Traitement des eaux usées

Helaskim

Helaskim : Une solution innovante pour l'élimination des huiles et graisses dans le traitement des eaux usées

Helaskim, un terme souvent rencontré dans les discussions sur l'environnement et le traitement de l'eau, désigne un type spécialisé d'épurateur de surface développé par Walker Process Equipment. Ces épurateurs utilisent une conception hélicoïdale pour éliminer efficacement les huiles et les graisses de la surface des eaux usées, ce qui en fait un outil précieux dans une variété d'applications industrielles et municipales.

Qu'est-ce qu'un Helaskim ?

Un Helaskim est un épurateur de surface hélicoïdal rotatif conçu pour collecter et éliminer efficacement les huiles et les graisses des eaux usées. Cette conception unique combine les avantages des épurateurs à fentes et centrifuges, offrant des performances supérieures et une grande polyvalence.

Comment fonctionne-t-il ?

L'arbre hélicoïdal de l'Helaskim tourne à l'intérieur d'un carter cylindrique, créant un flux continu et ascendant d'eau. Lorsque l'eau monte, la surface hélicoïdale force les huiles et les graisses à s'accumuler le long de la paroi intérieure du carter. Cette couche concentrée d'huile est ensuite raclée par une lame rotative et acheminée vers un canal de collecte pour un traitement ultérieur.

Avantages clés de l'Helaskim :

  • Haute efficacité : La conception hélicoïdale optimise la collecte des huiles et des graisses, maximisant l'efficacité de l'élimination même à faibles concentrations.
  • Polyvalence : Les Helaskim peuvent traiter une large gamme de types d'huiles et de graisses, y compris les huiles légères et lourdes, ainsi que les graisses et les huiles animales.
  • Faible entretien : La construction robuste et la conception simple minimisent l'usure et les déchirures, nécessitant un minimum d'entretien.
  • Gain de place : Les Helaskim sont compacts et peuvent être facilement intégrés aux systèmes de traitement existants.
  • Personnalisable : Walker Process Equipment offre une variété d'options de personnalisation pour répondre aux besoins spécifiques de l'application.

Applications :

Les Helaskim trouvent une utilisation étendue dans diverses applications de traitement des eaux usées industrielles et municipales, notamment :

  • Traitement des eaux usées industrielles : Élimination des huiles et des graisses des fluides de coupe, des opérations de travail des métaux, de la transformation alimentaire et d'autres procédés industriels.
  • Traitement des eaux usées municipales : Élimination des graisses, huiles et graisses (FOG) des flux d'eaux usées municipales, protection des procédés de traitement en aval et prévention des blocages des égouts.
  • Ruissèlement des eaux pluviales : Collecte des huiles et des graisses des routes et des parkings, atténuation de la pollution de l'environnement.

Walker Process Equipment : Un leader dans le traitement des eaux usées

En tant que fabricant renommé d'équipements de traitement des eaux usées, Walker Process Equipment s'est forgé une réputation d'innovation et de qualité. Sa technologie Helaskim représente une avancée significative dans l'élimination des huiles et des graisses, offrant une solution fiable et efficace pour diverses applications.

Conclusion :

La technologie Helaskim est un atout précieux dans la lutte contre la pollution par les huiles et les graisses. Cet épurateur de surface innovant offre une efficacité, une polyvalence et une fiabilité inégalées, ce qui en fait un élément essentiel des systèmes modernes de traitement des eaux usées. En choisissant Helaskim, les industries et les municipalités peuvent éliminer efficacement les contaminants nocifs des eaux usées, contribuant à un environnement plus propre et plus durable.


Test Your Knowledge

Helaskim Quiz:

Instructions: Choose the best answer for each question.

1. What type of skimmer is a Helaskim?

a) Slotted skimmer b) Centrifugal skimmer c) Helical skimmer d) Bubble skimmer

Answer

c) Helical skimmer

2. What is the primary function of the helical shaft in a Helaskim?

a) To create a downward flow of water. b) To collect oil and grease at the bottom of the tank. c) To force oil and grease to accumulate along the housing wall. d) To filter out small particles of oil and grease.

Answer

c) To force oil and grease to accumulate along the housing wall.

