Amino-Acid-Modified-Cashew Gum Flocculant: Synthesis, Characterization, and Application

Amphoteric poly( O -methacryloyl- l -serine)-grafted cashew gum (CG- g -P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery of kaolin particles from aqueous suspension. The highest flocculation efficiency was achieved with a flocculant synthesized using an O...

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Published in:Journal of polymers and the environment Vol. 27; no. 7; pp. 1465 - 1474
Main Authors: Klein, Jalma Maria, de Lima, Vanessa Silva, Haack, Michele, da Feira, José Manoel Couto, de Camargo Forte, Maria Madalena
Format: Journal Article
Language:English
Published: New York Springer US 01-07-2019
Springer Nature B.V
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Abstract Amphoteric poly( O -methacryloyl- l -serine)-grafted cashew gum (CG- g -P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery of kaolin particles from aqueous suspension. The highest flocculation efficiency was achieved with a flocculant synthesized using an O -methacryloyl- l -serine:cashew gum molar ratio of 3:1. The CG- g -P(SerMA) at a dosage of 3.0 mg L −1 resulted in a flocculation efficiency of more than 90% within 20 min for kaolin suspension. The efficiency, in standard experiments, the flocculant CG- g -P(SerMA) was superior to cashew gum and polyacrylamide-based commercial flocculants. The flocculation mechanism involves electrostatic interactions between the negatively charged surface of the kaolin and the protonated amino groups of the flocculant under acidic conditions. These results provide new opportunities and challenges for understanding and improving the removal of impurities present in water and wastewater.
AbstractList Amphoteric poly(O-methacryloyl-L-serine)-grafted cashew gum (CG-g-P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery of kaolin particles from aqueous suspension. The highest flocculation efficiency was achieved with a flocculant synthesized using an O-methacryloyl-L-serine:cashew gum molar ratio of 3:1. The CG-g-P(SerMA) at a dosage of 3.0 mg L{sup −1} resulted in a flocculation efficiency of more than 90% within 20 min for kaolin suspension. The efficiency, in standard experiments, the flocculant CG-g-P(SerMA) was superior to cashew gum and polyacrylamide-based commercial flocculants. The flocculation mechanism involves electrostatic interactions between the negatively charged surface of the kaolin and the protonated amino groups of the flocculant under acidic conditions. These results provide new opportunities and challenges for understanding and improving the removal of impurities present in water and wastewater.
Amphoteric poly(O-methacryloyl-l-serine)-grafted cashew gum (CG-g-P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery of kaolin particles from aqueous suspension. The highest flocculation efficiency was achieved with a flocculant synthesized using an O-methacryloyl-l-serine:cashew gum molar ratio of 3:1. The CG-g-P(SerMA) at a dosage of 3.0 mg L−1 resulted in a flocculation efficiency of more than 90% within 20 min for kaolin suspension. The efficiency, in standard experiments, the flocculant CG-g-P(SerMA) was superior to cashew gum and polyacrylamide-based commercial flocculants. The flocculation mechanism involves electrostatic interactions between the negatively charged surface of the kaolin and the protonated amino groups of the flocculant under acidic conditions. These results provide new opportunities and challenges for understanding and improving the removal of impurities present in water and wastewater.
Amphoteric poly( O -methacryloyl- l -serine)-grafted cashew gum (CG- g -P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery of kaolin particles from aqueous suspension. The highest flocculation efficiency was achieved with a flocculant synthesized using an O -methacryloyl- l -serine:cashew gum molar ratio of 3:1. The CG- g -P(SerMA) at a dosage of 3.0 mg L −1 resulted in a flocculation efficiency of more than 90% within 20 min for kaolin suspension. The efficiency, in standard experiments, the flocculant CG- g -P(SerMA) was superior to cashew gum and polyacrylamide-based commercial flocculants. The flocculation mechanism involves electrostatic interactions between the negatively charged surface of the kaolin and the protonated amino groups of the flocculant under acidic conditions. These results provide new opportunities and challenges for understanding and improving the removal of impurities present in water and wastewater.
Author de Lima, Vanessa Silva
da Feira, José Manoel Couto
Klein, Jalma Maria
Haack, Michele
de Camargo Forte, Maria Madalena
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  surname: Klein
  fullname: Klein, Jalma Maria
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  organization: Laboratório de Materiais Poliméricos, Departamento de Materiais, Escola de Engenharia, Universidade Federal do Rio Grande do Sul (UFRGS)
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  givenname: Vanessa Silva
  surname: de Lima
  fullname: de Lima, Vanessa Silva
  organization: Laboratório de Materiais Poliméricos, Departamento de Materiais, Escola de Engenharia, Universidade Federal do Rio Grande do Sul (UFRGS)
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  givenname: Michele
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  givenname: José Manoel Couto
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  givenname: Maria Madalena
  surname: de Camargo Forte
  fullname: de Camargo Forte, Maria Madalena
  organization: Laboratório de Materiais Poliméricos, Departamento de Materiais, Escola de Engenharia, Universidade Federal do Rio Grande do Sul (UFRGS)
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Keywords Cashew gum
Amino acid
Graft copolymer
Flocculation
Amphoteric polymers
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SSID ssj0009100
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Snippet Amphoteric poly( O -methacryloyl- l -serine)-grafted cashew gum (CG- g -P(SerMA)) flocculant was obtained with highly efficient in separation and sequential...
Amphoteric poly(O-methacryloyl-l-serine)-grafted cashew gum (CG-g-P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery...
Amphoteric poly(O-methacryloyl-L-serine)-grafted cashew gum (CG-g-P(SerMA)) flocculant was obtained with highly efficient in separation and sequential recovery...
SourceID osti
proquest
crossref
springer
SourceType Open Access Repository
Aggregation Database
Publisher
StartPage 1465
SubjectTerms Amino acids
Amino groups
Anacardiaceae
Chemistry
Chemistry and Materials Science
COPOLYMERS
Efficiency
Electrostatic properties
ELECTROSTATICS
Environmental Chemistry
Environmental Engineering/Biotechnology
Flocculants
FLOCCULATION
GUMS
Impurities
Industrial Chemistry/Chemical Engineering
INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY
KAOLIN
L-Serine
Materials Science
Original Paper
Polymer Sciences
SERINE
SUSPENSIONS
SYNTHESIS
WASTE WATER
Wastewater
Title Amino-Acid-Modified-Cashew Gum Flocculant: Synthesis, Characterization, and Application
URI https://link.springer.com/article/10.1007/s10924-019-01440-z
https://www.proquest.com/docview/2210304912
https://www.osti.gov/biblio/22977111
Volume 27
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