Bioenergy and Biochar: Repurposing Waste to Sustainable Energy and Materials

Dear Colleagues,All types of biomass, and their waste, comprised one the pillars of the preindustrial,pre-fossil fuel, agriculture-based economies of the past. Traditionalpractices of biomass waste management were applied, but not necessarily in asophisticated and efficient way, and included everyth...

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Other Authors: Kalderis, Dimitrios (Editor), Skoulou, Vasiliki (Editor)
Format: Book Chapter
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
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100 1 |a Kalderis, Dimitrios  |4 edt 
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245 1 0 |a Bioenergy and Biochar: Repurposing Waste to Sustainable Energy and Materials 
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300 |a 1 electronic resource (180 p.) 
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520 |a Dear Colleagues,All types of biomass, and their waste, comprised one the pillars of the preindustrial,pre-fossil fuel, agriculture-based economies of the past. Traditionalpractices of biomass waste management were applied, but not necessarily in asophisticated and efficient way, and included everything from agricultural activitiesto food production, animal feed, natural fiber separation, and processingof forest wood. The modern bioeconomy sector, however, includes new circulareconomy energy and materials streams of added-value products, such asgaseous, liquid and solid biofuels and bioenergy generation routes, and biocharproduction, along with all the previously mentioned traditional products emergingfrom the bioeconomy.This Special Issue includes some of the latest bioenergy and biochar advancementsand their incorporation into a bioeconomy in transition. It focuses onnature, properties, upgrading, and bioenergy generation processes from all typesof biomass waste and biochars originating from biomass waste. The multidisciplinarityof bioenergy and biochar research is evident throughout the SpecialIssue, highlighting the highly variable and tunable processes involved inbiomass handling, pre-processing, converting to biochar, and recovering energy.Dr. Dimitrios KalderisGuest EditorDr. Vasiliki Skoulouco-Guest Editor 
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650 7 |a Research & information: general  |2 bicssc 
650 7 |a Technology: general issues  |2 bicssc 
653 |a ethanol 
653 |a lignocellulosic biomass 
653 |a life cycle assessment 
653 |a GHG emissions 
653 |a political incentives 
653 |a economic performance 
653 |a amino acid wastes 
653 |a biofuels 
653 |a microbial lipids 
653 |a Rhodosporidium toruloides 
653 |a two-stage culture 
653 |a fixed bed 
653 |a pyrolysis yield 
653 |a temperature 
653 |a coconut shell 
653 |a characterization 
653 |a SEM 
653 |a Mitigation of CO2-equiv. 
653 |a nutrient release 
653 |a rice paddy water and soil system 
653 |a slow-release fertilizer 
653 |a coconut wastes 
653 |a bioenergy resource 
653 |a pollutant emissions 
653 |a calorific value 
653 |a biocharing 
653 |a microalgae 
653 |a anaerobic digestion 
653 |a biogas 
653 |a respirometric reactors 
653 |a APSIM sugarcane model 
653 |a energy potential 
653 |a marginal land 
653 |a sensitivity analysis 
653 |a hydrochar 
653 |a hydrothermal carbonization 
653 |a CiteSpace 
653 |a scientometric analysis 
653 |a artificial neural network 
653 |a fly ash 
653 |a biomass combustion 
653 |a fluidized bed boilers 
653 |a acute phytotoxicity test 
653 |a mineral fertilizer 
653 |a BCR sequential extraction 
653 |a metal speciation 
653 |a starch 
653 |a biochar 
653 |a coffee waste 
653 |a polycaprolactone 
653 |a bioplastics 
653 |a biodegradation 
653 |a fermentable sugar 
653 |a enzymatic hydrolysis 
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