SlideShare a Scribd company logo
1 of 25
A DESIGN MODEL
OF A WASTE
WATER TREAMENT
PLANT
IN A MINERAL
PROCESSING MILL
USING
PLANT DESIGN
MANAGEMENT
SYSTEM ( PDMS )
A DESIGN MODEL
OF A WASTE
WATER TREAMENT
PLANT
IN A MINERAL
PROCESSING MILL
USING
PLANT DESIGN
MANAGEMENT
SYSTEM ( PDMS )
SHEU A. BASHARU,SHEU A. BASHARU,
M. N. S. USAINIM. N. S. USAINI
ANDAND
M. ALIM. ALI
ABSTRACT
INTRODUCTION
Water (HWater (H22O) O) 
is the most abundant compound, covering about 
70% 70% 
of the earth surface.
Therefore,
when water is
contaminated, it is said
to be polluted.
Water is essential
to life on our
planet; a
prerequisite of
sustainable
development
must be to ensure
uncontaminated
streams, rivers,
lakes and oceans.
(Nigerians Minerals and Mining Act, 2007);
Mining and Mineral Processing
activities constitute the major causes of water
Pollution through large amounts of water utilized in
the processing of ores in mills, which when
discharged pollute environmental water bodies.
Because of these problems and assertions raised
by NMMA, 2007; this then call for a research
on a design model of a Waste Water Treatment
Plant in a Mineral Processing mill using PDMS in
order to tackle the problem caused by water
pollution from Mining and Mineral Processing
Activities.
Therefore,
Aims and Objectives of the Research
 recovery and reuse of mineral processing mill
waste water;
 removing the pollutants from the waste water;
 recovery of some saleable products from mill
waste water;
 the treatment plant to supply fresh water to
the host community;
Specifically, the research will provide design
for:
Types of Water Pollution from Mining/Mineral
Processing Activities
 Acid Mine Drainage
 Heavy Metal Contamination & Leaching
 Processing Chemicals Pollution
 Erosion and Sedimentation
History of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment Engineering
Development of Water Treatment Design
Projects
The period before construction commences
can generally be divided into the following
phases:
 Master planning
 Process train selection
 Preliminary design
 Final design
Multidiscipline Teams for Design of Mill
Waste Water Treatment Plant
• Process engineers
• Plant operations specialists
• Structural Engineers
• Piping Engineers
• Civil Engineers
• Instrumentation and control engineers
• Health and safety specialists
• Environmental scientists
For a water treatment plant in a mineral
processing mill, the following engineers are added
to the team;
• Mineral Processing Engineers
• Metallurgists
INTRODUCINGINTRODUCING
VANTAGE PDMSVANTAGE PDMS
• PDMS means Plant Design Management System. It is
therefore the accepted CAD software for all engineering
designs as it allows for all forms of configurations.
• The PDMS login form looks like this,
Project: WATER TEATMENT PLANT
Username: SYSTEM
PASSWORD: XXXXXX
MDB: SAMPLE
Module: DESIGN
Load from: Macro files
INTRODUCING
VANTAGE PDMS
(CONTD)
 The PDMS Startup Display, when PDMS has loaded the screen
looks like this,
THE DESIGN MODEL
OF THE PLANT
 For the purpose of this research work, two design models were
compared, as shown below;
DESIGN MODEL 1
THE DESIGN MODEL OF
THE PLANT (CONTD)
THE DESIGN MODEL OF
THE PLANT (CONTD)
DESIGN MODEL 2
THE DESIGN MODEL OF
THE PLANT (CONTD)
DESIGN MODEL 2
DESIGN MODEL OF THE
PLANT (CONTD)
Design model 2 involves the following steps:
from the millPollution prevention at all sources from the mill
Minimization of potential impacts by mitigation measures
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and dischargeTreatment of mill water for beneficial use and discharge
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and discharge
Minimization of potential impacts by mitigation measures
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and discharge
Pollution prevention at all sources from the mill
Minimization of potential impacts by mitigation measures
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and discharge
Pollution prevention at all sources from the mill
