FT-IR-Spektrum: Unterschied zwischen den Versionen
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Kasprzyk I. et al. <ref>Kasprzyk I. et al., FTIR-ATR spectroscopy of pollen and honey as a tool for unifloral honey authentication. The case study of rape honey, Food Control (2018), 84, p. 33-40 [https://www.sciencedirect.com/science/article/pii/S0956713517303626 (PDF-File)]</ref>, | Kasprzyk I. et al. <ref>Kasprzyk I. et al., FTIR-ATR spectroscopy of pollen and honey as a tool for unifloral honey authentication. The case study of rape honey, Food Control (2018), 84, p. 33-40 [https://www.sciencedirect.com/science/article/pii/S0956713517303626 (PDF-File)]</ref>, | ||
Buta E. et al., <ref>Buta E. et al., FT-IR Characterization of Pollen Biochemistry, Viability, and Germination Capacity in Saintpaulia H. Wendl. Genotypes, J. Spectrosc. (2015), Article ID 706370 [http://downloads.hindawi.com/journals/jspec/2015/706370.pdf (PDF-File)]</ref> | Buta E. et al., <ref>Buta E. et al., FT-IR Characterization of Pollen Biochemistry, Viability, and Germination Capacity in Saintpaulia H. Wendl. Genotypes, J. Spectrosc. (2015), Article ID 706370 [http://downloads.hindawi.com/journals/jspec/2015/706370.pdf (PDF-File)]</ref> | ||
Diehn S. et al.<ref>Diehn S. et al., Discrimination of grass pollen of different species by FTIR spectroscopy of individual pollen grains. Anal | Diehn S. et al.<ref>Diehn S. et al., Discrimination of grass pollen of different species by FTIR spectroscopy of individual pollen grains. Anal Bioanal Chem (2020), 412, p. 6459-6474.</ref> | ||
