1 |
Mid-infrared spectroscopy as a tool for real-time monitoring of ethanol absorption in glycols Rodrigues KCS, Veloso IIK, Ribeiro MPA, Cruz AJG, Badino AC Canadian Journal of Chemical Engineering, 99(1), 401, 2021 |
2 |
Quantification and classification of cotton biodiesel content in diesel blends, using mid-infrared spectroscopy and chemometric methods Maquina ADV, Sitoe BV, Buiatte JE, Santos DQ, Neto WB Fuel, 237, 373, 2019 |
3 |
Metabolic profiling of recombinant Escherichia coli cultivations based on high-throughput FT-MIR spectroscopic analysis Sales KC, Rosa F, Cunha BR, Sampaio PN, Lopes MB, Calado CRC Biotechnology Progress, 33(2), 285, 2017 |
4 |
Monitoring the ex-vivo expansion of human mesenchymal stem/stromal cells in xeno-free microcarrier-based reactor systems by MIR spectroscopy Rosa F, Sales KC, Carmelo JG, Fernandes-Platzgummer A, da Silva CL, Lopes MB, Calado CRC Biotechnology Progress, 32(2), 447, 2016 |
5 |
Discrimination of the type of biodiesel/diesel blend (B5) using mid-infrared spectroscopy and PLS-DA Mazivila S, de Santana FB, Mitsutake H, Gontijo LC, Santos DQ, Neto WB Fuel, 142, 222, 2015 |
6 |
Application of ATR-MIR spectroscopy in the pilot plant-Scope and limitations using the example of Paracetamol crystallizations Helmdach L, Feth MP, Minnich C, Ulrich J Chemical Engineering and Processing, 70, 184, 2013 |
7 |
How spectroscopy and microspectroscopy of degraded wood contribute to understand fungal wood decay Fackler K, Schwanninger M Applied Microbiology and Biotechnology, 96(3), 587, 2012 |
8 |
Predicting Mab Product Yields from Cultivation Media Components, Using Near-Infrared and 2D-Fluorescence Spectroscopies Jose GE, Folque F, Menezes JC, Werz S, Strauss U, Hakemeyer C Biotechnology Progress, 27(5), 1339, 2011 |
9 |
A laboratory investigation of the anhydrous milkfat fractionation using a membrane technique Abbas H, Hossain MM, Chen XD Separation and Purification Technology, 48(2), 167, 2006 |