Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Progress of natural gas desulfurization technology

来源: | 作者:佚名 | 发布时间 :2024-01-02 | 651 次浏览: | 🔊 Click to read aloud ❚❚ | Share:

1 Common natural gas desulfurization methods

From the perspective of the development trend of natural gas desulfurization technology, catalysis, adsorption and biological desulfurization are relatively advanced technologies, and according to the current domestic and foreign natural gas desulfurization methods, it can be roughly divided into chemical desulfurization, physical desulfurization, biological desulfurization and new desulfurization methods.

1.1 Chemical desulfurization method

Chemical desulphurization can be divided into wet desulphurization and dry desulphurization [1]. Dry desulphurization efficiency is high, desulfurizer generally can not be regenerated, suitable for low sulfur gas treatment, in the current industrial application is less. The absorption and regeneration methods of wet desulfurization solution can be divided into three types: chemical absorption method and REDOX method. Wet desulphurization has large processing capacity and continuous operation, and is suitable for occasions with large natural gas processing capacity and high hydrogen sulfide content.

1.1.1 Wet desulfurization technology

Wet desulfurization is through the gas-liquid two-phase contact, the H2S in the gas is transferred to the liquid phase, so as to obtain the gas purification, and then the desulfurization liquid is recycled and recycled. Among them, the commonly used wet desulphurization includes catalytic oxidation method and alkamine method [2], among which the most widely used in the world is the alkamine method.

1.1.1.1 PDS desulfurization

As a new liquid phase catalytic oxidation desulfurization process, PDS technology has the characteristics of simple process, low cost and high desulfurization efficiency compared with other similar technologies, and can not only remove inorganic sulfur, but also remove organic sulfur. High catalytic activity, less dosage, wide range of desulfurization application; It produces more sulfur foam, is easy to separate, does not clog equipment, and is suitable for desulfurization of various gases and low viscosity liquids.

The working principle of PDS desulphurization technology is similar to that of liquid phase catalytic oxidation, but there are essential differences. It is the same that the whole process is composed of two sub-processes of catalytic chemical absorption and catalytic oxidation of sulfide; The difference is that PDS desulfurization technology has catalytic effect on both sub-processes, and desulfurization is the control step of the whole process, that is, PDS desulfurization technology changes the control step of the whole process from the general liquid phase catalytic oxidation regeneration process to the control step of the whole process.

PDS desulfurization is carried out under alkaline conditions, and the desulfurization solution is composed of PDS, alkaline substance and cocatalyst. The alkaline substance used is ammonia or soda ash, but from the point of view of equipment corrosion and removal of organic sulfur, ammonia is better than soda ash. PDS desulfurization technology should be used under the conditions that the operating pressure is not too high, the maximum is not more than 3.0MPa, and the atmospheric pressure is the best, because the high power consumption caused by high pressure natural gas desulfurization treatment is not ideal. In recent years, the PDS desulfurization technology has been continuously improved and perfected, and the performance of various aspects of the catalyst has been greatly improved and improved, and the development of PTS-4, PTS-200 has been developed to the current PTS-400. The improved PDS-400 does not require pre-activation or cocatalyst for industrial use, and the activity index is increased from 0.02minI1 to 0.04min or even above 0.06min, and the catalytic activity and selectivity are improved.

1.1.1.2 Aldoamine method

The alkamine process is the most commonly used method in natural gas desulfurization. The alkylamine process is a process in which H2S and CO2 in natural gas are absorbed by desulfurizing solution such as methyldiethanolamine and diethanolamine, and then react with the alkylamine solution [3]. The common desulfurizers are monoethanolamine (MEA), diethanolamine (DEA), triethanolamine (TEA), diethylene glycol amine (DGA), diisopropanolamine (DIPA), methyldiethanolamine (MDEA). The hydroxyl group and amino group are contained in the structure of alcoholamine, and the hydroxyl group can reduce the vapor pressure of the compound and increase the solubility of the compound in water. The amino group makes the aqueous solution of the compound alkaline in order to promote its absorption of the acidic components.

MEA is the most alkaline among various amines, reacts most quickly with acid gas, can remove both H2S and CO2, and has no selectivity for these two acidic substances. MEA is able to purify H2S and CO2 up to several ppm, but regeneration requires considerable heat. If the raw gas contains COS, MEA method is not suitable due to irreversible reaction and final degradation of solvent.

DEA can remove both H2S and CO2, and is non-selective. Unlike MEA, DEA can be used in situations where COS is present in the feed gas. Even though the molecular weight of DEA is higher, its application is still economical because it can adapt to more than twice the load of MEA. The residual acid gas concentration of DEA solution after regeneration is much lower than that of MEA solution.

