Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247667, India.
Fermentech Labs Pvt. Ltd, TIDES Business Incubator, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247667, India.
J Environ Manage. 2024 May;358:120781. doi: 10.1016/j.jenvman.2024.120781. Epub 2024 Apr 11.
Transforming global agricultural waste into eco-friendly products like industrial enzymes through bioconversion can help address sustainability challenges aligning with the United Nations' Sustainable Development Goals. Present study explored the production of high-yield food-grade cellulolytic enzymes from Trichoderma reesei MTCC 4876, using a novel media formulation with a combination of waste sorghum grass and cottonseed oil cake (3:1). Optimization of physical and environmental parameters, along with the screening and optimization of media components, led to an upscaled process in a novel 6-L solid-state fermentation (SSF)-packed bed reactor (PBR) with a substrate loading of 200 g. Saturated forced aeration proved crucial, resulting in high fungal biomass (31.15 ± 0.63 mg glucosamine/gm dry fermented substrate) and high yield cellulase (20.64 ± 0.36 FPU/g-ds) and xylanase (16,186 ± 912 IU/g-ds) production at an optimal airflow rate of 0.75 LPM. The PBR exhibited higher productivity than shake flasks for all the enzyme systems. Microfiltration and ultrafiltration of the crude cellulolytic extract achieved 94% and 71% recovery, respectively, with 13.54 FPU/mL activity in the cellulolytic enzyme concentrate. The concentrate displayed stability across wide pH and temperature ranges, with a half-life of 24.5-h at 50 °C. The cellulase concentrate, validated for food-grade safety, complies with permissible limits for potential pathogens, heavy metals, mycotoxins, and pesticide residue. It significantly improved apple juice clarity (94.37 T%) by reducing turbidity (21%) and viscosity (99%) while increasing total reducing sugar release by 63% compared with untreated juice. The study also highlighted the potential use of lignin-rich fermented end residue for fuel pellets within permissible SOx emission limits, offering sustainable biorefinery prospects. Utilizing agro wastes in a controlled bioreactor environment underscores the potential for efficient large-scale cellulase production, enabling integration into food-grade applications and presenting economic benefits to fruit juice industries.
通过生物转化将全球农业废弃物转化为环保产品,如工业酶,可以帮助解决与联合国可持续发展目标一致的可持续发展挑战。本研究探索了使用新型培养基配方,将废弃的高粱草和棉籽饼(3:1)组合,从里氏木霉 MTCC 4876 生产高产食品级纤维素酶。通过优化物理和环境参数,以及筛选和优化培养基成分,在新型 6-L 固态发酵(SSF)填充床反应器(PBR)中进行了放大过程,底物装载量为 200 g。饱和强制通风被证明是至关重要的,导致高真菌生物量(31.15±0.63mg 氨基葡萄糖/gm 干发酵基质)和高纤维素酶(20.64±0.36FPU/g-ds)和木聚糖酶(16186±912IU/g-ds)产量,在最佳气流速率为 0.75 LPM。与摇瓶相比,PBR 对所有酶系统都具有更高的生产力。粗纤维素酶提取物的微滤和超滤分别实现了 94%和 71%的回收率,纤维素酶浓缩物的活性为 13.54 FPU/mL。该浓缩物在宽 pH 和温度范围内表现出稳定性,在 50°C 时半衰期为 24.5 小时。经过食品级安全性验证的纤维素酶浓缩物符合潜在病原体、重金属、真菌毒素和农药残留的允许限量。与未处理的果汁相比,它可将苹果汁的浊度降低 21%,粘度降低 99%,透光率提高 94.37%,同时还可将总还原糖释放量提高 63%,显著提高了苹果汁的澄清度。该研究还强调了在允许的 SOx 排放限制内,将富含木质素的发酵残余物用作燃料颗粒的潜在用途,为可持续生物精炼厂提供了前景。在受控生物反应器环境中利用农业废弃物突出了高效大规模纤维素酶生产的潜力,使它能够集成到食品级应用中,并为果汁行业带来经济效益。