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- W2189518848 abstract "The novel concepts of Enhanced Waste Management (EWM) and Enhanced Landfill Mining (ELFM) intend to place landfilling of waste in a sustainable context. 1,2 In the ELFM vision, a landfill is no longer considered a final solution but rather a temporary storage place awaiting further valorisation. ELFM offers the opportunity to select the most suitable moment to valorise – either as materials (Waste-to-Product, WtP) or as energy (Waste-to-Energy, WtE) – certain waste streams, depending for instance on the state of the technology. The ELFM concept envisages a major shift in both waste management vision and waste management technology. Therefore, its success not only depends on technological improvements and breakthroughs, but also on surmounting a multitude of socio-economic barriers (i.e. regulations, social acceptance, economic uncertainty and feasibility). The ELFM approach includes the combined valorisation of landfill waste as both materials (WtP) and energy (WtE), and incorporates the goal to prevent CO2 and pollutants emissions during these valorisation processes. The present paper reviews thermochemical technologies for energetic valorisation of calorific waste streams (WtE), with focus on municipal solid waste (MSW), possibly processed into refuse derived fuel (RDF). This review summarises the technological approaches that have been developed, presents some of the basic principles, provides details of some specific processes (more emphasis is put on new advanced technologies, such as plasma technology), and concludes with a comparison between the different technologies, stressing factors affecting their applicability and operational suitability." @default.
- W2189518848 created "2016-06-24" @default.
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- W2189518848 date "2010-10-01" @default.
- W2189518848 modified "2023-09-25" @default.
- W2189518848 title "Waste-to-Energy through thermochemical processes: matching waste with process" @default.
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