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Fuel (Guildford), ISSN 0016-2361, 2019, Volume 242, pp. 828 - 836
The KOH-capture reaction by coal fly ash at suspension-fired conditions was studied through entrained flow reactor (EFR... 
Coal fly ash | Potassium capture | Additive | Biomass combustion | KOH | TRANSFORMATION | ENERGY & FUELS | CHLORINE | RELEASE | ADDITIVES | KAOLIN | ENGINEERING, CHEMICAL | SCR CATALYSTS | STRAW | DEACTIVATION | Clay | Biomass energy | Combustion | Organic chemistry | Fly ash | Aluminum | Coal | Silicon | Brownfields | Diffusion | Equilibrium | Kaolin | Electrons | Potassium aluminum silicates
Journal Article
Journal of cleaner production, ISSN 0959-6526, 2016, Volume 119, pp. 99 - 107
Journal Article
Fuel processing technology, ISSN 0378-3820, 2017, Volume 167, pp. 92 - 98
In Japan, the quantity of incineration fly ash discharged from biomass power plants has increased rapidly due to the feed-in tariff established by the Japanese government... 
Coal fly ash | Cesium adsorption capacity | Hydrothermal treatment | Zeolite | Biomass incineration ash | CRYSTALLIZATION | INDUSTRY | ENERGY & FUELS | MERLINOITE | WOOD ASH | ADSORPTION | ENGINEERING, CHEMICAL | PHASE | WASTE | REMOVAL | GASIFICATION | FERTILIZER | CHEMISTRY, APPLIED | Adsorption | Electric power-plants | Biomass energy | Zeolites | Power plants
Journal Article
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2016, Volume 318, pp. 631 - 640
Journal Article
Fuel (Guildford), ISSN 0016-2361, 2014, Volume 134, pp. 293 - 306
...), to reduce NOx emission, improve the quality of fly ash and result in 1-3% coal savings for pulverised coal combustion... 
Fly ash | Additive | Combustion efficiency | NOx | Coal | MECHANISM | ENERGY & FUELS | NOx, Additive | IRON | ENGINEERING, CHEMICAL | BIOMASS | CHEMISTRY | FLUIDIZED-BED | NITROGEN-OXIDES | PYROLYSIS | Nitrogen oxide | Combustion | Fossil fuels | Air quality management | Energy minerals
Journal Article
Journal of Cleaner Production, ISSN 0959-6526, 06/2016, Volume 124, pp. 395 - 404
In this work novel, porous biomass fly ash-containing geopolymers with high pH buffer capacity and tailored alkalis leaching were produced by using hydrogen peroxide as blowing agent... 
Biomass fly ash | Porosity | Lightweight geopolymer | Buffer capacity | RATIOS | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | ENVIRONMENTAL SCIENCES | ACTIVATION | ENGINEERING, ENVIRONMENTAL | TILES | METAKAOLIN | WATER | Waste management | Hydrogen peroxide | Hydrogen-ion concentration | Leaching | Refuse and refuse disposal | Regulators | Alkalis | Biomass | Buffers | Blowing agents
Journal Article
Progress in energy and combustion science, ISSN 0360-1285, 2018, Volume 65, pp. 109 - 135
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2009, Volume 172, Issue 2-3, pp. 1049 - 1060
This paper presents results about the characterisation of the biomass fly ashes sourced from a thermal power plant and from a co-generation power plant located in Portugal, and the study of new cement... 
Biomass fly ash | Mortars | Cements | Recycling | ENVIRONMENTAL SCIENCES | WASTE | COMBUSTION | BAGASSE ASH | ENGINEERING, ENVIRONMENTAL | SYSTEMS | HYDRATION | Silicon Dioxide - analysis | Aluminum Oxide - analysis | Construction Materials - analysis | Power Plants | Particulate Matter - chemistry | Coal Ash | Environmental Pollution | Biomass | Portugal | Carbon - chemistry | Ferric Compounds - analysis | Cogeneration power plants | Lime | Alkalies | Analysis | Fluorescence | X-ray spectroscopy | Mortars (Ordnance) | Mica
Journal Article