Abstract
Lignocellulosic biomass is a potentially more valuable renewable resource that can be utilized effusively as a chief source of heat for cooking and can correspondingly subsi‐ dize the production of electricity, heat, biofuels and chemicals including solid fuel like char or carbon. Lignocellulosic residues are mixed and burnt with coal to generate elec‐ tricity. Presently, crude oil is replaced by bioethanol and biodiesel produced from bio‐ mass substrate. Some special class of chemicals can be derived from biomass that can subsequently replace the usage of non‐renewable resources of oil and coal. Pyrolysis of woody biomass to obtain pyroliginous acid was started hundreds of years ago, which has versatile applications. The range of products that can be derived from biomass is huge, prompting extent of research using different types of thermal conversion technologies, including pyrolysis, gasification, torrefaction, anaerobic digestion and hydrothermal pro‐ cessing. This chapter provides insights about the stages of reaction during pyrolysis and the outcome of reaction conditions on the products. Technical development and adjust‐ ment of process condition can offer a suitable environmentally benign scheme to increase the energy density of the lignocellulosic residues. Keywords:
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CITATION STYLE
Zaman, C. Z., Pal, K., Yehye, W. A., Sagadevan, S., Shah, S. T., Adebisi, G. A., … Johan, R. B. (2017). Pyrolysis: A Sustainable Way to Generate Energy from Waste. In Pyrolysis. InTech. https://doi.org/10.5772/intechopen.69036
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