Activated carbon from pyrolysis of brewer’s spent grain: Production and adsorption properties

Author:

Vanreppelen Kenny12,Vanderheyden Sara1,Kuppens Tom3,Schreurs Sonja2,Yperman Jan1,Carleer Robert1

Affiliation:

1. Research Group of Analytical and Applied Chemistry, Hasselt University, Diepenbeek, Belgium

2. Research Group of Nuclear Technology, Hasselt University, Diepenbeek, Belgium

3. Research Group of Environmental Economics, Agoralaan Hasselt University, Diepenbeek, Belgium

Abstract

Brewer’s spent grain is a low cost residue generated by the brewing industry. Its chemical composition (high nitrogen content 4.35 wt.%, fibres, etc.) makes it very useful for the production of added value in situ nitrogenised activated carbon. The composition of brewer’s spent grain revealed high amounts of cellulose (20.8 wt.%), hemicellulose (48.78 wt.%) and lignin (11.3 wt.%). The fat, ethanol extractives and ash accounted for 8.17 wt.%, 4.7 wt.% and 3.2 wt.%, respectively. Different activated carbons were produced in a lab-scale pyrolysis/activation reactor by applying several heat and steam activation profiles on brewer’s spent grain. Activated carbon yields from 16.1 to 23.6 wt.% with high N-contents (> 2 wt.%) were obtained. The efficiency of the prepared activated carbons for phenol adsorption was studied as a function of different parameters: pH, contact time and carbon dosage relative to two commercial activated carbons. The equilibrium isotherms were described by the non-linear Langmuir and Freundlich models, and the kinetic results were fitted using the pseudo-first-order model and the pseudo-second-order model. The feasibility of an activated carbon production facility (onsite and offsite) that processes brewer’s spent grain for different input feeds is evaluated based on a techno-economic model for estimating the net present value. Even though the model assumptions start from a rather pessimistic scenario, encouraging results for a profitable production of activated carbon using brewer’s spent grain are obtained.

Publisher

SAGE Publications

Subject

Pollution,Environmental Engineering

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3. Deconinck D, Capon L, Clerinx B, Couder J (2001) Indicatoren voor duurzame ontwikkeling in de Belgische Industrie. T. e. C. A. DWTC Federale Diensten voor Wetenschappelijke. Belgium, POD Wetenschapsbeleid, 74.

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