啤酒酿造者的废粮作为低碳骨料用于建筑材料的洞察。

IF 3.4 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY Biomimetics Pub Date : 2024-12-21 DOI:10.3390/biomimetics9120781
Badreddine El Haddaji, Mohammed-Hichem Benzaama, Marc Quiertant, Yassine El Mendili
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引用次数: 0

摘要

本研究以玉米淀粉为生物聚合物粘结剂,研究了啤酒糟(BSGs)作为可持续生物复合建筑材料的使用。BSG骨料与大麻屑相比,传统骨料以其热性能而闻名。淀粉被用作三种不同配方的天然粘合剂,以进一步减少建筑材料的碳足迹。考虑到骨料,第一种配方仅含有BSGs,第二种配方由一半BSGs和一半大麻片组成,第三种配方仅使用大麻片。此外,利用扫描电子显微镜(SEM)进行了形态学分析,以检查原料BSG和大麻片的微观结构和孔隙率。使用热流计(HFM)和动态蒸汽吸收(DVS)技术测量湿热性能,同时也评估机械性能。结果表明,BSG配方的导热系数为0.131 W/(m·K),是大麻片配方(0.067 W/(m·K))的两倍,而BSG/大麻片混合配方的导热系数为0.106 W/(m·K)。然而,DVS测量显示更好的湿热性能的BSG制剂相比,大麻屑制剂。最后,发现力学性能在三种配方中几乎相等。这些发现表明,BSG废物有潜力作为一种可行的材料用于建筑。为了充分发挥这种废物在促进建筑材料行业循环经济方面的潜力,有必要进一步开展配方优化和耐用性方面的工作。
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Insight into the Use of Brewers' Spent Grain as a Low-Carbon Aggregate in Building Materials.

This study investigates the use of Brewers' Spent Grains (BSGs) as a sustainable biocomposite building materials, using cornstarch as a biopolymer binder. BSG aggregates are compared with hemp shives, a conventional aggregate known for its thermal properties. Starch is employed as a natural binder in three different formulations to further reduce the carbon footprint of the building material. Considering aggregates, the first formulation contains only BSGs, the second consists of half BSGs and half hemp shives, and the third uses only hemp shives. In addition, morphological analysis using Scanning Electron Microscopy (SEM) is conducted to examine the microstructure and porosity of the raw BSG and hemp shives. Hygrothermal properties are measured using Heat Flow Meter (HFM) and Dynamic Vapor Sorption (DVS) techniques, while mechanical properties are also assessed. Results indicate that the thermal conductivity of the BSG formulation (0.131 W/(m·K)) is double that of the hemp shives formulation (0.067 W/(m·K)), whereas the mixed BSG/hemp shives formulation exhibits a thermal conductivity of 0.106 W/(m·K). However, DVS measurements reveal better hygrothermal properties for the BSG formulation compared to the hemp shives formulation. Lastly, mechanical properties are found to be nearly equivalent across the three formulations. These findings suggest that BSG waste has potential as a viable material for use in construction. Further work on formulation optimization and durability is necessary to fully realize the potential of this waste in promoting a circular economy within the building materials industry.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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