What Materials Are Best for Below Ground OWS?

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Have you thought about What Materials Are Best for Below Ground OWS? or how the materials in below ground oil water separators (OWS) affect our water? The right materials are key to keeping our water clean. They help remove harmful substances like oil and sand before they reach our sewers.

Choosing the best materials is crucial for both efficiency and following environmental laws. Different materials, like fiberglass, high-density polyethylene (HDPE), and stainless steel, have their own benefits. They make underground tanks last longer and work better, protecting our environment.

In places like Illinois, where rules are strict, picking the right material is very important. It can help your facility stay in line with laws and reduce its impact on the environment.

Key Takeaways

  • Choosing the right materials is essential for the efficiency of below ground OWS systems.
  • Corrosion-resistant materials like fiberglass, HDPE, and stainless steel enhance durability.
  • Illinois regulations require OWS systems to meet strict environmental standards.
  • Freytech Inc. provides advanced OWS solutions with superior separation capabilities.
  • Effective material selection aids in compliance with the US EPA’s Clean Water Act.

Understanding Below Ground Oil Water Separators

Below ground oil water separators (OWS) are key in many industries. They keep oil and grease out of water. This helps protect our groundwater and rivers.

These systems use gravity and differences in density to clean water. Knowing how they work helps us use and care for them better.

Definition and Purpose

A below ground oil water separator is a treatment device. It separates oil and water. It uses gravity to let water flow while oil floats to the top.

This is important for following environmental rules and keeping water clean.

Key Components of OWS Systems

The success of below ground oil water separators depends on a few important parts. These include chambers, coalescing plates, and places for maintenance. Coalescing plates help by merging small oil droplets into bigger ones.

This makes it easier for oil to rise to the surface. The design helps meet the standards set by regulations.

Importance of Material Selection for OWS

The materials used in below-ground oil water separators greatly affect their performance and lifespan. Choosing the right materials ensures these systems work well and last longer. For example, fiberglass is great because it doesn’t corrode easily. This makes the systems more efficient and durable over time.

Impact on Efficiency and Longevity

What materials are used in OWS systems impacts how well they work. Using the right materials helps achieve cleaner water discharge. This is crucial for meeting environmental standards. Also, durable materials mean less need for repairs, keeping the systems running smoothly.

Regulatory Compliance Considerations

Following rules for oil water separators is key when picking materials. Standards like MEPC 107(49) require certain features to prevent tampering and ensure proper water use. The materials must handle the system’s demands and meet strict discharge limits. This is vital to keep the water clean and protect the environment.

Recommended Materials for Below Ground OWS

Choosing the right materials for below ground oil water separators is key. It ensures they work well and last long. The right materials help these systems run smoothly and need less upkeep.

High-Density Polyethylene (HDPE)

HDPE tanks are a top pick for below ground OWS. They are light and resist corrosion well. This makes them great for different soil types and conditions.

HDPE tanks can handle tough conditions without losing their shape. This keeps the separator working right.

Stainless Steel

Stainless steel separators are strong and last long. They resist corrosion and can handle very hot or cold temperatures. This makes stainless steel perfect for tough jobs.

It also meets strict safety rules. This ensures it meets many regulations.

Fiberglass Reinforced Plastic (FRP)

In Maryland, FRP is often used in below ground oil water separators. It’s light and doesn’t corrode easily. This makes it strong for underground use.

FRP helps these systems last longer and work better. It’s a big help in keeping OWS systems effective.

Freytech Inc What Materials Are Best for Below Ground OWS?

Advantages of Enhanced Coalescing Technology

Enhanced coalescing technology is a big step forward in oil water separators. It makes these systems much better at separating oil from water. They can now reach separation efficiencies as low as 5 PPM.

This is way beyond what old systems could do. It means these systems meet or even exceed strict environmental standards.

