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石矿尾泥与市政污泥制备高强陶粒试验研究
引用本文:孙文慧,夏朝科,姚金根,雍伟,万连环. 石矿尾泥与市政污泥制备高强陶粒试验研究[J]. 非金属矿, 2019, 0(1): 25-28
作者姓名:孙文慧  夏朝科  姚金根  雍伟  万连环
作者单位:中国矿业大学化工学院;湖州新开元碎石有限公司
摘    要:为拓展建筑石矿尾泥的资源化利用途径,开展了以新开元尾泥为主要原料、市政污泥及石灰石为添加剂制备高强陶粒的烧制试验,考察了原料组成及焙烧制度对陶粒堆积密度、吸水率、筒压强度等性质的影响。结果表明:在预热温度500℃、预热时间20 min、焙烧温度1 130℃、焙烧时间10 min时,以石矿尾泥80%、市政污泥10%及石灰石10%为原料,可以制得堆积密度760 kg/m3、吸水率2.6%、筒压强度10.3 MPa的高强陶粒;在高温焙烧阶段添加市政污泥,可以促进孔隙的形成,降低陶粒的密度,促使陶粒轻质化;石灰石的添加兼具造气和助熔的作用。

关 键 词:石矿尾泥  市政污泥  石灰石  焙烧制度  陶粒

Study on Preparation of High Strength Ceramisite by Quarry Mud and Municipal Sludge
Sun Wenhui,Xia Zhaoke,Yao Jingen,Yong Wei,Wan Lianhuan. Study on Preparation of High Strength Ceramisite by Quarry Mud and Municipal Sludge[J]. Non-metallic Mines, 2019, 0(1): 25-28
Authors:Sun Wenhui  Xia Zhaoke  Yao Jingen  Yong Wei  Wan Lianhuan
Affiliation:(School of Chemical Engineering&Technology, China University of Mining and Technology, Xuzhou, Jiangsu 221116;Huzhou Xinkaiyuan Detritus Co., Ltd., Huzhou, Zhejiang 313022)
Abstract:In order to expand the resource utilization way of the tailings of the building stone mine, the experiment of preparing high strength ceramsite with Xin Kaiyuan tail mud as main raw material, municipal sludge and limestone as additive was carried out, and the influence of raw material composition and sintering system on the density of ceramsite, water absorption and barrel compressive strength were investigated. The results show that: under conditions of preheating temperature 500 ℃, preheating time 20 min, and sintering temperature 1 130 ℃, sintering time 10 min, 80% rock tailings, 10% municipal sludge, and 10% limestone as raw materials, the accumulate density of high strength ceramisite was 760 kg/m^3 , the water absorption was 2.6%, and the cylinder pressure strength was 10.3 MPa. At high temperature sintering stage, the addition of municipal sludge can promote the formation of pores, reduce the density of ceramsite, and promote the lightweight of ceramsite;the addition of limestone has the function of gas-making and melting.
Keywords:quarry mud  municipal sludge  limestone  sintering system  ceramsite
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