- Classification: chemical auxiliary agent
- Appearance: white free flowing granular
- CAS No.:9003-05-4375
- Type: cationic,nonionic
- Formula: (C3h5no)N
- Solid Content: ≥90.5%
- Application:recycling water treatment
- Transport Package: 25kg/bag, 1000kg/bag, customized package
- Delivery: 3-5day
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homopolymerization polyacrylamide. characteristics: this product adopts the homopolymerization of acrylamide before adding alkali hydrolysis.after granulating,dring,pulverizing,the appearance of the product is white granule powder.the product will be better used in sewage treatment,especially for wastewater from iron and steel plant,electroplating,metallurgical and coal factory.
types of flocculating agents pam cationic polymer flocculant.cas no.: 9003-05-8 formula: (c3h5no)n einecs: 201-173-7 appearance: granules usage: oil drilling auxiliary agent, water treatment chemicals, rubber auxiliary agents, plastic auxiliary agents, coating auxiliary agents, textile auxiliary agents, paper chemicals, leather auxiliary agents, water treatment color: white
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floculantes para aguas residuales,anionic flocculants polyacrylamide polymer for water treatment formulados a partir de poliacrilamida que es un polímero soluble en agua. los anionic flocculants polyacrylamide polymer for water treatment se utilizan para describir la acción de materiales poliméricos que forman puentes entre películas individuales. anionic flocculants polyacrylamide polymer for water treatment aglomeran arcillas que son electronegativas.
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section 1 chemical product and company identification. date issued: 06/12/13 supersedes: 08/25/10. description: anionic polyacrylamide flocculant, viscosity builder/shale inhibitor for mineral and mining applications.
cationic polyacrylamide: synthesis and application in sludge,due to their cationic nature, polyaluminium chloride (pac) and high molecular weight cationic polyacrylamide (cpam) have not only been explored as retention aids in papermaking operations but also
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slaking. pam is also a flocculating agent, so it also helps to prevent dispersion of soil by rain water into fine clays and silts that can clog soil poresand cause sealing and crusting often pam . applied along is with an electrolyte source such as a gypsiferous material (gypsum or power plant byproducts), which enhances its performance.
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polyelectrolyte: science and application manufacturer
examples of polyelectrolytes include polystyrene sulfonate, polyacrylic and polymethacrylic acids and their salts. dna, proteins, nucleic acids, polysaccha-rides and other polyacids are given example to the natural polyelectrolytes [4–8]. e. akyol s. kirboga m. öner ( ) chemical engineering department, yıldız technical university,
cationic polyacrylamide: synthesis and application in sludge,among popularly used chemical coagulants, high-molecular-weight synthetic polymers have been widely employed as flocculants in colloidal suspensions to separate and dewater solid/water systems [2,3].
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- What is polyacrylamide (PAM) used for?
- High molecular weight polyacrylamide (PAM) is commonly used as a flocculant in water and wastewater treatment, a soil conditioner, and a viscosity improver and friction reducer in enhanced oil recovery and high-volume hydraulic fracturing.
- What are the different types of anionic polyacrylamide synthesis technologies?
- The paper lists six different kinds of anionic polyacrylamide synthesis technologies, including homopolymerization posthydrolysis process, homopolymerization cohydrolysis process, copolymerization approach, inverse emulsion polymerization, precipitation polymerization and radiation polymerization.
- Why is polyacrylamide used in water treatment?
- With the increasing global water scarcity and escalating environmental pollution, efficient water treatment has become paramount. Polyacrylamide, as a versatile polymer compound, has demonstrated significant achievements in the field of water treatment. PAM is widely used as a coagulant and flocculant in wastewater treatment.
- Why is anionic polyacrylamide not bioavailable?
- teria for persistence.Pharmacokinetic studies showed that anionic polyacrylamide was not bioavailable to rats when ingested; this is most likely due to its large size (high molecular weight) and presumed resistance to break down in the astrointestinal tract. Anionic polyacrylamide is thus not expected to be bioavailable to aquatic or