Search results for " fast field cycling"

showing 4 items of 4 documents

Mechanisms of Organic Coating on the Surface of a Poplar Biochar

2017

Background: Recent studies highlighted that biochar efficiency to improve soil fertility is enhanced after it is blended with fresh organic materials. It was suggested that organic coating of inner-porous biochar surfaces acts as a kind of “glue” for plant-nutrients, thereby allowing their slow release towards plant-roots and/or microorganisms. Objective: The aim of the present study is to improve the understanding of the nature of the interactions between fresh organic matter and a poplar biochar. Method: Two fluorinated organic models were used as target molecules in order to apply heteronuclear (i.e. 19F) fast field cycling (FFC) NMR relaxometry. Results: The results suggest that organic…

ChemistrySettore AGR/13 - Chimica AgrariaOrganic Chemistry04 agricultural and veterinary sciences010501 environmental sciencesengineering.material01 natural sciencesBiochar fast field cycling fluorine NMR fluorinated compounds organic coating pyrolysis biochar relaxometryAgronomyCoatingChemical engineeringBiochar040103 agronomy & agricultureengineering0401 agriculture forestry and fisheries0105 earth and related environmental sciencesCurrent Organic Chemistry
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Nature of water-biochar interface interactions

2012

A poplar biochar obtained by an industrial gasification process was saturated with water and analyzed using fast field cycling (FFC) NMR relaxometry in a temperature range between 299 and 353 K. Results revealed that the longitudinal relaxation rate increased with the increment of the temperature. This behavior was consistent with that already observed for paramagnetic inorganic porous media for which two different relaxation mechanisms can be accounted for: outer- and inner-sphere mechanisms. The former is due to water diffusing from the closest approach distance to infinity, whereas the second is due to water interacting by nonconventional H-bonds to the porous surface of the solid materi…

Materials scienceRenewable Energy Sustainability and the EnvironmentEcologyDiffusionSettore AGR/13 - Chimica AgrariaForestryAtmospheric temperature rangebiochar char fast field cycling NMR gasification longitudinal relaxation time NMRD relaxometryChemical physicsSoil waterBiocharRelaxation (physics)CharPorosityPorous mediumWaste Management and DisposalAgronomy and Crop Science
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Changes in Physicochemical Properties of Biochar after Addition to Soil

2022

It is recognized that biochar undergoes changes when it is applied to soils. However, the mechanisms of biochar alterations are not fully understood yet. To this purpose, the present study is designed to investigate the transformations in the soil of two different biochars obtained from pyrolysis of fir-wood pellets. The production of the biochars differed for the dry and wet quenching procedures used to terminate the pyrolysis. Both biochars were applied to clay soil (26% sand, 6% silt, and 68% clay) placed into lysimeters. After water saturation and 15 days of equilibration, seeds of watercress (Lepidium sativum) were cultivated. After a further 7 weeks, the biochars were manually separat…

Settore AGR/13 - Chimica Agrariarelaxometryfast field cyclingbiocharbiochar; fast field cycling; NMR; relaxometryPlant ScienceSettore CHIM/06 - Chimica OrganicaAgronomy and Crop ScienceNMRFood ScienceSettore CHIM/02 - Chimica FisicaAgriculture; Volume 12; Issue 3; Pages: 320
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Effects of ions on water structure: a low-field (1) H T1 NMR relaxometry approach

2014

Aqueous salt solutions play an important role in nature because of their effects on environmental biogeochemical processes and on structural properties of biomolecules. Upon dissolution, salts split in ions that are solvated. Water in hydration shells is subjected to molecular motions that can be monitored by (1) H T1 NMR relaxometry. This technique allowed the evaluation of the nature of the interactions between water and ions via variable temperature experiments. Examination of relaxometry properties of aqueous solutions at variable salt concentrations allowed acknowledgement of the role played by ions in either structuring or destructuring water aggregates. A mathematical model has been …

T1kosmotrope1Hrelaxometrywaterfast field cyclingchaotropesalt solution1H; NMR; T1; chaotrope; fast field cycling; kosmotrope; relaxometry; salt solution; waterNMR
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