Welcome to the Industrial Automation website!

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

The most complete wastewater treatment process in history and its advantages and disadvantages

来源: | 作者:佚名 | 发布时间 :2023-11-22 | 513 次浏览: | Share:

In sewage treatment and utilization methods, precipitation (or floating) method is often used as a pre-treatment before other treatment methods. If the biological treatment method is used to treat sewage, it is generally necessary to remove most of the suspended substances through the pre-sedimentation tank in advance to reduce the load during biochemical treatment, and the effluent after biological treatment must still be treated by the secondary sedimentation tank for sludge water separation to ensure the quality of the effluent.

(3) Flotation method

The air into the sewage, and in the form of a small bubble from the water to become a carrier, the relative density of the sewage is close to the water of the small particles of pollution (such as emulsified oil, etc.) attached to the bubble, and with the bubble rise to the surface, and then with a mechanical method of skimming, so that the pollution in the sewage can be separated from the sewage.

Hydrophobic substances float easily, while hydrophilic substances do not float easily. Therefore, sometimes in order to improve the efficiency of air flotation, it is necessary to add flotation agents to the sewage to change the surface characteristics of the pollutants, so that some hydrophilic substances are transformed into hydrophobic substances, and then air flotation is removed, this method is called "flotation".

Air flotation requires high dispersion of bubbles and a large amount, which is conducive to improving the effect of air flotation. The stability of the foam layer should be appropriate, which is convenient for the scum to stabilize on the water surface and does not affect the transportation and dehydration of the scum. There are two ways to create bubbles:

Mechanical method: The air is generated by microporous tubes, microporous plates, turntables with holes, etc.

Pressure dissolved gas method: the air is dissolved in water at a certain pressure, and reaches a saturated state, and then suddenly decompresses, and the supersaturated air escapes from the water in the form of tiny bubbles. At present, the air flotation technology of wastewater treatment mostly adopts pressure dissolved gas method.

The main advantages of the gas flotation method are: the operation capacity of the equipment is better than that of the sedimentation tank, and the solid-liquid separation can be completed in only 15 to 20 minutes, so it occupies less land and has higher efficiency; The sludge produced by the air float method is dry, not easy to decompose, and the surface is scraped, and the operation is convenient. The whole work is to circulate air into the water, increase the submerged oxygen in the water, and have obvious effects on removing organic matter, algal surfactants and odors in the water, and the effluent quality provides favorable conditions for subsequent treatment and utilization.

The main disadvantages of gas flotation are: large power consumption; The workload of equipment maintenance and management increases, and the operation part is often clogged. The scum is exposed to the surface of the water and is susceptible to climatic factors such as wind and rain.

In addition to the above two air flotation methods, the more commonly used methods are electrolysis gas flotation.

(4) Centrifugation

When sewage containing suspended pollutants is rotating at high speed, the centrifugal force of suspended particles (such as emulsified oil) and sewage is different, so as to achieve the purpose of separation. Commonly used centrifugal equipment are cyclone separator and centrifugal separator.

2. Chemical treatment

Chemical reagents are added to sewage, and chemical reactions are used to separate, recover, or convert polluted substances into harmless substances in sewage. This method can not only separate pollutants from water, recover some useful substances, but also change the nature of pollutants, such as reducing the pH of wastewater, removing metal ions, oxidizing some toxic and harmful substances, so it can achieve a higher degree of purification than the physical method. The commonly used chemical methods are chemical precipitation, neutralization, REDOX and coagulation.

The limitations of chemical treatment are as follows:

Because chemical treatment wastewater often uses chemical agents (or materials), the treatment cost is generally higher, and the operation and management requirements are also stricter.

Chemical methods also need to be used in conjunction with physical methods. Before chemical treatment, precipitation and filtration are often used as pre-treatment; In some cases, it is necessary to use physical means such as precipitation and filtration as a post-treatment of chemical treatment.

(1) chemical precipitation method

Chemical precipitation method is to add some chemical agents to the waste water, so that it can react with dissolved pollutants in the waste water, and form salts (sediments) that are difficult to be found in water to precipitate out of the water, thereby reducing or removing pollutants in the water. Chemical precipitation method is mostly used in water treatment to remove calcium ions, mirror ions and heavy metal ions in wastewater, such as lili, pot, lead, pot and so on. According to the different precipitating agents used, the precipitation method can be divided into lime method (also known as hydroxide precipitation method), sulfide method and silver salt method.

