Application of proximal soil sensing for environmental characterization of agricultural land

AS Mat Su - 2016 - escholarship.mcgill.ca
Sustainable high-intensity agriculture involves optimizing yield and profitability without
compromising the environment. High chemical inputs have the potential to accelerate soil
systems' biological activity and emission of greenhouse gasses (GHG; eg, CO2, CH4, and
N2O) without increasing the yield. Quantifying emissions from agricultural soils is critical to
assessing the sustainability of farming practices. Usually, estimates of agriculture-driven
GHG emissions are based on a small number of sampling sites. Inherent differences in soil …

Application of Proximal Soil Sensing for Environmental Characterization of Agricultural Land

A Suhaizi - 2016 - search.proquest.com
Sustainable high-intensity agriculture involves optimizing yield and profitability without
compromising the environment. High chemical inputs have the potential to accelerate soil
systems' biological activity and emission of greenhouse gasses (GHG; eg, CO 2, CH 4, and
N 2 O) without increasing the yield. Quantifying emissions from agricultural soils is critical to
assessing the sustainability of farming practices. Usually, estimates of agriculture-driven
GHG emissions are based on a small number of sampling sites. Inherent differences in soil …
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