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牛毛在铁尾矿基泡沫混凝土制备中的资源化利用

Resourceful Utilization of Cow Hair in the Preparation of Iron Tailing-Based Foam Concrete.

作者信息

Liu Leipeng, Yang Junjie, She Yinfei, Lv Shenghua, Yang Zheng, Zhang Jia

机构信息

College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China.

College of Chemistry and Materials Science, Weinan Normal University, Weinan 714099, China.

出版信息

Materials (Basel). 2022 Aug 19;15(16):5739. doi: 10.3390/ma15165739.

Abstract

Cow hair, a by-product of tannery waste, is usually stockpiled on a large scale as waste, which leads to serious environmental impacts. In this paper, cow hair was used as a reinforcement fiber to improve the mechanical strength of iron tailing-based foam concrete. The effects of the amount of cow hair fiber on the apparent density, compressive strength, and flexural strength of foam concrete were investigated by a series of characterization methods. Meanwhile, Image-Pro Plus software was used to analyze the porosity, average pore size, roundness, and other parameters of the specimens with different amounts of cow hair fiber. Results revealed that a proper amount of cow hair fiber can form a stable three-dimensional network structure inside the foam concrete and promote a uniform distribution and size of the pore structure inside the test piece. This could effectively improve the compressive strength, flexural strength, and crack resistance of the foam concrete, and when the fiber content was 0.2 wt%, the foam concrete exhibited the best mechanical properties, with a compressive strength of 11.19 MPa and a flexural strength of 3.58 MPa. The present work was in agreement with the strategic objective of resource recycling and solid waste utilization, which was conducive to the development of the circular and green economy.

摘要

牛皮毛是制革废弃物的一种副产品,通常作为废物被大规模堆放,这会导致严重的环境影响。在本文中,牛皮毛被用作增强纤维以提高铁尾矿基泡沫混凝土的机械强度。通过一系列表征方法研究了牛皮毛纤维用量对泡沫混凝土表观密度、抗压强度和抗折强度的影响。同时,使用Image-Pro Plus软件分析了不同牛皮毛纤维用量试件的孔隙率、平均孔径、圆度等参数。结果表明,适量的牛皮毛纤维可在泡沫混凝土内部形成稳定的三维网络结构,并促进试件内部孔隙结构的均匀分布和尺寸。这可有效提高泡沫混凝土的抗压强度、抗折强度和抗裂性,当纤维含量为0.2 wt%时,泡沫混凝土表现出最佳的力学性能,抗压强度为11.19 MPa,抗折强度为3.58 MPa。本研究与资源回收利用和固体废物利用的战略目标相一致,有利于循环和绿色经济的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/756c/9416388/73aeebb05261/materials-15-05739-g001.jpg

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