  • SIEMENS 6GK1105-2AA10 SIMATIC NET series optical switching module (OSM ITP62)
  • Schneider Modicon Quantum 140CPU65260 Unity Processor
  • Schneider Modicon Quantum 140ACO02000 Analog Output Module
  • Schneider Modicon Quantum 140CPS11420 power module
  • Allen-Bradley 1747-CP3 SLC ™ Series of programming cables
  • Kollmorgen S33GNNA-RNNM-00 - Brushless Servo Motor
  • Kollmorgen 6sm56-s3000-g-s3-1325 - Servo Motor
  • Kollmorgen AKM52K-CCCN2-00 - Servo Motor
  • Kollmorgen PSR3-230/75-21-202 - Power Supply
  • Kollmorgen akm24d-anc2r-00 - Servo Motor
  • Kollmorgen AKM22E-ANCNR-00 - Servo Motor
  • Kollmorgen S60300-550 - Servo Drive
  • Kollmorgen B-204-B-21 - Servomotor
  • Kollmorgen AKM21E-BNBN1-00 - Servo Motor
  • Kollmorgen TT2953-1010-B - DC Servo Motor
  • Kollmorgen pa8500 - Servo Power Supply
  • Kollmorgen BDS4A-210J-0001-207C2 - Servo Drive
  • Kollmorgen TTRB1-4234-3064-AA - DC Servo Motor
  • Kollmorgen MH-827-A-43 - Servo Motor
  • Kollmorgen AKM24D-ACBNR-OO - Servo Motor
  • Kollmorgen 00-01207-002 - Servo Disk DC Motor
  • Kollmorgen AKM21C-ANBNAB-00 - Servo Motor
  • Kollmorgen PSR3-208/50-01-003 - Power Supply
  • Kollmorgen 6SM56-S3000 - Servo Motor
  • Kollmorgen DBL3H00130-B3M-000-S40 - Servo Motor
  • Kollmorgen 6SN37L-4000 - Servo Motor
  • Kollmorgen AKM65K-ACCNR-00 - Servo motor
  • Kollmorgen 6SM56-L3000-G - Servo Motor
  • Kollmorgen AKMH43H-CCCNRE5K - Servo Motor
  • Kollmorgen PSR4/52858300 - Power Supply
  • Kollmorgen KBM-79H03-E03 - Direct Drive Rotary Motor
  • Kollmorgen AKM33E-ANCNDA00 - Servo Motor
  • Kollmorgen U9M4/9FA4T/M23 - ServoDisc DC Motor
  • Kollmorgen AKM13C-ANCNR-00 - Servo Motor
  • Kollmorgen AKM43L-ACD2CA00 - Servo Motor
  • Kollmorgen AKM54K-CCCN2-00 - Servo Motor
  • Kollmorgen M-605-B-B1-B3 - Servo Motor
  • Kollmorgen AKD-P00606-NBAN-0000 - Rotary Drive
  • Kollmorgen 6SM-37M-6.000 - Servo Motor
  • Kollmorgen A.F.031.5 - Sercos Interface Board
  • Kollmorgen 918974 5054 - Servo PWM
  • Kollmorgen U12M4 - ServoDisc DC Motor
  • Kollmorgen AKD-B00606-NBAN-0000 - Servo Drive
  • Kollmorgen MV65WKS-CE310/22PB - Servo Drive
  • Kollmorgen 65WKS-CE310/22PB - Servo Drive
  • Kollmorgen EM10-27 - Module
  • Kollmorgen S64001 - Servo Drive
  • Kollmorgen CR03200-000000 - Servo Drive
  • Kollmorgen 6SM57M-3000+G - Servo Motor
  • Kollmorgen BDS4 - Servo Drive
  • Kollmorgen AKD-P00306-NBEC-000 - Servo Drive
  • Kollmorgen AKD-B01206-NBAN-0000 - Servo Drive
  • Kollmorgen STP-57D301 - Stepper Motor
  • Kollmorgen 6SM37L-4.000 - Servo Motor
  • Kollmorgen 44-10193-001 - Circuit Board
  • Kollmorgen PRDR9SP24SHA-12 - Board
  • Kollmorgen PRD-AMPE25EA-00 - Servo Drive
  • Kollmorgen DBL3N00130-0R2-000-S40 - Servo Motor
  • Kollmorgen S406BA-SE - Servo Drive
  • Kollmorgen AKD-P00607-NBEI-0000 - Servo Drive
  • Kollmorgen AKD-P01207-NBEC-0000 - Servo Drive
  • Kollmorgen CR03550 - Servo Drive
  • Kollmorgen VSA24-0012/1804J-20-042E - Servo Drive
