Publikasjoner
NIBIOs ansatte publiserer flere hundre vitenskapelige artikler og forskningsrapporter hvert år. Her finner du referanser og lenker til publikasjoner og andre forsknings- og formidlingsaktiviteter. Samlingen oppdateres løpende med både nytt og historisk materiale. For mer informasjon om NIBIOs publikasjoner, besøk NIBIOs bibliotek.
2022
Forfattere
Jane Uhd Jepsen James David Mervyn Speed Gunnar Austrheim Graciela Rusch Tanja Kofod Petersen Johan Asplund Jarle W. Bjerke Anne Elisabeth Bjune Nina Elisabeth Eide Ivar Herfindal Rolf Anker Ims Markus Fjellstad Israelsen Jutta Kapfer Anders Lorentzen Kolstad Jenni Nordén Brett Sandercock Jenny Stien Ole Einar Ellingbø Tveito Nigel YoccozSammendrag
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Forfattere
Joyce Machado Nunes Romeiro Tron Haakon Eid Clara Antón-Fernández Annika Kangas Erik TrømborgSammendrag
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Forfattere
Yeqing Li Xingru Yang Mingyu Zhu Liming Dong Hao Jiang Quan Xu Hongjun Zhou Yongming Han Lu Feng Chengfei LiSammendrag
The amount of lignocellulose biomass and sludge is enormous, so it is of great significance to find a treatment combining the two substances. Co-hydrothermal carbonization (Co-HTC) has emerged as an efficient approach to dispose sludge. However, the improvement of sludge upgrading and combustion performance remains an important challenge during the Co-HTC of sludge. In this work, the Co-HTC of sludge and Fenton's reagent at different mixing ratios was proposed to achieve sludge reduction. Moreover, the addition of two kinds of biomass improved the adsorption capacity and combustion performance of hydrochars. When sludge and sawdust were the Co-HTC at the mass ratio of 1:3, the liquid phase Pb concentration decreased notably to 18.06%. Furthermore, the adsorption capacity of hydrochars was further improved by modification, which was in accordance with pseudo-second-order kinetics. Particularly, the hydrochars derived from the Co-HTC had higher heating value (HHV) and could be used as a clean fuel. This study proposed a new technical route of combining the HTC with Fenton's reagent and lignocellulose biomass, which could be served as a cleaner and eco-friendly treatment of sludge.
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Forfattere
Håvard SteinshamnSammendrag
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Katherine Ann Gredvig NielsenSammendrag
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