Welcome to the Industrial Automation website!

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

Application of green chemical technology in chemical engineering and technology

来源: | 作者:佚名 | 发布时间 :2023-11-24 | 282 次浏览: | Share:

1 Overview of green chemical technology

Green chemical technology is a new production technology that integrates chemical engineering and technology with the concept of energy conservation and environmental protection, aiming at the maximum control of environmental pollution generated in the production process of the chemical industry, and realizing the upgrading and transformation of the industrial structure of the chemical industry [3]. It can effectively reduce the discharge of harmful pollutants in the chemical production process and reduce the pollution degree of pollutants [4]. In the process of chemical production, a large number of chemical products, raw materials for chemical production, chemical solvents, chemical wastes, catalysts, etc. are involved. If these items are not properly handled, they will cause damage to China's ecological environment and have a serious impact on the life and health of Chinese residents [5]. Green chemical technology is a technology to control such hazardous substances, promote the recycling of waste materials, improve the recycling rate of chemical materials, reduce the pollution of the ecological environment, and promote the development and reform of chemical production processes by changing the nature of hazardous chemicals.

2. Research on pollution causes of traditional chemical engineering and process

2.1 Limitation of material cost

In the process of chemical production, in order to improve economic benefits, chemical enterprises will use non-environmentally friendly cheap materials for production according to the needs of production. These chemical enterprises only realize that such materials can improve the output of chemical production and enhance the immediate economic benefits, but they do not realize that the application of such materials will lead to serious environmental pollution and produce a large amount of waste [6]. In the disposal of waste, enterprises also need to spend more financial resources and energy, which not only harms the environment, but also reduces the economic benefits of enterprises.

2.2 Limitation of production technology

In the process of chemical production, it is difficult to use chemical raw materials effectively, which is also the problem faced by the chemical industry in the development process. In response to this problem, chemical enterprises can only achieve the effective use and reasonable allocation of chemical raw materials by improving their own technical level and promoting the standards and standardization of chemical production.

3 Principles of green chemical technology

3.1 Rational use of chemical raw materials

Raw materials, as an important resource of chemical production, are of great significance to chemical production. In green chemical technology, more attention should be paid to the selection of chemical raw materials. Firstly, chemical raw materials with low pollution degree and high controllability should be preferentially selected, so as to reduce the pollution caused by chemical production by controlling the source of chemical raw materials [7]. Green and natural chemical raw materials have better environmental protection effects and can reduce the output of pollutants. At the same time, it is necessary to control the quantity of chemical raw materials, and use raw materials in strict accordance with the specifications and standards of the chemical production process to avoid waste and pollution caused by excessive input of raw materials.

3.2 Rational application of green catalysts

Catalyst is one of the most commonly used materials in chemical production, which can speed up the reaction rate between substances and improve the reaction effect of chemical substances. Catalysts are of great significance for chemical production, which can promote chemical production schedule and efficiency [8]. In the traditional chemical technology, most catalysts will produce pollution in the process of use because of their properties. In the process of catalyst application, the waste generated will cause very serious pollution to the environment. Harmless green catalysts should be used in green chemical technology. Green catalysts can avoid material waste and reduce environmental pollution, and improve the efficiency of chemical production. Green catalysts, although compared with traditional catalysts, the use of costs may increase, but the relative use of green catalysts can save chemical enterprises to deal with waste, pollution costs, but also improve the utilization efficiency of chemical raw materials, reduce the waste of resources, so the application of green catalysts will become one of the important trends in the development of the chemical industry in the future.

3.3 Rational use of green chemical reactions

In the process of chemical production, it is necessary to realize that the same product can be produced through different chemical reactions. According to the potential of the raw material itself, the amount of pollution caused by the chemical reaction to the environment, choose the green chemical reaction for chemical production. The representative of green chemical reaction is addition reaction and rearrangement reaction, which can realize the effective transformation of results without waste and side reactions, and has strong economy, and is one of the green chemical processes with high efficiency [9]. The study of green chemical reaction can promote enterprises to improve the level of green chemical technology, and also reduce the unnecessary costs caused by waste treatment, which is of great significance for chemical enterprises to achieve healthy and sustainable development.

