Proceedings of the 5th National New Dry Process Cement Production Technology Exchange Conference

Author: Huang Shumou
Publisher:
Publish Date: 2003-01-01
Features: The Research Society for New Dry Process Cement Production Technology was established in the late 1980s, coinciding with the rapid development of new dry process cement production both domestically and internationally. In accordance with the society's objectives and decisions made by the current board of directors, four sessions of the "Technology and Economy Exchange Conference on Suspension Preheating and Precalciner Kilns" were held in June 1991 (Jiangxi), November 1993 (Zhejiang), November 1996 (Shanghai), and October 1999 (Huangshi), in conjunction with the Technology and Education Committee of the National Building Materials Bureau and other units. Four volumes of proceedings were published, playing a significant role in summarizing and exchanging experiences, promoting research achievements in science and technology, learning advanced new dry process cement production technologies from abroad, and driving the structural adjustment and technological progress of the cement industry.
Table of Contents:--------------------------------------------------------------------------------
1. Preface
2. Message of Congratulations
3. Opening Address of the Fourth Member Congress of the New Dry Process Cement Branch of the China Cement Association
4. The New Industrialization Path of the Cement Industry and the Strategic Goals for 2020
5. Strengthening Basic Research and Valuing Talent Cultivation
6. Reflections on Innovations in Cement Process
7. Equipping Traditional (Cement) Industries with High-Tech
8. Building an "Environmental Material Type" Cement Industry with High-Tech
9. Bottlenecks in the Structural Adjustment of the Cement Industry
10. Enhancing the Overall Technological Level of China's Cement Industry through Intensive Technology
11. Exploring the Problems Arising from the Large-Scale Operation of Cement Plants
12. On the New Industrialization Path of China's Cement Industry
13. The New Dry Process as the Starting Point and Pillar for Building an "Ecological and Environmental Material Type" Cement Industry
14. Technological Progress in the Cement Burning System
15. Development of Domestic Equipment for the 5000t/d Kiln Burning System
16. Analysis of the Technical Configuration and Operational Performance of the 5000t/d National Demonstration Line of Tongling Hailuo——The Kiln Burning System
