Global Polyacrylamide Market By Product Type (Non-Ionic Polyacrylamide (PAMN), Anionic Polyacrylamide (APAM), Cationic Polyacrylamide (CPAM
Global Polyacrylamide Market share, by Region, 2025 and 2026 North America Polyacrylamide Market, 2016-2026 (USD Million) Europe Polyacrylamide Market, 2016-2026 (USD Million) Asia Pacific Polyacrylamide Market, 2016-2026 (USD Million)
Polyacrylamide is made up of repeating molecules of acrylamide, which is a suspected carcinogen. Trace amounts of acrylamide remain in polyacrylamide. Acrylamide is found in in lotions, powders and creams. [8],[9],[10] Daily exposure to
Global Polyacrylamide Market Size & Share | Industry Report, 2025-2025
The global polyacrylamide market is projected to expand at a CAGR of 6.2% from 2025 to 2025. Surging demand for the product across various application industries such as oil recovery, paper making, waste water treatment is contributing to the
[257 Pages Report] Polyacrylamide market was valued at US$ 4,976.2 Mn in 2025 and is anticipated to expand at a CAGR of 6.2% during the forecast period. The global market is dominated by large-scale companies operating around the world
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Drilling mud chemical PHPA 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
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Acrylamide
Acrylamide (or acrylic amide) is an organic compound with the chemical formula CH2=CHC(O)NH2. It is a white odorless solid, soluble in water and several organic solvents. From the chemistry perspective, acrylamide is a vinyl-substituted primary
Anionic Polyacrylamide Pam Emulsion, Anionic About 43% of these are textile auxiliary agents, 3% are polymer, and 1% are water treatment. A wide variety of anionic polyacryla
Polyaluminium Chloride, Polyacrylamide
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Zhang, H., Zhong, Z. & Xing, W. Application of ceramic membranes in the treatment of oilfield-produced water: effects of polyacrylamide and inorganic salts. Desalination 309 , 84–90 (2013).
- Can high molecular weight polyacrylamide polymer brine viscosities improve chemical enhanced oil recovery?
- Paper presented at the SPE Improved Oil Recovery Conference, Tulsa, Oklahoma, USA, April 2025. High molecular weight Polyacrylamide polymer brine viscosities were measured and modeled in a wide range of conditions to improve fundamental understanding and field application of chemical enhanced oil recovery (EOR) processes.
- Does high-salinity formation-water affect polyacrylamide viscosity?
- Polyacrylamides, including partially hydrolyzed polyacrylamide (HPAM), are commonly used for polymer flooding. The soaring demand for polymer flooding has motivated a deeper investigation of the impact of high-salinity formation-water conditions on polyacrylamide’s viscosity.
- Why is HPAM a high viscosity polymer?
- HPAM solution must maintain high viscosity to effectively mobilize oil. In reality however, polymer is very sensitive to salinity and hardness of base water and underground water. This phenomenon is studied in this paper. The two HPAM test samples have molecular weight of 10 million and 20 million Dalton.
- Does polymer flooding affect viscosity in high-salinity formation-water?
- According to the reports from oilfields in which polymer flooding has been applied, 5–4 it is a big challenge to maintain the polymer’s viscosity in high-salinity formation-water. Polyacrylamides, including partially hydrolyzed polyacrylamide (HPAM), are commonly used for polymer flooding.
