Kaur Jaspreet, Sarma Anil Kumar, Jha Mithilesh Kumar, Gera Poonam
Department of Chemical Engineering, Dr. B. R. Ambedkar National Institute of Technology, Jalandhar, Punjab, India.
Chemical Conversion Division, Sardar Swaran Singh National Institute of Bio-Energy (An Autonomous Institute of MNRE Government of India), Kapurthala, Punjab, India.
Biotechnol Rep (Amst). 2020 Jun 12;27:e00487. doi: 10.1016/j.btre.2020.e00487. eCollection 2020 Sep.
The enormous production of glycerol, a waste stream from biodiesel industries, as a low-value product has been causing a threat to both the environment and the economy. Therefore, it needs to be transformed effectively and efficiently into valued products for contributing positively towards the biodiesel economy. It can either be converted directly into competent chemicals or can be used as a feedstock/precursor for deriving valuable derivatives. In this review article, a technical evaluation has been stirred up, various factors and technologies used for producing value-added products from crude glycerol, Environmental and economic aspects of different conversion routes, cost factors and challenges of integration of the different routes for biorefinery have been reviewed and elaborated. There are tremendous environmental benefits in the conversion of crude glycerol via the biochemical route, the product and residue become eco-friendly. However, chemical conversions are faster processes, and economically viable if environmental aspects are partially ignored.
生物柴油行业产生的大量甘油作为低价值产品,已对环境和经济构成威胁。因此,需要将其有效且高效地转化为有价值的产品,以对生物柴油经济做出积极贡献。它既可以直接转化为有竞争力的化学品,也可以用作原料/前体来衍生有价值的衍生物。在这篇综述文章中,引发了一项技术评估,对用于从粗甘油生产增值产品的各种因素和技术、不同转化途径的环境和经济方面、成本因素以及生物精炼不同途径整合的挑战进行了综述和阐述。通过生化途径转化粗甘油有巨大的环境效益,产品和残渣都变得环保。然而,化学转化过程更快,如果部分忽略环境因素,在经济上是可行的。