Global Polyacrylamide Market Size & Share | Industry Report
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n
- EINECS No.:201-173-7
- Purity:90%
- Type:Water treatment chemical
- Usage:Water Treatment Chemicals
- Type:cationic flocculant for Well drilling mud raw materials
- Appearance:White Granule Powder
- Color:White
- Solid Content(%):≥90
- Molecular Weight(million):19-23
- Solution Time(min):≤40
- Degree of Hydrolysis(%):19-23
- Residual Monomer(%):≤0.05
- Effective PH Value:5-14
The global polyacrylamide market size was valued at USD 4.5 billion in 2018 and is projected to expand at a CAGR of 6.2% from 2019 - 2025. Surging demand for the product across various application industries, including waste water treatment, oil recovery, paper making, and food and beverage, is expected to propel the industry growth
The valuation of global Polyacrylamide Market will expand at a CAGR of 6.3% by 2025. Polyacrylamide Market is likely to be valued at US$7,657.9 mn by the end of 2025.
Properties of Polyacrylamides
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n, (C3H5NO)n
- EINECS No.:201-173-7
- Purity:90%
- Type:Water Treatment agency
- Usage:Paper Chemicals, Petroleum Additives, Textile Auxiliary Agents, Water Treatment Chemicals
- CAS NO.:9003-05-8
- Other Name:PAM
- Appearance:White Powder
- Application:Incense Making
- Daily Capacity:180tons
- EINECS NO.:201-173-7
- Material:Water Treatment Polymer
- Product Name:Anionic Polyacrylamide PAM for Incense Making
The hydrated PAM is a soft gel that is used in gel electrophoresis and as a super water-absorbing polymer (SAP's). Even though these polymers are called polyacrylamide, they are often copolymers of acrylamide and one or more other monomers. The most important co-monomer is acrylic acid or sodiumacrylate.
There are three categories of anionic, cationic and non-ionic type.As a professional Anionic Polyacrylamide supplier and manufacturer,Foodchem International Corporation has been supplying quality Microcrystalline Cellulose gel to customers all over the world for over 10 years.If you have any questions or wish to receive a quote, please feel ...
Polyacrylamide - 9003-05-8 Latest Price, Manufacturers
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n
- EINECS No.:201-173-7
- Purity:88%
- Type:polyelectrolyte water treatment anionic, Water Treatment Anionic in Boiler Water Treatment Chemicals
- Usage:Water Treatment Chemicals
- Model Number:7 series
- Appearance:White Granule Powder
- Color:White
- Solid Content(%):≥88
- Molecular Weight(million):16-20
- Degree of Hydrolysis(%):7-18
- Solution Time(min):≤40
- Residual Monomer(%):≤0.05
- Effective PH Value:5-14
- Package:25kg/bag
Flocculant / Settling Agents is an Anionic Polyacrylamide polymer with a high molecular weight for the clarification of sugar cane juice and for the treatment of potable water. It acts as an effective coagulant/flocculant which, when added to the cane juice entering the clarifier, results in : - Faster settling of muds
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Polyacrylamide Market: Water and Food Recycling Demand
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n
- Purity:88%
- Type:Polyacrylamide PAM
- Usage:Water Treatment Chemicals
- Appearance:White crystals
- Type:Water Treatment Chemical Polyacrylamide PAM
- Color:White
- Molecular Weight(million):19-23
- Solid Content(%):≥88
- Solution Time(min):≤40
- Residual Monomer(%):≤0.05
- Degree of Hydrolysis(%):19-23
- Effective PH Value:5-14
Press Release Polyacrylamide Market: Water and Food Recycling Demand to Propel Polyacrylamide Market to Reach US$7,657.9 Mn by 2025 - Transparency Market Research
Browse updated listing of polyacrylamide (cas no 9003-05-8) , polyacrylamide manufacturers, polyacrylamide suppliers and exporters. These polyacrylamide manufacturing companies offer high quality products to their clients.
