1.
lurgi low temperature carbonization oven
鲁奇的低温焦化烘炉
2.
Study on Co-coking Blending Coking Coal with Low Temperature Coal Tar Pitch and Tarry Residue;
低温煤焦油沥青及焦油渣配煤炼焦实验研究
3.
PRACTICE OF SMELTING 75% FERROSILICON WITH SHENMU LOW-TEMPERATURB COKE
使用低温神木焦冶炼75%硅铁的实践
4.
Discussion on Reducing the Space Temperature at the Top of 7.63m Coke Oven in Yankuang
降低7.63m焦炉炉顶空间温度的探讨
5.
Experimental Research on the Fluidity of Low-temperature Coal Tar
低温煤焦油流动性能改善的实验研究
6.
Wet Hydrogen Sulfides Corrosion in Delayed Coking System and Protection
焦化装置低温硫化氢系统腐蚀与防护
7.
Morphological Analysis of Low-temperature Nitrogen Adsorption Isothermal Curves of Coal Coke Undergoing a Quick Temperature Rise in an O_2/CO_2 Atmosphere
O_2/CO_2气氛快速升温煤焦低温氮吸附等温线形态分析
8.
Being applicable at low temperatures it offers a suitable alternative to coal tar epoxy.
低温时,可作为环氧煤焦沥青漆的替代物。
9.
Investigation of Micro-Emulsified Fuel Based on Methanol and Low Temperature Coal Tar
甲醇/低温煤焦油为基料的微乳化燃料的研究
10.
Study on Dehydration of Low Temperature Coal-Tar and Extraction Condition of Phenolic Compound
中低温煤焦油脱水及酚类物提取的研究
11.
Composition analysis of moderate-low temperature coal tar produced with Lurgi method by Yunnan Jiehua Company
云南解化集团鲁奇法中低温煤焦油的组成分析
12.
STUDY ON HYDRO-CATALYSIS OF MIDDLE/LOW-TEMPERATURE COAL TAR TO CLEAN FUEL
中/低温煤焦油催化加氢制备清洁燃料油研究
13.
Adsorption and catalytic removal of hydrogen sulfide on active carbon (char) at low temperature
活性炭(焦)低温吸附催化脱除H_2S的基础研究
14.
Notion of Hot Raw Coke Oven Gas(COG) Utilization on Inside Airflow Pyrogenation Oven to Realize Low Temperature Carbonization
热焦炉荒煤气应用于气流内热式炉实现煤低温干馏的初步设想
15.
Study on Preparation and Properties of the High Temperature Low-expansion Glaze on Burnt Stove Door Cordierite Brick;
焦炉炉门堇青石衬砖高温低膨胀釉的制备及性能研究
16.
Study on the Preparation of Microemulsion Fuel Based on Methanol and Low Temperature Coal Tar
低温煤焦油/甲醇为基料的微乳化燃料的制备研究
17.
Treatment of Coking Wastewater by Airlift Loop Reactor with Biofilm/Activated Sludge at Low Temperature
低温下膜泥复合气提升循环流反应器处理焦化废水
18.
Elevating the temperature of the cooling water or reducing the wall temperature before water quenching can prevent walls from yielding effectively.
提高冷却水温度或降低进水冷焦前塔体温度能有效防止塔体产生塑性变形。