Minimization of potential impacts by mitigation measures
Recovery and beneficial use of water on mill complex
Pollution prevention at all sources from the mill
Minimization of potential impacts by mitigation measures
Treatment of mill water for beneficial use and discharge
Recovery and beneficial use of water on mill complex
Pollution prevention at all sources from the mill
Minimization of potential impacts by mitigation measures
Treatment of mill water for beneficial use and discharge
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and discharge
Minimization of potential impacts by mitigation measures
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and discharge
Pollution prevention at all sources from the mill
Minimization of potential impacts by mitigation measures
Recovery and beneficial use of water on mill complex
Treatment of mill water for beneficial use and discharge
DESIGN MODEL OF THE
PLANT (CONTD)
 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2
Mine waste water treatment
plant technology
Mine waste water treatment plant
technology
DISCUSSION
The major processes involved in the treating of mill waste water
due to harmful contaminants in it, these processes are:
 Aeration and Air Stripping Process
 Mixing Coagulation and Flocculation
 Sedimentation Process
 Filtration Process (High Rate Granular Media)
 Oxidation and Disinfection
 Lime Softening
 Ionic Exchange Processes
 Membrane Processes
 Activated Carbon Processes
 Ultra – Violent Light Process
The design 1 carryout processes such as aeration, coagulation,
sedimentation, filtration, backwashing and disinfection due to
limitations in it design parameters.
DISCUSSION (Contd)
From the foregoing, we can
deduce that the costs involved in
constructing and operating a
waste water treatment plant
from mineral processing mill can
be broadly divided into two
categories:
(1) investment costs and
(2) operating expenses.
The investment costs include following
under – listed costs:
 Preliminary studies;
 Acquisition of site and building planning;
 Project costs such as design, EIA etc;
 Civil work, equipment & instrumentation costs,
Construction and installation;
 Commissioning (i.e. testing and accepting the
installation) and start-up costs.
Operating costs generally includes items
such as:
 Personnel;
 Maintenance costs;
 Operational costs: chemicals, utilities, lab
supplies, office supplies etc.;
 Aeration costs (electricity);
 Sludge disposal costs.
DISCUSSION (Contd)
DESIGN 1
 It is a model for a small scale
mill, where simple ore is
processed. Its configuration is
such that it allows for particle
size of contaminants in micro
meter. The design model is
therefore affected by physical
nature, chemical composition
and type of contaminants. It is
cost effective for a small scale
mill.
DESIGN 2
 It explains a model for a large
scale mill that can process all
sort of ores particularly
complex ore. Its configuration
is such that it allows for varying
sizes of contaminants. It is not
affected by the type of
contaminants, chemical
composition and physical
nature of the contaminants. It is
restricted to large scale mill that
can pay for its maintenance
cost and other miscellaneous
expenses.
CONCLUSION
 Plant Design Management System (PDMS) is the
only Computer – Aided – Design (CAD) Software that allows for any
type of configuration in the design of any process plant as it was
pointed out from above. It gives room for all designers working on a
project to work simultaneously without interfering with each other’s
work. The designers includes; structural engineers, civil engineers,
process engineers, electrical engineers, mechanical engineers and
piping engineers, hence it can adequately be applied in Mineral Process
Mill Waste Water Treatment Plant .
 This is not the same with other design software like CADWORX, the
entire work is designed by a designer because it not a management
system as a result such design is not perfected and does not allow for
varying configuration types as the PDMS does.
for

