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利用水热液化法从龙爪稷废弃物中制备生物炭:其价值评估、工艺优化及表征

Hydrothermal liquefaction for biochar production from finger millet waste: its valorisation, process optimization, and characterization.

作者信息

Hussain Afzal, Kandari Ayush, Kotiyal Sushant, Kumar Vinod, Upadhyay Shuchi, Ahmad Waseem, Singh Ajay, Kumar Sanjay

机构信息

Department of Pharmacognosy, College of Pharmacy, King Saud University PO Box 2457 Riyadh 11451 Saudi Arabia.

Department of Food Science and Technology, Graphic Era (Deemed to be University) Dehradun 248002 Uttarakhand India

出版信息

RSC Adv. 2024 Aug 5;14(34):24492-24502. doi: 10.1039/d4ra03945a.

Abstract

In this study, the potential of finger millet waste biomass (FMWB) as a source of biochar production through hydrothermal liquefaction (HTL) was investigated. The HTL process was designed using Box-Behnken design (BBD) and carried out with process variables, , temperature (250 °C, 350 °C, and 450 °C), time (30 min, 45 min, and 60 min), and solid-to-water ratio (1 : 6, 1 : 8, and 1 : 10). The responses, , biochar yield (%), bulk density (g cm), pH, and high heating value (HHV), were analysed. Optimisation was done using design expert software (version 13.0.1). The optimized finger millet waste biochar (O-FW) was produced at optimum values (450 °C, 1 : 10, and 33.5 min). The results of proximate and elemental analysis revealed that moisture, ash, and volatile content, H, and O of O-FW decreased while fixed carbon, thermal stability, and C content increased compared to FMWB. FT-IR, SEM-EDX, and XRD analyses were performed for O-FW. The results of FT-IR showed the presence of O-H, C-H, C[double bond, length as m-dash]O, and C[double bond, length as m-dash]C functional groups. The SEM image revealed the rough surface of O-FW, and XRD confirmed the production of a broad range of inorganic compounds and minerals. This study provides the full exploitation of FW as a source of solid fuel.

摘要

在本研究中,对通过水热液化(HTL)将龙爪稷废弃生物质(FMWB)作为生物炭生产原料的潜力进行了研究。采用Box-Behnken设计(BBD)设计HTL工艺,并在温度(250℃、350℃和450℃)、时间(30分钟、45分钟和60分钟)以及固水比(1∶6、1∶8和1∶10)等工艺变量下进行。分析了生物炭产率(%)、堆积密度(g/cm)、pH值和高热值(HHV)等响应指标。使用Design Expert软件(版本13.0.1)进行优化。在最佳值(450℃、1∶10和33.5分钟)下生产出了优化的龙爪稷废弃生物炭(O-FW)。近似分析和元素分析结果表明,与FMWB相比,O-FW的水分、灰分和挥发物含量、H和O含量降低,而固定碳、热稳定性和C含量增加。对O-FW进行了傅里叶变换红外光谱(FT-IR)、扫描电子显微镜-能谱分析(SEM-EDX)和X射线衍射(XRD)分析。FT-IR结果显示存在O-H、C-H、C=O和C=C官能团。SEM图像显示O-FW表面粗糙,XRD证实生成了多种无机化合物和矿物质。本研究为将FW充分开发为固体燃料来源提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4aa/11299237/b3e34275647a/d4ra03945a-f1.jpg

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