manufacturer of nonionic polyacrylamide uses in textile industry
manufacturer of nonionic polyacrylamide uses in textile industry
manufacturer of nonionic polyacrylamide uses in textile industry
manufacturer of nonionic polyacrylamide uses in textile industry
manufacturer of nonionic polyacrylamide uses in textile industry
nonionic polyacrylamide | polymersco

Nonionic polyacrylamide | Polymersco

Polymersco nonionic polyacrylamide is widely used for wastewater treatment, coal washing, textile additives, sand-proof stabilization, etc. Product Name: Nonionic Polyacrylamide(Other names: nonionic flocculant) Chemical Formula: C3H5NO Cas No.:9003-5-8 Appearance: white particles White grain ¡Ý89 % Molecular Weight: 5-11 million

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polyacrylamide used in textile industry and its effect.

Polyacrylamide used in Textile industry and its effect.

Puyang Rongtai Chemical CO.,Ltd.Produce many kinds of types of polyacrylamide.It has many functions in textile industry.We talk among two points that used in textile technics and...

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nonionic polyacrylamide manufacturers and suppliers | oubo

Nonionic Polyacrylamide manufacturers and suppliers | Oubo

Textile Auxiliary Agent: The product can be added with some other chemicals to prepare chemical grout, is used to starch textiles, can improve the adhesive property, penetrability and desizing performance, enables the textile to have electrostatic prevention performance, reduces the desizing rate, and reduces the starch mixing spots, cloth machine breaking efficiency, and falling objects.

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what are the functions and uses of nonionic polyacrylamide?

What Are the Functions and Uses of Nonionic Polyacrylamide?

Nonionic polyacrylamide is a water-soluble polymer or polyelectrolyte. Because its molecular chain contains a certain number of polar groups, it can bridge particles between particles by adsorbing suspended solid particles in water or condense particles to form large flocculants through charge neutralization.

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polyelectrolyte polymers¡ªtypes, forms, and function

Polyelectrolyte polymers¡ªTypes, forms, and function

Abstract There is a wide range of polymeric polyelectrolytes available, both synthetic and naturally occurring. In this chapter we will focus our discussion on synthetic polymeric polyelectrolytes and we will cover the primary polyelectrolytes available on the industrial scale.

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polyacrylamide degradation and its implications in environmental

Polyacrylamide degradation and its implications in environmental

The hydrolyzed form of polyacrylamide (HPAM), a co-polymer of acrylamide and acrylic acid, is the most widely used anionic PAM in oil and gas development as well as in soil conditioning. 1,9,12,21

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polyacrylamide

Polyacrylamide

Polyacrylamide (abbreviated as PAM or pAAM) is a polymer with the formula (-CH 2 CHCONH 2 -). It has a linear-chain structure. PAM is highly water-absorbent, forming a soft gel when hydrated. In 2008, an estimated 750,000,000 kg were produced, mainly for water treatment and the paper and mineral industries.

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polymer processing for enhancing textile application

Polymer Processing for Enhancing Textile Application

Special Issue Information. This Special Issue is focused on polymer processing to enhance its feasibility and potential for textile applications. In the textile area, natural (e.g., cotton, wool, silk, etc.) and synthetic (polyester, nylon, acrylic, etc.) polymers are used extensively and are mainly used in wear apparel and home textiles due to

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polyacrylamide - an overview | sciencedirect topics

Polyacrylamide - an overview | ScienceDirect Topics

Absorbent Technology. Thomas L. Staples, Pronoy K. Chatterjee, in Textile Science and Technology, 2002 3.2.1 Polyacrylamides. Polyacrylamides are widely used in an uncrosslinked form as thickeners and flocculants in the oil industry, ore recovery, water and sewerage treatment, and a variety of industrial and consumer products [71].

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the role of hydration degree of cations and anions on the adsorption

The role of hydration degree of cations and anions on the adsorption

A colloidal force probe was employed to characterise the adsorption of high-molecular-weight, nonionic polyacrylamide on glass surfaces at a pH of about 6.5 and 22 ¡ãC. Three 0.27 M salts (LiCl, KCl, and KNO 3 ) were used to investigate the effect of different cations (Li + , K + ) and anions (Cl ? , NO 3 ? ) on the polymer adsorption kinetics.

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