  • OEMAX NX-CPU700P PLC Controller
  • OEMAX NX-BASE10 PLC Backplane
  • OEMAX NX-AO4C 4-Channel Analog Output Module
  • OEMAX NX-AI8C 8-Channel Analog Input Module
  • OMACO GF0-57CQD-002 Industrial Control Module Precision Automation
  • OPTIMATE OP-620 Industrial Automation Control Module
  • OPTIMATE OM1510 Industrial Control Module Performance Solution
  • OPTO 22 SNAP-IDC5D Digital Input Module for Automation
  • OPTO 22 SNAP-AITM-2 Thermocouple Module
  • ORIENTAL A4722-9215KM Cooling Fan
  • ORIENTAL MOTOR 2GK180K Gearhead Specifications
  • OSRAM DULUX L 36W 840 865 Lamp Specification
  • OTHER FLASH SERIES 2 Memory Module Data
  • OVATION 1X00458H01 Control Module Specification
  • Emerson Ovation 1C31157G02 Event Sequence Module
  • Emerson Ovation 5X00070G04 Analog Input Module
  • OXIDE 0020-31655 Industrial Controller
  • ABB FAU810 C87-11006 / C10-12010 Flame Analyzer
  • Pilz PSSu E F 4DI Safety Input Module
  • Pepperl+Fuchs KFD2-UFC-1.D Frequency Converter
  • Pacific Scientific VDE0530-S1 Stepper Motor
  • Pacific Scientific 6410-001-N-N-N Stepper Drive
  • PACIFIC LA23GCKC-1Y Servo Motor Reliable Automation Motion Solution
  • PACIFIC LA23GCKX-P500A Servo Motor Advanced Industrial Motion Control
  • PACIFIC LA23GCKC-P500A High Precision Servo Motor for Industrial Automation
  • Pacific Scientific E32NCHA-LNN-NS-00 Hybrid Stepper Motor
  • Pacific Scientific SCE903A3-002-01 Servo Drive
  • Pacific Scientific 6410-024-N-N-N Stepper Motor Drive
  • PALCLEAN JD-BXG Industrial Control Module
  • Panametrics 704-673-20 Ultrasonic Flow Meter
  • Panasonic MSD043A1XX AC Servo Driver
  • Panasonic KX-FT936CN Plain Paper Fax Machine
  • Panasonic DL-1109CWS Electric Bidet Toilet Seat
  • PACIFIC SCIENTIFIC 33VM52-000-29 LDA-196-1000CE Servo Motor Controller
  • PACIFIC LA23GCKC-1G Linear Actuator Specifications
  • PACIFIC PC3406AI-001-E Stepper Controller Manual
  • PACIFIC SCE904AN-002-01 Servo Drive Analysis
  • PACIFIC 6445-001-K-N Digital Servo Drive Details
  • PACIFIC SCIENTIFIC R43HCNA-R2-NS-VS-00 Motor Data
  • Pacific Scientific H32NCHA-LNN-NS-00 Hybrid Motor Performance
  • ABB DSAI130DK01 3BSE020828R1 Analog Input Module
  • Parker 466966-0001-3820 Industrial Component Data
  • PARKER ZETA6104 Microstepping System
  • PARKER COMPAX 2500S/F3 Servo Drive Manual Details
  • PARKER CX-DH Indexer Drive Technical Specifications
  • PARKER 6K8 Motion Controller Features and Specifications
  • PARKER EVM32-BASE I/O Module Base Technical Specification
  • ABB Pb PN-112718 Digital Input Module
  • Pb PN-45734 PN-73899 Industrial Automation Module
  • Control Techniques Pb PN-40856 Industrial Control Module
  • Pb PN-104412 4002910956 Industrial Control Module
  • Siemens Pb PN-41513 Industrial Ethernet Module
  • Pelco PA30-0065-00-A1 PTZ Decoder Module
  • Pentek FILTER 3F11 800000919 Pleated Filter Cartridge
  • Pepperl+Fuchs RSD-TI-EX8 Temperature Input Module
  • PERITEK AC7-00712-1113 Industrial Interface Module
  • PFEIFFER EVR116 Vacuum Control Module
  • Pepperl+Fuchs RSD-CI-EX8 Hazardous Area Interface Module
  • PEPPERL+FUCHS 2108HAT Intrinsic Safety Barrier Module
  • Philips 958481320201 PROC+ Processing Unit
  • Philips 958481321300 PSB Power Supply Board
