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Therefore, policies related to large-scale C sequestration initiatives under afforestation must first fully consider the statuses of WCCC and WUE.
An environmental constraint often mentioned for large-scale C plantations is the availability of water and nitrogen [41 43].
Furthermore, additional large-scale C losses resulting from uncontrolled peat burning or wildfire spreading into peat areas >300 cm deep are not included in the estimate.
An environmental constraint often mentioned for large-scale C plantations is the availability of water and nitrogen [ 41- 43].
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Furthermore, we propose a new heuristic algorithm to obtain the near-optimal C-RAN network layout effectively and efficiently, especially suitable for a large-scale C-RAN network scenario in practice.
Therefore, we can conclude that the RSTO-formulation-based Gurobi solution scheme are more suitable for smaller-scale C-RAN network layout planning, and our proposed heuristic algorithm could be suitable for real-world large-scale C-RAN network layout planning in practice.
For correlating PINs and metabolic flux rates, we used flux rate data from a large-scale C-flux analysis from Blank and colleagues [ 47].
The flux rates were estimated by Blank and colleagues based on a global metabolic network model of S. cerevisae [ 46] and a flux balance analysis based on large-scale C-isotope tracer experiments [ 47].
If the Cd removal potentials of these plant species (Table 1) can be realized in practice, they can all be considered as promising candidates for large-scale Cd phytoextraction.
For even larger scale C modelling work, such as global C simulations, the LUCC information could be more inaccurate at coarse spatial resolution (such as 1 2°).
This provides indications that: (1) Landsat-based remote sensing observations likely miss a significant proportion of harvest activity due to partial loss, rather than full loss, of tree canopy cover; and (2) the additional C loss not identified by the remote sensing approach is spatially proximate to larger scale C losses from harvest, at least at the state scale.
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