3. Which of the following is NOT an advantage of using a Helaskim?

a) High efficiency in oil and grease removal b) Versatility in handling various oil and grease types c) Requires frequent maintenance d) Space-saving design

Answer

c) Requires frequent maintenance

4. Helaskims are used in which of the following applications?

a) Industrial wastewater treatment only b) Municipal wastewater treatment only c) Stormwater runoff only d) All of the above

Answer

d) All of the above

5. Who is the manufacturer of the Helaskim technology?

a) Siemens b) Veolia c) Walker Process Equipment d) Evoqua Water Technologies

Answer

c) Walker Process Equipment

Helaskim Exercise:

Scenario: A food processing plant generates wastewater containing high levels of fats, oils, and greases (FOG). The current treatment system struggles to effectively remove FOG, leading to sewer blockages and environmental concerns.

Task: Explain how a Helaskim could be integrated into the food processing plant's wastewater treatment system to improve FOG removal efficiency. Consider the following factors in your explanation:

  • How the Helaskim works
  • Advantages of using a Helaskim for FOG removal
  • Potential improvements in efficiency and environmental impact

Exercice Correction

A Helaskim would be an effective solution for the food processing plant's FOG removal problem. Here's why: * **How it Works:** The Helaskim's helical shaft creates an upward flow of wastewater. The helical design forces the FOG to accumulate on the inner wall of the housing. A rotating blade then scrapes the concentrated FOG into a collection trough for further treatment or disposal. * **Advantages:** * **High Efficiency:** The Helaskim is designed for high efficiency in removing FOG, even at low concentrations. This would significantly reduce FOG levels in the wastewater before it enters the sewer system. * **Versatility:** The Helaskim can handle the various types of fats, oils, and greases found in food processing wastewater. * **Low Maintenance:** The robust construction and simple design minimize wear and tear, requiring minimal maintenance. * **Space-Saving:** The Helaskim can be integrated into existing treatment systems without requiring a significant amount of space. * **Improvements:** * **Reduced Sewer Blockages:** Effective FOG removal would prevent clogging in the plant's sewer lines, minimizing costly maintenance and disruptions. * **Environmental Protection:** Less FOG in the wastewater discharge would reduce environmental pollution in receiving waters. * **Compliance:** The Helaskim would help the plant meet regulatory requirements for FOG discharge. **Implementation:** The Helaskim could be installed in a location where wastewater flow is high, such as the plant's grease trap outlet. The collected FOG could be further treated or disposed of according to local regulations.


Books

  • Wastewater Engineering: Treatment and Reuse by Metcalf & Eddy
  • Handbook of Industrial Wastewater Treatment by David W. Smith
  • Water Quality Engineering for Pollution Control by David T. Lauria

Articles

  • "Helaskim™ Surface Skimmers: A Proven Solution for Oil and Grease Removal" - Walker Process Equipment
  • "Oil and Grease Removal from Wastewater: A Review" - Journal of Environmental Management
  • "The Role of Skimmers in Wastewater Treatment" - Water Environment & Technology

Online Resources

  • Walker Process Equipment Website: https://www.walkerprocess.com/ - Offers detailed information on Helaskim products, technical specifications, and case studies.
  • Water Environment Federation (WEF): https://www.wef.org/ - Provides resources, research, and publications related to wastewater treatment.
  • Environmental Protection Agency (EPA): https://www.epa.gov/ - Offers guidance and regulations regarding oil and grease management in wastewater.

Search Tips

  • "Helaskim" + "wastewater treatment"
  • "oil and grease removal" + "skimmer"
  • "Walker Process Equipment" + "Helaskim"
  • "surface skimmer" + "helical design"

Techniques

Chapter 1: Techniques

Helaskim: A Revolution in Oil & Grease Removal

Helaskim, a revolutionary surface skimmer developed by Walker Process Equipment, utilizes a helical design to effectively remove oil and grease from wastewater. This technique combines the benefits of both slotted and centrifugal skimmers, offering superior performance and versatility.

The helical design:

  • Continuous, upward flow of water: The rotating helical shaft creates a continuous upward flow of water, drawing oil and grease towards the surface.
  • Oil and grease concentration: The helical surface forces the oil and grease to accumulate along the inner wall of the housing, creating a concentrated layer.
  • Scraping and collection: A rotating blade scrapes the concentrated oil and grease layer and conveys it to a collection trough for further processing.

Advantages of the helical technique:

  • High efficiency: The helical design optimizes oil and grease collection, maximizing removal efficiency even at low concentrations.
  • Versatility: Helaskims can handle a wide range of oil and grease types, including light and heavy oils, as well as fats and greases.
  • Low maintenance: The robust construction and simple design minimize wear and tear, requiring minimal maintenance.

