<p><b>Table 7.</b> Solubility (Ksp), adsorption (Koc), time for 50% decomposition (<em>T</em><sup>1/2</sup>) and lethal dose-50 (LD-50) for pesticides used in two background and three beef-finishing systems of eastern Uruguay. Values used to calculate the pesticide contamination risk (PPDB <a href="http://iopscience.iop.org/1748-9326/8/3/035052/article#erl455951bib36" target="_blank">2009</a>). </p> <p><strong>Abstract</strong></p> <p>Carbon footprint is a key indicator of the contribution of food production to climate change and its importance is increasing worldwide. Although it has been used as a sustainability index for assessing production systems, it does not take into account many other biophysical ...
<p><b>Table 6.</b> Coefficients and equations used in nutrient (N and P) imbalanc...
<p><b>Table 10.</b> Percentage changes in GHG emissions from the default IPCC val...
<p><b>Table 4.</b> Coefficients and emission factors to calculate GHG emissions o...
<p><b>Table 13.</b> Soil erosion of five background-finishing beef systems of eas...
<p><b>Table 3.</b> Inputs and estimated area to produce the feed consumed by anim...
<p><strong>Figure 1.</strong> GHG emissions, fossil fuel energy consumption, soil erosion, N and P i...
<p><b>Table 12.</b> Energy consumption of five background-finishing beef systems ...
Carbon footprint is a key indicator of the contribution of food production to climate change and its...
<p><b>Table 1.</b> Diet characteristics, average daily gain, and time to finish s...
Carbon footprint is a key indicator of the contribution of food production to climate change and its...
Carbon footprint is a key indicator of the contribution of food production to climate change and its...
<p><b>Table 5.</b> Coefficients to calculate energy consumption of two background...
<p><b>Table 11.</b> Sources of energy fossil consumption as a percentage of the t...
<p><b>Table 8.</b> Greenhouse gas emissions per gas and total emissions by source...
<p><b>Table 9.</b> Greenhouse gas emissions of five background-finishing beef sys...
<p><b>Table 6.</b> Coefficients and equations used in nutrient (N and P) imbalanc...
<p><b>Table 10.</b> Percentage changes in GHG emissions from the default IPCC val...
<p><b>Table 4.</b> Coefficients and emission factors to calculate GHG emissions o...
<p><b>Table 13.</b> Soil erosion of five background-finishing beef systems of eas...
<p><b>Table 3.</b> Inputs and estimated area to produce the feed consumed by anim...
<p><strong>Figure 1.</strong> GHG emissions, fossil fuel energy consumption, soil erosion, N and P i...
<p><b>Table 12.</b> Energy consumption of five background-finishing beef systems ...
Carbon footprint is a key indicator of the contribution of food production to climate change and its...
<p><b>Table 1.</b> Diet characteristics, average daily gain, and time to finish s...
Carbon footprint is a key indicator of the contribution of food production to climate change and its...
Carbon footprint is a key indicator of the contribution of food production to climate change and its...
<p><b>Table 5.</b> Coefficients to calculate energy consumption of two background...
<p><b>Table 11.</b> Sources of energy fossil consumption as a percentage of the t...
<p><b>Table 8.</b> Greenhouse gas emissions per gas and total emissions by source...
<p><b>Table 9.</b> Greenhouse gas emissions of five background-finishing beef sys...
<p><b>Table 6.</b> Coefficients and equations used in nutrient (N and P) imbalanc...
<p><b>Table 10.</b> Percentage changes in GHG emissions from the default IPCC val...
<p><b>Table 4.</b> Coefficients and emission factors to calculate GHG emissions o...