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During the energy generation process, the initially captured CO2 is again released. As a result, the CO2 that the biomass absorbed during its life is, to a large extent, set off against the CO2 that is emitted during the process of creating energy.
If crop renewal cycles are respected - i.e. meaning, with respect to wood for example, that sustainable forest management is implemented whereby cut trees are gradually replaced - biomass is a sustainable feedstock.
Biomass can be used in such a way that it is one of the most cost competitive sources of renewable energy, since the technology that is required to convert biomass into energy is fairly well established, meaning that it has overcome most technical challenges.
Unlike other renewable energy sources, such as wind or solar, biomass can be fed to the renewable energy plant in a fairly steady and predictable manner, provided that the project is managed in such a way that a certain volume of biomass is sourced from, or stored in, the immediate vicinity of the power plant and/or that the remaining required volumes of biomass are supplied from other sources in a regular and reliable manner.
Biomass products in general, and wood related biomass in particular, are non-toxic, non-allergenic and respectful of the users’ health. When (clean) biomass biodegrades or is converted into energy, the residues of its transformation present a low risk for water or soil pollution.
As a rule, anywhere where there is human activity, there is biomass. With respect to wood, for instance, human activity leads inevitably to wood waste. The wide availability of the resource is a key factor for the future growth of power plants that rely on it.
Bulk Quantity for industrial use