More Related Content

What's hot

ZLD.ppt-Aquatech. Delhi 2015
ZLD.ppt-Aquatech. Delhi 2015ZLD.ppt-Aquatech. Delhi 2015
ZLD.ppt-Aquatech. Delhi 2015
satish bhatt
 

What's hot (20)

Design of 210 Sewage Treatment Plant
Design of 210 Sewage Treatment PlantDesign of 210 Sewage Treatment Plant
Design of 210 Sewage Treatment Plant
 
Deisa - Water Treatment Engineering
Deisa - Water Treatment Engineering Deisa - Water Treatment Engineering
Deisa - Water Treatment Engineering
 
internship report on performance of sewage treatment plant
internship report on performance of sewage treatment plantinternship report on performance of sewage treatment plant
internship report on performance of sewage treatment plant
 
Zero Liquid Discharge Plant
Zero Liquid Discharge Plant Zero Liquid Discharge Plant
Zero Liquid Discharge Plant
 
Desalination and water reuse technologies
Desalination and water reuse technologiesDesalination and water reuse technologies
Desalination and water reuse technologies
 
Sewage Treatment Plant
Sewage Treatment PlantSewage Treatment Plant
Sewage Treatment Plant
 
Design guidline for_small_waste_water_treatment_works
Design guidline for_small_waste_water_treatment_worksDesign guidline for_small_waste_water_treatment_works
Design guidline for_small_waste_water_treatment_works
 
Phytorid Wastewater Treatment Technology- Decentralised & Ecosystem Based ...
Phytorid Wastewater Treatment Technology- Decentralised  &  Ecosystem  Based ...Phytorid Wastewater Treatment Technology- Decentralised  &  Ecosystem  Based ...
Phytorid Wastewater Treatment Technology- Decentralised & Ecosystem Based ...
 
Different Uses of Water in India
Different Uses of Water in IndiaDifferent Uses of Water in India
Different Uses of Water in India
 
Design of sewage treatment plant 2
Design of sewage treatment plant 2Design of sewage treatment plant 2
Design of sewage treatment plant 2
 
Water Recycling Process
Water Recycling ProcessWater Recycling Process
Water Recycling Process
 
Assesment of durg sewage
Assesment of durg sewage Assesment of durg sewage
Assesment of durg sewage
 
SEWAGE TREATMENT IN MALAYSIA
SEWAGE TREATMENT IN MALAYSIASEWAGE TREATMENT IN MALAYSIA
SEWAGE TREATMENT IN MALAYSIA
 
Zero liquid discharge
Zero liquid dischargeZero liquid discharge
Zero liquid discharge
 
Sewage treatment
Sewage treatmentSewage treatment
Sewage treatment
 
BAUER Water Brochure
BAUER Water BrochureBAUER Water Brochure
BAUER Water Brochure
 
L 1 and 2 introductio and definitions
L 1 and 2 introductio and definitionsL 1 and 2 introductio and definitions
L 1 and 2 introductio and definitions
 
ZLD.ppt-Aquatech. Delhi 2015
ZLD.ppt-Aquatech. Delhi 2015ZLD.ppt-Aquatech. Delhi 2015
ZLD.ppt-Aquatech. Delhi 2015
 
Desalination
DesalinationDesalination
Desalination
 
IRJET- Experimental Work by Vacuum Methodology Study on Waste Water
IRJET- Experimental Work by Vacuum Methodology Study on Waste WaterIRJET- Experimental Work by Vacuum Methodology Study on Waste Water
IRJET- Experimental Work by Vacuum Methodology Study on Waste Water
 

Viewers also liked (9)

Rita Atria
Rita AtriaRita Atria
Rita Atria
 
Digital story quiz
Digital story quizDigital story quiz
Digital story quiz
 
Ambrogio Mauri
Ambrogio MauriAmbrogio Mauri
Ambrogio Mauri
 
Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01
Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01
Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01
 
Repinstitucion 3° 5°-9°
Repinstitucion 3° 5°-9°Repinstitucion 3° 5°-9°
Repinstitucion 3° 5°-9°
 
L'impegno tricolore
L'impegno tricoloreL'impegno tricolore
L'impegno tricolore
 
Lista vittime mafia
Lista vittime mafiaLista vittime mafia
Lista vittime mafia
 
Customer Exprience Management
Customer Exprience ManagementCustomer Exprience Management
Customer Exprience Management
 
Amex Customer Service Baromoeter 2012
Amex Customer Service Baromoeter 2012Amex Customer Service Baromoeter 2012
Amex Customer Service Baromoeter 2012
 

Similar to Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01

Sewage and effluent treatment plant manufacturer ahmedabad gujarat india
Sewage and effluent treatment plant manufacturer  ahmedabad gujarat indiaSewage and effluent treatment plant manufacturer  ahmedabad gujarat india
Sewage and effluent treatment plant manufacturer ahmedabad gujarat india
Shubham Hydrosys Pvt. Ltd
 
