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Mechatronics Project EMMET System ElectroMechanical Membrane- Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello
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Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

Dec 16, 2015

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Page 1: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

Mechatronics Project

EMMET SystemElectroMechanical Membrane-Enabled

Transfer System

Carlo YuviencoKeeshan Williams

Alberto Giacomello

Page 2: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Process

Objective: Protein Purification

Page 3: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

Present Implementation

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Page 4: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Page 5: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Page 6: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Vallejo, L. F. & Rinas, U. Strategies for the recovery of active proteins through

refolding of bacterial inclusion body proteins. Microb Cell Fact 3, 11,

doi:10.1186/1475-2859-3-11

Page 7: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

The Electrode SurfaceC. Yuvienco; K. Williams; A. Giacomello

EMMET System

Page 8: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

The Electrode Surface – Equivalent Circuit

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Page 9: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Our Proposal

Page 10: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

1. Digital level sensor2. Reservoir3. Power strip4. Signal generator5. Reservoir valve

(servo controlled)6. controller and circuit boards7. Reaction vessel8. Stir bar

Primary System Components

Page 11: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

1. Digital level sensor2. Reservoir3. Power strip4. Signal generator5. Reservoir valve

(servo controlled)6. controller and circuit boards7. Reaction vessel8. Stir bar

Primary System Components

Page 12: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

1. Digital level sensor2. Reservoir3. Power strip4. Signal generator5. Reservoir valve

(servo controlled)6. controller and circuit boards7. Reaction vessel8. Stir bar

Primary System Components

Page 13: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

1. Digital level sensor2. Reservoir3. Power strip4. Signal generator5. Reservoir valve

(servo controlled)6. controller and circuit boards7. Reaction vessel8. Stir bar

Primary System Components

Page 14: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

Current Source

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

ElectrodeInstrumentation

Amplifier

Micro Controller

Valve Actuator

Full Wave Rectifier

VACI

A2D Converter

VDC

Page 15: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.
Page 16: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.
Page 17: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.
Page 18: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.
Page 19: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

User Interface and Usage1.User is prompted to input 3-4 parameters that defines thesensitivity and operation of the system2.System reports measured voltage differential and status of valve and reservoir liquid level3.System is automated to control and maintain the concentration gradient of solutes across the membrane

Page 20: Mechatronics Project EMMET System ElectroMechanical Membrane-Enabled Transfer System Carlo Yuvienco Keeshan Williams Alberto Giacomello.

C. Yuvienco; K. Williams; A. GiacomelloEMMET System

Advantages• saving on time, materials, manpower• enables a precise control of the process• completely automatizable, customizable• dyalisis may follow desired protocols

Future Improvements• use of Ion Selective Electrodes• improvement of the user interface• concentration readings on LCD