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    Membrane Technology For Water And Wastewater Treatment

    Posted By: ELK1nG
    Membrane Technology For Water And Wastewater Treatment

    Membrane Technology For Water And Wastewater Treatment
    Last updated 8/2020
    MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
    Language: English | Size: 2.94 GB | Duration: 6h 33m

    To learn how to select and design an appropriate membrane process (MF, UF, NF, RO) theoretically and with ROSA software

    What you'll learn
    This course includes 230 slides in 8 sections and 20 lectures (more than 6 hours) and also along with a practical tutorial using ROSA software. These sections:
    Section 1: Membrane basic principles and selection process
    Section 2: Fouling, Scaling, Concentration Polarization, and solutions
    Section 3: Pretreatment and post-treatment
    Section 4: Designing a membrane system and evaluation (e.g. RO/NF) for water and wastewater treatment theoretically (step by step)
    Section 5: Water production using RO/NF membrane (cost and capacity)
    Section 6: Case study: Drinking water treatment using Nanofiltration (NF)
    Section 7: ROSA software tutorial and Reverse Osmosis (RO) process design using this software
    Section 8: Introducing top membrane manufacturers and productions
    Requirements
    A basic knowledge of water and wastewater treatment
    Description
    This course includes 230 slides in 8 sections and 20 lectures (more than 6:00 hours) and also along with a practical tutorial using ROSA software. These sections are as follow:Section 1: Membrane basic principles and selection processSection 2: Fouling, Scaling, Concentration Polarization, and solutionsSection 3: Pretreatment and post-treatmentSection 4: Membrane design and evaluationSection 5: Water production using RO/NF membrane (cost and capacity)Section 6: Case study: Drinking water treatment using Nanofiltration (NF)Section 7: ROSA software tutorial and Reverse Osmosis (RO) process design using this softwareSection 8: Introducing top membrane manufacturers

    Overview

    Section 1: Membrane basic principles and selection process

    Lecture 1 Introducing, content, and references

    Lecture 2 Lecture 2: Introduction to membrane process

    Lecture 3 Determination of the necessary molecular separation size of the membrane

    Lecture 4 Lecture 4: Determination of the membrane material

    Lecture 5 Lecture 5: Decision on the module type

    Lecture 6 Lecture 6: Decision of the process

    Section 2: Fouling, Scaling, Concentration Polarization, and solutions

    Lecture 7 Fouling and scaling (types, factors, analysis)

    Lecture 8 Concentration polarization and resistances, fouling/scaling minimization methods

    Section 3: Pretreatment and post-treatment

    Lecture 9 Types of pretreatment, Control of critical substances/parameters

    Lecture 10 Post-treatment for membrane processes, Exercise (pretreatment process selection)

    Section 4: Membrane design and evaluation (RO/NF design in 10 steps)

    Lecture 11 General concepts before the design

    Lecture 12 Reverse Osmosis system design in 10 steps

    Lecture 13 Evaluation of Reverse Osmosis (RO) Systems

    Lecture 14 Energy and Sustainability Considerations

    Section 5: Water production using RO/NF membrane (cost and capacity)

    Lecture 15 Water production using RO/NF membrane (cost and capacity)

    Section 6: Case study: Drinking water treatment using Nanofiltration (NF)

    Lecture 16 Case study: Drinking water treatment with nanofiltration

    Section 7: ROSA software tutorial and Reverse Osmosis (RO) process design using ROSA

    Lecture 17 ROSA software tutorial, guidelines and standards

    Lecture 18 Designing a RO system for brackish surface water using ROSA software

    Lecture 19 Designing a RO system for seawater desalination using ROSA software

    Section 8: Introducing top membrane manufacturers and productions

    Lecture 20 Introducing top membrane manufacturers and productions

    Chemical engineering,Environmental engineering,Process engineering,Mechanical engineering,Civil engineering,Hydro science and engineering