Welcome to the Industrial Automation website!

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

What is the history of wastewater treatment technology?

来源: | 作者:佚名 | 发布时间 :2023-11-22 | 394 次浏览: | Share:

The demand for sewage treatment is accompanied by the birth of the city. After hundreds of years of changes, urban sewage treatment technology has developed from the initial primary treatment to the current tertiary treatment, from simple disinfection and precipitation to organic matter removal, nitrogen and phosphorus removal to deep treatment and reuse. Among them, the advent of activated sludge method is of epoch-making significance. This year marks the 106th anniversary of the birth of activated sludge method. How will urban sewage treatment technology develop in the future? In this regard, let's first review the road that urban sewage treatment has gone through in those years.

History of sewage treatment technology

The history of urban sewage treatment can be traced back to the ancient Roman period, when the environmental capacity was large, the self-purification capacity of the water body could also meet the water needs of humans, and people only need to consider the drainage problem. Then, with the acceleration of urbanization, domestic sewage caused the spread of infectious diseases through the transmission of bacteria. For health considerations, humans began to treat the discharged domestic sewage. The early treatment methods used lime, alum and other precipitation or bleach powder for disinfection. In the late Ming Dynasty, there were sewage purification devices in China. However, because the demand was not strong at that time, domestic sewage in China was still dominated by agricultural irrigation. In 1762, the United Kingdom began to use lime and metal salts to treat urban sewage.

In the mid-18th century, the Industrial Revolution in Europe began, among which organic matter in urban sewage became the focus of removal. In 1881, French scientists invented the first bioreactor, and also the first anaerobic biological treatment tank - moris tank was born, which opened the prelude to biological treatment of sewage. In 1893, the first biological filter was put into use in Wales, England, and quickly promoted in Europe, North America and other countries. The development of technology has promoted the emergence of standards. In 1912, the British Royal Commission on Sewage Treatment proposed BOD5 to evaluate the degree of water pollution.

In 1914, since the advent of activated sludge method secondary biological treatment technology in Manchester, England, it has been widely used in the world, and the first developed countries have popularized secondary biological treatment technology. However, in view of the problems existing in the activated sludge method, researchers in various countries continue to transform and develop the technology. There have been ordinary activated sludge method, anaerobic/anoxic/aerobic activated sludge method (A/O,A /A/O), batch activated sludge method (SBR method), improved SBR (MSBR) method, integrated activated sludge method (UNITANK), two-stage activated sludge method (AB method), and various types of biofilm method.

Sewage treatment technology in economically developed countries from the end of the treatment in the 1960s to the prevention and control combination in the 1970s, from the centralized treatment in the 1980s to the clean production in the 1990s, and constantly update the treatment technology, facilities and equipment. At present, the main development trend of sewage biological treatment technology is a combination of new technologies and new processes. Such as synchronous denitrification and phosphorus removal aerobic granular sludge technology, electrical/biological coupling technology, adsorption/biological regeneration process, biological adsorption technology, and the use of light, sound, electricity and efficient biological treatment technology combined with the treatment of high concentration of toxic, harmful and difficult to degrade organic wastewater new physical and chemical, biological treatment combination technology, Such as photocatalytic oxidation biological treatment new technology, electrochemical advanced oxidation/efficient biological treatment technology, ultrasonic pretreatment/efficient biological treatment technology, wet catalytic oxidation/efficient biological treatment technology and radiation decomposition biological treatment combination process.

In many countries, there have been major changes in the objectives and technical routes of water pollution control, and the objectives of water pollution control have changed from the traditional sense of "sewage treatment, standard discharge" to "water recycling" with water quality regeneration as the core, and from the simple "pollution control" to "water ecological restoration and restoration".

History of bioprocessing technology

The traditional view is that the main function of biological treatment is to decompose and stabilize organic matter, that is, to reduce BOD. With the development of industrial production and long-term observation and research on the water environment, many synthetic organic matter has "three causes" (carcinogenic, teratogenic, mutagenic) serious harm, and is difficult to be degraded by microorganisms, while inorganic nutrients such as nitrogen and phosphorus are easy to cause water eutrophication. Therefore, the requirements of water treatment are also changing, in addition to requiring the water treatment process to have the function of nitrogen removal and phosphorus removal, but also requires the industrial production, through high temperature and high pressure synthesis of various pollutants in the sewage treatment process to be effectively controlled, because the degradation of this kind of substances in nature takes hundreds of years or even thousands of years, will continue to enrich, the concentration continues to increase. Direct harm to the ecological environment and human health. Whether biological treatment technology is effective for this type of sewage treatment, some BOD, COD concentration is very high, and even up to tens of thousands of mg/L of sewage, biological treatment technology can be effective, these new problems and new requirements have promoted the development of the world's sewage biological treatment technology and process methods.

