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优化甘蔗渣预处理和酶水解条件以生产生物乙醇

Optimizing the Conditions of Pretreatment and Enzymatic Hydrolysis of Sugarcane Bagasse for Bioethanol Production.

作者信息

Ruan Lingru, Wu Haifeng, Wu Shiya, Zhou Lifei, Wu Shangxin, Shang Changhua

机构信息

Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Guangxi Normal University), Ministry of Education & Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University, Guilin 541006, China.

出版信息

ACS Omega. 2024 Jun 26;9(27):29566-29575. doi: 10.1021/acsomega.4c02485. eCollection 2024 Jul 9.

Abstract

The agricultural waste sugarcane bagasse (SCB) is a kind of plentiful biomass resource. In this study, different pretreatment methods (NaOH, HSO, and sodium percarbonate/glycerol) were utilized and compared. Among the three pretreatment methods, NaOH pretreatment was the most optimal method. Response surface methodology (RSM) was utilized to optimize NaOH pretreatment conditions. After optimization by RSM, the solid yield and lignin removal were 54.60 and 82.30% under the treatment of 1% NaOH, a time of 60 min, and a solid-to-liquid ratio of 1:15, respectively. Then, the enzymolysis conditions of cellulase for NaOH-treated SCB were optimized by RSM. Under the optimal enzymatic hydrolysis conditions (an enzyme dose of 18 FPU/g, a time of 64 h, and a solid-to-liquid ratio of 1:30), the actual yield of reducing sugar in the enzyme-treated hydrolysate was 443.52 mg/g SCB with a cellulose conversion rate of 85.33%. A bacterium, namely, sp. EtOH, which produced ethanol and Baijiu aroma substances, was isolated from the high-temperature Daqu of Danquan Baijiu in our previous study. At last, when the strain EtOH was cultured for 36 h in a fermentation medium (reducing sugar from cellulase-treated SCB hydrolysate, yeast extract, and peptone), ethanol concentration reached 2.769 g/L (0.353%, v/v). The sugar-to-ethanol and SCB-to-ethanol yields were 13.85 and 11.81% in this study, respectively. In brief, after NaOH pretreatment, 1 g of original SCB produced 0.5460 g of NaOH-treated SCB. Then, after the enzymatic hydrolysis, reducing sugar yield (443.52 mg/g SCB) was obtained. Our study provided a suitable method for bioethanol production from SCB, which achieved efficient resource utilization of agricultural waste SCB.

摘要

农业废弃物甘蔗渣(SCB)是一种丰富的生物质资源。在本研究中,采用并比较了不同的预处理方法(NaOH、HSO和过碳酸钠/甘油)。在这三种预处理方法中,NaOH预处理是最优化的方法。利用响应面法(RSM)优化NaOH预处理条件。经RSM优化后,在1% NaOH、60分钟时间和1:15的固液比处理下,固体产率和木质素去除率分别为54.60%和82.30%。然后,利用RSM优化了纤维素酶对NaOH处理后的SCB的酶解条件。在最佳酶解条件下(酶用量为18 FPU/g、时间为64小时和固液比为1:30),酶处理水解产物中还原糖的实际产率为443.52 mg/g SCB,纤维素转化率为85.33%。在我们之前的研究中,从丹泉白酒的高温大曲中分离出一种能产生乙醇和白酒香气物质的细菌,即sp. EtOH。最后,当菌株EtOH在发酵培养基(纤维素酶处理的SCB水解产物中的还原糖、酵母提取物和蛋白胨)中培养36小时时,乙醇浓度达到2.769 g/L(0.353%,v/v)。本研究中糖到乙醇和SCB到乙醇的产率分别为13.85%和11.81%。简而言之,经过NaOH预处理后,1 g原始SCB产生0.5460 g经NaOH处理的SCB。然后,经过酶解后,获得了还原糖产率(443.5 mg/g SCB)。我们的研究为从SCB生产生物乙醇提供了一种合适的方法,实现了农业废弃物SCB的高效资源利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb1/11238294/8c18d9c3f88b/ao4c02485_0001.jpg

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