Chemical Industry Refrigerant Gas R404a 3800 GWP 926L Low Poison

Brand Name:HengXiang
Certification:IOS9001,SGS,CE
Model Number:R404A
Minimum Order Quantity:10 sets
Delivery Time:30 working days
Payment Terms:T/T
Contact Now

Add to Cart

Site Member
Address: Unit803,No.41,Wutongli,Huli District,XiamenCity,Fujian Province ,361006, CHINA
Supplier`s last login times: within 24 hours
Product Details Company Profile
Product Details

Mixed Refrigerant


R404A


Purity ≥99.8% Water ≤10 PPm

Acidity ≤ 0.1 PPm Vapor Residue≤ 100 PPm


Physical Properties


Chemical FormulaMolecular Mass97.6
Boiling Point (1atm/℃)-46.5Critical Temperature (℃)71.968
Critical Pressure (Mpa)3.722Critical Density (g/cm3)0.4842
ODP0GWP3800

Packing


Disposable steel cylinders 2.7kg/5kg/10kg/10.9kg

Refillable steel cylinders 800L/926L/ISO-TANK


Application


R404a is a kind of refrigerant of surroundings-protection model,used in replacing

R22&R502.It has a good nature of cleaning,low poison, non-combustion,good-refrigerant and so on,and greatly used in air-conditioning.

Commercial Refrigeration: Plug- Ins & Vending Machines
Industrial Refrigeration
Transportation Refrigeration


Introductions


R404A is an HFC blend that is widely used in low and medium temperature refrigeration applications, such as those used in commercial refrigeration. Whilst it has become the widely accepted alternative to CFC R502, R404A is coming under greater scrutiny due to its high Global Warming Potential, leading to an increased focus on lower GWP alternatives such as R407A, R407F and R442A.


Handling & Storage


refrigerant cylinder is a pressurized container, which should be stored away from fire, heat source, avoid direct sunshine, and usually stored in a cool, dry and ventilated warehouse. When handling, it should be lightly loaded and unloaded to prevent damage to cylinders and valve accessories.


China Chemical Industry Refrigerant Gas R404a 3800 GWP 926L Low Poison supplier

Chemical Industry Refrigerant Gas R404a 3800 GWP 926L Low Poison

Inquiry Cart 0