Effluent treatment plant - design, operation and analysis of waste water trea...
Effluent treatment plant - design, operation and analysis of waste water trea...Effluent treatment plant - design, operation and analysis of waste water trea...
Effluent treatment plant - design, operation and analysis of waste water trea...
Shubham Hydrosys Pvt. Ltd
 

Similar to Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01 (20)

Development of Saline Water Desalination System
Development of Saline Water Desalination SystemDevelopment of Saline Water Desalination System
Development of Saline Water Desalination System
 
What is the Purpose of a Pump in a Wastewater Treatment Plant?
What is the Purpose of a Pump in a Wastewater Treatment Plant?What is the Purpose of a Pump in a Wastewater Treatment Plant?
What is the Purpose of a Pump in a Wastewater Treatment Plant?
 
zero effluent discharge system
zero effluent discharge systemzero effluent discharge system
zero effluent discharge system
 
Role of chemical engineer in environment
Role of chemical engineer in environmentRole of chemical engineer in environment
Role of chemical engineer in environment
 
WWT_PPT_FINAL 5-1.pptx
WWT_PPT_FINAL 5-1.pptxWWT_PPT_FINAL 5-1.pptx
WWT_PPT_FINAL 5-1.pptx
 
Stormwater-Management-Design.pptx
Stormwater-Management-Design.pptxStormwater-Management-Design.pptx
Stormwater-Management-Design.pptx
 
Effluent treatment plant zero liquid discharge plants india by shubham inc
Effluent treatment plant   zero liquid discharge plants  india by shubham incEffluent treatment plant   zero liquid discharge plants  india by shubham inc
Effluent treatment plant zero liquid discharge plants india by shubham inc
 
Reverse osmosis plant by shubham inc | Ahmedabad | Gujarat
Reverse osmosis plant by shubham inc | Ahmedabad | GujaratReverse osmosis plant by shubham inc | Ahmedabad | Gujarat
Reverse osmosis plant by shubham inc | Ahmedabad | Gujarat
 
Sewage and effluent treatment plant manufacturer ahmedabad gujarat india
Sewage and effluent treatment plant manufacturer  ahmedabad gujarat indiaSewage and effluent treatment plant manufacturer  ahmedabad gujarat india
Sewage and effluent treatment plant manufacturer ahmedabad gujarat india
 
Effluent treatment plant - design, operation and analysis of waste water trea...
Effluent treatment plant - design, operation and analysis of waste water trea...Effluent treatment plant - design, operation and analysis of waste water trea...
Effluent treatment plant - design, operation and analysis of waste water trea...
 
L 1 introduction
L 1 introductionL 1 introduction
L 1 introduction
 
IRJET- Need for Advanced Engineered Systems for Restoring the Lower Reaches o...
IRJET- Need for Advanced Engineered Systems for Restoring the Lower Reaches o...IRJET- Need for Advanced Engineered Systems for Restoring the Lower Reaches o...
IRJET- Need for Advanced Engineered Systems for Restoring the Lower Reaches o...
 
Apex Chemical Technologies pvt ltd
Apex Chemical Technologies pvt ltd Apex Chemical Technologies pvt ltd
Apex Chemical Technologies pvt ltd
 
IN-HOUSE R&D PROPOSALS-PRT.ppt
IN-HOUSE R&D PROPOSALS-PRT.pptIN-HOUSE R&D PROPOSALS-PRT.ppt
IN-HOUSE R&D PROPOSALS-PRT.ppt
 
Desalination, The Sustainable Alternative
Desalination, The Sustainable AlternativeDesalination, The Sustainable Alternative
Desalination, The Sustainable Alternative
 
Desalination the sustainable alternative
Desalination the sustainable alternativeDesalination the sustainable alternative
Desalination the sustainable alternative
 
Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...
Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...
Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...
 
Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...
Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...
Designing of Sewage Treatment Plant for Society Level By using Sequential Bat...
 
SCIMEE is a rare-earth magnet-based wastewater treatment company equipped wit...
SCIMEE is a rare-earth magnet-based wastewater treatment company equipped wit...SCIMEE is a rare-earth magnet-based wastewater treatment company equipped wit...
SCIMEE is a rare-earth magnet-based wastewater treatment company equipped wit...
 
