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VENTILASI TRI MARTIANA
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VENTILASI

Jan 02, 2016

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Lester Hunt

VENTILASI. TRI MARTIANA. Introduction. A good and effective ventilation system is necessary in a workplace which have processes that emit air contaminants such as dust, fumes, mists or vapours. Substitution or enclosure method Simple, cheap and effective. Types of Ventilation. Natural - PowerPoint PPT Presentation
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Page 1: VENTILASI

VENTILASI

TRI MARTIANA

Page 2: VENTILASI

Introduction • A good and effective ventilation system is

necessary in a workplace which have processes that emit air contaminants such as dust, fumes, mists or vapours.

• Substitution or enclosure method• Simple, cheap and effective

Page 3: VENTILASI

Types of Ventilation

Natural General Dilution

LEV

Page 4: VENTILASI

Natural Ventilation• Natural movement of air entering and leaving

openings such as windows, doors, roof ventilators as well as through cracks and crevices of a building

• Heated air rises, cool air below

Page 5: VENTILASI

General Ventilation• A method of improving or maintaining the

quality of air in the work environment with airflow

• A room or an entire building is flushed by supplying and exhausting large volumes of air throughout the area

1. Supply or forced ventilation

2. Exhaust or induced ventilation

Page 6: VENTILASI

Dilution Ventilation (DV)• DV consists of general ventilation• Uncontaminated outside air + inside air =

diluting and reducing the concentration of air contaminants to acceptable levels to which a worker can be safely exposed for eight hours a day

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Page 10: VENTILASI

LEV• Capture or contain contaminants at their

source before they escape into the work room environment

• System consists of one or more hoods, ducts, air cleaner and a fan

• LEVs remove contaminants rather than just dilute them

Page 11: VENTILASI

Use of Natural Ventilation• Not suitable for processes which emit dust,

fumes, mists or gas• Rooms for chemical storage +• 25% of floor area• Half the ventilating area should be between

floor level and a height of 2.25m from the floor

Page 12: VENTILASI

Use of Dilution Ventilation• DV is usually applied to the control of

contaminants in situation meeting these criteria:

To control vapours (+organic) from low toxicity solvents

To control contaminants released over such a large area or in such a manner that LEV is impossible, impractical or prohibitively expensive

Page 13: VENTILASI

Small quantities of contaminants released into the work room

Rate of contaminant release should be reasonably constant to avoid inadequate dilution during periods of peak contaminant release

No corrosion or other problems from the diluted contaminants in the work room air

Page 14: VENTILASI

Sufficient distance from the worker to the contaminants source to allow dilution to safe levels

Page 15: VENTILASI

• DV is prohibited – control emission of very toxic air contaminants e.g., formaldehyde or other carcinogenic chemicals

• For effective DV, the exhaust outlet and air supply must be so located that all the air employed in the ventilation passes through the zone of contamination

Page 16: VENTILASI

• Avoid re-entrance of the exhausted air.• The advantages and disadvantages of DV are

as follows:

Page 17: VENTILASI

Advantage Disadvantage• Simplicity• Low original cost• Large volumes of dilution air needed• Employee exposures are difficult to control

near source

Page 18: VENTILASI

Use of LEV• The most effective means of controlling air

contaminants is to capture and remove the air contaminants at their source with LEV and to prevent them from being carried away by air currents into the breathing zones of the worker

Page 19: VENTILASI

• Major release (toxic) of localized sources of contaminants.

• LEV consists of 4 parts:

1. Hoods (most important)

2. Ducts

3. Air cleaner device

4. Fan and motor

Page 20: VENTILASI
Page 21: VENTILASI
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High pressureVenturi

Page 27: VENTILASI

• The hood consists of 3 main types to contain and remove the air-borne contaminants.

1. Enclosures

2. Capturing hoods

3. Receiving hoods

Page 28: VENTILASI

Conclusion • Ventilation – an effective way to control toxic

air contaminants if substitution or enclosure method of control is not possible

• DV reduces contaminant concentrations by diluting them with fresh air. (not for toxic emission)

Page 29: VENTILASI

• LEV capture or contain contaminants at their source before they are dispersed in the workroom

• LEVs need to be maintained, inspected and tested regularly to ensure that it is performing adequately

Page 30: VENTILASI

Introduction • A good and effective ventilation system is

necessary in a workplace which have processes that emit air contaminants such as dust, fumes, mists or vapours.

