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Effluent Treatment Plant

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An effluent treatment plant is a complete wastewater treatment system for processing and treating industrial and municipal wastewater to acceptable environmental discharge specifications through tertiary biological, chemical, and physical treatment processes. In many respects, it can be considered an efficient wastewater management option that can be applied to the manufacturing sector, chemical factories, pharmaceutical plants, municipalities, etc. without direct untreated discharge that will harm the environment or be a violation of those respective bylaws. An effluent treatment plant's main goal is to provide a systematic treatment solution to extract pollutants and contaminants from a wide range of wastewater and solid waste mix (textile wastewater, pharmaceutical effluent, food processing plant discharge, factory wastewater, sewage, and various industry's liquid waste). A multistage treatment solution with biological reactors, chemical dosing units, with various sensors and controls could be used in order to ensure successful outcomes. Membrane filtration and activated sludge processes, advances in machinery and technology, provide effluent treatment plants the ability to provide reliable and compliant performance with steady water quality parameters when treating suspended solids, organic matter, heavy metals, and toxic material. It can also consist of additional monitoring capabilities that provide multi-level reporting options on treatment process and discharge quality, usually via a SCADA control system that allows managers to monitor treatment operations and report on effluent quality. Find some of the best effluent treatment plants here at Aajjo. Read more

Effluent Treatment Plant Products, Price, Specifications & Features

Effluent Treatment Plant ETP

10,26,500

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Air Blower Count : 1Blowers
Application Industry : CHEMICAL INDUSTRIES
Availability : In Stock
Capacity(KLD) : 1KLD

Automatic 100 LPH Mineral Water Plant Machinery

3,00,000

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Automatic Grade : Automatic
Driven Type : Electric
Plant Capacity : 100 LPH
Power : 3.1KW

15 KLD ETP Plant

3,75,000

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Business Type : Manufacturer, Supplier
Condition : Brand new
Country of Origin : Made in India
I Deal In : New Only

Gautambuddha Nagar, Uttar Pradesh

GST - 09HYOPK1273C1Z8

Industrial ETP Plant

3,75,000

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Application Industry : Pharmaceutical & Chemicals
Capacity(KLD) : 50 KLD
Country of Origin : Made in India
Installation Type : Prefabricated

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ETP Chemical

10,00,000 /Kilogram

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Application : Effluent Treatment Plant (ETP) processes for industrial and municipal wastewater
Business Type : Manufacturer, Supplier
Compatibility : Suitable for textile, chemical, food, pharmaceutical, and general industrial effluents
Country of Origin : India

delhi

GST - 07BVAPS5638G1ZD

Pharmaceutical Effluent Treatment Plant, 2 KLD

5,00,000 /Unit

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Automation Grade : Automatic
Availability : In Stock
Industry / Application : Pharmaceutical
Key Features : Water Recycling

ETP Plants

1,50,000 2,00,000 25.00% Off

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Model : ETP Plants 1kld

TDS Industrial ETP Plant

14,50,000

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Air Blower Power (kW) : 1.5 kW
Control Module : Control Module Available
Impurities to be removed : TDS Industry Chemical/Petroleum Industry
Model : TDS Industrial ETP Plant

Delhi

GST - 07BMWPS3502A1Z2

Effluent Treatment Plant Etp

5,00,000

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Application Industry : Pharmaceutical & Chemicals
Capacity(KLD) : 50 KLD
Country of Origin : Made in India
Inlet Flow Rate(m3/day or m3/hr) : 50 m3/day

Surat, Gujarat

GST - 24AADCW0064E1ZR

Effluent Treatment Plant

6,00,000

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Model : Effluent Treatment Plant

Dairy Effluent Treatment Plant, Capacity: 15 Kld

15,00,000

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Air Blower Power : 1 kw
Automation Grade : Semi-Automatic
Capacity : 15 KLD
Country of Origin : Made in India

Pharmaceutical Effluent Treatment Plant

2,50,000

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Air Blower Count : 1 Blower
Air Blower Power : 0.75 KW
Application Industry : Pharmaceutical & Chemicals
Automation Grade : Automatic

