1 |
Characterization of coffee (Coffea arabica) husk lignin and degradation products obtained after oxygen and alkali addition Oliveira FD, Srinivas K, Helms GL, Isern NG, Cort JR, Goncalves AR, Ahring BK Bioresource Technology, 257, 172, 2018 |
2 |
Cellulase and xylanase production at pilot scale by solid-state fermentation from coffee husk using specialized consortia: The consistency of the process and the microbial communities involved Cerda A, Mejias L, Gea T, Sanchez A Bioresource Technology, 243, 1059, 2017 |
3 |
Evaluation of the combustion behaviour and ash characteristics of biomass waste derived fuels, pine and coal in a drop tube furnace Wang GL, Silva RB, Azevedo JLT, Martins-Dias S, Costa M Fuel, 117, 809, 2014 |
4 |
Biomass briquetting and its perspectives in Brazil Felfli FF, Mesa JM, Rocha JD, Filippetto D, Luengo CA, Pippo WA Biomass & Bioenergy, 35(1), 236, 2011 |
5 |
Equilibrium, kinetics and thermodynamic of Remazol Brilliant Orange 3R dye adsorption on coffee husk-based activated carbon Ahmad MA, Rahman NK Chemical Engineering Journal, 170(1), 154, 2011 |
6 |
Use of biochar as bulking agent for the composting of poultry manure: Effect on organic matter degradation and humification Dias BO, Silva CA, Higashikawa FS, Roig A, Sanchez-Monedero MA Bioresource Technology, 101(4), 1239, 2010 |
7 |
A phenomenological energy model of biomass pyrolysis under autothermal fluidized bed conditions Suarez JA, Beaton PA, Zanzi R Energy Sources Part A-recovery Utilization and Environmental Effects, 28(8), 705, 2006 |
8 |
Physical properties of Cuban coffee husk for use as an energy source Suarez JA, Beaton PA Energy Sources, 25(10), 953, 2003 |
9 |
Coffee husk briquettes: A new renewable energy source Suarez JA, Beaton PA, Luengo CA, Felfli FF Energy Sources, 25(10), 961, 2003 |
10 |
Relationship between coffee husk caffeine degradation and respiration of Aspergillus sp LPBx in solid-state fermentation Brand D, Pandey A, Rodriguez-Leon JA, Soccol CR Applied Biochemistry and Biotechnology, 102, 169, 2002 |