  • Kollmorgen N2-AKM23D-B2C-10L-5B-4-MF1-FT1E-C0 - Actuator
  • Kollmorgen 04S-M60/12-PB - Servo Drive
  • Kollmorgen H33NLHP-LNW-NS50 - Stepper Motor
  • Kollmorgen A-78771 - Interlock Board
  • Kollmorgen AKM43E-SSSSS-06 - Servo Motor
  • Kollmorgen AKD-P00607-NBEC-0000 - Servo Drive
  • Kollmorgen E21NCHT-LNN-NS-00 - Stepper Motor
  • Kollmorgen cr10704 - Servo Drive
  • Kollmorgen d101a-93-1215-001 - Motor
  • Kollmorgen BDS4A-203J-0001-EB202B21P - Servo Drive
  • Kollmorgen MCSS23-6432-002 - Connector
  • Kollmorgen AKD-P01207-NACC-D065 - Servo Drive
  • Kollmorgen CK-S200-IP-AC-TB - I/O Adapter and Connector
  • Kollmorgen CR10260 - Servo Drive
  • Kollmorgen EC3-AKM42G-C2R-70-04A-200-MP2-FC2-C0 - Actuator
  • Kollmorgen BDS5A-206-01010-205B2-030 - Servo Drive
  • Kollmorgen s2350-vts - Servo Drive
  • Kollmorgen AKM24D-ANC2DB-00 - Servo Motor
  • Kollmorgen E31NCHT-LNN-NS-01 - Stepper Motor
  • Kollmorgen PRD-0051AMPF-Y0 - Servo Board
  • Kollmorgen TB03500 - Module
  • Kollmorgen 60WKS-M240/06-PB - Servo Drive
  • Kollmorgen M21NRXC-LNN-NS-00 - Stepper Motor
  • Kollmorgen H-344H-0212 - Servo Motor
  • Kollmorgen MCSS08-3232-001 - Connector
  • Kollmorgen AKM33H-ANCNC-00 - Servo Motor
  • Kollmorgen PA-2800 - Power Supply
  • Kollmorgen MTC308C1-R1C1 - Servo Motor
  • Kollmorgen PRDR0091300Z-00 - Capacitor Board
  • Kollmorgen BDS4A-206J-0024/01502D79 - Servo Drive
  • Kollmorgen S20330-VTS - Servo Drive
  • Kollmorgen S20250-CNS - Servo Drive
  • Kollmorgen SBD2-20-1105-WO - Servo Drive Board
  • Kollmorgen M405-C-A1--E1 - Servo Motor
  • Kollmorgen PRD-PB805EDD-00 - Servo Drive
  • Kollmorgen 6SM57S-3.000-J-09-HA-IN - Servo Motor
  • Kollmorgen AKM33H-ANCNDA-00 - Servo Motor
  • Kollmorgen PCB-00030200-04 - PCB
  • Kollmorgen H22SSLB-LNN-NS-02 - Stepper Motor
  • Kollmorgen BJRL-20012-110001 - Module
  • Kollmorgen BDS4A-206J-0001404A - Servo Drive
  • Kollmorgen H-342-H-0802 - Servo Motor
  • Kollmorgen CR10561 - Servo Drive
  • Kollmorgen BDS5A-206-00010-205B2-030 - Servo Drive
  • Kollmorgen BDS5A-206-00010-207B-2-030 - Servo Drive
  • Kollmorgen mcss08-3224-001 - Connector
  • Kollmorgen M-207-B-23-B3 - Servo Motor
  • Kollmorgen PRD-0041200Z-S0 - Encoder/Resolver Card
  • Kollmorgen MH-225-G-61 - Motor
  • Kollmorgen MT308B1-T1C1 - Servo Motor
  • Kollmorgen BDS4A-240J-0001604C83 - Servo Drive
  • Kollmorgen 6SM57-S-3000 - Servo Motor
  • Kollmorgen N-T31V-15-5B-6-MF3-FT1E-C251 - Actuator
  • Kollmorgen PRD-0051AMPA-X0 - Servo Board
  • Kollmorgen CF-SS-RHGE-09 - Cable
  • Kollmorgen DIGIFAS7204 - Servo Drive
  • Kollmorgen S30101-NA - Servo Drive
  • Kollmorgen DIGIFAS7201 - Servo Drive
  • Kollmorgen PRD-0051AMPA-Y0 - Servo Board
  • Kollmorgen AKM23D-EFCNC-00 - Servo Motor
  • Kollmorgen SE10000 - Servo Drive
  • Kollmorgen PSR4/5A-112-0400 - Power Supply
  • Kollmorgen AKM31H-ANCNC-01 - Servo Motor
  • Kollmorgen M-203-B-93-027 - Servo Motor
  • Kollmorgen CP-SS-G1HE-05 - Connector