Lonavla, Maharashtra

GST - 27ANQPK5156L1ZC

Effluent Treatment Plant

1,90,000

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Air Blower Count : 2 Blowers
Air Blower Power : 0.4 KW
Application Industry : Textile Industries
Capacity (KLD) : 50 KLD

5000 LPH Effluent Treatment System

3,25,000

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Application Industry : Chemical/Petroleum
Automation Grade : Fully Automatic
Country of Origin : Made in India
Deliver Type : PAN India, Outside India

Semi-Automatic Industrial ETP

5,60,000

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Model : Semi-Automatic Industrial ETP

Bokaro, Jharkhand

GST - 20CRXPK0630G2ZY

ETP Water Plant

1,00,000

Rice Mill Effluent Treatment Plant

2,00,000

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Application Industry : Rice MIll
Capacity (KLD) : 100 KLD
Inlet Flow Rate(m3/day) : 100 m3/day
Installation Type : Prefabricated

Ahmedabad, Gujarat

GST - 24BAKPP2913A1Z5

Mild Steel Effluent Treatment Plant

3,00,000

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Automation Grade : Automatic
Capacity : 100 KLD
Inlet Flow Rate(m3/day) : 100 m3/day
Installation Type : Prefabricated, Completes Civil work with Installation

1000 KLD Effluent Treatment Plant

5,00,000

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Automation Grade : Automatic
Availability : In Stock
Capacity(KLD) : 1000 KLD
Inlet Flow Rate(m3/day or m3/hr) : 100 m3/day

pune, Maharashtra

GST - 27AXKPN0324R1ZZ

1000 LPH Water Plant Machinery

2,00,000

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Application Industry : Residential & Commercial Building
Automation Grade : Fully Automatic
Country of Origin : Made in India
Plant Capacity : 1000 LPH

Delhi

GST - 07ACLPN6109J3ZA

Effluent Treatment Plant

5,00,000

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Delivery Location : Pan India
Industry : All type of industry
Model : Effluent Treatment Plant
Treatment Technique : Clarifier

Noida, Uttar Pradesh

GST - 09AEUPB0775K1Z1

Effluent Treatment Plant

1,80,000

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Capacity Inlet Flow Rate : 100 m3/hour
Color : All
Feed Flow Rate : 2000 m3/day
Model : Effluent Treatment Plant

Effluent Treatment Plant

2,50,000

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Automatic Grade : Manual
Treatment Technique : Clarifier

Ahmedabad, Gujarat

GST - 24AACFA6649P1Z2

Containerized Effluent Treatment Plant

30,50,000

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Automation Grade : Automatic
Inlet Water Quality : Waste Water
Model : Containerized Effluent Treatment Plant
Treatment Stages : Preliminary Treatment

Effluent Treatment Plant, Automation Grade: Semi- Automatic

2,98,500

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Air Blower Count : 2
Automation Grade : Semi-Automatic
Feed Flow Rate : 0 - 50 m3/day
Impurities to be removed : Oil and Grease,Turbidity,Colour,pH

Mumbai, Maharashtra

GST - 27AGRPC6241J1Z6

Effluent Treatment Plant ETP

1,70,000

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Air Blower Count : 1 Blower
Effluent Industry : Distillery
Model : Effluent Treatment Plant ETP
Water Source Type : Industrial

Bhopal, Madhya Pradesh

GST - 23CCQPS3136K1Z7

50 LKD Industrial Effluent Treatment Plant

2,00,000

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Capacity (KLD) : 50 KLD
Inlet Flow Rate(m3/day) : 100 m3/day
Material Of Construction : Mild Steel
Model : 50 LKD Industrial Effluent Treatment Plant

Patna, Bihar

GST - 10DUEPK5037E1Z5

Effluent Treatment Plant For Hand Tool Manufacturing Unit

8,75,000

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Air Blower Count : 2
Application Industry : Hand Tool Manufacturing
Automation Grade : Automatic
Capacity (KLD) : 100 KLD