A3S profile
A3S profileA3S profile
A3S profile
 

Recently uploaded

IAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI SolutionsIAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI Solutions
Enterprise Knowledge
 

Recently uploaded (20)

Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
 
GenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationGenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day Presentation
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men
 
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
 
Advantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessAdvantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your Business
 
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
 
A Call to Action for Generative AI in 2024
A Call to Action for Generative AI in 2024A Call to Action for Generative AI in 2024
A Call to Action for Generative AI in 2024
 
Breaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountBreaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path Mount
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdf
 
Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024
Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024
Bajaj Allianz Life Insurance Company - Insurer Innovation Award 2024
 
IAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI SolutionsIAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI Solutions
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘
 
Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024
 
Factors to Consider When Choosing Accounts Payable Services Providers.pptx
Factors to Consider When Choosing Accounts Payable Services Providers.pptxFactors to Consider When Choosing Accounts Payable Services Providers.pptx
Factors to Consider When Choosing Accounts Payable Services Providers.pptx
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...
 
Automating Google Workspace (GWS) & more with Apps Script
Automating Google Workspace (GWS) & more with Apps ScriptAutomating Google Workspace (GWS) & more with Apps Script
Automating Google Workspace (GWS) & more with Apps Script
 
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
 

Mynsmeslideoriginal 13291410981611-phpapp01-120213075502-phpapp01

  • 1.
  • 2. A DESIGN MODEL OF A WASTE WATER TREAMENT PLANT IN A MINERAL PROCESSING MILL USING PLANT DESIGN MANAGEMENT SYSTEM ( PDMS ) A DESIGN MODEL OF A WASTE WATER TREAMENT PLANT IN A MINERAL PROCESSING MILL USING PLANT DESIGN MANAGEMENT SYSTEM ( PDMS )
  • 3. SHEU A. BASHARU,SHEU A. BASHARU, M. N. S. USAINIM. N. S. USAINI ANDAND M. ALIM. ALI
  • 6. Therefore, when water is contaminated, it is said to be polluted.
  • 7. Water is essential to life on our planet; a prerequisite of sustainable development must be to ensure uncontaminated streams, rivers, lakes and oceans. (Nigerians Minerals and Mining Act, 2007);
  • 8. Mining and Mineral Processing activities constitute the major causes of water Pollution through large amounts of water utilized in the processing of ores in mills, which when discharged pollute environmental water bodies. Because of these problems and assertions raised by NMMA, 2007; this then call for a research on a design model of a Waste Water Treatment Plant in a Mineral Processing mill using PDMS in order to tackle the problem caused by water pollution from Mining and Mineral Processing Activities. Therefore,
  • 9. Aims and Objectives of the Research  recovery and reuse of mineral processing mill waste water;  removing the pollutants from the waste water;  recovery of some saleable products from mill waste water;  the treatment plant to supply fresh water to the host community; Specifically, the research will provide design for:
  • 10. Types of Water Pollution from Mining/Mineral Processing Activities  Acid Mine Drainage  Heavy Metal Contamination & Leaching  Processing Chemicals Pollution  Erosion and Sedimentation
  • 11. History of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment EngineeringHistory of Water Treatment Engineering
  • 12. Development of Water Treatment Design Projects The period before construction commences can generally be divided into the following phases:  Master planning  Process train selection  Preliminary design  Final design
  • 13. Multidiscipline Teams for Design of Mill Waste Water Treatment Plant • Process engineers • Plant operations specialists • Structural Engineers • Piping Engineers • Civil Engineers • Instrumentation and control engineers • Health and safety specialists • Environmental scientists For a water treatment plant in a mineral processing mill, the following engineers are added to the team; • Mineral Processing Engineers • Metallurgists
  • 14. INTRODUCINGINTRODUCING VANTAGE PDMSVANTAGE PDMS • PDMS means Plant Design Management System. It is therefore the accepted CAD software for all engineering designs as it allows for all forms of configurations. • The PDMS login form looks like this, Project: WATER TEATMENT PLANT Username: SYSTEM PASSWORD: XXXXXX MDB: SAMPLE Module: DESIGN Load from: Macro files
  • 15. INTRODUCING VANTAGE PDMS (CONTD)  The PDMS Startup Display, when PDMS has loaded the screen looks like this,
