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The discs were produced in a multistep manner from a precursor based on hydrothermally treated beer waste (HTC-BW).
The mesoporous biocarbon coated Li3V2(PO4)3 (MBC-LVP) cathode material is synthesized by a biotemplate-assisted sol gel reaction process using low-cost beer waste brewing yeasts (BWBYs) as both structural template and biocarbon source.
Figure 2 SEM images of the biochar obtained by HTC conversion of beer waste.
The solid beer waste sample, generated by filtration just before the filling step of the beer bottles, was directly collected from the Almaza Brewery in Lebanon.
This analysis is in agreement with the reported composition of beer waste [25, 26]. Figure 1 1 H NMR spectrum of the fraction of solid beer wastes soluble in D 2 O.
The soluble fraction of the used beer waste was characterized by 1H nuclear magnetic resonance (NMR) using a Bruker Advance 300-MHz NMR spectrometer (Madison, WI, USA), using D2O as reference solvent.
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Carbon nanoparticles were synthesized from beer wastes by a hydrothermal carbonization process.
We develop a process based on the hydrothermal carbonization of Lebanese beer wastes to produce carbon-based nanoparticles (NPs).
Hydrothermal carbonization process of beer wastes (Almaza Brewery) yields a biochar and homogeneous carbon-based nanoparticles (NPs).
Beer wastes were obtained from Almaza Brewery (Heineken International, Beirut, Lebanon), rated as the first brewery in Lebanon since 1933.
A suspension of beer wastes particles in aqueous citric acid was used as starting solution for the hydrothermal carbonization process.
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