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dc.contributor.author Medina, J
dc.contributor.author Monreal, CM
dc.contributor.author Antilén, M
dc.contributor.author Calabi-Floody, M
dc.contributor.author Velasco-Molina, M
dc.contributor.author Meier, S
dc.contributor.author Borie, F
dc.contributor.author Cornejo, P
dc.contributor.author Knicker, H
dc.date.accessioned 2024-01-17T15:54:43Z
dc.date.available 2024-01-17T15:54:43Z
dc.date.issued 2020
dc.identifier.uri https://repositorio.uoh.cl/handle/611/601
dc.description.abstract Metallic oxides and clay minerals have gained increasing interest as additives of composting due to their influence in greenhouse gas emissions reduction and their effectivity in the stabilization of carbon both in compost and soils, leading to a cleaner compost production and potentially C sequestrant amendments. In this study, wheat straw (WS) was co-composted with iron oxide and allophanic soil and their influence on WS composting and composition of the end-products was evaluated. WS compost and their humic like-substances (HS) fraction were characterized by chemical and spectroscopic analyzes. After 126 days of process, the elemental composition showed slight differences of the N content for compost and HS, where the C/N atomic ratio tended to decrease relative to the initial material (WS; similar to 130). This trend was more pronounced in the HS from co-composted treatments (<30). The addition of inorganic materials increased the total acidity and phenolic-OH group contents (similar to 15 and 14 mEq g(-1) respectively, iron oxide treatment) relative to the treatment without inorganic additives. Nevertheless, the FTIR and solid-state (CNMR)-C-13 spectroscopy barely support the wet chemical analysis and revealed a similar final composition between all the studied compost treatments. These results suggest that the incorporation of these materials as compost additives had no major effect on the spectroscopic features of the end-products, however, critical changes of the properties such as the extractability, functionality and composition of HS were revealed by traditional methods. In conclusion, the supply of metal oxides and clays could impact the aerobic composting of WS favorizing the stabilization of certain C pools and adsorptive properties of the endproducts, that is of importance in production of amendments suitable for being used in degraded and contaminated soils. Nevertheless, under the experimental conditions of our research C stabilization apparently depends of other mechanisms that still need to be elucidate.
dc.description.sponsorship Comision Nacional de Investigacion Cientlfica y Tecnologica (CONICYT-Chile)
dc.description.sponsorship Ministerio de Ciencia, Innovacion y Universidades of Spain(Spanish Government)
dc.description.sponsorship European Regional Development Fund(European Union (EU))
dc.description.sponsorship CONICYT(Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT))
dc.relation.uri http://dx.doi.org/10.1016/j.jenvman.2020.110137
dc.subject Clay minerals
dc.subject co-composting
dc.subject Metallic oxides
dc.subject Waste management
dc.subject Wheat straw
dc.title Influence of inorganic additives on wheat straw composting: Characterization and structural composition of organic matter derived from the process
dc.type Artículo
uoh.revista JOURNAL OF ENVIRONMENTAL MANAGEMENT
dc.identifier.doi 10.1016/j.jenvman.2020.110137
dc.citation.volume 260
dc.identifier.orcid Velasco-Molina, Marta/0000-0002-8149-1280
dc.identifier.orcid Calabi-Floody, Marcela/0009-0009-8917-8465
dc.identifier.orcid Cornejo, Pablo/0000-0003-2124-3100
dc.identifier.orcid Knicker, Heike/0000-0002-0483-2109
dc.identifier.orcid Antilen-Lizana, Monica/0000-0003-0512-4267
dc.identifier.orcid Meier, Sebastian/0000-0003-3491-5367
uoh.indizacion Web of Science


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