  • FOXBORO P0926KK PLC system functional module
  • FOXBORO P0924AW wireless pressure transmitter
  • FOXBORO P0916NK differential pressure transmission cable
  • FOXBORO P0916JQ PLC module
  • FOXBORO P0916JP I/A series control module
  • FOXBORO P0916GG Digital Input Module
  • FOXBORO P0916DV I/A series digital input module
  • FOXBORO P0916DC Terminal Cable
  • FOXBORO P0916DB I/A series PLC module
  • FOXBORO P0914ZM recognition module
  • FOXBORO P0902YU control module
  • FOXBORO P0901XT Process Control Unit
  • FOXBORO P0800DV fieldbus extension cable
  • FOXBORO P0800DG Standard Communication Protocol Module
  • FOXBORO P0800DB Universal I/O Module
  • FOXBORO P0800DA Industrial Control Module
  • FOXBORO P0800CE control module
  • FOXBORO P0700TT Embedded System
  • FOXBORO P0500WX Control System Module
  • FOXBORO P0500RY Terminal Cable Assembly
  • FOXBORO P0500RU control module
  • FOXBORO P0500RG Terminal Cable
  • FOXBORO P0400ZG Node Bus NBI Interface Module
  • FOXBORO P0400GH fieldbus power module
  • FOXBORO FBM207B Voltage Monitoring/Contact Induction Input Module
  • FOXBORO FBM205 Input/Output Interface Module
  • FOXBORO FBM18 Industrial Controller Module
  • FOXBORO FBM12 Input/Output Module
  • FOXBORO FBM10 Modular Control System
  • FOXBORO FBM07 Analog/Digital Interface Module
  • FOXBORO FBM05 redundant analog input module
  • FOXBORO FBM02 thermocouple/MV input module
  • FOXBORO FBI10E fieldbus isolator
  • FOXBORO DNBT P0971WV Dual Node Bus Module
  • FOXBORO CP30 Control Processor
  • FOXBORO CM902WX Communication Processor
  • FOXBORO AD202MW Analog Output Module
  • FOXBORO 14A-FR Configuration and Process Integration Module
  • FOXOBORO 130K-N4-LLPF Controller
  • FUJI FVR004G5B-2 Variable Frequency Drive
  • FUJI FVR008E7S-2 High Efficiency Industrial Inverter
  • FUJI FVR008E7S-2UX AC driver module
  • FUJI RPXD2150-1T Voltage Regulator
  • FUJI NP1PU-048E Programmable Logic Control Module
  • FUJI NP1S-22 power module
  • FUJI NP1AYH4I-MR PLC module/rack
  • FUJI NP1BS-06/08 Programmable Controller
  • FUJI NP1X3206-A Digital Input Module
  • FUJI NP1Y16R-08 Digital Output Module
  • FUJI NP1Y32T09P1 high-speed output module
  • FUJI NP1BS-08 Base Plate​
  • FUJI A50L-2001-0232 power module
  • FUJI A50L-001-0266 # N Programmable Logic Control Module
  • GE GALIL DMC9940 Advanced Motion Controller
  • GE DMC-9940 Industrial Motion Control Card
  • GE IS200AEADH4A 109W3660P001 Input Terminal Board
  • GE IC660HHM501 Portable Genius I/O Diagnostic Display
  • GE VMIVME 4140-000 Analog Output Board
  • GE VMIVME 2540-300 Intelligent Counter
  • GE F650NFLF2G5HIP6E repeater
  • GE QPJ-SBR-201 Circuit Breaker Module
  • GE IC200CHS022E Compact I/O Carrier Module
  • GE IC695PSD140A Input Power Module
  • GE IC695CHS016-CA Backboard
  • GE IC800SS1228R02-CE Motor Controller
  • GE IS215WEMAH1A Input/Output Communication Terminal Board
  • GE CK12BE300 24-28V AC/DC Contactor
  • GE CK11CE300 contactor
  • GE DS3800NB1F1B1A Control Module