• Substitution or enclosure method• Simple, cheap and effective

Page 31: VENTILASI

Types of Ventilation

Natural General Dilution

LEV

Page 32: VENTILASI

Natural Ventilation• Natural movement of air entering and leaving

openings such as windows, doors, roof ventilators as well as through cracks and crevices of a building

• Heated air rises, cool air below

Page 33: VENTILASI

General Ventilation• A method of improving or maintaining the

quality of air in the work environment with airflow

• A room or an entire building is flushed by supplying and exhausting large volumes of air throughout the area

1. Supply or forced ventilation

2. Exhaust or induced ventilation

Page 34: VENTILASI

Dilution Ventilation (DV)• DV consists of general ventilation• Uncontaminated outside air + inside air =

diluting and reducing the concentration of air contaminants to acceptable levels to which a worker can be safely exposed for eight hours a day

Page 35: VENTILASI
Page 36: VENTILASI
Page 37: VENTILASI
Page 38: VENTILASI

LEV• Capture or contain contaminants at their

source before they escape into the work room environment

• System consists of one or more hoods, ducts, air cleaner and a fan

• LEVs remove contaminants rather than just dilute them

Page 39: VENTILASI

Use of Natural Ventilation• Not suitable for processes which emit dust,

fumes, mists or gas• Rooms for chemical storage +• 25% of floor area• Half the ventilating area should be between

floor level and a height of 2.25m from the floor

Page 40: VENTILASI

Use of Dilution Ventilation• DV is usually applied to the control of

contaminants in situation meeting these criteria:

To control vapours (+organic) from low toxicity solvents

To control contaminants released over such a large area or in such a manner that LEV is impossible, impractical or prohibitively expensive

Page 41: VENTILASI

Small quantities of contaminants released into the work room

Rate of contaminant release should be reasonably constant to avoid inadequate dilution during periods of peak contaminant release

No corrosion or other problems from the diluted contaminants in the work room air

Page 42: VENTILASI

Sufficient distance from the worker to the contaminants source to allow dilution to safe levels

Page 43: VENTILASI

• DV is prohibited – control emission of very toxic air contaminants e.g., formaldehyde or other carcinogenic chemicals

• For effective DV, the exhaust outlet and air supply must be so located that all the air employed in the ventilation passes through the zone of contamination

Page 44: VENTILASI

• Avoid re-entrance of the exhausted air.• The advantages and disadvantages of DV are

as follows:

Page 45: VENTILASI

Advantage Disadvantage• Simplicity• Low original cost• Large volumes of dilution air needed• Employee exposures are difficult to control

near source

Page 46: VENTILASI

Use of LEV• The most effective means of controlling air

contaminants is to capture and remove the air contaminants at their source with LEV and to prevent them from being carried away by air currents into the breathing zones of the worker

Page 47: VENTILASI

• Major release (toxic) of localized sources of contaminants.

• LEV consists of 4 parts:

1. Hoods (most important)

2. Ducts

3. Air cleaner device

4. Fan and motor

Page 48: VENTILASI
Page 49: VENTILASI
Page 50: VENTILASI
Page 51: VENTILASI
Page 52: VENTILASI
Page 53: VENTILASI
Page 54: VENTILASI

High pressureVenturi

Page 55: VENTILASI

• The hood consists of 3 main types to contain and remove the air-borne contaminants.

1. Enclosures

2. Capturing hoods

3. Receiving hoods

Page 56: VENTILASI

Conclusion • Ventilation – an effective way to control toxic

air contaminants if substitution or enclosure method of control is not possible

• DV reduces contaminant concentrations by diluting them with fresh air. (not for toxic emission)

Page 57: VENTILASI

• LEV capture or contain contaminants at their source before they are dispersed in the workroom

• LEVs need to be maintained, inspected and tested regularly to ensure that it is performing adequately