  • Metso A413177 Digital Interface Control Module
  • METSO A413222 8-Channel Isolated Temperature Input Module
  • Metso A413313 Interface Control Module
  • METSO D100532 Control System Module
  • METSO A413310 8-Channel Digital Output Module
  • METSO A413659 Automation Control Module
  • Metso D100314 Process Control Interface Module
  • METSO A413665 8-Channel Analog Output Module
  • METSO A413654 Automation Control Module
  • Metso A413325 Interface Control Module
  • METSO A413110 8-Channel Analog Input Module
  • METSO A413144 Automation Control Module
  • Metso A413160 Digital Interface Control Module
  • METSO A413152 8-Channel Digital Input Module
  • METSO A413240A Automation Control Module
  • METSO A413146 Digital Interface Control Module
  • METSO A413150 Multi-Role Industrial Automation Module
  • METSO A413125 Automation Control / I/O Module
  • Metso A413111 Interface Control Module
  • METSO A413140 Automation Control Module
  • METSO 020A0082 Pneumatic Control Valve Component
  • METSO 02VA0093 Automation Control Module
  • METSO 02VA0153 Actuator Control Module
  • METSO 02VA0190 Automation Control Module
  • Metso 02VA0193 Pneumatic Control Valve Component
  • METSO 02VA0175 Valve Actuator Module
  • METSO D100308 Industrial Control Module
  • MOOG QAIO2/2-AV D137-001-011 Analog Input/Output Module
  • MOOG D136-002-002 Servo Drive or Control Module
  • MOOG D136-002-005 Servo Drive Control Module
  • MOOG D136E001-001 Servo Control Card Module
  • MOOG M128-010-A001B Servo Control Module Variant
  • MOOG G123-825-001 Servo Control Module
  • MOOG D136-001-008a Servo Control Card Module
  • MOOG M128-010 Servo Control Module
  • MOOG T161-902A-00-B4-2-2A Servo-Proportional Control Module
  • MOTOROLA 21255-1 Electronic Component Module
  • MOTOROLA 12967-1 / 13000C Component Assembly
  • MOTOROLA 01-W3914B Industrial Control Module
  • Motorola MVME2604-4351 PowerPC VMEbus Single Board Computer
  • MOTOROLA MVME162-513A VMEbus Embedded Computer Board
  • MOTOROLA MPC2004 Embedded PowerPC Processor
  • Motorola MVME6100 VMEbus Single Board Computer
  • MOTOROLA MVME162PA-344E VMEbus Embedded Computer Board
  • MOTOROLA RSG2PMC RSG2PMCF-NK2 PMC Expansion Module
  • Motorola APM-420A Analog Power Monitoring Module
  • MOTOROLA 0188679 0190530 Component Pair
  • Motorola 188987-008R 188987-008R001 Power Control Module
  • MOTOROLA DB1-1 DB1-FALCON Control Interface Module
  • MOTOROLA AET-3047 Antenna Module
  • Motorola MVME2604761 PowerPC VMEbus Single Board Computer
  • MOTOROLA MVME761-001 VMEbus Single Board Computer
  • MOTOROLA 84-W8865B01B Electronic System Module
  • Motorola MVIP301 Digital Telephony Interface Module
  • MOTOROLA 84-W8973B01A Industrial Control Module
  • MOTOROLA MVME2431 VMEbus Embedded Computer Board
  • MOTOROLA MVME172PA-652SE VMEbus Single Board Computer
  • Motorola MVME162-223 VMEbus Single Board Computer
  • MOTOROLA BOARD 466023 Electronic Circuit Board
  • Motorola MVME333-2 6-Channel Serial Communication Controller
  • MOTOROLA 01-W3324F Industrial Control Module
  • MOTOROLA MVME335 VMEbus Embedded Computer Board