17. Development and Application of CDC Preheating and Precalciner System Equipment
18. Introduction to the Technical Transformation Plan for the 2000t/d Precalciner System
19. CFD Numerical Preheating Technology and Engineering Applications
20. Fluid Simulation of the Spray Combining Precalciner
21. Numerical Simulation of the New Dry Process Cement Kiln System
22. Research on CDC Precalinder
23. Development and Research of High-Efficiency, Low-Resistance Anti-Plugging Preheaters
24. Design of the Dujiangyan Lafarge Cement Plant
25. Non-Hazardous and Resourceful Treatment of Sludge in Cement Kilns
26. Non-Hazardous and Resourceful Treatment of Sludge in Cement Kilns
27. Ecological Cement and Powder Technology
28. Environmental Protection in Jiajing Xinyang Cement Production
29. An Effective Approach to the Compatibility and Resource Utilization of Urban Waste
30. Resource Utilization of Fly Ash from Municipal Solid Waste Incineration in the Cement Industry
31. Analysis of the Solubility Mechanism of Heavy Metal Elements in Cement
32. Application of Industrial Waste in Cement Production
33. Promoting Clean Production to Improve the Environmental Performance of Cement Enterprises
34. Improving Kiln Liner Design to Eliminate Chromium Pollution
35. Dust Collection System at the End of New Dry Process Cement Production Lines
36. Application of NC Electrostatic Precipitator Technology at Jianfu Cement Plant of Fujian Cement Co., Ltd.
37. Energy Saving and Resource Comprehensive Utilization in the Power Industry
38. Bag Dust Collection Technology and Applications in Cement Plants
39. Medium and Low Temperature Pure Waste Heat Power Generation Technology and Its Applications in Cement Plants
40. Design and Practice of 2000t/d Production Lines to Achieve and Maintain Production Targets
41. Management of the 2000t/d Production Line of Guo Investment Hainan Cement Co., Ltd.
42. Scientific Management and Optimized Operation to Ensure Continuous Stable and High-Yield Production of the Project
43. Implementing the "Three" Goals to Create a Nationalized, Low-Investment Model Project
44. Characteristics of the Engineering Design of the 2500t/d Production Line of Jinan Changqing
45. Careful Organization and Strict Management to Build a Model Project in High-Altitude Areas
46. Discussion on Ways to Reduce Construction Costs of New Dry Process Cement Plants
47. Measures to Increase the Early Production Capacity of Precalinders
48. Guangxi Yufeng 2000t/d Wet Grinding, Dry Burning, and Anthracite-Fired Comprehensive Technology
49. Performance Analysis and Evaluation of the TSD Type Precalinder of LLH Cement Plant
50. Design and Trial Production of the 1500t/d Wet Grinding, Dry Burning Production Line of Sichuan Shuangma Cement (Group) Co., Ltd.
51. Experience in Commissioning and Operation of the 1000t/d Precalinder of Jinchang Cement Group
52. Production Practice of 100t/d Kiln-External Precalinder in High-Altitude Areas
53. Development and Engineering Practice of Anthracite Calcination Technology
54. Cement Production Technology and Equipment for Anthracite-Fired Production
55. Combustion Process of Coal Powder and Anthracite Combustion Equipment
56. Offline Fluidized Bed Precalinder Combustion and Commissioning of Anthracite
57. Application of Anthracite Calcination Rotary Kiln Cement Technology in Dadian County Cement Plant
58. Main Measures for Our Factory's No. 3 Kiln-External Precalinder to Burn Anthracite and the Economic Prospects of Technical Transformation
59. Economic Prospects of Technical Transformation of 700t/d Precalinder to 1200t/d
60. Successful Transformation of 600t/d Five-Stage Preheater Kiln to 1100t/d Precalinder
61. Reducing Costs by Burning Pure Coal to Produce White Cement
62. Development and Application of TRM Series Vertical Roller Mill
63. Research and Practice of HFCG Roller Press and Extrusion Grinding Technology
64. Analysis of Vibration Causes and Solutions of Roller Press
65. Discussion on HORO Grinding Technology of Our Group Company
66. Application of PROFIBUS-DP Fieldbus in Final Grinding
67. Introduction to the External Movement Transformation Project of the Roller Press in Tianshan Cement Company
68. Raw Material Characteristics of Different Grinding Systems and Their Impact on Raw Material Burnability
69. Technical Transformation of Our Factory's Cement Grinding System
70. Current Status and Development of Homogenization Technology for Powder Materials
71. Development and Application of High-Performance Refractory Castables
72. Application of Plate-Type Guide Plates in Heat Exchanger Systems
73. Impact of Imported Three-Channel Burners on Precalinder Production
74. Application of T-SCANNERⅡ Infrared Temperature Scanner on Large Rotary Kilns
75. Technical Transformation Experience of Automation Control Systems for 3500t/d Cement Production Lines
76. A New Sealing Device for Rotary Kilns
77. Research on Coal Powder Preparation System for Rotary Kilns
78. Design and Commissioning of the Belt Conveyor System of Dujiangyan Lafarge Mine
79. Innovation and Development of Electrical Automation in the Cement Industry
80. Application of Information Technology in Human Resource Management
81. Risky Kiln Tail Bucket Elevator in New Dry Process Production Lines
82. KXT Coal Powder and Raw Material Quantitative Feeding System
83. Discussing Ways to Stabilize Rotary Kiln Coal Feeding System to Improve Feeding Accuracy
84. Mining and Application of Yunhongling Limestone Mine
85. Application of Hydraulic Transmission Technology on Domestic Grate Coolers
86. Application and Practice of Grinding Aids in Cement Grinding
87. Brief Discussion on the Impact of SiO? Morphology in High-Silica Soil on Quality in NSP Kilns
88. Effective Ways to Improve ISO Strength in Our Factory
89. Review of Quality System Certification Work

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