• Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
  • Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
  • Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
  • Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
  • Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
  • Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof

Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof

Material: Stainless Steel
Type: Slit Type
Function: Exhaust, Velocity Control
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Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof pictures & photos
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
US $4,500-10,500 / Set
Min. Order: 1 Set
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  • Overview
  • Product Description
  • Product Parameters
  • Fume Hood Maintenance
  • Detailed Photos
  • Installation Instructions
Overview

Basic Info.

Model NO.
WJ-1800B
Feature
Corrosion Resistance, Heat Resistant, Acid & Alkali Resistant, Fireproof, Explosion Proof
Hood Type
Standard
Color
White
Customized
Customized
Condition
New
Product Name
Fume Cupboard
Base
Steel
Sash
Tempered Glass
Airflow
Ceramic Fiber
Interior Baffle
Ceramic
Liner
Ceramic Fiber
Worktop
1560(W)*780(D)*1100(H)
Input Power
380V/50A
Face Velocity
0.6-0.8 M/S
Application
Office Building, Hospital, School, Laboratory
Illumination
Less Than 700 Lux
Noise
Less Than 70 dB
Transport Package
Standard Export Wooden Case Packing
Specification
1800(W)*1205(D)*2400(H)
Trademark
Ample
Origin
Chengdu, China
HS Code
8414809090
Production Capacity
200 Set/Month

Product Description

Product Description


In laboratories, fume cupboards are the primary method of controlling exposure to toxic, offensive or flammable vapours, gases and aerosols. A type of local exhaust ventilation system, fume cupboards typically consist of a cabinet, or hood, with a moveable front sash or window, made out of safety glass.

They rely on extraction, which is sometimes controlled by the building's air conditioning and heating system; fumes are drawn into the hood and expelled through a neutralisation filter. In order to keep protection levels high, fume cupboards have to be used effectively and maintained appropriately. Therefore, the airflow within the fume cupboard needs to be enough to control the airborne contaminants effectively, with factors such as design, size of the window opening, type of process and the substance(s) being controlled all affecting the airflow of the cupboard.

Acid digestion is one of the more common procedures performed in fume hoods that causes premature rusting and corrosion. All-metal fume hoods, standard in most labs, will rust over time and need to be replaced, but specialty labs working with acids to break down organic and inorganic materials often make the mistake of not using metal-free fume hoods. Hydrochloric acid, sulfuric acid, hydrofluoric acid and nitric acid are common in any digestion experimentation and analysis, all of which will immediately rust and corrode any exposed metal it touches, resulting in contamination to samples.

The fume hood is an important safety staple in chemistry classrooms and research labs. Getting the most out of a fume hood begins with selecting the right one for your application. That means knowing precisely what type of work will be performed in the fume hood and making the choice between constant air volume and variable air volume, choosing between a ducted and a ductless fume hood, and selecting the appropriate material of construction.

Product Parameters
 
Model
Parameters
YT-1500A YT-1500B YT-1500C YT-1800A YT-1800B YT-1800C
Size (mm) 1500(W)*865(D)*2400(H) 1800(W)*1205(D)*2400(H)
Worktop Size (mm) 1260(W1)*795(D1)*1100(H1) 1560(W1)*795(D1)*1100(H1)
Worktop 20+6mm Ceramic 20+6mm Ceramic 12.7mm Solid Physiochemical Board 20+6mm Ceramic 20+6mm Ceramic 12.7mm Solid Physiochemical Board
Liner 5mm Ceramic Fibre 5mm Compact Laminate 5mm Compact Laminate 5mm Ceramic Fibre 5mm Compact Laminate 5mm Compact Laminate
Diversion Structure Back Absorption
Control System Touch-Tone Control Panel (LED Screen)
Input Power  220V/32A
Fan Power Less than 2.8 A 
Socket Max. Load 5KW
Faucet 1 Set
Drainage Mode  Natural Fall
Storage Double-Lock, Corrosion-Resistant, Damp-proof, Multi-layer Solid Wood with Mobile Wheel
Application Indoor No-blast, 0-40 ºC
Application Field Organic Chemical Experiment
Face Velocity Control Manual Control
Average Face Velocity 0.3-0.5 m/s  Exhaust: 720-1200m³/h 0.3-0.5 m/s  Exhaust:900- 1490m³/h
Face Velocity Deviation Less than 10%
Average Illumination Less than 500  Lux
Noise Within 55 dB
Exhaust Air No Residue
Safety Test In Accord with International Standard
Resistance Less than 70Pa
Add Air Function Distinctive Structure (Need Exclusive Add Air System)
Air Flow Control Valve Dia. 250mm Flange Type Anti-Corrosion Control Valve Dia. 315mm Flange Type Anti-Corrosion Control Valve
 
Fume Hood Maintenance

Labs are a risky environment. Between the sharp objects and beakers lined up in rows, workers have to constantly be aware of their surroundings. Personal protective equipment and other controls are part of what keep them safe, and fume hoods are no exception.

Fume hoods are an engineering control in labs, meaning they control the hazard. When scientists are working with dangerous materials that emit hazardous vapors, gas, and dust, a fume hood will move it away from their faces and out of the area through an exhaust system.

Without getting too deep into the weeds about the inner workings of the mechanism, it's essential that they are always in working order. Professionals should thoroughly inspect and document fume hoods on an annual basis. A quick visual inspection should be done every time it's used. If there is any suspicion that a fume hood is not working correctly, it's imperative to get in touch with someone ASAP.

No air flow. A quick way to check to see if there's air movement is to tape a piece of tissue to the sash. Turn on the hood. A tissue "flapping in the wind" is indicative of ample air movement - good news.

Weird noises. Occasionally, the fan or motor will need some TLC. Unusual noises are are good indicators to shut the hood down until it can be serviced.
Immediately tag the fume hood as "DO NOT USE" and contact the responsible party to get it repaired if any red flags arise.

Detailed Photos


Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof

Installation Instructions

When installing the fume cupboard, avoid placing it next to any windows, doors and walkways, as these can interfere with the ventilation system. Doing so will help to stop airborne contaminants from spreading around the laboratory.

It is vital that fume cupboards are used only for experimental work. A fume cupboard should never be used as a storage cupboard for pieces of science equipment; filling the cupboard can compromise the airflow and increase the chances of harmful substances leaking into the laboratory. The presence of stored chemicals in the cupboard could also increase the chance of further damage if an accident were to occur.

Likewise, it is important to avoid unnecessary clutter such as safety screens, ovens and trays. Again, this will cause turbulence in the air drawn across the base of the cupboard. The effect of turbulence can be reduced by raising all large objects off the base of the cupboard by placing them on blocks. As a rough guide, all pieces of equipment should be placed at least 150mm from the front of the glass.

When doing work in the fume cupboard, take care to ensure that all materials are kept inside the hood at least 150mm from the window opening. The sash opening must be as small as possible to minimise the chance of any fumes escaping. When not in use, always remember to close the sash. When you're finished, remove the chemicals and store them safely away from the fume hood.

Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof

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From payment to delivery, we protect your trading.
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof pictures & photos
Acid and Alkali Resistant Polypropylene Heat Resistant Laboratory Chemical Duct Fume Hood Explosion Proof
US $4,500-10,500 / Set
Min. Order: 1 Set
Diamond Member Since 2022

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Secured Trading Service
Manufacturer/Factory
Plant Area
101~500 square meters
Management System Certification
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