Matches in SemOpenAlex for { <https://semopenalex.org/work/W2097768369> ?p ?o ?g. }
- W2097768369 endingPage "4769" @default.
- W2097768369 startingPage "4753" @default.
- W2097768369 abstract "There is a growing recognition that the interrelations between agriculture, food, bioenergy, and climate change have to be better understood in order to derive more realistic estimates of future bioenergy potentials. This article estimates global bioenergy potentials in the year 2050, following a food first approach. It presents integrated food, livestock, agriculture, and bioenergy scenarios for the year 2050 based on a consistent representation of FAO projections of future agricultural development in a global biomass balance model. The model discerns 11 regions, 10 crop aggregates, 2 livestock aggregates, and 10 food aggregates. It incorporates detailed accounts of land use, global net primary production (NPP) and its human appropriation as well as socioeconomic biomass flow balances for the year 2000 that are modified according to a set of scenario assumptions to derive the biomass potential for 2050. We calculate the amount of biomass required to feed humans and livestock, considering losses between biomass supply and provision of final products. Based on this biomass balance as well as on global land-use data, we evaluate the potential to grow bioenergy crops and estimate the residue potentials from cropland (forestry is outside the scope of this study). We assess the sensitivity of the biomass potential to assumptions on diets, agricultural yields, cropland expansion and climate change. We use the dynamic global vegetation model LPJmL to evaluate possible impacts of changes in temperature, precipitation, and elevated CO(2) on agricultural yields. We find that the gross (primary) bioenergy potential ranges from 64 to 161 EJ y(-1), depending on climate impact, yields and diet, while the dependency on cropland expansion is weak. We conclude that food requirements for a growing world population, in particular feed required for livestock, strongly influence bioenergy potentials, and that integrated approaches are needed to optimize food and bioenergy supply." @default.
- W2097768369 created "2016-06-24" @default.
- W2097768369 creator A5015103248 @default.
- W2097768369 creator A5027051661 @default.
- W2097768369 creator A5033075096 @default.
- W2097768369 creator A5060930839 @default.
- W2097768369 creator A5079972031 @default.
- W2097768369 creator A5080572301 @default.
- W2097768369 creator A5080948346 @default.
- W2097768369 creator A5089821134 @default.
- W2097768369 date "2011-12-01" @default.
- W2097768369 modified "2023-09-29" @default.
- W2097768369 title "Global bioenergy potentials from agricultural land in 2050: Sensitivity to climate change, diets and yields" @default.
- W2097768369 cites W1560923330 @default.
- W2097768369 cites W1752237979 @default.
- W2097768369 cites W1907583418 @default.
- W2097768369 cites W1975625726 @default.
- W2097768369 cites W1976313838 @default.
- W2097768369 cites W1979995641 @default.
- W2097768369 cites W1996249429 @default.
- W2097768369 cites W2003164867 @default.
- W2097768369 cites W2004491366 @default.
- W2097768369 cites W2015834247 @default.
- W2097768369 cites W2018071843 @default.
- W2097768369 cites W2019795412 @default.
- W2097768369 cites W2021001691 @default.
- W2097768369 cites W2026146905 @default.
- W2097768369 cites W2031895263 @default.
- W2097768369 cites W2034384341 @default.
- W2097768369 cites W2042907990 @default.
- W2097768369 cites W2046603958 @default.
- W2097768369 cites W2049096931 @default.
- W2097768369 cites W2049360442 @default.
- W2097768369 cites W2049433045 @default.
- W2097768369 cites W2052479643 @default.
- W2097768369 cites W2057015533 @default.
- W2097768369 cites W2058963764 @default.
- W2097768369 cites W2059712557 @default.
- W2097768369 cites W2063514988 @default.
- W2097768369 cites W2070508879 @default.
- W2097768369 cites W2073141004 @default.
- W2097768369 cites W2088518299 @default.
- W2097768369 cites W2097428353 @default.
- W2097768369 cites W2099083250 @default.
- W2097768369 cites W2105018714 @default.
- W2097768369 cites W2112274053 @default.
- W2097768369 cites W2113460541 @default.
- W2097768369 cites W2114928554 @default.
- W2097768369 cites W2116224228 @default.
- W2097768369 cites W2120859985 @default.
- W2097768369 cites W2122266551 @default.
- W2097768369 cites W2127989158 @default.
- W2097768369 cites W2130365445 @default.
- W2097768369 cites W2131859951 @default.
- W2097768369 cites W2137258838 @default.
- W2097768369 cites W2145814228 @default.
- W2097768369 cites W2146751158 @default.
- W2097768369 cites W2146904764 @default.
- W2097768369 cites W2148185586 @default.
- W2097768369 cites W2151390377 @default.
- W2097768369 cites W2153820558 @default.
- W2097768369 cites W2161845053 @default.
- W2097768369 cites W2162147170 @default.
- W2097768369 cites W2163065403 @default.
- W2097768369 cites W2163640998 @default.
- W2097768369 cites W2167654997 @default.
- W2097768369 cites W4211244051 @default.
- W2097768369 cites W4252917331 @default.
- W2097768369 doi "https://doi.org/10.1016/j.biombioe.2011.04.035" @default.
- W2097768369 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3236288" @default.
- W2097768369 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22211004" @default.
- W2097768369 hasPublicationYear "2011" @default.
- W2097768369 type Work @default.
- W2097768369 sameAs 2097768369 @default.
- W2097768369 citedByCount "201" @default.
- W2097768369 countsByYear W20977683692012 @default.
- W2097768369 countsByYear W20977683692013 @default.
- W2097768369 countsByYear W20977683692014 @default.
- W2097768369 countsByYear W20977683692015 @default.
- W2097768369 countsByYear W20977683692016 @default.
- W2097768369 countsByYear W20977683692017 @default.
- W2097768369 countsByYear W20977683692018 @default.
- W2097768369 countsByYear W20977683692019 @default.
- W2097768369 countsByYear W20977683692020 @default.
- W2097768369 countsByYear W20977683692021 @default.
- W2097768369 countsByYear W20977683692022 @default.
- W2097768369 countsByYear W20977683692023 @default.
- W2097768369 crossrefType "journal-article" @default.
- W2097768369 hasAuthorship W2097768369A5015103248 @default.
- W2097768369 hasAuthorship W2097768369A5027051661 @default.
- W2097768369 hasAuthorship W2097768369A5033075096 @default.
- W2097768369 hasAuthorship W2097768369A5060930839 @default.
- W2097768369 hasAuthorship W2097768369A5079972031 @default.
- W2097768369 hasAuthorship W2097768369A5080572301 @default.
- W2097768369 hasAuthorship W2097768369A5080948346 @default.
- W2097768369 hasAuthorship W2097768369A5089821134 @default.
- W2097768369 hasBestOaLocation W20977683691 @default.
- W2097768369 hasConcept C110872660 @default.