Anionic Polyacrylamide on sales - Quality Anionic
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n, (C3H5NO)n
- EINECS No.:201-173-7
- Purity:88%
- Type:Polyacrylamide PAM Water Treatment Chemical
- Usage:Water Treatment Chemicals
- Product Name:Polyacrylamide PAM Water Treatment Chemical
- Material:Water Treatment Polymer
- Function:Effluent Treatment Chemical
- Appearance:White Powder
- Application:Water Treatment Process
- EINECS NO.:201-173-7
- Daily Capacity:180 Tons
- CAS NO.:9003-05-8
Anionic Polyacrylamide, You can Buy good quality Anionic Polyacrylamide , we are Anionic Polyacrylamide distributor & Anionic Polyacrylamide manufacturer from China market. eric.min.cn English
Polyacrylamide (IUPAC poly(2-propenamide) or poly(1-carbamoylethylene), abbreviated as PAM) is a polymer (-CH 2 CHCONH 2-) formed from acrylamide subunits. It can be synthesized as a simple linear-chain structure or cross-linked, typically using N,N '-methylenebisacrylamide.In the cross-linked form, the possibility of the monomer being present is reduced even further.
Anionic Polyacrylamide price|15-30 million of anionic
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n
- EINECS No.:201-173-7
- Purity:88%
- Type:Polyacrylamide PAM Water Treatment Chemical
- Usage:Water Treatment Chemicals
- Product Name:Polyacrylamide PAM
- Material:Water Treatment Polymer
- Function:Effluent Treatment Chemical
- Appearance:White Powder
- Application:Water Treatment Process
- Dissolution Rate:≤2h
- Solids:≥88%
- Water Solubility:5-50%
- Residual Monomer:≤0.1%
Anionic Polyacrylamide price|15-30 million of anionic polyacrylamide . Main Production: 1. Oilfield Chemicals,Oilfield chemical is a general germ, The oilfield chemicals we can supply include anionic polyacrylamide used for oil drilling mud additives, drag reduction agent and EOR(enhanced oil recovery)agent .
Information for Polyacrylamide 9003-05-8 including Polyacrylamide CAS NO 9003-05-8, United States Polyacrylamide Suppliers, United States Polyacrylamide Manufacturers, related products of Polyacrylamide.
Anionic Polyacrylamide (Pam) Application
- Classification:Chemical Auxiliary Agent
- CAS No.:9003-05-8
- Other Names:PAM
- MF:(C3H5NO)n
- EINECS No.:201-173-7
- Purity:90%
- Type:Cationic Polyacrylamide CPAM
- Usage:Paper Chemicals, Textile Auxiliary Agents, Water Treatment Chemicals
- Type:PAM Anionic Polyacrylamide Water Treatment Chemical Flocculant
- Appearance:White Granule Powder
- Color:White
- Solid Content(%):≥90
- Molecular Weight(million):19-23
- Solution Time(min):≤40
- Degree of Hydrolysis(%):19-23
- Residual Monomer(%):≤0.05
- Effective PH Value:5-14
rate of polyacrylamide active ingredient shall not exceed 4 pounds per acre per single application event.
Polyacrylamide [ Properties ] Polyacrylamide, abbreviation PAM,is a glassy solid, easy to adsorb water ; the absorbing speed are varied with different derivative ions.Polyacrylamide is soluble in water and organic solvents as acetic acid, glycol, glycerin and amine.Polyacrylamide will be decomposed after long time heating.
- What is poly aluminum chloride used for?
- Contact us! Poly aluminum chloride is used mainly to remove color and colloidal matter in aqueous systems. It is also used in water treatment plants, clarification of industrial effluents and as a replacement for aluminum sulfate, aluminum chloride, ferric chloride, ferric sulfate and other non-polymerized conventional inorganic salts.
- Is polyaluminum chloride a Lewis acid catalyst?
- Polyaluminum chloride (PAC) is an inorganic polymer material that has the advantages of a simple preparation process and special electronic structure. It is considered to be the most efficient and widely used occulation material for water treatment. In this work, PAC has been used as a Lewis acid catalyst
- Why is PAC used as a Lewis acid catalyst?
- It is considered to be the most efficient and widely used occulation material for water treatment. In this work, PAC has been used as a Lewis acid catalyst in interdisciplinary elds because of its polynuclear Al–O cation structure. Further, its catalytic
- How do PAC materials form supramolecular nanoreactors?
- 1 1 absorption peaks of the material at 655 cm and 590 cm Al 2p orbital electron density slightly increased. This indicated that the crystalline structure of the PAC material had changed during use. In other words, the PAC materials formed supra-molecular nanoreactors in situ through alcoholysis, self-assembly and aggregation.