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18篇 您的检索式:作者名="Karltun"
    题名 作者 年代 出处 被引量
1Estimations of amounts of soil organic carbon and fine root carbon in land use and land cover classes, and soil types of Chiapas highlands, Mexico显示文摘MENDOZA-VEGA J KARLTUN E OLSSON M 2003Forest Ecology and Management2003,177,13:1
2Modelling Acidification and Recovery of Swedish Lakes显示文摘Filip Moldan Veronika Kronn?s Anders Wilander Erik Karltun Bernard J. Cosby 2004Water Air and Soil Pollution: Focus (-)2004,,2:1
3Comparison of soil attributes under Cupressus lusitanica and Eucalyptus saligna established on abandoned farmlands with continuously cropped farmlands and natural forest in Ethiopia 显示文摘Lemenih M Olsson M Karltun E 2004For Ecol Manage2004,195,:1
4Human, technological and organizational aspects influencing the production scheduling process显示文摘Berglund M Karltun J 2007International Journal of Production Economies2007,110,12:1
5Assessing soil chemical and physical property responses to deforestation and subsequent culti- vation in smallholders farming system in Ethiopia显示文摘Lemenih M Karltun E Olsson M 2005Agriculture Ecosystems and Environment2005,105,:1
6Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in small holders fanning system in Ethiopia 显示文摘Lemenih M Karltun E Olsson M 2005Agriculture Ecosystems & Environment2005,105,12:1
7Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in smallholders farming system in Ethiopia 显示文摘Lemenih M Karltun E Olsson M 2005Agriculture Ecosystems and Environment2005,105,12:1
8Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in smallholders forming system in Ethiopia显示文摘Lemenih M Karltun E Olsson M 2005Agriculture Ecosystems & Environment2005,105,12:1
9Long- term addition of compost and NP fertilizer increases crop yield and improves soil quality in experiments on smallholder farms 显示文摘Bedada W Karltun E Lemenih M 2014Agriculture Ecosystems and Environment2014,195,:1
10Comparison of soil attributes under Cupressus lusitanica and Eucalyptus saligna established on abandoned farmlands with continuously cropped farmlands and natural forest in Ethiopia显示文摘Lemenih M Olsson M Karltun E 2004Forest Ecology and Management2004,195,:1
11Comparison of soil attributes under Cupressus lusitaniea and Eucalyptus saligna established on abandoned farmlands with continuously cropped fannlands and natural forst in Ethiopia 显示文摘LEMENITH M OLSSON M KARLTUN E 2004Forest Ecology and Management2004,,195:1
12Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in smallholders farming system in Ethiopia 显示文摘Lemenih M Karltun E Olsson M 2005Agriculture Ecosystems and Environment2005,105,12:1
13Surface reactivity of poorly-ordered minerals in podzol B horizons 显示文摘Karltun E Bain D C Gustafsson J P 2000Geoderma2000,94,:1
14Comparison of soil attributes under Cupressus lusitanica and Eucalyptus saligna established on abandoned farmlands with continuously cropped farmland sand natural forest in Ethiopia显示文摘Lemenith M Olsson M Karltun E 2004Forest Ecology and Management2004,,195:1
15Comparison of soil attributes under Cupressus lusitanica and Eucalyptus saligna established on abandoned farmlands with continuously cropped farmlands and natural forest in Ethiopia显示文摘Mulugeta Lemenih Mats Olsson Erik Karltun 2004Forest Ecology and Management2004,,1:1
16Long -term addition of com- post and NP fertilizer increases crop yield and improves soil quality in experiments on smallholder farms 显示文摘Bedada W Karltun E Lemenih M 2014Agriculture Ecosystems &Environment2014,195,:1
17Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in smallholders farming system in Ethiopia显示文摘Mulugeta Lemenih Erik Karltun Mats Olsson 2004Agriculture, Ecosystems and Environment2004,,1:1
18Life cycle assessment of urban uses of biochar and case study in Uppsala,Sweden显示文摘Biochar is a material derived from biomass pyrolysis that is used in urban applications.The environmental impacts of new biochar products have however not been assessed.Here,the life cycle assessments of 5 biochar products(tree planting,green roofs,landscaping soil,charcrete,and biofilm carrier)were performed for 7 biochar supply-chains in 2 energy contexts.The biochar products were benchmarked against reference products and oxidative use of biochar for steel production.Biochar demand was then estimated,using dynamic material flow analysis,for a new city district in Uppsala,Sweden.In a decarbonised energy system and with high biochar stability,all biochar products showed better climate performance than the reference products,and most applications outperformed biomass use for decarbonising steel production.The climate benefits of using biochar ranged from−1.4 to−0.11 tonne CO_(2)-eq tonne−1 biochar in a decarbonised energy system.In other environmental impact categories,biochar products had either higher or lower impacts than the reference products,depending on biochar supply chain and material substituted,with trade-offs between sectors and impact categories.However,several use-phase effects of biochar were not included in the assessment due to knowledge limitations.In Uppsala’s new district,estimated biochar demand was around 1700 m^(3)year^(−1)during the 25 years of construction.By 2100,23%of this biochar accumulated in landfill,raising questions about end-of-life management of biochar-containing products.Overall,in a post-fossil economy,biochar can be a carbon dioxide removal technology with benefits,but biochar applications must be designed to maximise co-benefits.Elias S.Azzi Erik Karltun Cecilia Sundberg 2022Biochar2022,4,1:0
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