Application of stubble waste biochar in cementitious composites: the impact of pyrolysis temperature on its characteristics and cementitious performance

IF 7.1 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Sarmad Rashid, Arpit Goyal, A.B.Danie Roy, Manpreet Singh
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Abstract

This study investigates the impact of biochar production temperature on its physicochemical properties and performance as a partial replacement of cement in mortar mixes. Rice stubble biochar was produced at 450 °C (BC450) and 550 °C (BC550) with consistent pyrolysis conditions of 120-minute residence time and 10 °C/min heating rate. The produced biochar’s were characterized for various physiochemical characteristics using Scanning Electron Microscopy (SEM), X-Ray Diffraction (XRD), Fourier Transform Infrared Spectroscopy (FTIR), X-Ray Fluorescence (XRF), proximate analysis, pH, and water retention capacity assessments. Nine mortar mixes comprising a control and biochar-incorporated mixes at replacement levels of 2.5 %, 5 %, 7.5 %, and 10 %, were evaluated for mechanical properties (compressive and flexural strengths), durability (water absorption and void volume), and microstructural characteristics after curing periods of 7, 28, and 56 days. The findings indicated that BC550, exhibiting superior crystallinity and alkalinity, outperformed BC450 in improving mortar performance, attaining a compressive strength increase of up to 24.6 %, a flexural strength enhancement of 10.7 %, a reduction in water absorption by 16.5 %, and a decrease in voids by 7.3 % at a 5 % replacement. Conversely, higher replacement levels (7.5 % and 10 %) reduced performance owing to increased porosity. The study highlights the necessity of optimizing biochar production temperature and dosage to maximize its benefits in improving the mechanical and durability characteristics of sustainable cementitious composites.
残茬废生物炭在胶凝复合材料中的应用:热解温度对其特性及胶凝性能的影响
本研究探讨了生物炭生产温度对其物理化学性质和性能的影响,作为砂浆混合物中水泥的部分替代品。在450°C (BC450)和550°C (BC550)条件下制备稻茬生物炭,热解条件为停留时间120分钟,升温速率10°C/min。利用扫描电子显微镜(SEM)、x射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、x射线荧光(XRF)、近似分析、pH值和保水能力评估对所制备的生物炭进行了各种物理化学特征的表征。在养护7天、28天和56天后,对9种砂浆混合物进行了机械性能(抗压和抗折强度)、耐久性(吸水率和空隙体积)和微观结构特征的评估。结果表明,BC550具有优异的结晶度和碱性,在改善砂浆性能方面优于BC450,抗压强度提高24.6%,抗折强度提高10.7%,吸水率降低16.5%,孔隙率降低7.3%。相反,较高的替换量(7.5%和10%)由于孔隙度增加而降低了性能。该研究强调了优化生物炭生产温度和用量的必要性,以最大限度地提高可持续胶凝复合材料的力学和耐久性特性。
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来源期刊
Waste management
Waste management 环境科学-工程:环境
CiteScore
15.60
自引率
6.20%
发文量
492
审稿时长
39 days
期刊介绍: Waste Management is devoted to the presentation and discussion of information on solid wastes,it covers the entire lifecycle of solid. wastes. Scope: Addresses solid wastes in both industrialized and economically developing countries Covers various types of solid wastes, including: Municipal (e.g., residential, institutional, commercial, light industrial) Agricultural Special (e.g., C and D, healthcare, household hazardous wastes, sewage sludge)
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