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用于甘蔗和木薯渣酶促转化的低成本自制鸡尾酒。

Low-cost homemade cocktails for enzymatic conversion of sugarcane and cassava bagasses.

作者信息

Díaz Gabriela Verónica, Sawostjanik Afanasiuk Silvana Soledad, Coniglio Romina Olga, Velázquez Juan Ernesto, Rodríguez María Daniela, Zapata Pedro Darío, Villalba Laura Lidia, Fonseca María Isabel

机构信息

Universidad Nacional de Misiones, Facultad de Ciencias Exactas, Químicas y Naturales, Instituto deBiotecnología "Dra. María Ebe Reca" (INBIOMIS), Laboratorio de Biotecnología Molecular, Misiones, Argentina.

CONICET, Buenos Aires, Argentina.

出版信息

Environ Technol. 2023 Dec;44(28):4313-4323. doi: 10.1080/09593330.2022.2091481. Epub 2022 Jun 30.

Abstract

The agricultural industries generate lignocellulosic wastes that can be modified by fungi to generate high value-added products. This work aimed to analyze the efficiency and the cost-effectiveness of the bioconversion of sugarcane and cassava bagasses using low-cost homemade enzymatic cocktails from LBM 134. Both bagasses were pretreated with a soft alkaline solution without any loss of polysaccharides. After the hydrolysis, a 28% of conversion to glucose and 42% to xylose were reached in the hydrolysis of sugarcane bagasse while an 80% of saccharification yield, in the hydrolysis of cassava bagasse using the homemade enzymes. Furthermore, a more disorganised surface and no starch granules were observed in the sugarcane and cassava bagasses, respectively. The bioethanol yield from sugarcane and casava bagasses was predicted to be 4.16 mg mL and 2.57 mg mL, respectively. A comparison of the cost of the homemade and the commercial enzymes was carried out. Similar hydrolysis percentages were achieved employing any enzyme; however, it was 1000-2000 times less expensive using the homemade cocktails than using the commercial enzymes. Therefore, the cost of obtaining glucose from bagasses was most expensive when applying the commercial enzymes. Moreover, the hydrolysis of the cassava bagasse was most efficient with the homemade cocktails. The importance and novelty of this work lie in the similar performance and the lower cost of the homemade cocktails from the fungus LBM 134 compared with the commercial enzymes on the hydrolysis of the sugarcane and cassava bagasses.

摘要

农业产业产生的木质纤维素废料可通过真菌改性来生产高附加值产品。这项工作旨在分析使用来自LBM 134的低成本自制酶混合物对甘蔗渣和木薯渣进行生物转化的效率和成本效益。两种废渣均用软碱性溶液预处理,多糖无任何损失。水解后,甘蔗渣水解中葡萄糖转化率达到28%,木糖转化率达到42%,而使用自制酶水解木薯渣时糖化率达到80%。此外,分别在甘蔗渣和木薯渣中观察到更无序的表面和无淀粉颗粒。甘蔗渣和木薯渣的生物乙醇产量预计分别为4.16 mg/mL和2.57 mg/mL。对自制酶和商业酶的成本进行了比较。使用任何一种酶都能达到相似的水解百分比;然而,使用自制酶混合物的成本比使用商业酶低1000 - 2000倍。因此,使用商业酶时从废渣中获取葡萄糖的成本最高。此外,自制酶混合物对木薯渣的水解效率最高。这项工作的重要性和新颖之处在于,与商业酶相比,来自真菌LBM 134的自制酶混合物在甘蔗渣和木薯渣水解方面具有相似的性能且成本更低。

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