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1)  mass loss of aggregate after burning
集料烧失量
2)  ignition loss
烧失量
1.
According to the concept of cementitious coefficient of fly ash, a mathematics formula of calculating cementitious coefficient that comprises three parameters (fineness, ignition loss, ratio of water demand) has been established on the basis of experimental results.
根据粉煤灰胶凝系数概念,通过试验研究,建立了细度、需水量比和烧失量三参数的胶凝系数计算模型。
2.
The distribution of diameter,the fractional distribution of ignition loss and the combustion properties of the fly ash supplied by Dongfang Thermal Corporation were investigated.
对石家庄东方热点公司锅炉飞灰的粒径分布、烧失量分级分布和燃烧特性进行了研究 。
3)  loss on ignition
烧失量
1.
Some experimental techniques such as the dilution rate of flux and sample,preparation of sample with melting,the correction methods of the loss on ignition and the effects of enhancement and absorpt.
采用国家标准物质和以标准物质为基体添加纯试剂合成标样制作工作曲线;研究讨论了熔剂体系及样品的稀释比例、样品的熔融制备、烧失量和基体增强吸收效应的校正。
2.
Determination of loss on ignition in dolomite, limestone, clay and high purity magnetite grit by gravimetry after microwave heating is reported in this paper.
采用微波加热灼烧重量法测定白云石、石灰石、粘土及高纯镁砂的烧失量 ,升温时间1 0~ 1 5min ,保温时间 1 5min ,较常用马弗炉灼烧省时节电。
3.
Effects of quality index,which are loss on ignition,SO_3,fineness and water demand ratio, on quality of fly ash are expatiated in this article.
 本文阐述了烧失量、SO3、细度和需水量比等品质指标对粉煤灰质量的影响。
4)  fire loss volume
烧失量高
1.
The reason is high fire loss volume and particle coarse.
究其原因是粉煤灰烧失量高、颗粒粗,其资源再利用性能较差。
5)  high loss of ignition
高烧失量
6)  loss-on-ignition
烧失量
1.
Investigation on Loss-on-ignition of Lake Huangqihai Core and Post-glacial Environmental Evolution;
黄旗海岩芯烧失量分析与冰后期环境演变
2.
To measure the carbon content of the fly ash of a CFB boiler one still continues to adopt the loss-on-ignition method traditionally used for measuring carbon content of the fly ash of pulverized coal-fired boilers.
循环流化床锅炉飞灰碳的测量仍然沿用煤粉锅炉飞灰碳的烧失量法。
3.
Post-glacial Environmental Evolution of Lake Huangqihai, Inner Mongolia: an Investigation on Loss-on-ignition;
在对深度为11米的HQH4岩芯开展了~(14)C年代学、岩性地层学、介形类古生态及介壳稳定同位素、有机碳和总氮及C/N比值、有机碳同位素等多学科综合分析测试和研究工作的基础上,本硕士学位论文研究侧重开展了:1)HQH4岩芯烧失量(Loss-on-ignition)的系统分析测定及该地层学变量的古湖泊和环境变化意义的研究;2)沉水植物川蔓藻化石种子生态学特征及其在黄旗海湖泊水位重建和气候变化研究方面的重要意义的研究。
补充资料:高温高压滤失量
分子式:
CAS号:

性质: 在模拟井底的高温(80~232℃)、高压(4140~6555Pa)条件下,在API规定的过滤面积(4580mm2±60mm2)和过滤时间(30min)里,钻井液的滤失量(ml)。

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