  • Motorola MVME147SRF VMEbus Single Board Computer
  • MOTOROLA MVME705B VMEbus Single Board Computer
  • MOTOROLA MVME712A/AM VMEbus Embedded Computer Board
  • MOTOROLA MVME715P VMEbus Single Board Computer
  • Motorola MVME172-533 VMEbus Single Board Computer
  • Motorola TMCP700 W33378F Control Processor Module
  • MOTOROLA MVME188A VMEbus Embedded Computer Board
  • Motorola MVME712/M VME Transition Module
  • Motorola 30-W2960B01A Industrial Processor Control Module
  • MOTOROLA FAB 0340-1049 Electronic Module
  • Motorola MVME162-210 VME Single Board Computer
  • Motorola MVME300 VMEbus GPIB IEEE-488 Interface Controller
  • MOTOROLA CPCI-6020TM CompactPCI Processor Board
  • Motorola MVME162-522A VMEbus Single Board Computer
  • MOTOROLA MVME162-512A VMEbus Single Board Computer
  • MOTOROLA MVME162-522A 01-W3960B/61C VMEbus Single Board Computer
  • MOTOROLA MVME162-220 VMEbus Embedded Computer Board
  • Motorola MVME162-13 VMEbus Single Board Computer
  • MOTOROLA MVME162-10 VMEbus Single Board Computer
  • RELIANCE 57C330C AutoMax Network Interface Module
  • RELIANCE 6MDBN-012102 Drive System Module
  • RELIANCE 0-60067-1 Industrial Drive Control Module
  • Reliance Electric 0-60067-A AutoMax Communication Module
  • RELIANCE S0-60065 System Control Module
  • RELIANCE S-D4006-F Industrial Drive Control Module
  • Reliance Electric S-D4011-E Shark I/O Analog Input Module
  • RELIANCE S-D4009-D Drive Control Module
  • RELIANCE S-D4043 Drive Control Module
  • Reliance DSA-MTR60D Digital Servo Motor Interface Module
  • RELIANCE 0-60063-2 Industrial Drive Control Module
  • RELIANCE S-D4041 Industrial Control Module
  • Reliance Electric SR3000 2SR40700 Power Module
  • RELIANCE VZ7000 UVZ701E Variable Frequency Drive Module
  • RELIANCE VZ3000G UVZC3455G Drive System Module
  • Reliance Electric S-D4039 Remote I/O Head Module
  • RELIANCE 0-57210-31 Industrial Drive Control Module
  • RELIANCE 0-56942-1-CA Control System Module
  • Reliance Electric 0-57100 AutoMax Power Supply Module
  • RELIANCE 0-54341-21 Industrial Control Module
  • RELIANCE 0-52712 800756-21B Drive Interface Board
  • KEBA PS242 - Power Supply Module
  • KEBA BL460A - Bus Coupling Module
  • KEBA K2-400 OF457/A Operating Panel
  • KEBA T200-M0A-Z20S7 Panel PC
  • KEBA K2-700 AMT9535 Touch Screen Panel
  • KEBA T20e-r00-Am0-C Handheld Terminal
  • KEBA OP350-LD/J-600 Operating Panel
  • KEBA 3HAC028357-001 DSQC 679 IRC5 Teach Pendant
  • KEBA E-32-KIGIN Digital Input Card
  • KEBA FP005 Front Panel
  • KEBA BT081 2064A-0 Module
  • KEBA FP-005-LC / FP-004-LC Front Panel
  • KEBA SI232 Serial Interface
  • KEBA T70-M00-AA0-LE KeTop Teach Pendant
  • KEBA KEMRO-BUS-8 Bus Module
  • KEBA IT-10095 Interface Terminal
  • KEBA RFG-150AWT Power Supply Unit
  • KEBA C55-200-BU0-W Control Unit
  • KEBA Tt100-MV1 Temperature Module
  • KEBA E-HSI-RS232 D1714C / D1714B Interface Module
  • KEBA E-HSI-CL D1713D Interface Module
  • KEBA D1321F-1 Input Module
  • KEBA E-32-D Digital Input Card
  • KEBA C5 DM570 Digital Module
  • KEBA XE020 71088 Module
  • KEBA E-16-DIGOUT Digital Output Card