1 |
Changes in composition and lead speciation due to water washing of air pollution control residue from municipal waste incineration Bogush AA, Stegemann JA, Roy A Journal of Hazardous Materials, 361, 187, 2019 |
2 |
Design of dynamic plant model and model-based controller for a heat recovery system with a swirling flow incinerator Cho J, Kim Y, Song J, Lee TK, Song HH Energy, 147, 1016, 2018 |
3 |
Dynamic simulation of a municipal solid waste incinerator Alobaid F, Al-Maliki WAK, Lanz T, Haaf M, Brachthauser A, Epple B, Zorbach I Energy, 149, 230, 2018 |
4 |
Behavior of heavy metals in air pollution control devices of 2,400 kg/h municipal solid waste incinerator Ahmad T, Park JM, Keel SI, Yun JH, Lee UD, Kim YW, Lee SS Korean Journal of Chemical Engineering, 35(9), 1823, 2018 |
5 |
PAH emissions from coal combustion and waste incineration Hsu WT, Liu MC, Hung PC, Chang SH, Chang MB Journal of Hazardous Materials, 318, 32, 2016 |
6 |
AN EVALUATION OF PCDD/FS MASS FLUX FROM A HAZARDOUS WASTE INCINERATOR: THE NEED FOR A REASONABLE START-UP PROCEDURE Korucu MK, Karademir A Combustion Science and Technology, 187(3), 458, 2015 |
7 |
Recycling of MSWI fly ash by means of cementitious double step cold bonding pelletization: Technological assessment for the production of lightweight artificial aggregates Colangelo F, Messina F, Cioffi R Journal of Hazardous Materials, 299, 181, 2015 |
8 |
Emissions of polychlorinated diphenyl ethers from a municipal solid waste incinerator during the start-up operation Yang JS, Lin SL, Lin TC, Wu YL, Wang LC, Chang-Chien GP Journal of Hazardous Materials, 299, 206, 2015 |
9 |
Mechanochemically induced synthesis of anorthite in MSWI fly ash with kaolin Wu CW, Sun CJ, Gau SH, Hong CL, Chen CG Journal of Hazardous Materials, 244, 412, 2013 |
10 |
Past and future cadmium emissions from municipal solid-waste incinerators in Japan for the assessment of cadmium control policy Ono K Journal of Hazardous Materials, 262, 741, 2013 |