Author:
Ncama Khayelihle,Magwaza Lembe Samukelo
Publisher
Springer Nature Singapore
Reference49 articles.
1. Abbasi, H., Bani, M. A., Nazeri, M., & Mireei, S. A. (2014). Application of fluorescence spectroscopy in the freshness control of lettuce leaf after irradiation of cold atmospheric pressure plasma. In The 2nd conference of plasma engineering and plasma physics (PEP 2014) (pp. 51–57).
2. Alenazi, M. M., Shafiq, M., Alsadon, A. A., Alhelal, I. M., Alhamdan, A. M., Solieman, T. H., Ibrahim, A. A., Shady, M. R., & Saad, M. A. (2020). Non-destructive assessment of flesh firmness and dietary antioxidants of greenhouse-grown tomato (Solanum lycopersicum L.) at different fruit maturity stages. Saudi Journal of Biological Sciences, 27(10), 2839–2846.
3. Aouadi, B., Zaukuu, J. L. Z., Vitális, F., Bodor, Z., Fehér, O., Gillay, Z., Bazar, G., & Kovacs, Z. (2020). Historical evolution and food control achievements of near infrared spectroscopy, electronic nose, and electronic tongue—Critical overview. Sensors, 20, 5479.
4. Bureau, S., Cozzolino, D., & Clark, C. J. (2019). Contributions of Fourier-transform mid infrared (FT-MIR) spectroscopy to the study of fruit and vegetables: A review. Postharvest Biology and Technology, 148, 1–14.
5. Cattaneo, T. M., & Stellari, A. (2019). NIR spectroscopy as a suitable tool for the investigation of the horticultural field. Agronomy, 9, 503.