Dissertation > Excellent graduate degree dissertation topics show

Research and Analysis on Energy Consumption and Energy Saving Potential of Metallurgical Sulfuric Acid Production Process

Author: SunPingPing
Tutor: ShiZhangMing
School: Central South University
Course: Thermal Power Engineering
Keywords: e-p method Standard materials flow diagram BP neural network Metallurgical sulfuric acid production
CLC: TQ111.1
Type: Master's thesis
Year: 2011
Downloads: 81
Quote: 0
Read: Download Dissertation

Abstract


Metallurgical sulfuric acid production exists extensively in the non-ferrous industry. All the researches about this production are belong to the field of flue gas recycling, and none of them are related to the system energy saving. However, with the increasing of the industrial output and consuming of flue gas for the acid production, the research on energy saving for the metallurgical sulfuric acid production and the sulfuric acid industry has been increasing substantially in recent years. In this paper, the system energy saving of a sulfuric acid plant was investigated.Based on first law of thermodynamics, the thermal equilibrium model was established. The results showed that:The heat loss of system cooling water was 85816.66 MJ/h which accounts for 60.26% of the total. The total heat loss for finished products, waste acid and exhaust gas of evacuation was 13391.33 MJ/h which accounts for 15.01% of the total.The main reasons that the overall energy intensity of a sulfuric acid production plant were analyzed by e-p method. It was shown from the result that the actual energy intensity of final product was 32.33 kgce and the standard energy intensity of final product was 14.85 kgce, so the energy-saving potential for enterprise was 17.48 kgce. The increment due to the increment of unit process energy intensity and products ratio was 16.33 kgce and 1.15 kgce, which takes up 93 percent and 7 percent of the overall energy saving respectively.The practical material flow diagram and the standard materials flow diagram (SMFD) ware constructed accordingly. The influences of materials flow on energy intensity were analyzed quantitatively. The following results can be obtained from the analysis:1) Outputting sulfur-containing materials from an intermediate process to surroundings increases the energy intensity of this process and product ratios of upstream processes, hence increase the energy intensity of final product, the larger the ordinal number of the unit process, the greater will be the increase. The main materials flows are loss of flue gas project and waste acid project.2) Returning sulfur-containing from absorption section (precipitation process) to former process such as drying section increases not only precipitation process energy intensity but also the product ratios of processes between absorption and drying preparation, hence increase the energy intensity of final product, the longer the returning distance, the greater will be the increase.3) Inputting sulfur-containing materials from drying section to absorption section, although increases precipitation process energy intensity, reduces the product ratios of processes between absorption and drying preparation, hence increase the energy intensity of final product.A calculation software about energy consumption analysis was designed and developed according to the theoretical basis of SMFD methodology. The calculation software can be widely used in the energy consumption analysis of production processes.BP neural network prediction model was established, which was used to predict the energy consumption of sulfuric acid factory system. There was little error between predictive value and actual value.

Related Dissertations

  1. Convergence and Stability of Numerical Solution of Stochastic Differential Equations with Piecewise Continuous Arguments,O211.63
  2. The Study of a Radial Point Interpolation Meshless Method with Polynomial Basis and It’s Application,O241
  3. Preparation of ITO Quai-1D Nanostructures by Sol-Gel Method Combined with Porous Anodic Aluminum Oxide Template,TB383.1
  4. Study on the Synthesis Bi3.25La0.75Ti3O12(BLT) Nanotubes and Nano Wires,TB383.1
  5. Hydrothermal Synthesis of Oxide Hollow Spheres,TB383.4
  6. Research on the Structure and Characteristics of Permanent Magnetic Coupling,TH139
  7. Development of Turbine Rotor Dynamic Balance System,TH877
  8. Design and Research on Stabilization Loop of Gyro Stabilized Pod Control System,V241.5
  9. Attitude Control of a Three-Axis Stabilized Satellite,V448.22
  10. Robust Adaptive Control Algorithms Research for the System of Spacecraft Attitude Dynamics,V448.22
  11. Simulation Analysis on Temperature Stress of RCC Arch Dam and Its Construction Joints Design Research,TV642.2
  12. Application of Interior-Point Theory for Reactive Power Optimization in Large Power Systems,TM714.3
  13. Implementation Study of evaluation method of the high school IT courses,G633.67
  14. Research on Hyperspectral Image Compression Method Based on Information of Interest,TP391.41
  15. Research on Feature Extraction and Classification of Tongue Shape and Tooth-Marked Tongue in TCM Tongue Diagnosis,TP391.41
  16. Study on Virtual Detector of Infrared Hyper-Spectral Image,TP391.41
  17. Research on Visual Servo System of Mechanical ARM,TP242.6
  18. Yunnan Province, human capital, the network structure of critical efficiency factor,F249.27
  19. Mathematics Teaching Material for Primary School Mathematical Thinking in the Point of Penetration,G623.5
  20. Establishment of ELISA for Detecting Cd-MT of Pteria Penguin and Preliminary Study of ELISA-kit,X835
  21. Municipal tourism land use planning environmental impact assessment,X820.3

CLC: > Industrial Technology > Chemical Industry > Basic inorganic chemical industry > Inorganic acids production > Sulfuric Acid Industry
© 2012 www.DissertationTopic.Net  Mobile