Achieving 5 PPM Separation Efficiency

These advanced oil water separators can handle different types of oils. They can remove motor oil, diesel, gasoline, and jet fuel from water. This makes them very useful for managing wastewater.

They also help facilities follow the US EPA’s Clean Water Act. This high efficiency supports environmental rules and helps keep our water clean.

Trace Oil Separation Capabilities

This technology is amazing because it can separate oil down to 0.1 PPM. This is very important for industries that have to follow strict environmental rules. It includes mining and petrochemicals.

It keeps water quality high, protecting our natural resources. It also helps equipment last longer by preventing corrosion and buildup.

Freytech Inc.: Leading Provider of OWS Solutions

Freytech Inc. is a top choice for OWS solutions. They offer a wide range of below ground oil water separator systems. Their systems use advanced technology for better separation, with some models reaching 5 PPM hydrocarbon separation. They focus on quality and compliance, using high-quality materials for long-lasting systems.

Freytech Inc - Why are oil water separators used in industries? What Materials Are Best for Below Ground OWS?

Overview of Freytech’s Offerings

The company has many OWS systems, like the EcoSorp. It’s great for meeting environmental standards. Freytech also customizes solutions to fit specific needs. Their EcoLine B Series can retrofit tanks, keeping oil separation under 5 PPM for wastewater management.

Contact Information and Support

Need help with OWS solutions? Freytech Inc. has customer support ready to help. Call +1 (305) 372-1104 for expert advice. Freytech is committed to making sure clients get the best oil water separation systems.

Conclusion: Making the Right Choice for Your OWS

Choosing the right materials for Below Ground Oil Water Separators (OWS) is crucial. It affects environmental compliance, efficiency, and durability. Knowing about materials like high-density polyethylene, stainless steel, and fiberglass reinforced plastic is key. This knowledge helps South Carolina organizations follow strict underground storage tank rules.

These rules are to stop leaks and protect our natural resources. They highlight the importance of reliable and effective separation systems.

Also, the design of Below Ground OWS systems, especially gravity-fed ones, can save on maintenance and simplify operations. Businesses looking for solutions that meet standards and support sustainability will find Freytech Inc. a top choice. They offer advanced technologies that ensure high separation efficiency, even as low as 0.1 PPM.

For expert advice on picking the best OWS, contact Freytech Inc. They offer detailed support and custom solutions for top performance and environmental rule compliance. For more details, call Freytech at +1 (305) 372-1104. Start your path to better environmental care today.

EcoLine B - Oil Water Separator - Why are oil water separators used in industries? What Materials Are Best for Below Ground OWS?

FAQ

What materials are best for below ground Oil Water Separators (OWS)?

High-Density Polyethylene (HDPE), fiberglass reinforced plastic (FRP), and stainless steel are top choices. They resist corrosion and last long, making them efficient at separating oil from water.

How does the material selection impact the performance of an OWS?

Choosing the right materials is key for OWS systems. Corrosion-resistant materials ensure the system works well for a long time. They also need less maintenance and meet legal standards.

Why is enhanced coalescing technology important in OWS?

Enhanced coalescing technology is vital. It allows for very low separation efficiencies, as low as 5 PPM. This meets strict discharge rules and improves oil separation.

What are the advantages of using fiberglass reinforced plastic for OWS?

Fiberglass reinforced plastic (FRP) is great for OWS. It resists chemicals well, lasts long, and is light. It’s also good for many soil types, making it a top pick.

What is the role of cathodic protection in OWS?

Cathodic protection stops corrosion in OWS systems. It protects metal parts by stopping harmful electrochemical reactions. This helps metal structures last longer.

How do double-walled tanks enhance safety for OWS?

Double-walled tanks add safety with their extra layer. This layer helps stop leaks and keeps contaminants out of groundwater. It’s a strong defense against tank failures.

What systems can be integrated for leak detection in OWS?

Leak detection systems can be added to OWS. They watch for leaks and alert people. These systems are crucial for following environmental laws and keeping groundwater safe.