Chapter 2: Models

Helaskim: A Range of Solutions for Diverse Needs

Walker Process Equipment offers a range of Helaskim models to meet specific application requirements, catering to varying flow rates, oil and grease types, and installation environments.

Key model variations:

  • Capacity: Helaskims are available in various sizes to handle different flow rates, ranging from small industrial applications to large municipal treatment plants.
  • Material: Models are crafted using materials suitable for specific applications, such as stainless steel for corrosion resistance or cast iron for heavy-duty usage.
  • Configuration: Helaskims can be customized for different installation configurations, including in-line or side-stream installations.
  • Additional features: Some models offer additional features like automatic level control, integrated filtration systems, or pre-treatment options.

Example models:

  • Helaskim 100: A compact model ideal for small industrial applications with low flow rates.
  • Helaskim 500: A mid-sized model suitable for larger industrial or municipal applications with moderate flow rates.
  • Helaskim 1000: A high-capacity model designed for large municipal wastewater treatment plants.

Selecting the right model:

  • Flow rate: Determine the required flow rate based on the application's needs.
  • Oil and grease type: Consider the type and concentration of oil and grease to be removed.
  • Installation environment: Evaluate the installation space and any environmental considerations.

Chapter 3: Software

Helaskim: Integration and Optimization

Walker Process Equipment provides software solutions for integrating Helaskim systems into existing wastewater treatment plants and optimizing their performance.

Software features:

  • Monitoring and control: Real-time monitoring of Helaskim performance, including flow rate, oil and grease removal efficiency, and system status.
  • Data analysis: Analysis of historical data to identify trends, optimize performance, and predict maintenance needs.
  • Remote access: Remote control and monitoring of Helaskim systems for enhanced operational efficiency.
  • Alarm management: Automated alerts for system issues or potential malfunctions.
  • Reporting and documentation: Generation of reports and documentation for regulatory compliance and internal tracking.

Benefits of software integration:

  • Improved performance: Real-time data and analysis enable optimization of Helaskim operation, leading to higher efficiency and reduced costs.
  • Enhanced reliability: Continuous monitoring and alarm management ensure system stability and minimize downtime.
  • Simplified operation: Remote access and automation simplify operation and reduce manual intervention.

Chapter 4: Best Practices

Helaskim: Maximizing Efficiency and Sustainability

Employing best practices for Helaskim operation ensures optimal performance, minimizes maintenance requirements, and maximizes the system's lifespan.

Operational best practices:

  • Regular maintenance: Adhere to scheduled maintenance procedures, including cleaning and inspection of components.
  • Proper feed flow: Ensure consistent and even flow into the Helaskim system to optimize skimming efficiency.
  • Appropriate pre-treatment: Employ pre-treatment methods like grit removal or coagulation to enhance skimming efficiency and reduce wear on the system.
  • Monitoring and adjustments: Continuously monitor system performance and adjust settings as needed to maintain optimal oil and grease removal.

Sustainability best practices:

  • Energy efficiency: Utilize energy-efficient motors and drive systems to minimize energy consumption.
  • Waste reduction: Implement proper procedures for collecting and disposing of removed oil and grease, minimizing waste generation.
  • Environmental compliance: Ensure adherence to all relevant environmental regulations and standards.

Following these best practices extends the lifespan of Helaskim systems, reduces operating costs, and promotes sustainable wastewater treatment.

Chapter 5: Case Studies

Helaskim: Real-World Success Stories

Numerous case studies showcase the effectiveness and versatility of Helaskim technology in real-world applications.

Example case studies:

  • Municipal wastewater treatment plant: A large municipal plant utilized Helaskim systems to effectively remove fats, oils, and greases (FOG) from wastewater, preventing sewer blockages and protecting downstream treatment processes.
  • Industrial food processing facility: A food processing plant deployed Helaskim skimmers to remove oil and grease from wastewater generated during food processing operations, reducing environmental pollution and improving discharge quality.
  • Stormwater runoff management: A city implemented Helaskim systems to collect oil and grease from roadways and parking lots, mitigating environmental pollution and protecting water bodies.

Case study analysis highlights:

  • Increased efficiency: Helaskim systems consistently achieved high oil and grease removal rates, significantly improving wastewater quality.
  • Reduced maintenance: The robust design and low-maintenance operation minimized downtime and operational costs.
  • Improved sustainability: Helaskim systems contributed to cleaner water and reduced environmental impact.

These case studies demonstrate the practical benefits of Helaskim technology for various industries and municipalities, confirming its value in advancing sustainable wastewater treatment solutions.

Comments


No Comments
POST COMMENT
captcha
Back