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1
Synthetic and Biological Polymers
Polymers: Macromolecules formed by the covalent
attachment of a set of small molecules termed monomers.
Polymers are large molecules made up of repeating units
called Monomers.The synthetic process is Polymerization.
C H
2
CH
2
CH
2
CH
2
O
CH
2
CH
2
O
Monomer
Polymerization
Polymer
n
Monomer
Polymerization
Polymer
n
Page 2


1
Synthetic and Biological Polymers
Polymers: Macromolecules formed by the covalent
attachment of a set of small molecules termed monomers.
Polymers are large molecules made up of repeating units
called Monomers.The synthetic process is Polymerization.
C H
2
CH
2
CH
2
CH
2
O
CH
2
CH
2
O
Monomer
Polymerization
Polymer
n
Monomer
Polymerization
Polymer
n
2
Polymers are classified as:
(1) Man-made or synthetic polymers that are synthesized
in the laboratory; (nylon, poly-ethylene, poly-styrene)
(2) Biological polymer that are found in nature. Biological
polymers: DNA, proteins, carbohydrates
Homopolymer: A polymer prepared from a single monomer
Copolymer: If two or more different monomers are employed.
Page 3


1
Synthetic and Biological Polymers
Polymers: Macromolecules formed by the covalent
attachment of a set of small molecules termed monomers.
Polymers are large molecules made up of repeating units
called Monomers.The synthetic process is Polymerization.
C H
2
CH
2
CH
2
CH
2
O
CH
2
CH
2
O
Monomer
Polymerization
Polymer
n
Monomer
Polymerization
Polymer
n
2
Polymers are classified as:
(1) Man-made or synthetic polymers that are synthesized
in the laboratory; (nylon, poly-ethylene, poly-styrene)
(2) Biological polymer that are found in nature. Biological
polymers: DNA, proteins, carbohydrates
Homopolymer: A polymer prepared from a single monomer
Copolymer: If two or more different monomers are employed.
3
Homopolymer & Copolymer
Page 4


1
Synthetic and Biological Polymers
Polymers: Macromolecules formed by the covalent
attachment of a set of small molecules termed monomers.
Polymers are large molecules made up of repeating units
called Monomers.The synthetic process is Polymerization.
C H
2
CH
2
CH
2
CH
2
O
CH
2
CH
2
O
Monomer
Polymerization
Polymer
n
Monomer
Polymerization
Polymer
n
2
Polymers are classified as:
(1) Man-made or synthetic polymers that are synthesized
in the laboratory; (nylon, poly-ethylene, poly-styrene)
(2) Biological polymer that are found in nature. Biological
polymers: DNA, proteins, carbohydrates
Homopolymer: A polymer prepared from a single monomer
Copolymer: If two or more different monomers are employed.
3
Homopolymer & Copolymer
4
Page 5


1
Synthetic and Biological Polymers
Polymers: Macromolecules formed by the covalent
attachment of a set of small molecules termed monomers.
Polymers are large molecules made up of repeating units
called Monomers.The synthetic process is Polymerization.
C H
2
CH
2
CH
2
CH
2
O
CH
2
CH
2
O
Monomer
Polymerization
Polymer
n
Monomer
Polymerization
Polymer
n
2
Polymers are classified as:
(1) Man-made or synthetic polymers that are synthesized
in the laboratory; (nylon, poly-ethylene, poly-styrene)
(2) Biological polymer that are found in nature. Biological
polymers: DNA, proteins, carbohydrates
Homopolymer: A polymer prepared from a single monomer
Copolymer: If two or more different monomers are employed.
3
Homopolymer & Copolymer
4 5
Polymerization
The chemical reaction in which high molecular mass
molecules are formed from monomers.
There are two basic types of polymerization
1) Chain-reaction (or addition) polymerization
2) Step-reaction (or condensation) polymerization
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FAQs on PPT - Polymerization Process - Chemical Technology - Chemical Engineering

1. What is polymerization?
Ans. Polymerization is a chemical reaction in which small molecules called monomers combine to form a larger molecule called a polymer. This reaction is commonly used in the production of plastics, fibers, and other materials.
2. What are the different types of polymerization processes?
Ans. There are several types of polymerization processes, including addition polymerization, condensation polymerization, emulsion polymerization, suspension polymerization, and bulk polymerization. Each process has its own advantages and is suitable for different applications.
3. How is the polymerization process controlled?
Ans. The polymerization process is controlled through various parameters such as temperature, pressure, reaction time, and the concentration of reactants and catalysts. These parameters can be adjusted to optimize the reaction conditions and achieve the desired polymer properties.
4. What are the challenges in polymerization process?
Ans. The polymerization process can face challenges such as controlling the molecular weight distribution of the polymer, avoiding side reactions or impurities, and maintaining a consistent reaction rate. These challenges require careful process design and optimization to ensure the desired product quality.
5. What are the applications of polymerization in chemical engineering?
Ans. Polymerization has extensive applications in chemical engineering. It is used in the production of various materials such as plastics, rubber, adhesives, coatings, and fibers. These materials find applications in industries such as automotive, packaging, construction, textiles, and electronics.
69 videos|121 docs
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