Land use change from C3 grassland to C4Miscanthus: effects on soil carbon content and estimated mitigation benefit after six years

Author:

Zatta Alessandro1,Clifton-Brown John2,Robson Paul2,Hastings Astley3,Monti Andrea1

Affiliation:

1. Department of Agroenvironmental Science and Technology (DiSTA); University of Bologna; viale G. Fanin 44 Bologna 40127 Italy

2. Institute of Biological; Environmental and Rural Sciences; University of Aberystwyth; Gogerddan Aberystwyth SY23 3EB UK

3. Institute of Biological &Environmental Sciences; University of Aberdeen; Aberdeen AB24 3UU UK

Publisher

Wiley

Subject

Waste Management and Disposal,Agronomy and Crop Science,Renewable Energy, Sustainability and the Environment,Forestry

Reference93 articles.

1. Changes in soil organic carbon under biofuel crops;Anderson-Teixeira;Global Change Biology Bioenergy,2009

2. Effect of extracellular-enzyme activities on solubilization rate of soil organic nitrogen;Asmar;Biology and Fertility of Soils,1994

3. Natural C-13 abundance as a tracer for studies of soil organic-matter dynamics;Balesdent;Soil Biology & Biochemistry,1987

4. Turnover of soil organic matter and of microbial biomass under C3-C4 vegetation change: consideration of 13C fractionation and preferential substrate utilization;Blagodatskaya;Soil Biology and Biochemistry,2011

5. Soil physics with BASIC: Transport models for soil-plant systems;Campbell;In: Developments in soil Science 14, pp. 1-48. Elsevier, Amsterdam, NL. ISBN 0,1985

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