  • GE VMIVME2540 Intelligent Counter
  • GE 369B1859G0022 High Performance Turbine Control Module
  • GE VME7865RC V7865-23003 350-930007865-230003 M AC contactor
  • GE SR489-P5-H1-A20 Protection Relay
  • GE IS200AEPGG1AAA Drive Control Module
  • GE IS215UCCCM04A Compact PCI Controller Board
  • GE VME7768-320000 Single Board Computer
  • GE SR489-P5-LO-A1 Generator Protection Relay
  • GE IS215WETAH1BB IS200WETAH1AGC Input/Output Interface Module
  • GE D20 EME210BASE-T Ethernet Module
  • GE IS200EXHSG3REC high-speed synchronous input module
  • GE IS200ECTBG1ADE exciter contact terminal board
  • GE VPROH2B IS215VPROH2BC turbine protection board
  • GE F650BFBF2G0HIE feeder protection relay
  • GE SLN042 IC086SLN042-A port unmanaged switch
  • GE SR489-P1-HI-A20-E Generator Management Relay
  • GE IS400JPDHG1ABB IS410JPDHG1A track module
  • GE IS410STAIS2A IS400STAIS2AED Industrial Control Module
  • GE IS410STCIS2A IS400STCIS2AFF Industrial Control Module
  • GE DS200DCFBG2BNC DS200DCFBG1BNC DC Feedback Board
  • GE VME5565 VMIVME-5565-11000 332-015565-110000 P Reflective Memory
  • GE VMIVME-7807 VMIVMME-01787-414001 350-00010078007-414001 D module
  • GE IS220PDOAH1A 336A4940CSP2 Discrete Output Module
  • GE VMIVME-4150 Analog Output Module
  • GE WESDAC D20 PS Industrial Power Module
  • GE 369B1860G0031 servo drive module
  • GE 369B1859G0021 Input/Output Module
  • GE 208D9845P0008 Motor Management Relay
  • GE IS420UCSCH1A-F.V0.1-A Independent Turbine Controller
  • GE D20EME10BASE-T 820-0474 Ethernet Interface Module
  • GE DS200DCFBG2BNC MRP445970 DC Feedback Board
  • GE IC800SSI228RD2-EE servo motor controller
  • GE IS200JPDMG1ACC S1AT005 Digital Input/Output (I/O) Module
  • GE IS200TSVCH1AED servo input/output terminal board
  • GE IS200TTURH1CCC S1DF00Z Terminal Turbine Plate
  • GE IS200TSVCH1ADC S1CX01H servo input-output board
  • GE IS200TRPGH1BDD S1C5029 Trip Solenoid Valve Control Board
  • GE IS220YAICS1A L Analog Input/Output Module
  • GE UCSC H1 IS420UCSCH1A-F-VO.1-A Controller Module
  • GE UCSC H1 IS420UCSCH1A-B Communication Processing Module
  • GE IC697VDD100 Digital Input Module
  • GE V7768-320000 3509301007768-320000A0 Controller Module
  • GE IS410TRLYS1B Relay Output Module
  • GE IS415UCVGH1A V7666-111000 VME Control Card
  • GE IC800SSI216RD2-CE servo motor controller
  • GE VMIVME-5565-010000 332-01565-010000P Reflective Memory
  • GE IC695ALG508-AA Analog Input Module
  • GE IC660EPM100J Power Monitoring and Control Module
  • GE RS-FS-9001 362A1052P004 Redundant Fan System Module
  • GE IS220UCSAH1AK independent processor module
  • GE 369-HI-0-M-0-0-0-E Motor Management Relay
  • GE CIFX50-C0 interface board
  • GE SR469-P5-H-A20-T Motor Management Relay
  • GE WES5120 2340-21005 power module
  • GE WES5120 2340-21003 Control Module
  • GE D20MIC10BASE-T 820-0756 Ethernet Module
  • GE WES13-3 5167-001-0210 Mechanical Relay Output Module
  • GE WES13-3 2508-21001 Control Board Module
  • GE D20ME 526-2005-216943 Input/Output Module