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19篇 您的检索式:作者名="Alewell"
    题名 作者 年代 出处 被引量
1HRM systems between control and commitment:Occurrence, characteristics and effects on HRM outcomes and firm performance显示文摘Hauff S Alewell D Hansen N K 2014Human Resource Management Journal2014,24,4:1
2Downstream alteration of the composition and biodegradability of particulate organic carbon in a mountainous, mixed land-use watershed显示文摘Byung-Joon Jung Laurent Jeanneau Christine Alewell Bomchul Kim Ji-Hyung Park 2015Biogeochemistry2015,,1:1
3Patterns of stable S isotopes in a forested catchment as indicators for biological S turnover 显示文摘Alewell C Gehre M 1999Biogeochemistry1999,47,:1
4Spotting zones of dissimilatory sulfate reduction in a forested catchment: The ^34S-^35S approach 显示文摘Alewell C Novak M 2001Environ Pollut2001,112,:1
5Is acidification still an ecological threat 显示文摘Alewell C B Manderscheid H Meesenburg J 2000Nature2000,407,:1
6Is acidification still an ecological threat? 显示文摘Alewell C Manderscheid B Meesenburg H 2000Nat2000,407,:1
7Are there signs of acidification reversal in freshwaters of the low mountain ranges in Germany显示文摘Alewell C Armbruster M Bittersohl J 2001Hydrology and Earth System Sciences2001,5,3:1
8Effective retention of litter-derived dissolved organic carbon in organic layers显示文摘Müller M Alewell C Hagedorn F 2009Soil Biology and Biochemistry2009,41,6:1
9Soil Erodibility Estimation Using LUCAS Point Survey Data of Europe显示文摘PANAGOS P MEUSBURGER K ALEWELL C 2012Environmental Modelling & Software2012,30,:1
10Sources of stream sulfate at the Hubbard brook Experimental Forest:long-term analyses using stable isotopes显示文摘Alewell C Mitchell M J Likens G E 1999Biogeochemistry1999,44,:1
11Effective retention of litter-derived dissolved organic carbon in organic lay- ers 显示文摘Mfiller M Alewell C Hagedorn F 2009Soil Biology and Biochemistry2009,41,6:1
12Patterns of stable S isotopes in a forested catchment as indicators for biological S turnover 显示文摘Alewell C Gehre M 1999Biogeochemistry1999,47,3:1
13Spotting zones of dissimilatory sulfate reduction in a forested catchment: The ^34S-^35S approach 显示文摘Alewell C Novak M 2001Environ Pollut2001,112,3:1
14Plant-compositional effects on surface runoff and sediment yield in subalpine grass- land显示文摘Merz A Alewell C Hiltbrunner E 2009Journal of Plant Nutrition and Soil Science2009,172,6:1
15Sulphur behaviour in forest soils near the largest SO2 emitter in northern Europe 显示文摘Koptsik G Alewell C 2007Applied Geochemistry2007,22,6:1
16Trends in nitrogen deposition and leaching in acid-sensitive streams in Europe 显示文摘Wright R F Alewell C Cullen J M 2001Hydrology and Earth System Sciences2001,5,3:1
17Spotting zones of dissimilatory sulfate reduction in a forested catchment: the 34S--35S approach 显示文摘Alewell C Novak M 2001Environmental Pollution2001,112,3:1
18Stable carbon isotopes as an indicator for soil degradation in an alpine environment (Urseren Valley,Switzerland)显示文摘Schaub M Alewell C 2009Rapid Communications In Mass Spectrometry2009,23,:1
19Towards a better understanding of pathways of multiple co-occurring erosion processes on global cropland显示文摘Soil erosion is a complex process involving multiple natural and anthropic agents,causing the deterio-ration of multiple components comprising soil health.Here,we provide an estimate of the spatial pat-terns of cropland susceptibility to erosion by sheet and rill,gully,wind,tillage,and root crops harvesting and report the co-occurrence of these processes using a multi-model approach.In addition,to give a global overview of potential future changes,we identify the locations where these multiple concurrent soil erosion processes may be expected to intersect with projected dry/wet climate changes by 2070.Of a modelled 1.48 billion hectares(B ha)of global cropland,our results indicate that 0.56 B ha(-36%of the total area)are highly susceptible(classes 4 and 5)to a single erosion process,0.27 B ha(-18%of the total area)to two processes and 0.02 B ha(1.4%of the total area)to three or more processes.An estimated 0.82 B ha of croplands are susceptible to possible increases in water(0.68 B ha)and wind(0.14 B ha)erosion.We contend that the presented set of estimates represents a basis for enhancing our founda-tional knowledge on the geography of soil erosion at the global scale.The generated insight on multiple erosion processes can be a useful starting point for decision-makers working with ex-post and ex-ante policy evaluation of the UN Sustainable Development Goal 15(Life on Land)activities.Scientifically,this work provides the hitherto most comprehensive assessment of soil erosion risks at the global scale,based on state-of-the-art models.Pasquale Borrelli Christine Alewell Jae E.Yang Nejc Bezak Yixian Chen Ayele Almaw Fenta Arthur Nicolaus Fendrich Surya Gupta Francis Matthews Sirio Modugno Nigussie Haregeweyn David A.Robinson Florence Tan Matthias Vanmaercke Gert Verstraeten Diana C.S.Vieira Panos Panagos 2023International Soil and Water Conservation Research2023,11,4:0
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