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1.
The Stress Corrosion Cracking of the Regenerator in Fluid Catalytic Cracking--the Controlling of Stress Factors in Equipment Manufacturing;
催化裂化再生器应力腐蚀裂纹“应力因素”在设备制造中的控制
2.
A METHOD OF HYDRODYNAMICS CALCULATION FOR FCC UNIT REGENERATOR HEAT REMOVAL SYSTEM WITH NATURAL WATER CIRCULATION
催化裂化再生器自然水循环外取热系统水动力计算方法
3.
The Activity Determination of Pt/Al 2O 3 COPromoted Catalyst Used in Regenerator of Catalytic Cracking(Ⅱ) -- The Determination and Simulation of Equilibrium Activity
催化裂化再生器中铂助燃剂催化活性的测定(Ⅱ)——助燃剂的平衡活性及其模拟
4.
MARGIN ANALYSIS OF FCCU REGENERATOR BASED ON DYNAMIC MODEL
基于动态模型的催化裂化装置再生器裕量分析
5.
Analysis on Coke Burning Effect of Regenerator in FCCU and the Improvement Measures
催化裂化装置再生器烧焦效果分析及改进措施
6.
ANALYSIS ON THE REGULATION OF STRESS CRACK DISTRIBUTION OF RFCC REGENERATOR
重油催化再生器应力腐蚀裂纹分布规律分析
7.
Progress in the nitrogen chemistry during the regeneration of fluid catalytic cracking catalyst
催化裂化催化剂再生过程中的氮化学进展
8.
The Modeling and Optimization for FCC Reactor-regenerator System
催化裂化反应再生系统的建模与优化
9.
Reclamation and Reuse of Waste Catalyst From FCCU
催化裂化废催化剂的分离再生回用技术
10.
reduced catalyst receiver
再生催化剂的接受器
11.
Regeneration and effect analysis of semi-regeneration catalytic reforming catalyst
半再生催化重整催化剂器外再生与效果分析
12.
Soft measurement of operating parameters of conventional catalyst regeneration in FCCU
催裂化装置常规再生操作参数软测量
13.
Analysis of Corrosion in Aromatics Complex Unit and Protection
催化裂化稳定塔底再沸器腐蚀泄露分析与对策
14.
Margin analysis and control design of FCCU regenerator based on dynamic optimization (Ⅰ) Mathematical description of dynamic optimization
基于动态优化的催化裂化装置再生器裕量分析与控制设计(Ⅰ)动态优化的数学描述
15.
DESIGN AND APPLICATION OF FCC FLUE GAS POWER RECOVERY UNIT
催化裂化再生烟气直接发电装置的设计与应用
16.
Technology Progress in Control of Discharge of Regeneration Fume from Catalytic Cracking;
催化裂化再生烟气粉尘排放控制技术进展
17.
New Technology of Wax Oil Regeneration by FCC Slurry Adsorption Treatment
催化裂化油浆吸附处理再生蜡油新技术
18.
Margin analysis and control design of FCCU regenerator based on dynamic optimization (Ⅱ) Solution and result analysis
基于动态优化的催化裂化装置再生器裕量分析与控制设计(Ⅱ)求解方法与结果分析