Ludhiana, Punjab

GST - somanieros@gmai

Semi Automatic Effluent Treatment System

6,00,000

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Automation Grade : Semi-Automatic
Capacity : 30000l/day
Features : Dimensional accuracy,Durability, Reliability, Effectiveness
No. Of Processes : 3

Effluent Treatment Plant

1,50,000

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Brand: T&G pure
Availability : In Stock
Brand : T&G pure
Capacity(KLD) : 50 KLD
Country of Origin : Made in India

Chandigarh, Punjab

GST - 04AACCT1857F1ZK

Effluent Treatment Plant, 100 KLD, Food Industry

6,30,000

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Application Industry : Food Industry
Automation Grade : Automatic
Capacity (KLD) : 100 KLD
Control Module : Available

CHENNAI, Tamil Nadu

GST - 33ALDPM2260N1Z3

Automobile Effluent Treatment Plant Etp

5,00,000

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Industry : Automobile

Pune, Maharashtra

GST - 27BZNPS4217G1Z1

Effluent Treatment Plant Etp

1,85,000

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Air Blower Count : 2 Blowers
Air Blower Power : 0.75 KW
Application Industry : Industrial
Brand : Bonnafide Chemicals

Kanpur, Uttar Pradesh

GST - 09BGNPS4001H2Z9

Effluent Treatment and Wastewater Treatment Plant

2,00,000

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Air Blower Count : 4 Blowers
Air Blower Power : 0.75 KW
Application Industry : Pharmaceutical & Chemicals
Automation Grade : Automatic

Navsari, Gujarat

GST - 24AAHFF3753C1ZS

Effluent Treatment Plant

3,00,000

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Air Blower Count : 2 Blowers
Application Industry : Industrial
Automation Grade : Semi Automatic
Capacity : 5 KLD to 250 KLD

Indore, Madhya Pradesh

GST - 23EEIPP1517P1Z5

Effluent Treatment Plant

2,00,000

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AMC Provided : Yes
Application Industry : Food Industry
Automation Grade : Semi-Automatic
Control Module : Available

Surat, Gujarat

GST - 24GAMPS3184R1ZN

Etp plant

5,50,000

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Model : Etp plant

Mumbai, Maharashtra

GST - 27AMNPY0988N1ZT

Effluent Treatment Plant

1,20,000

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Capacity(KLD) : 100 KLD
Capacity : 500 KLD
Country of Origin : Made in India
Installation Type : Complete Civil Work

Bengaluru Urban, Karnataka

GST - 29AHDPR1928A1ZI

Packaged Effluent Treatment Plant, 100 m3/hour

1,00,000

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Air Blower Count : 2
Air Blower Power : 0.25 kW
Automation Grade : Semi-Automatic
Capacity Inlet Flow Rate : 100 m3/hour

KARVENAGAR, Maharashtra

GST - 27AMQPK7919L1Z7

Effluent Treatment Plant, Capacity: 20 - 500 Kld

15,00,000

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Automation Grade : Semi-Automatic
Brand : INDION (Ion Exchange I Ltd)
Capacity : 20 - 500 KLD
Industry : Pharmaceutical Industry

Pune, Maharashtra

GST - 27AAGFV7644D1ZZ

Effluent Treatment Plant

5,00,000

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Model : Effluent Treatment Plant

Delhi

GST - 07JMMPS5042B1ZV

Effluent Treatment Plant

2,50,000

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Capacity : 100 KLD
Feed Flow Rate : 100 m3/day
Installation Type : Complete Civil Work
Material : Stainless Steel

Pune, Maharashtra

GST - 27APIPM9670B1ZO

Industrial Effluent Clarifier Plant

1,00,000

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Automation Grade : Automatic
Capacity : 1 KLD to 500 KLD
Country of Origin : Made in India
Model : Industrial Effluent Clarifier Plant

