1 |
Performance analysis of solar and solar-infrared dryer of mint and apple slices using energy-exergy methodology Sevik S, Aktas M, Dolgun EC, Arslan E, Tuncer AD Solar Energy, 180, 537, 2019 |
2 |
Analysis of a new drying chamber for heat pump mint leaves dryer Aktas M, Khanlari A, Aktekeli B, Amini A International Journal of Hydrogen Energy, 42(28), 18034, 2017 |
3 |
Microwave extraction of mint essential oil - Temperature calibration for the oven Costa SS, Gariepy Y, Rocha SCS, Raghavan V Journal of Food Engineering, 126, 1, 2014 |
4 |
Characterizing the interaction between the Rab6 GTPase and Mint3 via flow cytometry based FRET analysis Thyrock A, Stehling M, Waschbusch D, Barnekow A Biochemical and Biophysical Research Communications, 396(3), 679, 2010 |
5 |
Drying of mint leaves in a solar dryer and under open sun: Modelling, performance analyses Akpinar EK Energy Conversion and Management, 51(12), 2407, 2010 |
6 |
Investigation of various factors for the extraction of peppermint (Mentha piperita L.) leaves Dai JM, Orsat V, Raghavan GSV, Yaylayan V Journal of Food Engineering, 96(4), 540, 2010 |
7 |
An experimental study on drying kinetics of some herbal leaves Kaya A, Aydin O Energy Conversion and Management, 50(1), 118, 2009 |
8 |
Characterization of microwave vacuum drying and hot air drying of mint leaves (Mentha cordifolia Opiz ex Fresen) Therdthai N, Zhou WB Journal of Food Engineering, 91(3), 482, 2009 |
9 |
Thermal inactivation kinetics of peroxidase in mint leaves Shahni GR, Shivhare US, Basu S Journal of Food Engineering, 85(1), 147, 2008 |
10 |
Enthalpy entropy compensation during thermal degradation of chlorophyll-in mint and coriander puree Rudra SG, Singh H, Basu S, Shivhare US Journal of Food Engineering, 86(3), 379, 2008 |