Search results for "T1 NMR relaxometry"

showing 2 items of 2 documents

Thermal transformation of micro-crystalline cellulose in phosphoric acid

2011

Use of crude oil derivatives such as diesel and gasoline is becoming unsuitable due to their detriment to environment and to the increasing worldwide energy demand which is driving crude oil reservoirs towards exhaustion. Replacement of diesel and gasoline with biofuels (i.e. biodiesel and bioethanol, respectively) is very desirable. In fact, biofuels are not only environmentally sustainable, but also potentially inexhaustible due to the large amounts of waste biomasses from which they can be retrieved. In the present study, a model compound (micro-crystalline cellulose) was dissolved in phosphoric acid and converted at 80 °C to glucose, thereby providing the possible substrate for fermenta…

Biodiesel13C NMRMaterials sciencePolymers and PlasticsSettore AGR/13 - Chimica AgrariaBioethanol1H T1 NMR relaxometryPulp and paper industrycomplex mixtureschemistry.chemical_compoundDiesel fuelCellulose degradationchemistryBiochemistryBiofuelBiofuelLevulinic acidFermentationGasolineCellulosePhosphoric acid
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Adsorption of dissolved organic matter on clay minerals as assessed by infra-red, CPMAS 13C NMR spectroscopy and low field T1 NMR relaxometry

2011

Abstract Dissolved organic matter (DOM) is a very important environmental constituent due to its role in controlling factors for soil formation, mineral weathering and pollutant transport in the environment. Prediction of DOM physical–chemical properties is achieved by studying its chemical structure and spatial conformation. In the present study, dissolved organic matter extracted from compost obtained from the organic fraction of urban wastes (DOM-P) has been analysed by FT-IR, CPMAS 13C NMR spectroscopy and 1H T1 NMR relaxometry with fast field cycling (FFC) setup. While the first two spectroscopic techniques revealed the chemical changes of dissolved organic matter after adsorption eith…

T1 NMR relaxometryRelaxometryMineralCompostDOM; CPMAS 13C NMR; T1 NMR relaxometrySettore AGR/13 - Chimica Agrariaengineering.materialFT-IRchemistry.chemical_compoundMontmorilloniteAdsorptionchemistryGeochemistry and PetrologyEnvironmental chemistryDissolved organic carbonCPMAS 13C NMRengineeringOrganic chemistryKaoliniteDissolved organic matterRelaxometryClay mineralsDOMOrganic Geochemistry
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