1 |
Assessing the Importance of Pyrolysis Process Conditions and Feedstock Type on the Combustion Performance of Agricultural-Residue-Derived Chars Manya JJ, Alvira D, Videgain M, Duman G, Yanik J Energy & Fuels, 35(4), 3174, 2021 |
2 |
Biochar production through slow pyrolysis of different biomass materials: Seeking the best operating conditions Manya JJ, Azuara M, Manso JA Biomass & Bioenergy, 117, 115, 2018 |
3 |
Ultra-microporous adsorbents prepared from vine shoots-derived biochar with high CO2 uptake and CO2/N-2 selectivity Manya JJ, Gonzalez B, Azuara M, Arner G Chemical Engineering Journal, 345, 631, 2018 |
4 |
Effects of Pressure and the Addition of a Rejected Material from Municipal Waste Composting on the Pyrolysis of Two-Phase Olive Mill Waste Manya JJ, Alvira D, Azuara M, Bernin D, Hedin N Energy & Fuels, 30(10), 8055, 2016 |
5 |
Influence of pressure and temperature on key physicochemical properties of corn stover-derived biochar Azuara M, Baguer B, Villacampa JI, Hedin N, Manya JJ Fuel, 186, 525, 2016 |
6 |
Pyrolysis and char reactivity of a poor-quality refuse-derived fuel (RDF) from municipal solid waste Manya JJ, Garcia-Ceballos F, Azuara M, Latorre N, Royo C Fuel Processing Technology, 140, 276, 2015 |
7 |
Biochar from Slow Pyrolysis of Two-Phase Olive Mill Waste: Effect of Pressure and Peak Temperature on its Potential Stability Manya JJ, Laguarta S, Ortigosa MA, Manso JA Energy & Fuels, 28(5), 3271, 2014 |
8 |
Experimental study on the effect of pyrolysis pressure, peak temperature, and particle size on the potential stability of vine shoots-derived biochar Manya JJ, Ortigosa MA, Laguarta S, Manso JA Fuel, 133, 163, 2014 |
9 |
Study on the Biochar Yield and Heat Required during Pyrolysis of Two-Phase Olive Mill Waste Manya JJ, Laguarta S, Ortigosa MA Energy & Fuels, 27(10), 5931, 2013 |
10 |
Specific Heat Capacity of Pure Water at 4.0 MPa between 298.15 and 465.65 K Manya JJ, Antal MJ, Kinoshita CK, Masutani SM Industrial & Engineering Chemistry Research, 50(10), 6470, 2011 |