Sakthivel Selvakumar, Muthusamy Kanthimathi, Thangarajan Amutha Priya, Thiruvengadam Muthu, Venkidasamy Baskar
Department of Periodontics, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, 600077, Tamil Nadu, India.
Centre for Marine Science and Technology, Manonmaniam Sundaranar University, Rajakkamangalam, 629502, Tamil Nadu, India.
Bioprocess Biosyst Eng. 2024 Jul;47(7):971-990. doi: 10.1007/s00449-024-03005-4. Epub 2024 Mar 30.
The use of nanomaterials in biofuel production from lignocellulosic biomass offers a promising approach to simultaneously address environmental sustainability and economic viability. This review provides an overview of the environmental and economic implications of integrating nanotechnology into biofuel production from low-cost lignocellulosic biomass. In this review, we highlight the potential benefits and challenges of nano-based biofuel production. Nanomaterials provide opportunities to improve feedstock pretreatment, enzymatic hydrolysis, fermentation, and catalysis, resulting in enhanced process efficiency, lower energy consumption, and reduced environmental impact. Conducting life cycle assessments is crucial for evaluating the overall environmental footprint of biofuel production. An economic perspective that focuses on the cost implications of utilizing nanomaterials in biofuel production is also discussed. A comprehensive understanding of both environmental and economic dimensions is essential to fully harness the potential of nanomaterials in biofuel production from lignocellulosic biomass and to move towards sustainable future energy.
在利用木质纤维素生物质生产生物燃料的过程中使用纳米材料,为同时解决环境可持续性和经济可行性问题提供了一种很有前景的方法。本综述概述了将纳米技术整合到利用低成本木质纤维素生物质生产生物燃料过程中的环境和经济影响。在本综述中,我们强调了基于纳米材料的生物燃料生产的潜在益处和挑战。纳米材料为改善原料预处理、酶水解、发酵和催化提供了机会,从而提高了工艺效率、降低了能源消耗并减少了环境影响。进行生命周期评估对于评估生物燃料生产的整体环境足迹至关重要。还讨论了从经济角度关注在生物燃料生产中使用纳米材料的成本影响。全面了解环境和经济两个维度对于充分发挥纳米材料在利用木质纤维素生物质生产生物燃料方面的潜力以及迈向可持续的未来能源至关重要。