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Research into the use of marble waste as mineral filler in soil pigment-based paints and as an active pigment in waterborne paints

机译:关于大理石废料在土壤颜料基涂料中用作矿物填料和在水性涂料中用作活性颜料的研究

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摘要

Producing paint using waste and soil is an efficient way of contributing to sustainable development and reducing costs in the finishing and protection of buildings. Although there are numerous studies related to paints of natural land base, there remain certain technical limitations to be overcome. Moreover, no research has been found in the literature on the use of marble waste as an active or inert pigment in the production of paint, although this waste has several pertinent properties and basic constituents. Thus, the aim of this study was to evaluate whether the use of untreated marble waste as an active pigment in building paint enables a product to be developed which meets specifications and whether the performance of soil pigment-based paints can be improved by incorporating marble waste as a mineral filler. The only preparation for using the waste and the soils as pigments was to sieve them to remove coarser impurities. The samples were formulated based on mix planning using the simplex network and consisted of: marble waste pigment (MWP), soil pigment (SP) and polyvinyl acetate resin (PVA). The amount of water varied according to the ideal viscosity range for paint application. The formulas were analyzed for hiding power (HP), abrasion resistance (AR), microbiological attack and resistance to weathering. The results showed that, for paints produced with MWP as the only pigment, the performance set out in ABNT NBR 15079:2011 was achieved above a percentage of 30% resin in solution. Furthermore, the addition of MWP to SP-based paints provided a film with higher HP and, together with the increased resin content, increased the AR of the samples. Five formulas met both HP and AR performance specifications. The percentages in the mixture were as follows: 0.3 PVA and 0.7 MWP; and 0.4 PVA and 0.6 MWP, with MWP as the sole pigment; 0.25 PVA, 0.175 YSP (yellow soil pigment) and 0.575 MWP; and 0.35 PVA, 0.175 YSP and 0.475 MWP, of YSP and MWP; and 0.25 PVA, 0.175 RSP (red soil pigment) and 0.575 MWP, of RSP and MWP. The weatherability test showed that MWP addition to the paint formula contributed to increased paint durability and improved photolytic stability. Thus, the results indicate that marble waste, as an active pigment or mineral filler, is a promising alternative for producing building paint. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用废物和土壤生产油漆是促进可持续发展并降低建筑物的装修和保护成本的有效途径。尽管有许多有关天然陆上涂料的研究,但仍有一些技术上的限制需要克服。此外,尽管大理石废料具有一些相关的特性和基本成分,但在有关大理石废料在涂料生产中用作活性或惰性颜料的文献中尚未找到任何研究。因此,本研究的目的是评估在建筑涂料中使用未经处理的大理石废料作为活性颜料是否可以开发出符合规格的产品,以及是否可以通过掺入大理石废料来改善土壤颜料基涂料的性能。作为矿物填料。使用废物和土壤作为颜料的唯一准备是将它们过筛以除去较粗的杂质。样品是根据混合计划使用单工网络配制的,包括:大理石废料颜料(MWP),土壤颜料(SP)和聚乙酸乙烯酯树脂(PVA)。水的量根据用于涂料的理想粘度范围而变化。分析了配方的遮盖力(HP),耐磨性(AR),微生物侵袭性和耐候性。结果表明,对于用MWP作为唯一颜料生产的涂料,ABNT NBR 15079:2011中列出的性能要高于溶液中30%的树脂含量。此外,在基于SP的涂料中添加MWP可以使薄膜具有更高的HP,并与增加的树脂含量一起提高样品的AR。五个公式均符合HP和AR的性能指标。混合物中的百分比如下:0.3 PVA和0.7 MWP; 0.4 PVA和0.6 MWP,其中MWP为唯一颜料; 0.25 PVA,0.175 YSP(黄色土壤色素)和0.575 MWP; YSP和MWP分别为0.35 PVA,0.175 YSP和0.475 MWP; RSP和MWP分别为0.25 PVA,0.175 RSP(红色土壤色素)和0.575 MWP。耐候性测试表明,将MWP添加到涂料配方中有助于提高涂料的耐久性和改善的光解稳定性。因此,结果表明,大理石废料作为活性颜料或矿物填料,是生产建筑涂料的有前途的替代方法。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2020年第30期|117976.1-117976.16|共16页
  • 作者

  • 作者单位

    UFV Fed Univ Vicosa DEC Civil Engn Dept Av Peter Rolfs S-N Campus Univ BR-36570000 Vicosa MG Brazil;

    UFV Fed Univ Vicosa DPS Soil Dept Av Peter Rolfs S-N Campus Univ BR-36570000 Vicosa MG Brazil;

    UFV Fed Univ Vicosa DPQ Chem Dept Av Peter Rolfs S-N Campus Univ BR-36570000 Vicosa MG Brazil;

    UFV Fed Univ Vicosa DPF Phys Dept Av Peter Rolfs S-N Campus Univ BR-36570000 Vicosa MG Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Marble waste; Waterborne; Sustainable development; Soil pigment;

    机译:大理石废料;水性可持续发展;土壤色素;

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