Ajala E O, Ighalo J O, Ajala M A, Adeniyi A G, Ayanshola A M
Department of Chemical Engineering, University of Ilorin, Ilorin, Nigeria.
Unilorin Sugar Research Institute, University of Ilorin, Ilorin, Nigeria.
Bioresour Bioprocess. 2021 Sep 15;8(1):87. doi: 10.1186/s40643-021-00440-z.
Sugarcane (Saccharum officinarum) bagasse (SCB) is a biomass of agricultural waste obtained from sugarcane processing that has been found in abundance globally. Due to its abundance in nature, researchers have been harnessing this biomass for numerous applications such as in energy and environmental sustainability. However, before it could be optimally utilised, it has to be pre-treated using available methods. Different pre-treatment methods were reviewed for SCB, both alkaline and alkali-acid process reveal efficient and successful approaches for obtaining higher glucose production from hydrolysis. Procedures for hydrolysis were evaluated, and results indicate that pre-treated SCB was susceptible to acid and enzymatic hydrolysis as > 80% glucose yield was obtained in both cases. The SCB could achieve a bio-ethanol (a biofuel) yield of > 0.2 g/g at optimal conditions and xylitol (a bio-product) yield at > 0.4 g/g in most cases. Thermochemical processing of SCB also gave excellent biofuel yields. The plethora of products obtained in this regard have been catalogued and elucidated extensively. As found in this study, the SCB could be used in diverse applications such as adsorbent, ion exchange resin, briquettes, ceramics, concrete, cement and polymer composites. Consequently, the SCB is a biomass with great potential to meet global energy demand and encourage environmental sustainability.
甘蔗(Saccharum officinarum)蔗渣(SCB)是一种农业废弃物生物质,在甘蔗加工过程中产生,在全球范围内储量丰富。由于其在自然界中储量丰富,研究人员一直在将这种生物质用于众多应用,如能源和环境可持续性领域。然而,在其能够得到最佳利用之前,必须使用现有的方法进行预处理。对SCB的不同预处理方法进行了综述,碱性和碱酸处理方法都显示出从水解中获得更高葡萄糖产量的有效且成功的途径。对水解过程进行了评估,结果表明预处理后的SCB易于进行酸水解和酶水解,因为在这两种情况下葡萄糖产率均超过80%。在最佳条件下,SCB的生物乙醇(一种生物燃料)产率可超过0.2 g/g,在大多数情况下木糖醇(一种生物产品)产率超过0.4 g/g。SCB的热化学处理也能产生优异的生物燃料产率。在这方面获得的大量产品已被广泛编目和阐释。如本研究所示,SCB可用于多种应用,如吸附剂、离子交换树脂、煤球、陶瓷、混凝土、水泥和聚合物复合材料。因此,SCB是一种具有巨大潜力的生物质,能够满足全球能源需求并促进环境可持续性。