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首页> 外文期刊>Waste and biomass valorization >Production of Porous Poly(phospho-siloxo) Networks for Thermal Insulations Using Low-Value Calcium-Rich Wastes as Pore-Forming Agents
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Production of Porous Poly(phospho-siloxo) Networks for Thermal Insulations Using Low-Value Calcium-Rich Wastes as Pore-Forming Agents

机译:使用低价值富含钙的废物作为孔形成剂的热绝缘多孔聚(磷酸硅氧烷)网络的生产

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摘要

This study focuses on the preparation of porous poly(phospho-siloxo) networks for thermal insulation applications using commercial calcium carbonate and calcium-rich wastes such as oyster shell, snail shell and eggshell powders as pore-forming agents. The control and porous poly(phospho-siloxo) networks were prepared by adding phosphoric acid (4 M) as a chemical ingredient to metakaolin containing 0 and 15 wt% of each foaming agents. The final products were monitored using the X-ray diffractometry, infrared spectroscopy, apparent density, absolute density, thermal conductivity, optical microscopy, scanning electron microscopy and mercury intrusion porosimetry. The results show that the thermal conductivity of the control and porous poly(phospho-siloxo) network from commercial calcium carbonate are 0.35 and 0.20 W/mK, respectively. They were higher compared to those from snail shell (0.17 W/mK), eggshell (0.15 W/mK) and oyster shell (0.14 W/mK). The cumulative pore volumes are 211.4, 365.5, 380.6, 389.7 and 393.3 mm~3/g for the control and porous specimens from chicken eggshell, commercial calcium carbonate, snail shell and oyster shell powders, respectively. Their total porosity measured by mercury intrusion porosimeter are 30.9, 45.5, 46.0, 45.9 and 45.4%, respectively, whereas those calculated with apparent and true density measured by pycnometer are 34.48, 45.25, 52.74, 50.84 and 52.60%, respectively. The concentrated pore size diameter of the porous sample from eggshell is highest compared to the others. It can be seen that the total porosities measured by mercury intrusion porosimeter of porous specimens are nearly the same trend as well as the thermal conductivity. It was found that the low-value calcium-rich wastes could be used for producing porous poly(phospho-siloxos) networks which could be utilized for thermal insulation applications.
机译:本研究侧重于使用商业碳酸钙和富含钙壳,蜗牛壳和蛋壳粉作为孔形成剂的富含钙碳酸钙和富含钙的废物的热绝缘应用的多孔聚(磷酸硅氧烷)网络的制备。通过将磷酸(4M)作为化学成分加入含有0和15wt%的每个发泡剂的甲醇蛋白来制备所述对照和多孔聚(磷酸硅氧烷)网络。使用X射线衍射测定法,红外光谱,表观密度,绝对密度,导热性,光学显微镜,扫描电子显微镜和汞侵入孔隙测量法监测最终产物。结果表明,来自商业碳酸钙的控制和多孔聚(磷酸硅氧烷)网络的导热率分别为0.35和0.20W / mK。与蜗牛壳(0.17W / MK),蛋壳(0.15W / MK)和牡蛎壳(0.14W / MK)相比,它们更高。来自鸡蛋壳,商业碳酸钙,蜗牛壳和牡蛎壳粉的对照和多孔标本,累积孔体积分别为211.4,365.5,380.6,389.7和393.3mm〜3 / g。它们的总孔隙率分别测量的孔隙率分别为30.9,45.5,46.0,45.9和45.4%,而用Pycnometer测量的表观和真实密度计算的那些分别为34.48,45.25,52.74,50.84和52.60%。与其他相比,来自蛋壳的多孔样品的浓缩孔径直径最高。可以看出,多孔样本汞侵入孔隙计测量的总孔隙率几乎是相同的趋势以及导热率。结果发现,低值钙的废物可用于生产可用于隔热应用的多孔聚(磷酸硅氧烷)网络。

著录项

  • 来源
    《Waste and biomass valorization》 |2020年第11期|5857-5875|共19页
  • 作者单位

    Laboratory of Applied Inorganic Chemistry Department of Inorganic Chemistry Faculty of Science University of Yaounde I P.O. Box 812 Yaounde Cameroon Institut fur Mineralogie Leibniz Universitat Hannover Callinstrasse 3 30167 Hannover Germany;

    Laboratory of Applied Inorganic Chemistry Department of Inorganic Chemistry Faculty of Science University of Yaounde I P.O. Box 812 Yaounde Cameroon;

    Laboratory of Applied Inorganic Chemistry Department of Inorganic Chemistry Faculty of Science University of Yaounde I P.O. Box 812 Yaounde Cameroon;

    Institut fur Mineralogie Leibniz Universitat Hannover Callinstrasse 3 30167 Hannover Germany;

    Local Materials Promotion Authority P.O. Box 2396 Nkolbikok Yaounde Cameroon Department of Engineering "Enzo Ferrari" University of Modena and Reggio Emilia Via Vivarelli 10 41125 Modena Italy;

    Department of Engineering "Enzo Ferrari" University of Modena and Reggio Emilia Via Vivarelli 10 41125 Modena Italy;

    Groupe d'Etude Des Materiaux Heterogenes Centre Europeen de la Ceramique 12 Rue Atlantis 87068 Limoges Cedex France;

    Department of Engineering "Enzo Ferrari" University of Modena and Reggio Emilia Via Vivarelli 10 41125 Modena Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metakaolin; Foaming agents; Chemical ingredient; Poly(phospho-siloxo); Thermal conductivity; Porosity;

    机译:弥撒;泡沫代理;化学成分;聚(磷酸硅氧烷);导热系数;孔隙度;

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