Evaluation of effect of soil organic matter on pores by1H time-domain magnetic resonance relaxometry and adsorption-desorption of N2

Author:

Benito P.1,Bortolotti V.23,Fornasari G.1,Vannini M.23

Affiliation:

1. Department of Industrial Chemistry ‘Toso Montanari’; University of Bologna; 4 Viale del Risorgimento Bologna Italy

2. DICAM, Department of Civil, Chemical, Environmental and Materials Engineering; University of Bologna; 28 Via Terracini Bologna Italy

3. Operative Unit ‘Industrial Ecodesign, Waste Recycle and Life Cycle of Products’, Interdepartmental Centre of Industrial Research ‘Energy and Environment’; 22 Via Anghera' Rimini Italy

Funder

CIRI Energy and Environment

Publisher

Wiley

Subject

Soil Science

Reference39 articles.

1. Nanoporosity characteristics of some natural clay minerals and soils;Aringhieri;Clays & Clay Minerals,2004

2. Proton nuclear magnetic resonance (NMR) relaxometry in soil science applications;Bayer;The Open Magnetic Resonance Journal,2010

3. Macropores and water flow in soils revisited;Beven;Water Resources Research,2013

4. Magnetic resonance analysis of carbon content in paper mill sludge-soil mixtures used in remediation practices;Bonoli;International Journal of Environmental Science and Technology,2015

5. Ceramic microstructure detected by NMR relaxation and imaging of fluids in the pores;Borgia;Magnetic Resonance Imaging,1996

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