Assessment of maize seed vigor under saline-alkali and drought stress based on low field nuclear magnetic resonance
Author:
Publisher
Elsevier BV
Subject
Soil Science,Agronomy and Crop Science,Food Science,Control and Systems Engineering
Reference33 articles.
1. Application of low field NMR as an alternative technique to quantification of total acid number and sulphur content in petroleum from Brazilian reservoirs;Barbosa;Fuel,2016
2. 1H low field nuclear magnetic resonance relaxometry for probing biodiesel autoxidation;Berman;Fuel,2016
3. Low-field nuclear magnetic resonance (LF NMR 1H) to assess the mobility of water during storage of salted fish (Sardinella brasiliensis);Carneiro;Journal of Food Engineering,2016
4. Effect of pullulan on the water distribution, microstructure and textural properties of rice starch gels during cold storage;Chen;Food Chemistry,2017
5. Comparing different processing methods in apple slice drying. Part 2 solid-state Fast Field Cycling 1H-NMR relaxation properties, shrinkage and changes in volatile compounds;Conte;Science,2019
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