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超声辅助熔盐水合物预处理的麒麟菜残渣作为第三代左旋乳酸生产的更绿色前驱体。

Ultrasonic‑assisted molten salt hydrates pretreated Eucheuma cottonii residues as a greener precursor for third-generation l-lactic acid production.

作者信息

Chong Soo Ling, Tan Inn Shi, Foo Henry Chee Yew, Chan Yen San, Lam Man Kee, Lee Keat Teong

机构信息

Department of Chemical and Energy Engineering, Faculty of Engineering and Science, Curtin University Malaysia, CDT 250, 98009 Miri, Sarawak, Malaysia.

Department of Chemical and Energy Engineering, Faculty of Engineering and Science, Curtin University Malaysia, CDT 250, 98009 Miri, Sarawak, Malaysia.

出版信息

Bioresour Technol. 2022 Nov;364:128136. doi: 10.1016/j.biortech.2022.128136. Epub 2022 Oct 15.

Abstract

This study aims to establish an efficient pretreatment method that facilitates the conversion of sugars from macroalgae wastes, Eucheuma cottonii residues (ECRs) during hydrolysis and subsequently enhances l-lactic acid (L-LA) production. Hence, ultrasonic-assisted molten salt hydrates (UMSHs) pretreatment was proposed to enhance the accessibility of ECRs to hydrolyze into glucose through dilute acid hydrolysis (DAH). The obtained hydrolysates were employed as the substrate in producing L-LA by separate hydrolysis and fermentation (SHF). The maximum glucose yield (97.75 %) was achieved using UMSHs pretreated ECRs with 40 wt% ZnCl at 80 °C for 2 h and followed with DAH. The optimum glucose to L-LA yield obtained for SHF was 90.08 % using 5 % (w/w) inoculum cell densities of B. coagulans ATCC 7050 with yeast extract (YE). A comparable performance (89.65 %) was obtained using a nutrient combination (lipid-extracted Chlorella vulgaris residues (CVRs), vitamin B3, and vitamin B5) as a partial alternative for YE.

摘要

本研究旨在建立一种高效的预处理方法,以促进水解过程中大型海藻废弃物、麒麟菜残渣(ECRs)中糖类的转化,并随后提高L-乳酸(L-LA)的产量。因此,提出了超声辅助熔盐水合物(UMSHs)预处理方法,以提高ECRs在稀酸水解(DAH)中水解为葡萄糖的可及性。将得到的水解产物用作底物,通过分步水解和发酵(SHF)生产L-LA。使用在80℃下用40 wt% ZnCl2进行UMSHs预处理2小时的ECRs,随后进行DAH,可实现最大葡萄糖产率(97.75%)。对于SHF,使用5%(w/w)凝结芽孢杆菌ATCC 7050接种细胞密度并添加酵母提取物(YE),获得的最佳葡萄糖到L-LA产率为90.08%。使用营养组合(脱脂小球藻残渣(CVRs)、维生素B3和维生素B5)作为YE的部分替代品,可获得相当的性能(89.65%)。

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