FreyTech's Line of Quality Below Ground Oil Water Separators

EcoLine B

Enhanced Coalescing Oil Water Separators for installation inside new or to RETROFIT existing concrete or steel tanks. This series is extremely versatile in that it can be installed inside existing above or below ground round, square or rectangular tanks. Instead of shipping heavy concrete / steel tanks cross country, simply procure a standard off the shelf tank locally and connect our turnkey separator kit to the outlet pipe inside your tank. 

 
This unique solution can save operators substantial time and expense since they can now utilize an existing tank instead of having to replace it with costly new tanking systems. Separates free non-emulsified oil, hydrocarbons, diesel, gasoline, fuels, from water to below 5 parts per million (PPM) guaranteed. Affordable small units for flow rates starting between 50 gallons per minute (GPM) to over 1,100 GPM. 
 
The filter / coalescing media can be washed by hand with a hose for years of trouble free efficient use. Maintenance is conducted above ground without having to enter tank making it more affordable, quicker, cleaner and safer. Mechanical automatic shut off valve included to prevent accidental discharge in the event the unit is not maintained on a timely basis. No electrical power requirements.

Typical Fields of Application

  • Gasoline stations and other fueling facilities.
  • Electrical transformers, power generation plants.
  • Oil storage areas.
  • Transportation fueling systems, diesel, gasoline, jet fuel, etc.
  • Surface and washing water from petrol stations, car wash and
  • repair workshops, pressure washer cleaning, wash water recycling.
  • Treatment of industrial process waste water.
  • Treatment of waste water from oil-removal plants.
  • Purification upstream to emulsion breakers, ultra- and microfiltration.
  • Refineries – extremely hot oily water applications.

ECOSORP

FOR EMULSIFIED AND DISSOLVED OIL: (ECOSORP BELOW 1 PPM)

The EcoSorp oil water separator is for use to obtain below 1 part per million (PPM) separation efficiencies. It is for use with free or PHYSICALLY EMULSIFIED AND DISSOLVED OIL by adsorption from water. This represents exceptionally clean separation. The EcoSorp requires filter / coalescing media cartridge replacement since it works through adsorption and the media becomes saturated over time (typically once a year). Recommended for use downstream of a Freytech Inc. above or below ground 5 PPM oil water separator to prolong its useful life. The media can absorb up to 22 lbs (10 kg) of oil. Units available with flow rates up to 100 gallons per minute (GPM) / 380 liters per minute (L/M). No electrical power requirements.

Typical Fields of Application

  • For emulsified and dissolved oil. 

HIGH FLOW RATE OIL WATER SEPARATOR

Each XL Separator Panel can effectively treat oily water flow rates ranging from 320 GPM (20 l/s) to 640 GPM (40 l/s). Achieves 5 Part per Million (PPM) separation of free non-emulsified oil. By far, the most affordable method for large industrial oil-water separation since panels can be installed side by side like windowpanes in a submerged cross-wall in locally procured concrete or steel tanks. This unique solution represents a huge advantage over shipping conventional bulky separators since there is no limit to the flow rate that can be treated and the panels are washable and reusable. Maintenance is conducted from above ground making it safer, cleaner, quicker and of course, more affordable. Each panel requires 1 yard / 1 meter of submerged wall space. Optional polishing system available to also separate trace emulsified oil down to 0.1 PPM.

With the optional ADD Skimmer, the oil being separated by the XL Panels is mechanically and automatically collected 24/7 and drained by gravity to a separate receptacle. The skimmed oil will contain only 0.3% of water thus providing the operator with an outstanding 99.7 % concentration of pure used oil. This represents a significant advantage over other skimmers in that the operator no longer has to pay for the separated oil and the excess water to be removed from the separator by septic truck and shipped/ treated in a wastewater treatment plant. The operator can even sell or donate the pure separated oil since it is now possible to skim it free of water from the separator on site.