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WOS:000353100900002Model collaboration for the improved assessment of biomass supply, demand, and impacts

期刊

GLOBAL CHANGE BIOLOGY BIOENERGY
卷 7, 期 3, 页码 422-437

出版社

WILEY
DOI: 10.1111/gcbb.12176

关键词

biomass supply and demand; bottom-up modeling; impacts; integrated assessment; model collaboration; top-down modeling

资金

  1. research program Knowledge Infrastructure for Sustainable Biomass - Ministry of Economic Affairs, Agriculture and Innovation
  2. Ministry of Infrastructure and the Environment of the Netherlands
  3. German Federal Ministry of Education and Research (BMBF) [01PL11003]

向作者/读者索取更多资源

Existing assessments of biomass supply and demand and their impacts face various types of limitations and uncertainties, partly due to the type of tools and methods applied (e.g., partial representation of sectors, lack of geographical details, and aggregated representation of technologies involved). Improved collaboration between existing modeling approaches may provide new, more comprehensive insights, especially into issues that involve multiple economic sectors, different temporal and spatial scales, or various impact categories. Model collaboration consists of aligning and harmonizing input data and scenarios, model comparison and/or model linkage. Improved collaboration between existing modeling approaches can help assess (i) the causes of differences and similarities in model output, which is important for interpreting the results for policy-making and (ii) the linkages, feedbacks, and trade-offs between different systems and impacts (e.g., economic and natural), which is key to a more comprehensive understanding of the impacts of biomass supply and demand. But, full consistency or integration in assumptions, structure, solution algorithms, dynamics and feedbacks can be difficult to achieve. And, if it is done, it frequently implies a trade-off in terms of resolution (spatial, temporal, and structural) and/or computation. Three key research areas are selected to illustrate how model collaboration can provide additional ways for tackling some of the shortcomings and uncertainties in the assessment of biomass supply and demand and their impacts. These research areas are livestock production, agricultural residues, and greenhouse gas emissions from land-use change. Describing how model collaboration might look like in these examples, we show how improved model collaboration can strengthen our ability to project biomass supply, demand, and impacts. This in turn can aid in improving the information for policy-makers and in taking better-informed decisions.

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