Delhi

GST - 07DDEPS3827M1Z0

Automatic Prefabricated Effluent Treatment Plant, 500 m3/hour

1,75,000

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Automation Grade : Automatic
Availability : In Stock
Capacity Inlet Flow Rate : 500 m3/hour
Dimension : 2600 x 1550 x 2300 mm

Chennai, Tamil Nadu

GST - 33AMGPK1968H2ZZ

Rumins Automatic Effluent Treatment Plants, 0.25 kW

5,00,000

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Air Blower Count : 2
Air Blower Power : 0.25 kW
Automation Grade : Automatic
Brand : Rumins

Kanpur, Uttar Pradesh

GST - 09ANOPS6660H1ZA

Semi Automatic Effluent Treatment Plant, Water Pump Power: 2 kW

1,50,000

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Air Blower Count : 2
Air Blower Power : 0.4 kW
Automation Grade : Automatic
Capacity Inlet Flow Rate : 500 m3/hour

Kancheepuram, Tamil Nadu

GST - 33BQLPR3613J1ZO

Top Effluent Treatment Plant Manufacturer and Supplier

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Rajesh India Manufacturing Pvt Ltd

GST No - 27AAMCR5575Q1ZA

palghar, Maharashtra

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Chamunda Engineering Work

GST No - 24AMIPM7879F1ZL

Ahmedabad, Gujarat

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Pranjali Water Solution Technology

GST No - 09HYOPK1273C1Z8

Gautambuddha Nagar, Uttar Pradesh

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Neel Guard Aqua System

GST No - 07BVAPS5638G1ZD

delhi

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Us Robotics Private Limited

GST No - 24AADCU7693M1ZN

Ahmedabad, Gujarat

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Yuvika Purifications

GST No - 07ADLPH3579B1ZL

Delhi

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Robinson India

GST No - 07BMWPS3502A1Z2

Delhi

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Waari Water Private Limited

GST No - 24AADCW0064E1ZR

Surat, Gujarat

Frequently Asked Questions about Effluent Treatment Plant

What is the difference between STP and ETP?

Sewage Treatment Plant refers to STP. Effluent treatment plant is ETP. Although they are designed for different kinds of wastewater, both clean wastewater. STP addresses home sewage-related issues. These cover bathrooms, kitchens, and toilets. It primarily contains organic nitrogenous waste and human waste. Processed water becomes potable and safe for use or disposal.ETP is a treatment of industrial waste. Water in ETP comes from factories. It contains chemicals, oils, and heavy metals. It may also have hazardous substances. ETP uses chemical and biological processes. These help break down pollutants. The water is treated before reuse or discharge.While ETPs are generally found in sectors such as textiles, pharmaceuticals, chemicals, and so on, STPs are typically found in homes, hotels, hospitals, and businesses. While ETP largely consists of chemical therapy, the STP treatment procedures are more biological in character.The design and cost of STP and ETP differ as well. STP is usually smaller and simpler, whereas ETPs are too complicated and costly because of the nature of waste.Environmentally speaking, both are equally important. Water pollution was reduced, recycled, and followed government norms.STP stands for home waste treatment, while ETP represents industrial waste treatment. The distinction lies in the origin of the wastewater. Both systems are crucial to protecting nature as well as public health.

What chemicals are used in ETP plants?

Chemicals are used to purify industrial effluent in ETPs. Coagulants are one such chemical. They help small particles clump together. This makes solid removal easier. Common coagulants are alum and ferric chloride. They cause tiny particles to join. This process improves water cleaning. The other primary type that falls under this category is flocculants. Flocculants increase the size of clumps for faster settling-quality separation, thus improving treated water clarity. Flocculants are mostly polymers. Besides that, there are several pH adjusters that may also be added to an ETP. Some of these are lime, sodium hydroxide, or sulfuric acid, which change the acidity of the water. This helps in a better functioning of the other treatments. Disinfectants that involve chlorine or even ozone can kill the harmful bacteria and viruses. It prevents the water from being discharged or reused. Sometimes oxidizing agents such as hydrogen peroxide break down harmful compounds present in the effluents. Sometimes activated carbon is used to absorb organic toxins and foul smells. They should depend on the kind and amount of chemicals used in the wastewater. Dosing must be accurate since an overdose of a chemical can even be dangerous, while delivering an underdose might not work. These chemicals, altogether, are very efficient and effective in cleaning industrial waters through the ETP process.

