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1)  high temperature melting slag treatment
高温熔渣处理
1.
"Jiaheng process",a high temperature melting slag treatment process is featured of such a few advantages as short treatment flow route,finer grain size of the final products,less space required for the equipment installation,lower water and power consumptions for treatment of ton/slag,lighter envir.
嘉恒法高温熔渣处理工艺,和其他钢渣处理工艺相比有流程短、成品渣粒度小、设备占地面积小,处理吨渣耗水耗电低,不污染环境,经济效果显著等优势,因而值得推广。
2)  molten slag
高温熔渣
1.
The foaming process originated from reducing TiO2 by carbon in molten slag is investigated in laboratory and quantitatively presented.
对TiO2在高温熔渣中被碳还原的发泡过程进行实验室研究。
2.
The mechanism of dynamics and heat transfer of reducing oxides by carbon in molten slags was analyzed and the relationship between the gas quantity of oxide reduction and time was determined.
分析了高温熔渣中碳还原氧化物的反应和传热机理,确定了还原反应产生气体量和时间的关系,进而给出了相应的内生气源发泡方程。
3.
The reaction of reducing oxide by carbon in molten slag with high temperature has been regarded as first-order reaction.
将高温熔渣中碳还原氧化物看作一级反应,反应的界面按双膜理论的方法来处理,即与时间无关,确定了还原反应产生气体量和时间的关系,进而给出了相应的内生气源发泡方程。
3)  high temperature treatment of melt
熔体高温处理
1.
The effect of 1850℃ high temperature treatment of melt and conventional 1550℃ superheating treatment of melt on solidification structure of M963 superalloy has been investigated.
研究了1850℃熔体高温处理和1550℃常规熔体过热对M963合金凝固组织的影响。
4)  high temperature treatment
高温处理
1.
Effect of high temperature treatment on contents and components proportion of essential oil in fennel;
高温处理对茴香精油含量及其成分组成比例的影响
2.
Effect of carbon cloth high temperature treatment on delamination of 2D-C/C composites;
炭布高温处理对2D-C/C分层缺陷的影响研究
3.
It is found that fiber after high temperature treatment gains size became larger while the gain morphology changed at the same time.
通过X射线衍射仪和扫描电镜对高温处理后的纤维样品进行微观观察,发现随着热处理温度的升高,莫来石纤维的晶粒不断长大的同时,晶粒形貌也发生不同的变化。
5)  heat treatment
高温处理
1.
The different expansion behavior of the composites was qualitatively analyzed before and after different heat treatments.
 研究了不同高温处理前后3DC/SiC复合材料热膨胀系数(CTE)的变化规律,从材料内部热应力变化及结构改变的角度定性地分析了其变化机理。
6)  high temperature processing
高温处理
1.
The process of producing titania feedstock—upgraded slag (UGS) through high temperature processing titania slag was described.
描述了高温处理钛渣制取富钛料UGS渣的过程;对制取UGS渣扩大试验高温处理钛渣时出现的颗粒破碎、流态化状态下由颗粒分级引起的氧化-还原不充分以及钛渣烧结引起的反应器堵塞等问题进行了分析,提出了解决问题的设想。
补充资料:污泥高温处理
分子式:
CAS号:

性质:又称污泥高温处理。是污泥在脱水前进行的调理方法。即在压力(1.01~1.51MPa)下用蒸气加热污泥到180℃,并保持30min,以破坏污泥的凝胶结构,改善污泥的脱水性能。实际运行中可利用处理后污泥所放出的热量来进行污泥的预热。另一种污泥热处理是湿式空气氧化法,它也是一种污泥处置的方法。即在高温(175~315℃)和高压(20MPa)下,用空气将湿污泥中的有机物进行氧化处理。

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