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		<summary type="html">&lt;p&gt;CSV import&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt;[[File:Continuous_oscillatory_baffled_reactor_(diagram).jpg|thumb|Continuous oscillatory baffled reactor (diagram)]] == Oscillatory Baffled Reactor ==&lt;br /&gt;
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An &amp;#039;&amp;#039;&amp;#039;Oscillatory Baffled Reactor&amp;#039;&amp;#039;&amp;#039; (OBR) is a type of [[chemical reactor]] that utilizes oscillatory flow to enhance mixing and mass transfer within the reactor. The OBR consists of a series of baffles that induce oscillations in the flow of reactants, leading to improved mixing compared to traditional continuous flow reactors.&lt;br /&gt;
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=== Design ===&lt;br /&gt;
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The design of an OBR typically includes a cylindrical reactor vessel with baffles placed at regular intervals along the length of the vessel. These baffles are designed to create oscillatory flow patterns by redirecting the flow of reactants as they pass through the reactor. The oscillations generated by the baffles help to break up concentration gradients and promote uniform mixing of reactants.&lt;br /&gt;
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=== Operation ===&lt;br /&gt;
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During operation, reactants are continuously fed into the OBR, where they are subjected to the oscillatory flow created by the baffles. The oscillations help to enhance mass transfer between the reactants, leading to improved reaction kinetics and product yields. The unique flow patterns generated by the OBR also allow for precise control over residence times and reaction conditions.&lt;br /&gt;
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=== Applications ===&lt;br /&gt;
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Oscillatory baffled reactors have found applications in a variety of chemical processes, including [[polymerization]], [[oxidation reactions]], and [[biological reactions]]. The enhanced mixing and mass transfer capabilities of OBRs make them particularly well-suited for reactions that are limited by mass transfer or require precise control over reaction conditions.&lt;br /&gt;
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=== Advantages ===&lt;br /&gt;
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The use of an OBR offers several advantages over traditional continuous flow reactors, including improved mixing efficiency, enhanced mass transfer rates, and better control over reaction conditions. These benefits can lead to higher product yields, reduced reaction times, and improved process scalability.&lt;br /&gt;
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=== See also ===&lt;br /&gt;
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* [[Chemical reactor]]&lt;br /&gt;
* [[Polymerization]]&lt;br /&gt;
* [[Oxidation reaction]]&lt;br /&gt;
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[[Category:Chemical engineering]]&lt;br /&gt;
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		<author><name>Prab</name></author>
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