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1)  super light ceramsite
超轻陶粒
1.
In this paper,we expatiate the feasibility and significance of that stone powder used as mainly mineral of ceramsite firstly,put forward sintering conditions and affecting factors of super light ceramsite with stone powder.
石粉作为烧制陶粒的主要原料具有可行性和现实意义,本文提出了利用石粉烧制超轻陶粒的条件、影响因素,对烧制出的超轻陶粒进行的性能测试表明各项技术性能达到或超过国家一等品标准,开辟了生产超轻陶粒的新途径。
2)  super light ceramisite
超轻质陶粒
3)  Ligh-weight shale ceramisite
超轻页岩陶粒
4)  light ceramsite
轻质陶粒
1.
Research on biofilm culturing of the light ceramsite for the ecological filter bed
轻质陶粒滤料生态滤床的挂膜与启动研究
2.
After being preheated and fired,dewatered sludge with additives is made into light ceramsite that can be used as filler for sewage purification and for decoration,etc.
利用城市污水处理厂的污水处理时的固体废物——脱水污泥为原料,加以一定量的辅料,经过预热和烧胀制成具有一定强度的轻质陶粒,可用于净化污水的填料、装饰等,这样城市处理厂的污泥可以大量消耗,不但处理成本低于焚烧、填埋、堆肥等方法,而且可以避免污泥的二次污染,符合中国固体废弃物处理的无害化,减量化和资源化的原则。
3.
On the basis of introducing the study on using sewage sludge from sewage treatment plant as a source to produce a new kind of building material-light ceramsite both at home and abroad,the application prospect of the technology on aspect of preparation technologym,technical feasibility analysis and the economic and environmental profits are discussed.
在介绍了国内外污水厂污泥制轻质陶粒的研究现状的基础上,从陶粒制备工艺、技术可行性、经济效益和环境效益等方面探讨了污水厂污泥制轻质陶粒的应用前景。
5)  light ceramisite
轻质陶粒
1.
On the basis of introducing the study on using the sewage sludge to produce a new kind of building material-light ceramisite both at home and abroad,the application prospect of the technology on aspects of preparation technology,technical feasibility and the economic and environmental profits are discussed.
本文在介绍了国内外污水厂污泥烧制轻质陶粒研究现状的基础上,从陶粒制备工艺、技术可行性、经济效益和环境效益等方面探讨了污水厂污泥制轻质陶粒的应用前景。
6)  ceramsite lightweight aggregate
陶粒轻骨料
补充资料:陶粒混凝土
分子式:
CAS号:

性质:又称为轻骨料混凝土(1ightaggregate concrete)。它是由胶凝材料和轻骨料配制而成的,容重不大于1900kg/m3。可分为全轻混凝土(用轻砂)与砂轻混凝土(用普通砂)。按用途可分为保温用的:密度为800kg/m3以下;结构保温用的:密度为800~1400kg/m3;结构用的:密度为1400kg/m3以上。轻骨料混凝土的耐热、防火性能较普通混凝土的好,但弹性模量则较低。以陶粒为粗骨料,以普通砂或陶砂为细骨料的轻骨料混凝土称为陶粒混凝土。结构用陶粒混凝土的强度可大于40MPa,保温及耐热性能较好。可用于房屋建筑、桥梁、船及窑炉基础等。

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