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354篇 您的检索式:作者名="Paustian"
    题名 作者 年代 出处 被引量
1Soil macroaggregate turnover and microaggregate formation: a mechanism for C sequestration under no-tillage agriculture显示文摘J Six E.T Elliott K Paustian 2000Soil Biology and Biochemistry2000,,14:3
2Stabilization mechanisms of soil organic matter: Implications for C-saturation of soils显示文摘J. Six R. T. Conant E. A. Paul K. Paustian 2002Plant and Soil2002,,2:3
3The Role of Synthetic Biology in Atmospheric Greenhouse Gas Reduction: Prospects and Challenges显示文摘The long atmospheric residence time of CO2 creates an urgent need to add atmospheric carbon drawdown to CO2 regulatory strategies.Synthetic and systems biology(SSB),which enables manipulation of cellular phenotypes,offers a powerful approach to amplifying and adding new possibilities to current land management practices aimed at reducing atmospheric carbon.The participants(in attendance:Christina Agapakis,George Annas,Adam Arkin,George Church,Robert Cook-Deegan,Charles DeLisi,Dan Drell,Sheldon Glashow,Steve Hamburg,Henry Jacoby,Henry Kelly,Mark Kon,Todd Kuiken,Mary Lidstrom,Mike MacCracken,June Medford,Jerry Melillo,Ron Milo,Pilar Ossorio,Ari Patrinos,Keith Paustian,Kristala Jones Prather,Kent Redford,David Resnik,John Reilly,Richard J.Roberts,Daniel Segre,Susan Solomon,Elizabeth Strychalski,Chris Voigt,Dominic Woolf,Stan Wullschleger,and Xiaohan Yang)identified a range of possibilities by which SSB might help reduce greenhouse gas concentrations and which might also contribute to environmental sustainability and adaptation.These include,among other possibilities,engineering plants to convert CO2 produced by respiration into a stable carbonate,designing plants with an increased root-to-shoot ratio,and creating plants with the ability to self-fertilize.A number of serious ecological and societal challenges must,however,be confronted and resolved before any such application can be fully assessed,realized,and deployed.Charles DeLisi Aristides Patrinos Michael MacCracken Dan Drell George Annas Adam Arkin George Church Robert Cook-Deegan Henry Jacoby Mary Lidstrom Jerry Melillo Ron Milo Keith Paustian John Reilly Richard J.Roberts Daniel Segrè Susan Solomon Dominic Woolf Stan D.Wullschleger Xiaohan Yang 2020BioDesign Research2020,,1:2
4Soil macroaggregate turnover and microaggregate formation: a mechanism for C sequestration under no-tillage agriculture显示文摘J Six E.T Elliott K Paustian 2000Soil Biology and Biochemistry2000,,14:2
5Carbon and nitrogen budgets of four agro-ecosystems with annual and perennial crops, with and without N fertilization显示文摘Paustian K Andren O Clarholm M 1990Journal of Ap- plied Ecology1990,27,1:1
6Soil carbon pools and fluxes in lung-term corn belt agroeeosystems 显示文摘COLLINS H P ELLIOTT E T PAUSTIAN K 2000Soil Biology and Biochemistry2000,32,2:1
7Aggregate and soil organic matter dynamics under conventional and no-tillage systems显示文摘Six J Elliott ET Paustian K 1999Soil Sci Soc Am J1999,63,5:1
8Potential soil carbon sequestration in a semiarid Mediterranean agroecosystem under climate change: Quantifying management and climate effects显示文摘Alvaro-Fuentes J Paustian K 2011Plant and soil2011,338,12:1
9Expression library immunization confers protection against Cryp tosporidium parvum显示文摘HUNTLEY J F STABEL J R PAUSTIAN M L 2005Infect Immunt2005,73,10:1
10Soil macroaggregate turnover and microaggregate formation: A mechanism for C sequestration under no-tillage agriculture 显示文摘SIX J ELLIOTT E T PAUSTIAN K 2000Soil Biology and Biochemistry2000,32,14:1
11Agricultural manage -ment impacts on soilorganic carbon storage under moist and dry climatic conditions of temperate and tropical regions 显示文摘Ogle S M Breid F J Paustian K 2005Biogeo chemistry2005,72,:1
12Soil macroaggregate turnover and microaggregate formation: A mechanism for C sequestration under no-tillage agriculture显示文摘Six J Eliiott E T Paustian K 2000Soil Biology and Biochemistry2000,32,14:1
13Aggregation and soil organic matter accumulation in cultivated and native grassland soils显示文摘SIX J ELLIOTT E T PAUSTIAN K 1998Soil Science Society of America1998,62,5:1
14Aggregation and soil organic matter accumulation in cultivated and native grassland soils 显示文摘Six J Elliott E T Paustian K 1998Soil Science Society of America Journal1998,62,:1
15Where did all the nitrogen go? Fate of nitrogen inputs to large watersheds in the northeastern U.S.A.显示文摘N van Breemen E.W. Boyer C.L. Goodale N.A. Jaworski K. Paustian S.P. Seitzinger K. Lajtha B. Mayer D. van Dam R.W. Howarth K.J. Nadelhoffer M. Eve G. Billen 2002Biogeochemistry2002,,1:1
16Aggregation and soil organic matter accumulation in cultivated and native grassland soils显示文摘Six J Elliott E T Paustian K 1998Soil Science Society of America Journal1998,62,:1
17Soil macroaggregate turnoverand microaggregate formation:A mechanism for Csequestration under no-tillage agriculture显示文摘Six J Elliott ET Paustian K 2000Soil Biologyand Biochemistry2000,32,20:1
18Optimal monetary policy in a model with agency costs显示文摘Carlstrom C T Fuerst T S Paustian M 2010Journal of Money Credit and Banking2010,,:1
19Bacterial and fungal abundance and biomass in conventional and no-tillage agroecosystems along two climatic gradients显示文摘Frey S D Elliott E T Paustian K 1999Soil Biology & Biochemistry1999,31,:1
20Management option for reducing CO2 emission from agricultural soil 显示文摘Paustian K Six J Elliot E T etal 2000Biogeochemistry2000,48,:1
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