  • Philips 958481321220 PD208 Power Module
  • PHILIPS 958481321200 PD216 Control Module
  • PHILIPS 958481320201 PROC PLUS Control Module
  • Philips 958481320400 PIF Interface Module
  • Philips 958481320100 LCB Control Board
  • PHILIPS 958481223220 Industrial Control Module
  • PHILIPS 958481223223 Industrial Control Module
  • PHILIPS 958481321300 Industrial Control Module
  • PHILIPS SCM040 Digital Output Synchronization Module
  • PHILIPS DSI020 Data Storage Interface Module
  • PHILIPS OPM010 Optoelectronic Control Module
  • PHILIPS VBM010 Industrial Automation Module
  • PHILIPS VBM030 Turbine Supervisory Instrumentation
  • PHILIPS PR1613 Industrial Control Module
  • PHOENIX PATG1/23 1013847 Ground Terminal Block
  • Phoenix Contact IB ST 24 AI 4/SF Analog Input
  • Phoenix Contact OPC5315-004-AB Industrial PC
  • Phoenix Contact UMK-SE11.25-1 Side Element
  • PHOENIX 2961192 Relay Module
  • PHOENIX IB ST ZF 24 AI 4/SF Analog Input Module
  • Phoenix Contact PLC-BSC-24DC/21 Relay Base
  • Phoenix Contact UK6N Feed-Through Terminal Block
  • Phoenix Contact UK4-T Disconnect Terminal Block
  • Phoenix UK3N Screw Terminal Block
  • Phoenix QUINT-PS-100-240AC/10 Power Supply
  • Phoenix QUINT PS-100-240AC/24DC/10 Power Supply
  • Phoenix UT 6-HE SI Surge Protection Terminal Block
  • Phoenix UT 4-MTD Feed-through Terminal Block
  • Phoenix UT 4-HE SI Surge Protection Terminal Block
  • Phoenix IBS 24BK-I/O-T Bus Coupler
  • Phoenix Contact HDFK4 High-Current Terminal Block
  • PHOENIX ST-SI-UK4 Fuse Terminal Block
  • PHOENIX FLMC10BASE-T/FO G850 Fiber Media Converter
  • PHOENIX CONTACT QUINT-PS-100-240AC/24DC/40 Power Supply
  • PHOENIX CONTACT QUINT-DIODE/40 Redundancy Module
  • Phoenix Contact 2884208 Wireless I/O MUX
  • Photonetics 3646 HE 1540 Tunable Laser Source
  • PI C-663.12 Mercury Multi-Axis Step Motor Controller
  • PI C-663.10 Mercury Step Motor Controller
  • Pillar CB6687-2L Industrial Communication Board
  • Pilz DE-106712 A.F.051.5/01 Safety Module
  • Pilz 680003 Safety Relay Module Set
  • Pilz 301140 PNOZ X3 Safety Relay
  • Pilz P1U-1NB Safety Relay
  • Pioneer PM3398B-6-1-3-E Power Supply
  • Pioneer Magnetics PM3326B-6-1-2-E Power Supply
  • Pioneer Magnetics HYRSP-1500-56 Power Supply
  • Pioneer Magnetics PM3398B-6-1-3-E Power Supply
  • Pioneer Magnetics PM3328BP-6 Power Supply
  • Potter & Brumfield SDAS-01-7Y2S1024 Relay
  • Powec PMP10.48 SIC High-Efficiency Rectifier
  • Powerbox PU200-31C Industrial DC-DC Converter
  • PIONEER MAGNETICS PM3398BP-6-1-3-E Power Supply Module
  • PIONEER MAGNETICS PM1253AL-6-3-Z03 Power Supply Module
  • Powerex PD411811 Rectifier Diode Module
  • Power-One MAP55-1024 AC-DC Power Supply
  • ProSoft MVI56-MDA4 ControlLogix Multi-Protocol
  • POLYSPED PRD2-200 Industrial Drive Module
  • P-OPEN P-OPEN-P4-150 PAC-OP150 Operator Panel
  • ABB Processor 958481321210 350211080320 Rugged CPU
  • ABB Processor 958481320201 350211080460 Safety CPU
  • ABB Processor 958481321200 350211080320 CPU Module
  • ABB Processor 958481321220 350211080320 CPU Module
  • ABB Processor 958481320100 350211080090 CPU Module
  • Pro-Face PL5901-T42-24V HMI Touch Panel
  • PROFIBUS PB3-VME-1-E V1.2.2 Interface Card
  • PROMESS 850040060P Force Displacement Monitor