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  <title><![CDATA[MS Defense by Preksha Vichare]]></title>
  <body><![CDATA[<p><span><span><span>THE SCHOOL OF MATERIALS SCIENCE AND ENGINEERING </span><br />
<span>GEORGIA INSTITUTE OF TECHNOLOGY</span></span></span></p>

<p><span><span><span>Under the provisions of the regulations for the degree</span></span></span></p>

<p><span><span><span>On Monday, April 17, 2023</span></span></span></p>

<p><span><span><span>10:00 AM</span></span></span></p>

<p><span><span><span>In-person in</span></span></span></p>

<p><span><span><span>BH 384</span></span></span></p>

<p><span><span><span>will be held the</span></span></span></p>

<p>&nbsp;</p>

<p><span><span><span>MASTER’S THESIS DEFENSE</span></span></span></p>

<p><span><span><span>for</span></span></span></p>

<p><span><span><span>Preksha Vichare</span></span></span></p>

<p>&nbsp;</p>

<p><span><span><span>“Solid-State Chemical Recycling of Polymer Composites by Variable Frequency Microwave”</span></span></span></p>

<p>&nbsp;</p>

<p><span><span><span>Committee Members:</span></span></span></p>

<p><span><span><span>Dr. Paul A Kohl, Advisor, ChBE</span></span></span></p>

<p><span><span><span>Dr. Satish Kumar, MSE</span></span></span></p>

<p><span><span><span>Dr. Donggang Yao, MSE</span></span></span></p>

<p><span><span><span>Dr. Jared Schwartz, ChBE</span></span></span></p>

<p>&nbsp;</p>

<p>&nbsp;</p>

<p><span><span><span>ABSTRACT</span></span></span></p>

<p>&nbsp;</p>

<p><span><span><span>Fixed frequency microwaves have been studied in various chemical transformation applications. A common issue seen with fixed frequency microwave is non-uniform heating and arcing. The current study highlights the use of variable frequency microwave (VFM) heating to achieve rapid thermal depolymerization of polymer composites. A wide range of additives were investigated to select the best performers for microwave heating at low energy. Carbon nanotubes, carbon nanofibers, carbon black, graphene, reduced graphene oxide were shortlisted for further investigation by incorporating the materials into different polymer matrices. The chemical and thermal influence of additives on polymer decomposition has been studied. The depolymerization of polyphthalaldehyde, polypropylene carbonate, two polyhydroxyalkanoates, and nylon 6 has been achieved. Additional experiment of polymer depolymerization with the combination of a photoacid generator and microwave-absorbing additive resulted in a reduction of total microwave energy required. This study demonstrates the use of VFM systems for chemical recycling and monomer recovery of select polymer matrices.</span></span></span></p>

<p>&nbsp;</p>

<p>&nbsp;</p>
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