What is the principle of ETP?

An effluent treatment plant (ETP) cleans industrial waste. It cleans the wastewater. This happens before discharge or reuse. ETP protects the environment. It helps keep water safe. The extraction of pollutants and harmful constituents is its main purpose. Industrial waste has chemicals and lubricants. It also contains heavy metals and harmful substances. If ignored, these wastes can be dangerous. They harm the environment. They are also risky for people’s health. ETPs employ physical, chemical, and biological treatment techniques in concert. First, screening removes large solids and debris. Sedimentation also helps separate heavy particles. This prevents damage to equipment later. Next, chemical treatments are used. Coagulation makes small particles stick together. Flocculation helps these particles form bigger clumps. This makes it easier to separate them from water. Those organic pollutants are further dealt with via biological treatment using bacteria and other microorganisms. These decomposition microbes use waste as food to convert it into harmless substances. Special treatments are used at the end. Membrane filtration is one method. Activated carbon is another method. These remove specific toxins. They make water cleaner and safer. Disinfection is the last stage. Viruses and dangerous bacteria are killed using chemicals, including chlorine. By now the purified water can be safely released or recycled. Generally speaking, an ETP's principle is to step-by-step eliminate contaminants. It unites various techniques to make certain that the water is clean for the environment and safe to use.

How many types of ETP are there?

Effluent treatment plants can be classified into a number of broad types, the classification being based on the specific characteristics of the effluent. Physicochemical, biological, combined, and advanced ETP systems are the four main types. Physicochemical treatment plants apply chemicals for the treatment of wastewater. Coagulants and flocculants are added to assist removal of solids and thus help remove suspended particles. It is good for the removal of heavy metals and toxic chemicals. Biological ETPs use live microorganisms for the breakdown of organic waste. There are two kinds—aerobic and anaerobic. Aerobic ETPs need oxygen, while anaerobic systems work without oxygen and give out biogas. Combined ETPs use two methods. They use physicochemical treatment. They also use biological treatment. Both methods work together for waste management. With the dual nature of their treatment, resistant wastes may be addressed. This is very common in industries. These industries produce mixed waste. Waste has inorganic pollutants. It also has organic pollutants. Combined treatment suits these industries well. Combined systems are claimed to be better without fail. Advanced ETPs typically involve the use of modern technologies such as membrane filtration, reverse osmosis, UV, or even activated carbon treatment. These ETPs are designed to eliminate even minuscule or defiant contaminants and are utilized in areas where the expected water quality after treatment is high. Every ETP type is selected based on the industry as well as the type of waste. Some plants use Zero Liquid Discharge (ZLD) systems. These systems recover all the water. The water is cleaned and reused. No liquid waste is discharged. This helps reduce industrial pollution. ETPs protect water sources and the environment.

Why chlorine is used in ETP?

Many times, effluent treatment facilities (ETPs) use a chlorine wastewater treatment process. Eliminating infections, viruses, and dangerous microorganisms is the primary objective. This helps stop the epidemic of diseases. It makes treated water safer for use and release. Chlorine achieves disinfection by fast annihilation of possible germs able to cause disease.Chlorine helps control odour by killing odour-causing germs. It is a cheap and easy-to-use disinfectant. Chlorine works on many types of microorganisms. It can be added as liquid sodium hypochlorite, chlorine gas, or chlorine compounds.Effective use of chlorine depends on careful, under-control consumption. Actually, too-high amounts of chlorine hurt the environment and kill aquatic life. By means of chlorinated organic molecules, chlorine can also produce poisonous chemical byproducts. Chlorine use is closely monitored. This ensures effective disinfection. It also protects the environment. Proper control prevents harm to water and wildlife.In ETPs, chlorine should be the most recommended disinfectant overall. It mostly serves to protect the surroundings and advance human welfare. Most industries need chlorine to meet legal water standards. Using chlorine correctly protects water bodies. It also keeps communities safe from pollution. Chlorine helps ensure clean and safe water release.

