1 |
Kinetic Analysis for the Catalytic Pyrolysis of Polyethylene Terephthalate Over Cost Effective Natural Catalysts Pyo SM, Hakimian H, Kim YM, Yoo KS, Park YK Applied Chemistry for Engineering, 32(6), 706, 2021 |
2 |
Design of header and coil steam generators for concentrating solar power applications accounting for low-cycle fatigue requirements Ferruzza D, Kaern MR, Haglind F Applied Energy, 236, 793, 2019 |
3 |
Impact of stabilization environment and heating rates on P84 co-polyimide/nanocrystaline cellulose carbon membrane for hydrogen enrichment Sazali N, Salleh WNW, Ismail AF, Kadirgama K, Othman FEC, Ismail NH International Journal of Hydrogen Energy, 44(37), 20924, 2019 |
4 |
A modified Arrhenius equation to predict the reaction rate constant of Anyuan pulverized-coal pyrolysis at different heating rates Du RL, Wu K, Xu DA, Chao CY, Zhang L, Du XD Fuel Processing Technology, 148, 295, 2016 |
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Preparation and Characterization of Carbon Fibers from Polyacrylonitrile Precursors Hanna SB, Yehia AA, Ismail MN, Khalaf AI Journal of Applied Polymer Science, 123(4), 2074, 2012 |
6 |
Smart heating profiles for the synthesis of benzene bridged periodic mesoporous organosilicas Smeulders G, Van Oers CJ, Van Havenbergh K, Houthoofd K, Mertens M, Martens JA, Bals S, Maes BUW, Meynen V, Cool P Chemical Engineering Journal, 175, 585, 2011 |
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Influence of Cu substrate surface oxides and heating rates during reflow on melting point of Sn-3.5Ag solder Mittal J, Lin YW, Lin KL Applied Surface Science, 256(11), 3531, 2010 |
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Oxidation of aluminum powders at high heating rates Schoenitz M, Patel B, Agboh O, Dreizin EL Thermochimica Acta, 507-08, 115, 2010 |
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The influence of heating rates on organic matter in laboratory and natural environments Murchison D International Journal of Coal Geology, 67(3), 145, 2006 |
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Thermokinetic behavior of powdered phenol-formaldehyde (PPF) resins Park BD, Wang XM Thermochimica Acta, 433(1-2), 88, 2005 |