1) argillization
泥化
2) argillitization
泥化
1.
Discussion on mechanism of disintegration and argillitization of clay-rock;
关于粘土岩崩解、泥化机理的讨论
3) mudstone argillization
泥岩泥化
4) sludge drying
污泥干化
1.
General research about how to chose the coagulations and decolorants of printing and dyeing wastewater and the sludge drying;
印染废水混凝脱色药剂的选择与污泥干化的综合研究
2.
The research progress of sludge drying equipment,common drying process types and their working principle at home and abroad were introduced.
介绍了国内外污泥干化设备的研究进展、常用工艺类型及其工作原理,分析了各种工艺设备的优、缺点及技术难点,归纳总结了污泥干燥设备选型和开发过程中的关键技术点。
3.
The sludge drying device with rotor drum which uses coal powders as fuel is the main technique in the new design, and the dried sludge can be used as substituted fuel in cement plant.
介绍了对天津市东部污水处理厂脱水污泥进行干化、资源化的处理处置措施,设计采用以煤粉为燃料的转鼓污泥干化设备进行污泥干化,并以干化污泥作为水泥厂的替代燃料,力求因地制宜地解决天津市日益严重的污泥出路问题。
5) Cement solidification
水泥固化
1.
Study on cement solidification technology in treating with fly aash;
焚烧飞灰水泥固化技术研究
2.
The cement solidification technology was applied to treating fly ash produced from Guangzhou Likeng Waste-to-Energy Plant,leaching toxicity tests of fly ash and its solidification block were carried out,meanwhile,conditional test was carried out by varying the amount of cement.
以广州市李坑生活垃圾焚烧发电厂采用水泥固化工艺处理飞灰的工程实例,对固化前后的飞灰进行浸出毒性实验,同时采用不同配比的水泥进行固化工艺的条件实验。
3.
At present, pretreatment, cement solidification and vitrification of MSWI fly ash are the main research directions for its comprehensive utilization from environmental and technological point of views.
从环境和技术的角度看 ,垃圾飞灰的预处理、水泥固化和玻璃化是目前飞灰综合利用的主要研究方
6) chemical sludge
化学污泥
1.
Study on resources recovery of chemical sludge derived from wastewater treatment of aluminum alloy surface treatment;
铝件表面处理废水治理所得化学污泥的再生利用研究
2.
The chemical sludge from water treatment plant contain much aluminum when using aluminum-based coagulation.
用铝盐作为水处理絮凝剂所产生的化学污泥往往含有大量的铝,对其综合利用,既能节省资源,又能避免二次污染。
3.
The biochemical sludge yield coefficient,volatile slu.
通过模拟试验、典型实测和理论推算等方法,分别测算了相应的化学污泥产率系数、挥发性污泥产率系数和污泥消化减量系数。
补充资料:泥泥
1.道路泥泞貌。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条