Overview
Standard Fume Hood, as the core equipment of the laboratory ventilation system, is specially designed for chemical laboratories, organic synthesis laboratories, pharmaceutical R&D workshops and other scenarios. It is a key equipment to ensure the safety of laboratory personnel and maintain the clean air environment of the laboratory. Adopting industry-leading air flow design technology, the product has core advantages such as explosion protection, low noise and stable face velocity. It can effectively capture and discharge toxic and harmful gases, dust and volatile organic compounds generated during experiments, avoid laboratory personnel inhaling harmful substances, and prevent harmful gases from diffusing to other areas of the laboratory.
The product is strictly designed and manufactured in accordance with international authoritative standards such as NFPA 45 (Laboratory Chemical Safety Code) and ASHRAE 110 (Fume Hood Performance Test Standard). It has passed multiple professional certifications, with reliable quality and stable performance. It can meet the use needs of various laboratories such as university research, enterprise R&D and third-party testing, and is an indispensable core product for laboratory construction.
The system can be configured with:
VAV / CAV air volume control panels
PP / FRP exhaust duct & exhaust fans
Activated carbon waste gas filter boxes
Multiple styles of sash window handles
Suitable for:
Organic synthesis laboratories
University chemistry teaching laboratories
Pharmaceutical R&D laboratories
Environmental hazardous substance testing labs
Industrial QC chemical analysis labs
Pilot-scale reaction laboratories
High-corrosion inorganic experiment labs
Specifications
|
Parameter Category |
1200mm Regular Model |
1500mm Regular Model |
1800mm Regular Model |
Customized Model (Adjustable on Demand) |
|
Overall Dimensions (Length × Width × Height, mm) |
1200×850×2350 |
1500×850×2350 |
1800×850×2350 |
Customized according to customer needs |
|
Working Area Dimensions (Length × Width × Height, mm) |
1150×750×1200 |
1450×750×1200 |
1750×750×1200 |
Adjusted synchronously with overall dimensions |
|
Face Velocity (m/s) |
0.4-0.6 (Adjustable) |
0.4-0.6 (Adjustable) |
0.4-0.6 (Adjustable) |
0.3-0.8 (Customizable) |
|
Rated Exhaust Air Volume (m³/h) |
1200-1800 |
1800-2500 |
2500-3200 |
Customized on demand |
|
Noise Level (dB(A)) |
≤62 |
≤62 |
≤65 |
≤65 (Optimized Design) |
|
Inner Tank Material Thickness (mm) |
Epoxy Resin/PP (5), Stainless Steel 304 (1.2) |
Epoxy Resin/PP (5), Stainless Steel 304 (1.2) |
Epoxy Resin/PP (5), Stainless Steel 304 (1.2) |
Can be thickened to 2.0mm (Stainless Steel) |
|
Explosion-Proof Glass Parameters |
Tempered explosion-proof glass, thickness 10mm, light transmittance ≥90%, impact resistance ≥40J/cm² |
Tempered explosion-proof glass, thickness 10mm, light transmittance ≥90%, impact resistance ≥40J/cm² |
Tempered explosion-proof glass, thickness 12mm, light transmittance ≥90%, impact resistance ≥40J/cm² |
Customizable anti-ultraviolet explosion-proof glass, thickness 10-15mm |
|
Power Supply Configuration |
AC220V/50Hz, 10A |
AC220V/50Hz, 10A |
AC220V/50Hz, 16A |
Adaptable to AC380V three-phase electricity |
|
Lighting Power |
30W LED Explosion-Proof Lamp |
30W LED Explosion-Proof Lamp |
40W LED Explosion-Proof Lamp |
Customizable high-power lighting |
Materials & Options
Cabinet Materials

Cold-Rolled Steel Plate Spraying Series
Core advantages: Corrosion-resistant, scratch-resistant, high cost performance.
Typical application: Conventional chemical laboratories.

PP Integrated Molding Series
Core advantages: Strong acid and alkali resistance, no splicing gaps, long service life.
Typical application: Laboratories with organic synthesis and strong corrosive reagent operations.

Stainless Steel 304 Series
Core advantages: Excellent corrosion and high temperature resistance, easy to clean, not easy to breed bacteria.
Typical application: Pharmaceutical R&D, sterile laboratories and other scenarios with high cleanliness requirements.
Inner Tank Materials

Epoxy Resin Material
Core advantages: Acid and alkali resistant, high temperature resistant, easy to clean, not easy to adsorb harmful gases.
Typical application: Conventional chemical laboratories.

PP Material
Core advantages: Extremely strong corrosion resistance, matched with PP cabinets.
Typical application: High-corrosion experimental scenarios.

Stainless Steel Material
Core advantages: High temperature and wear resistance, easy to clean, no reagent residue damage.
Typical application: High-temperature experiments, pharmaceutical R&D scenarios.
Window Materials

Tempered Explosion-Proof Glass
Core advantages: Excellent impact and explosion-proof performance, high light transmittance, safe to use.
Typical application: General chemical experimental operations.

Anti-Ultraviolet Glass
Core advantages: Blocks over 90% of ultraviolet rays, protects personnel and reagents.
Typical application: Experimental scenarios involving light-sensitive reagents.

