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	<title>Archives des CTC/2000 - Pignat.com</title>
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		<title>Thermal control of a reactor</title>
		<link>https://pignat.com/en/product/thermal-control-of-a-reactor/</link>
		
		<dc:creator><![CDATA[PIGNAT]]></dc:creator>
		<pubDate>Mon, 11 Mar 2019 10:00:39 +0000</pubDate>
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					<description><![CDATA[<h3>Study of the thermal behavior of a reactor</h3>
<p>&#160;</p>
<hr />
<p>GENERAL SPECIFICATIONS</p>
<hr />
<ul>
<li>SS reactor, 20 L capacity with an oveflow nozzle. Removable cover.</li>
<li>Centrifugal pump.</li>
<li>3 kW SS immersion heater.</li>
<li>SS exchanger equipped with a solenoid control valve on cold water feed.</li>
<li>Glass double jacket reactor, 5 L capacity, draining valve, overflow nozzle.</li>
<li>Stirring: variable speed motor 50 to 2000 rpm. SS shaft and three blade impeller.</li>
</ul>
<p><b> </b><b>Instrumentation</b></p>
<ul>
<li>6 temperature probes Pt 100 Ω.</li>
<li>Flowmeters.</li>
<li>2 float a level sensor.</li>
<li>Safety thermostat.</li>
<li>Safety pressure.</li>
</ul>
<p>&#160;</p>
<p><strong>Dim</strong> : 170 x 70 x 190 cm - 150 kg<br />
SS tubular framework 40 x 40mm</p>
<p>&#160;</p>
<p>[print-me target="#page"]</p>
<p>L’article <a href="https://pignat.com/en/product/thermal-control-of-a-reactor/">Thermal control of a reactor</a> est apparu en premier sur <a href="https://pignat.com/en">Pignat.com</a>.</p>
]]></description>
										<content:encoded><![CDATA[<div class="vgblk-rw-wrapper limit-wrapper">
<h3>Thermal control of a recator</h3>
<p>This unit shows a common issue in process industry: a jacketed vessel connected to a thermoregulation group.</p>
<p>The aim is to run the thermal process properly, to compare the running modes and understand the consequences on the heated solutions</p>
<p>The user sets the different regulation loops to achieve the optimal thermoregulation process.</p>
<p>Various control loops (single or cascade) may be studied on this test rig. The sensor and actuator signals are available on safety</p>
<p>sockets and can be wired to the controller inputs and outputs as needed to form the chosen control loop.</p>
<p>&nbsp;</p>
<h3>Study of the parameters affecting the heating of a tank</h3>
<p>Operating in batch or continuous with overflow</p>
<p>Influence of stirring and  the forced cooling</p>
<p>Simulation of an exothermic and endothermic middle</p>
<p>&nbsp;</p>
<h3>Thermal study</h3>
<p>Thermal balance for reaction medium</p>
<p>Thermal balance for thermal fluids</p>
<p>Heat exchange efficiency</p>
<p><b> </b></p>
<h3>Study of the regulation</h3>
<p>Study of a single loop or cascade loop</p>
<p>Influence of response time</p></div>
<p><!-- .vgblk-rw-wrapper --></p>
<p>L’article <a href="https://pignat.com/en/product/thermal-control-of-a-reactor/">Thermal control of a reactor</a> est apparu en premier sur <a href="https://pignat.com/en">Pignat.com</a>.</p>
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