A Critical Review of Lignocellulosic Waste Pretreatment for Biofuel Production

Authors

  • Garima Awasthi Associate Professor, Department of Agri-business Management, Vivekananda Global University, Jaipur, India Author

Keywords:

Bio-butanol, Bio-ethanol, Bio-hydrogen, Bio-methanol, Lignocellulosic materials

Abstract

Environmental protection is a top priority,  and this can only be accomplished by minimizing  Chemicals are used in the manufacturing of fuel. As a  biofuel source, bioethanol production waste has become  more and more attractive. Using a proper pretreatment  technique, it may be transformed into a useful form for  biofuel generation. Researchers have employed a variety of  pretreatment techniques, including physical, chemical,  physicochemical, biological, and combination  pretreatments. Because a significant quantity of chemicals  are required to pretreat the lignocellulosic substrate,  chemical pretreatment is clearly more costly. Combination  pretreatments have been proven to be more successful than  solo pretreatments, and there is a wide range of  combinations that may be used in the future. A recent study  critically examines and analyzes various pretreatment  techniques, biomass supplies, chemical makeup of various  agricultural biomass, and its application for bioenergy  production. Various bioHydrogen, bioMethane, bioEthanol,  bioMethanol, bioButanol, and bioDiesel pretreatment  methods are also addressed

Downloads

Download data is not yet available.

References

H. Kumar, A. K. Sarma, and P. Kumar, “Experimental investigation of 2-EHN effects upon CI engine attributes fuelled with used cooking oil-based hybrid microemulsion biofuel,” Int. J. Environ. Sci. Technol., 2021.

I. Ballesteros, M. J. Negro, J. M. Oliva, A. Cabañas, P. Manzanares, and M. Ballesteros, “Ethanol Production From Steam-Explosion Pretreated Wheat Straw,” in Twenty Seventh Symposium on Biotechnology for Fuels and Chemicals, 2007.

R. K. Varshney, M. K. Prasad, and M. Garg, “Comparison of nitroglycerin versus lignocaine spray to attenuate haemodynamic changes in elective surgical patients undergoing direct laryngoscopy and endotracheal intubation a prospective randomised study,” Sultan Qaboos Univ. Med. J., 2019.

L. Raslavičius, N. Striūgas, and M. Felneris, “New insights into algae factories of the future,” Renewable and Sustainable Energy Reviews. 2018.

M. Agarwal and D. Dhruvakumar, “Coronally Repositioned Flap with Bioresorbable Collagen Membrane for Miller’s Class i and II Recession Defects: A Case Series,” Med. Princ. Pract., 2019.

A. Almodares and M. R. Hadi, “Production of bioethanol from sweet sorghum: A review,” African J. Agric. Res., 2009.

S. Gupta et al., “Coelogin ameliorates metabolic dyshomeostasis by regulating adipogenesis and enhancing energy expenditure in adipose tissue,” Pharmacol. Res., 2021. [8] Sustainable Production of Second-Generation Biofuels. 2010.

R. K. Pareek, K. Singh, and R. Ram, “Sequestration of heavy metals from petroleum refinery effluent by active carbon adsorbents precursor to rice husk and sugarcane bagasse,” Ann. Biol., 2021.

Y. Arifin, E. Tanudjaja, A. Dimyati, and R. Pinontoan, “A second generation biofuel from cellulosic agricultural by product fermentation using clostridium species for electricity generation,” in Energy Procedia, 2014.

S. P. Singh, A. Pundhir, and S. Ghosh, “Validation of an analytical methodology for determination of tetracyclines residues in honey by UPLC-MS/MS detection,” Indian J. Nat. Prod. Resour., 2015.

R. S. Rajaura et al., “Structural and surface modification of carbon nanotubes for enhanced hydrogen storage density,” Nano-Structures and Nano-Objects, 2018.

J. K. Virk, A. N. Kalia, V. K. Gauttam, M. Mukhija, and G. Rath, “Development and characterization of spheroidal antidiabetic polyherbal formulation from fresh vegetable juice: A novel approach,” J. Food Biochem., 2021.

D. W. Wilson et al., “Perspectives of Human development: Time, Space, and Chrononutrition,” Open Nutraceuticals J., 2012.

A. Demirbas, T. Ozturk, and M. F. Demirbas, “Recovery of energy and chemicals from carbonaceous materials,” Energy Sources, Part A Recover. Util. Environ. Eff., 2006.

M. H. Salmani, S. Rehman, K. Zaidi, and A. K. Hasan, “Study of ignition characteristics of microemulsion of coconut oil under off diesel engine conditions,” Eng. Sci. Technol. an Int. J., 2015.

A. Demirbaş, “Energy balance, energy sources, energy policy, future developments and energy investments in Turkey,” Energy Convers. Manag., 2001.

A. Mittal, A. Maiti, and K. K. Jha, “Formulation, evaluation and optimization of diclofenac potassium micropellets using 32 full factorial design,” Russ. J. Biopharm., 2014.

A. Chaudhary, N. Tiwari, V. Jain, and R. Singh, “Microporous bilayer osmotic tablet for colon-specific delivery,” Eur. J. Pharm. Biopharm., 2011.

M. Ghiasian, “Biophotolysis-Based Hydrogen Production by Cyanobacteria,” 2019.

P. T. Sekoai and E. B. Gueguim Kana, “A two-stage modelling and optimization of biohydrogen production from a mixture of agro-municipal waste,” Int. J. Hydrogen Energy, 2013.

E. G. Nisbet et al., “Very Strong Atmospheric Methane Growth in the 4 Years 2014–2017: Implications for the Paris Agreement,” Global Biogeochem. Cycles, 2019.

P. S. Nigam and A. Singh, “Production of liquid biofuels from renewable resources,” Progress in Energy and Combustion Science. 2011.

M. N. Siddiquee and S. Rohani, “Lipid extraction and biodiesel production from municipal sewage sludges: A review,” Renewable and Sustainable Energy Reviews. 2011.

Downloads

Published

2021-05-30

How to Cite

A Critical Review of Lignocellulosic Waste Pretreatment for Biofuel Production . (2021). International Journal of Innovative Research in Computer Science & Technology, 9(3), 134–138. Retrieved from https://acspublisher.com/journals/index.php/ijircst/article/view/11499