无机盐工业
主管:中海油天津化工研究设计院有限公司
主办:中海油天津化工研究设计院有限公司
   中海油炼油化工科学研究院(北京)有限公司
   中国化工学会无机酸碱盐专业委员会
ISSN 1006-4990 CN 12-1069/TQ
环境·健康·安全

磷渣基人造大理石的实验研究

  • 朱丽苹
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  • 曲靖师范学院化学与环境科学学院,云南曲靖 655011
朱丽苹(1982— ),女,硕士研究生,助教,主要研究方向为工业固体废弃物资源化利用;E-mail: 254969980@qq.com。

收稿日期: 2019-10-23

  网络出版日期: 2020-04-22

基金资助

云南省教育厅项目(2019J0604);曲靖师范学院校级青年项目(2013QN027)

Experimental study on phosphorous slag-based artificial marble

  • Liping Zhu
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  • College of Chemistry and Environmental Sciences,Qujing Normal University,Qujing 655011,China

Received date: 2019-10-23

  Online published: 2020-04-22

摘要

以磷渣为主要原料,研究磷渣粉与粉煤灰和熟石灰的质量比、水胶质量比、胶骨质量比、骨料组成等对磷渣基人造大理石性能的影响,采用SEM电镜和抗折抗压实验仪表征材料性能。结果表明:磷渣基胶凝材料各物料配比为m(磷渣粉):m(粉煤灰):m(熟石灰)=90:4:6,水胶质量比为0.18,胶骨质量比为1:1.5,骨料组成为m(炉渣):m(细磷渣):m(粗磷渣)=10:40:10,磷渣基人造大理石的抗压强度和抗折强度可以达到94.38 MPa和12.09 MPa,其抗压强度和抗折强度均高于天然大理石,可在广泛领域替代天然大理石使用,为磷渣的资源化利用开辟一条新的路径。

本文引用格式

朱丽苹 . 磷渣基人造大理石的实验研究[J]. 无机盐工业, 2020 , 52(4) : 72 -74 . DOI: 10.11962/1006-4990.2019-0296

Abstract

With the phosphorous slag as main raw material,the effects of the mass ratio of phosphorous slag powder,fly ash and hydrated lime,the mass ratio of water and glue,the mass ratio of glue and bone and the composition of aggregate etc.on the properties of phosphorous slag-based artificial marble were studied.The material properties were characterized by SEM electron microscope and bending and compression test instrument.The results showed that the ratio of phosphorus slag-based cementation materials,i.e.the mass ratio of phosphorus slag powder,fly ash and hydrated lime was 90:4:6,the mass ratio of water to glue was 0.18,the mass ratio of glue to bone was 1:1.5,and aggregate gradation(the mass ratio of slag,coarse phosphorus slag and fine phosphorus slag) was 10:40:10.The compressive strength and flexural strength of phosphorous slag-based artificial marble can reach 94.38 MPa and 12.09 MPa respectively.Its compressive strength and flexural strength are higher than natural marble.It can be used as an alternative to natural marble in a wide range of fields,opening up a new path for the resource utilization of phosphorus residue.

参考文献

[1] 曹永丹, 李彦鑫, 张金山 , 等. 细度和煅烧温度对煤矸石火山灰活性及微观结构的影响[J]. 硅酸盐学报, 2017,45(8):1153-1158.
[2] 蒋明, 龚培俐, 黄小凤 , 等. 电石渣煅烧过程中气态污染物释放特性[J]. 无机盐工业, 2019,51(4):55-58.
[3] 许立军, 王永旺, 陈东 , 等. 粉煤灰酸法提取氧化铝工艺综述[J]. 无机盐工业, 2019,51(4):10-13.
[4] 程麟, 盛广宏, 皮艳灵 . 磷渣对硅酸盐水泥凝结时间的影响及机理[J].南京工业大学学报:自然科学版, 2004(5):5-8.
[5] Li D, Shen J, Mao L , et al. The influence of admixtures on the pro-perties of phosphorous slag cement[J]. Cement and Concrete Rese-arch, 2000,30(7):1169-1173.
[6] 薛瑞, 徐建, 陈春光 , 等. 炼钨含磷钙渣回收-制备石膏晶须联合生产工艺研究[J]. 无机盐工业, 2015,47(9):77-80.
[7] 刘健, 解田, 朱云勤 , 等. 磷石膏钙渣制备高品质轻质碳酸钙工艺研究[J]. 无机盐工业, 2010,42(6):47-49.
[8] 田耀鹏, 谢吉优, 孙志 . 磷石膏综合利用副产物碳酸钙渣的研究进展[J]. 无机盐工业, 2014,46(1):8-10.
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