  • 16. THE DESIGN MODEL OF THE PLANT  For the purpose of this research work, two design models were compared, as shown below; DESIGN MODEL 1
  • 17. THE DESIGN MODEL OF THE PLANT (CONTD)
  • 18. THE DESIGN MODEL OF THE PLANT (CONTD) DESIGN MODEL 2 THE DESIGN MODEL OF THE PLANT (CONTD) DESIGN MODEL 2
  • 19. DESIGN MODEL OF THE PLANT (CONTD) Design model 2 involves the following steps: from the millPollution prevention at all sources from the mill Minimization of potential impacts by mitigation measures Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and dischargeTreatment of mill water for beneficial use and discharge Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and discharge Minimization of potential impacts by mitigation measures Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and discharge Pollution prevention at all sources from the mill Minimization of potential impacts by mitigation measures Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and discharge Pollution prevention at all sources from the mill Minimization of potential impacts by mitigation measures Recovery and beneficial use of water on mill complex Pollution prevention at all sources from the mill Minimization of potential impacts by mitigation measures Treatment of mill water for beneficial use and discharge Recovery and beneficial use of water on mill complex Pollution prevention at all sources from the mill Minimization of potential impacts by mitigation measures Treatment of mill water for beneficial use and discharge Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and discharge Minimization of potential impacts by mitigation measures Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and discharge Pollution prevention at all sources from the mill Minimization of potential impacts by mitigation measures Recovery and beneficial use of water on mill complex Treatment of mill water for beneficial use and discharge
  • 20. DESIGN MODEL OF THE PLANT (CONTD)  Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Treatment Plant technology involved in Design 2 Mine waste water treatment plant technology Mine waste water treatment plant technology
  • 21. DISCUSSION The major processes involved in the treating of mill waste water due to harmful contaminants in it, these processes are:  Aeration and Air Stripping Process  Mixing Coagulation and Flocculation  Sedimentation Process  Filtration Process (High Rate Granular Media)  Oxidation and Disinfection  Lime Softening  Ionic Exchange Processes  Membrane Processes  Activated Carbon Processes  Ultra – Violent Light Process The design 1 carryout processes such as aeration, coagulation, sedimentation, filtration, backwashing and disinfection due to limitations in it design parameters.
  • 22. DISCUSSION (Contd) From the foregoing, we can deduce that the costs involved in constructing and operating a waste water treatment plant from mineral processing mill can be broadly divided into two categories: (1) investment costs and (2) operating expenses. The investment costs include following under – listed costs:  Preliminary studies;  Acquisition of site and building planning;  Project costs such as design, EIA etc;  Civil work, equipment & instrumentation costs, Construction and installation;  Commissioning (i.e. testing and accepting the installation) and start-up costs. Operating costs generally includes items such as:  Personnel;  Maintenance costs;  Operational costs: chemicals, utilities, lab supplies, office supplies etc.;  Aeration costs (electricity);  Sludge disposal costs.
  • 23. DISCUSSION (Contd) DESIGN 1  It is a model for a small scale mill, where simple ore is processed. Its configuration is such that it allows for particle size of contaminants in micro meter. The design model is therefore affected by physical nature, chemical composition and type of contaminants. It is cost effective for a small scale mill. DESIGN 2  It explains a model for a large scale mill that can process all sort of ores particularly complex ore. Its configuration is such that it allows for varying sizes of contaminants. It is not affected by the type of contaminants, chemical composition and physical nature of the contaminants. It is restricted to large scale mill that can pay for its maintenance cost and other miscellaneous expenses.
  • 24. CONCLUSION  Plant Design Management System (PDMS) is the only Computer – Aided – Design (CAD) Software that allows for any type of configuration in the design of any process plant as it was pointed out from above. It gives room for all designers working on a project to work simultaneously without interfering with each other’s work. The designers includes; structural engineers, civil engineers, process engineers, electrical engineers, mechanical engineers and piping engineers, hence it can adequately be applied in Mineral Process Mill Waste Water Treatment Plant .  This is not the same with other design software like CADWORX, the entire work is designed by a designer because it not a management system as a result such design is not perfected and does not allow for varying configuration types as the PDMS does.
  • 25. for