PV Material (Polyvinyl Chloride)
Core advantages: Good corrosion resistance to weak acids, weak alkalis and ordinary chemical reagents, good impact resistance, low cost and good chemical stability.
Typical application: Ordinary experimental scenarios without high temperature, strong acids or strong alkalis.
Deflector Materials

Compact Laminate (HPL)
Core advantages: Excellent corrosion and high temperature resistance, moisture-proof, easy to clean, stable performance.
Typical application: Conventional chemical laboratories, general experimental scenarios.

Same as Inner Tank Material (PP/Stainless Steel/Epoxy Resin)
Core advantages: Consistent with inner tank, strong compatibility, good corrosion resistance, easy to maintain.
Typical application: High-corrosion, high-temperature experimental scenarios matching inner tank material.
Countertop Materials

Epoxy Resin Countertop
Core advantages: Acid and alkali resistant, high temperature resistant, seamless, easy to clean, not easy to hide dirt.
Typical application: Conventional chemical laboratories.

PP Countertop
Core advantages: Excellent resistance to strong acids and alkalis, corrosion and moisture resistant, well-matched with PP cabinets.
Typical application: High-corrosion experimental scenarios with strong corrosive reagent operations.

Stainless Steel 304 Countertop
Core advantages: High temperature and wear resistant, easy to clean, not easy to breed bacteria.
Typical application: Pharmaceutical R&D, sterile laboratories and high-temperature experimental scenarios.

Solid Physiochemical Board Countertop。
Core advantages: High cost performance, resistant to weak acids and alkalis, moisture and wear resistant, easy to maintain.
Typical application: Ordinary experimental scenarios with mild operations.
Hardware & Handles
Handle
Color options
Multiple color combinations avallable for cabinets, doors and panels.
White (Standard)
Light Grey
Dark Grey
Blue
Green
Black
Beige
Custom Color
Configurations

Open Base Configuration

With Mobile Cabinet

With Sink Module

With Utility Service Fixtures

Custom Configuration
Supporting Equipment

VAV Controller

Exhaust Fan

PP Air Duct

Activated Carbon Filter Box

Universal Extraction Arm
Gallery

Gallery

Gallery

Gallery

Gallery
FAQ
Q: What is the standard face velocity of the fume hood? How to adjust it?
According to international standards such as NFPA 45 and ASHRAE 110, the face velocity of the laboratory fume hood should be controlled at 0.4-0.6m/s. This wind speed range can effectively capture harmful gases, and at the same time avoid reagent splashing and increased energy consumption caused by excessive wind speed. This fume hood is equipped with a wind speed adjustment knob, which can be manually adjusted in the range of 0.3-0.8m/s. If equipped with a VAV control system, it can realize automatic adjustment without manual intervention.
Q: How to choose explosion-proof configuration according to the experimental scenario?
If the experiment involves flammable and explosive reagents (such as ethanol, ether, acetone, etc.), high-temperature experiments or produces flammable and explosive waste gas, it is recommended to choose explosion-proof configuration, including explosion-proof glass, explosion-proof lighting, explosion-proof lock, explosion-proof fan, etc. For ordinary chemical experiments, conventional configuration can be selected according to actual needs to reduce procurement costs. We can provide professional explosion-proof selection suggestions according to the customer's experimental type and reagent list.
Q: What are the treatment methods for the waste gas generated by the fume hood? How to choose?
The treatment methods of fume hood waste gas mainly include direct discharge, activated carbon adsorption, spray washing, catalytic combustion, etc. For low-concentration organic waste gas, activated carbon filter box can be selected for adsorption treatment; for high-concentration and strong corrosive waste gas, spray washing tower is recommended for treatment; for flammable, explosive and high-concentration organic waste gas, catalytic combustion method can be used. We will recommend a suitable waste gas treatment scheme according to the customer's waste gas composition, concentration and environmental protection requirements.
Q: How to calculate the exhaust air volume of the fume hood? Can it be customized?
The exhaust air volume of the fume hood is mainly calculated based on the size of the fume hood, face velocity and the amount of experimental waste gas generated. The exhaust air volumes of the conventional 1200mm, 1500mm and 1800mm models are 1200-1800m³/h, 1800-2500m³/h and 2500-3200m³/h respectively. If the customer has special experimental needs (such as high-concentration waste gas discharge, large-scale experimental equipment operation), the exhaust air volume can be customized according to the actual situation. We will arrange professional technicians to conduct on-site survey and calculation to ensure that the exhaust air volume meets the use needs.
Q: What matters should be noted in the daily maintenance of the fume hood?
Daily maintenance mainly includes the following points: First, clean the inner tank, window and deflector of the fume hood regularly to avoid reagent residues corroding the equipment. Neutral detergent can be used for cleaning, and strong acid and alkali detergents are prohibited; Second, check the exhaust system, control system and hardware accessories regularly to ensure normal operation. If abnormal noise, insufficient air volume and other problems are found, contact the after-sales personnel in time; Third, replace consumables such as activated carbon filter elements and filters regularly. The replacement cycle is determined according to the waste gas concentration and frequency of use, generally 3-6 months; Fourth, avoid placing flammable and explosive items in the fume hood, and prohibit overloading the fume hood.
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Contact Us
Phone: +86 400 6250 599
Telephone: +8619072311749
E-mail: info@yt-etcolabs.com
WhatsApp: +86 190 7231 1749
Address:Room 1110, Edenburg Mansion, No.139 Hengxi Road, Minhang District, Shanghai, China