What is ETP calculation?

The ETP calculation involves the design and operation parameters of the Effluent Treatment Plant (ETP). The accomplished calculations help ensure that the plant treats industrial wastewater per the required standards. The purpose is to remove such contaminants and pollutants from the water before releasing it into the environment or plastic disposal.The ETP calculation is initiated with an assessment of quantity and quality pertaining to the wastewater. For the parameters flow rate, pH, chemical oxygen demand (COD), biological oxygen demand (BOD), total suspended solids (TSS), etc., measurements are conducted. Knowing these parameters guides the choice of size and kind of treatment facilities required.Furthermore computed are the capacities of every treatment process: sedimentation tanks, aeration tanks, and clarifiers. The time of detention is also calculated for the more effective treatment of the target. For example, certain biological treatments require time for breakdown of organic matter by microorganisms.Chemical dosing is another important calculation that requires knowing the chemical composition of the wastewater, as for coagulant, flocculant, disinfectant, etc.Lastly, the calculations are made for sludge generation and disposal to properly handle this solid waste.Well-done ETP calculation results in the design of an efficient plant compliant with environmental laws, protecting water resources.

Which bacteria is used in ETP?

Bacteria are necessary for organic waste degradation in ETPs. They help purify wastewater from digested pollutants. The types of bacteria used depend on the nature of wastewater and treatment processes.Aerobic bacteria is the most well-known. These are oxygen-requiring microbes that are often used in activated sludge and aeration tanks. Decomposes organic matter into simpler molecules such as carbon dioxide and water; they reduce BOD and COD levels in any water body.A sort of anaerobic bacterium is quite important. Anaerobic life does not rely on oxygen for survival. Anaerobic digesters, where sludge is handled, feature them. Their conversion of difficult organic matter into methane, carbon dioxide, and other gases helped to reduce sludge volume and also generated biogas, a potential source of energy.There are facultative bacteria that can work in both ways: with or without oxygen. They also appear in facultative lagoons and other flexible settings. Another important type among them is nitrifying bacteria, which functions in the removal of nitrogen from wastewater by converting ammonia into nitrites and subsequently into nitrates via nitrification. The result will reduce the pollution of water resources by nitrogen compounds.Bacteria use much of the ETP to treat wastewater in the natural methods and make it safer for discharge or reuse.

Why use lime in eTP plants?

Lime is utilised in practically all ETPs for numerous purposes. Improved water quality is the major goal of industrial wastewater treatment; liming helps to achieve this. Using lime is mostly necessary to change the pH of the effluent. Most of the industrial wastes are either acidic or alkaline; lime allows them to balance the pH to neutral, which is rather crucial, as it cannot allow other treatment techniques in the treatment to be strengthened.Lime removal of heavy metals from wastewater: Once lime is added to wastewater, chemicals interact with the heavy industrial metals such as lead, copper, and zinc. All these metals have the capacity to transform into insoluble compounds. The interactions result in the conversion of heavy metals in wastewater into precipitate sludge, usually with a high density, which can be collected easily. This phenomenon is referred to as chemical precipitation.It is beneficial in the aspect of reducing biological oxygen demand (BOD) and chemical oxygen demand (COD) through wastewater treatment. In addition to that, lime is very lethal to some dangerous bacteria and pathogens, dissolving them and also disinfecting water in the process.Lime is economical and is very simple to handle. It finds use in industries such as those engaged in textiles, chemicals, and tanneries, as effluents have high load pollutants.However, lime use must be strictly controlled. Overdosing on lime makes the pH go up dangerously and may affect life in water. Proper dosing will lead to effective treatment without causing further problems.In general, lime can be regarded as an important chemical in ETPs to improve the quality of effluents from different sources and help comply with environmental norms.

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