Advanced search
Start date
Betweenand


Temperature and thermal diffusivity measurement of seeds and seeds inside soil by time domain nuclear magnetic resonance

Full text
Author(s):
Maria Gabriela Aparecida Carosio
Total Authors: 1
Document type: Doctoral Thesis
Press: São Carlos.
Institution: Universidade de São Paulo (USP). Instituto de Química de São Carlos (IQSC/BT)
Defense date:
Examining board members:
Luiz Alberto Colnago; Luis Fernando Cabeça; Maria Olimpia de Oliveira Rezende; Roberto Rittner Neto; José Antonio Gomes Vieira
Advisor: Luiz Alberto Colnago
Abstract

The potential of time domain nuclear magnetic resonance (TD-NMR) to measure the temperature of isolated oilseeds and oilseeds inserted into soil was demonstrated in this thesis. The methods were based on the correlation between relaxation time of the oilseeds with temperature. The measurement with the transverse relaxation time, T2, was performed with the Carr - Purcell - Meiboom - Gill (CPMG) pulse sequence. The measurement of decay T*, was performed with the Continuous Wave Free Precession (CP- CWFP) pulse sequence. Both the T2 as T* showed an exponentially correlation with temperature using bench top spectrometers. With the measurement of the temperature decay of seeds and soils, previously heated to 70°C and placed in a bath at 23°C, was used to calculate the thermal diffusivity of seeds and seeds in soil. The results were similar to those obtained with standard methods. For the magnets with very low homogeneity, with strong magnetic field gradients 1 T/m (Opposite field, Unilateral and Halback magnets) only the CPMG pulse sequence could be used. The CP-CWFP sequence do not generated a continuous wave signal, necessary for the measurement of T*. The unilateral magnet shows an upward-sloping exponential curve between the decay of the CPMG signal and temperature due to the effect of molecular diffusion, in refocusing echoes. Therefore, the unilateral NMR, which detects the signal from the sample outside the NMR sensor (magnet and probe), has the potential to analyze the temperature and thermal diffusivity in the field. The big advantage of NMR over thermometry methods based on mercury thermometers, thermocouples, thermistors, etc., is that it is a method that does not need to damage the seeds for insertion of the sensor. In addition, NMR can be used to measure the seed temperature, even when it is under a layer of several centimeters of soil, which does not occur with the infrared sensor, for example. (AU)

FAPESP's process: 09/09734-1 - Methodology to measure temperature in intact seeds in soils by NMR
Grantee:Maria Gabriela Aparecida Carosio
Support Opportunities: Scholarships in Brazil - Doctorate (Direct)