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Utilisation of biomass as fuel is very attractive from the ecological point of view.
The treatment and utilisation of biomass residues and waste for energy and recycling can contribute significantly to greenhouse gas emission reduction.
The utilisation of biomass in coal-fired power plants can mitigate CO2 emissions, especially when combined with carbon capture and storage (CCS) technologies, such as oxy-fuel combustion.
Utilisation of biomass that have potential to be converted into various forms of valuable products (i.e. energy, biochemical and value-added products) is a promising way to deal with the increasing amount of agriculture residues.
In each of the four fields, strategically important challenges for future research are identified including the use of advanced mathematical models and multi-criteria analysis for the optimisation, from the sustainability point of view, of the systems for energy and water supply and management, solid waste management and the utilisation of biomass resources.
While the utilisation of biomass as feedstock for biofuel production has been well reported in the literature the poor economic performance of such 'stand-alone' systems has led to attempts to maximise value extraction via the exploration of the biorefinery concept.
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This work demonstrated possible utilisations of biomass-originated carbon-based material for thermal energy recovery and storage applications, which can be a new route of carbon capture and utilisation.
The various catalytic methodologies for the utilisation of renewable biomass for the sustainable production of liquid fuels and commodity chemicals are reviewed.
The chapter concludes with a short discussion on future perspectives for the utilisation of lignocellulosic biomass and coal as energy vectors.
Biofuels offer the potential to substitute for a large proportion of fossil fuels, however it is considered that the utilisation of lignocellulosic biomass, via second-generation biorefining technologies, will be necessary for this to be achieved economically and sustainably.
The utilisation of microalgal biomass as feedstock for bioethanol production has been very promising owing to the large amounts of carbohydrates embedded in the physiology of the microalgal cell.
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