Natural Science

Natural Science

ISSN Print: 2150-4091
ISSN Online: 2150-4105
www.scirp.org/journal/ns
E-mail: ns@scirp.org
"Research on the Graft Copolymerization of EH-lignin with acrylamide"
written by Run Fang, Xian-Su Cheng, Jian Fu, Zuan-Bin Zheng,
published by Natural Science, Vol.1 No.1, 2009
has been cited by the following article(s):
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[1] Production and Application of Triblock Hydrolysis Lignin-Based Anionic Copolymers in Aqueous Systems
2021
[2] Recent Advances in Lignin Modification and Its Application in Wastewater Treatment
2021
[3] Acid hydrolysis of kraft lignin-acrylamide polymer to improve its flocculation affinity
2021
[4] Polarity of cationic lignin polymers: Physicochemical behavior in aqueous solutions and suspensions
2020
[5] Agglomeration, adsorption and polymerization of hydrolysate components
2020
[6] Fate of polarity of cationic lignin polymers on their physicochemical behavior in aqueous solution and suspension systems
2020
[7] Generation of sulfonated kraft lignin acrylic acid polymer and its use as a flocculant
2020
[8] تحلیل استخدام نظام الحث الضوئى لاعداد مادة هیدروجیل ماصة‎
2019
[9] Self-assembly of kraft lignin-acrylamide polymers
2019
[10] SYNTHESIS AND APPLICATION OF POLYACRYLAMIDE GRAFTED MAGNETIC CELLULOSE FLOCCULANT FOR WASTEWATER TREATMENT
2018
[11] A comprehensive investigation of dye–chitosan blended films for green chemistry applications
Journal of applied polymer science, 2018
[12] Synthesis and characterization of lignin–poly (acrylamide)–poly (2‐methacryloyloxyethyl) trimethyl ammonium chloride copolymer
Journal of applied polymer science, 2018
[13] Lignin-based flocculant and dispersant for wastewater treatment
2018
[14] Cationic kraft lignin-acrylamide as a flocculant for clay suspensions: 1) molecular weight effect
Separation and Purification Technology, 2018
[15] Novel Process for Generating Cationic Lignin Based Flocculant
Industrial & Engineering Chemistry, 2018
[16] Novel pathway to produce high molecular weight kraft lignin–acrylic acid polymers in acidic suspension systems
RSC Advances, 2018
[17] Stability of kaolin dispersion in the presence of lignin-acrylamide polymer
Applied Clay Science, 2018
[18] Safranin-O removal from aqueous solutions using lignin nanoparticle-g-polyacrylic acid adsorbent: Synthesis, properties, and application
Adsorption Science & Technology, 2018
[19] Preparation and Characterization of Softwood Kraft Lignin Copolymers as a Paper Strength Additive
Polymers, 2018
[20] Hydroxypropyl sulfonated kraft lignin as a coagulant for cationic dye
Industrial Crops and Products, 2018
[21] Synthesis and characterization of lignosulfonate/acrylamide graft copolymers and their application in environmentally friendly water-based drilling fluid
Journal of Petroleum Science and Engineering, 2018
[22] Sulfonated Lignin-g-Styrene Polymer: Production and Characterization
Polymers, 2018
[23] Lignin‐g‐poly (acrylamide)‐g‐poly (diallyldimethyl‐ammonium chloride): Synthesis, Characterization and Applications
ChemistryOpen, 2018
[24] Sulfonated Lignin-g-Styrene Polymer: Production and Characterization.
2018
[25] Preparation and Characterization of Lignin-Acrylamide Copolymer as a Paper Strength Additive
BioResources, 2016
[26] Cationic xylan–METAC copolymer as a flocculant for clay suspensions
RSC Advances, 2016
[27] Production of cationic xylan–METAC copolymer as a flocculant for textile industry
Carbohydrate polymers, 2015
[28] Applicative study (part I): the excellent conditions to remove in batch direct textile dyes (direct red, direct blue and direct yellow) from aqueous solutions by …
2014
[29] Applicative study (part I): the excellent conditions to remove in batch direct textile dyes (direct red, direct blue and direct yellow) from aqueous solutions by adsorption …
Advances in Chemical Engineering and Science, 2014
[30] Preparation and Characterization of Lignin Graft Copolymer as a Filtrate Loss Control Agent for the Hydrocarbon Drilling Industr
BioResources, 2014
[31] Applicative Study (Part I): The Excellent Conditions to Remove in Batch Direct Textile Dyes (Direct Red, Direct Blue and Direct Yellow) from Aqueous Solutions by Adsorption Processes on Low-Cost Chitosan Films under Different Conditions
Advances in Chemical Engineering and Science, 2014
[32] Preparation of lignin derivatives and their application as protease adsorbents
Natural Science, 2009
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