Department of Food Engineering and Technology, SLIET, Longowal 148 106, Punjab, India.
Department of Food Process Engineering, NIT, Rourkela, Odisha, India.
Bioresour Technol. 2022 Nov;363:127834. doi: 10.1016/j.biortech.2022.127834. Epub 2022 Aug 25.
Microalgae are photosynthetic microbes that can synthesize compounds of therapeutic potential with wide applications in the food, bioprocessing and pharmaceutical sector. Recent research advances have therefore, focused on finding suitable economic substrates for the sustainable cultivation of microalgae. Among such substrates, food derived waste specifically from the starch, meat, dairy, brewery, oil and fruit and vegetable processing industries has gained popularity but poses numerous challenges. Pretreatment, dilution of waste water supernatants, mixing of different food waste streams, utilizing two-stage cultivation and other biorefinery approaches have been intensively explored for multifold improvement in microalgal biomass recovery from food waste. This review discusses the advances and challenges associated with cultivation of microalgae on food waste. The review suggests that there is a need to standardize different waste substrates in terms of general composition, genetically engineered microalgal strains, tackling process scalability issues, controlling wastewater toxicity and establishing a waste transportation chain.
微藻是光合微生物,能够合成具有广泛应用前景的治疗化合物,应用于食品、生物加工和制药领域。因此,最近的研究重点是寻找合适的经济底物,以实现微藻的可持续培养。在这些底物中,源自淀粉、肉类、奶制品、啤酒厂、石油和水果及蔬菜加工业的食品废物特别受欢迎,但也带来了诸多挑战。预处理、废水上清液稀释、不同食品废物流的混合、采用两段式培养和其他生物炼制方法,已经被深入探讨,以期从食品废物中提高微藻生物质的回收效率。本文综述了利用食品废物培养微藻的最新进展和面临的挑战。综述认为,需要在一般成分、基因工程微藻菌株、解决工艺可扩展性问题、控制废水毒性和建立废物运输链等方面,对不同的废物底物进行标准化。