer

.08.016. 5. Guo, Q., Liang, Q., Ni, J., Xu, S., Yu, G. & Yu, Z. (2008). Markov chain model of residence time distribution in a new type entrained-flow gasifier. Chemical Engineering and Processing , 47, 2061-2065. DOI: 10.1016/j.cep.2007.10.017. 6. Harris, A., Thorpe, R. & Davidson, J. (2002). Stochastic modelling of the particle residence time distribution in circulating fluidised bed risers. Chemical Engineering Science , 57, 4779-4796. DOI: 10.1016/S0009-2509(02)00278-6. 7. Hornung, Ch. & Mackley, M. (2009). The measurements and

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Fluctuations of the non-Newtonian fluid flow in a Kenics static mixer: An experimental study

References van Wageningen, W.F.C., Mudde, R.F. & van den Akker, H.E.E., Numerical investigation into mixing of particle-laden flows in a Kenics static mixer, 11th Europ. Conf. on Mixing, Bamberg, Germany, 2003, 137-144. Wadley, R. & Dawson, M.K., LIF measurements of blending in static mixers in the turbulent and transitional flow regimes, Chem. Eng. Sci. , 2005, 60, 2469-2478. DOI: 10.1016/j.ces.2004.11.021 Jaffer, A.A., Wood, P.E., Quantification of laminar mixing in the Kenics

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Selected Functional Properties of Oxo-Degradable Materials Containing Antimicrobial Substances

experiment. Compos Part B-Eng. 105, 160-166. DOI: 10.1039/c5ra24642c. 14. Petchwattana, N., Covavisaruch, S. & Wibooranawong, S. (2016). Antimicrobial food packaging prepared from poly (butylene succinate) and zinc oxide. Measurement 93, 442-448. DOI: 10.1016/j.measurement.2016.07.048. 15. Kawakami, H., Yoshida, K., Nishida, Y., Kikuchi, Y. & Sato, Y. (2008). Antibacterial Properties of Metallic Elements for Alloying Evaluated with Application of JIS Z 2801:2000. ISIJ International 9, 1299-1304. DOI: 10.2355/isijinternational. 48

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