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	<title>Archives des OSM/4000 - Pignat.com</title>
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		<title>Desalinization by reverse osmosis</title>
		<link>https://pignat.com/en/product/desalinization-by-reverse-osmosis/</link>
		
		<dc:creator><![CDATA[PIGNAT]]></dc:creator>
		<pubDate>Tue, 12 Mar 2019 13:40:00 +0000</pubDate>
				<guid isPermaLink="false">http://v2.pignat.com/?post_type=product&#038;p=18071</guid>

					<description><![CDATA[<h3>Reverse osmosis membrane filtration</h3>
<blockquote><p>Desalinization process</p></blockquote>
<hr />
<p>GENERAL SPECIFICATIONS</p>
<hr />
<ul>
<li>Cylindrical feed tank in PE.</li>
<li>Reverse osmosis module</li>
</ul>
<p style="padding-left: 90px;">High pressure carter.</p>
<p style="padding-left: 90px;"> Spiral type membrane</p>
<ul>
<li> <span style="color: var(--vamtam-primary-font-color);">High pressure gear pump.</span></li>
<li>Graduate permeate tank with removable lid.</li>
<li>Graduate retentate tank.</li>
<li>2 beakers 1 L for sampling.</li>
</ul>
<p><b>Instrumentation</b></p>
<ul>
<li><b> </b><span style="color: var(--vamtam-primary-font-color);">Flowmeters</span></li>
<li>Manometers.</li>
<li>Level sensor.</li>
<li>Combined probes (conductivity and temperature) with electronic indication.</li>
</ul>
<p>&#160;</p>
<p><strong>Dim</strong> : 210 x 70 x 180 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/desalinization-by-reverse-osmosis/">Desalinization by reverse osmosis</a> est apparu en premier sur <a href="https://pignat.com/en">Pignat.com</a>.</p>
]]></description>
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<h3>Osmosis and reverse osmosis</h3>
<p>Osmosis entails transferring a solvent (generally water) through a semi-permeable membrane due</p>
<p>to the action of a difference in concentration. The transfer is complete when the two concentrations are</p>
<p>equal and equilibrium is reached.</p>
<p>If a pressure is applied on the surface of the concentrated salt solution, the solvent flow reduces to zero.</p>
<p>This pressure applied to cancel out the solvent flow is known as the osmotic pressure.</p>
<p>If the pressure applied is greater than the osmotic pressure, the solvent flow is reversed.</p>
<p>The phenomenon is the principle behind reverse osmosis filtration. A concentrated salt solution circulates</p>
<p>at high pressure over the surface of a membrane.</p>
<p>The solvent (pure water) passes through the membrane, forming the permeate; the solution is depleted in</p>
<p>solvent and leaves the module with a higher salt concentration, resulting in the concentrate</p>
<p>&nbsp;</p>
<h3>Study of essential parameters of the osmosis process</h3>
<p>The osmotic pressure of the water</p>
<p>The permeability of the membrane</p>
<p>The rejection and conversion rate of the reverse osmosis module</p>
<p><b> </b></p>
<h3>Optimization of a process of osmosis</h3>
<p>Determination of the operational conditions ideal for attaching the amount and quality of the permeate</p></div>
<p><!-- .vgblk-rw-wrapper --></p>
<p>L’article <a href="https://pignat.com/en/product/desalinization-by-reverse-osmosis/">Desalinization by reverse osmosis</a> est apparu en premier sur <a href="https://pignat.com/en">Pignat.com</a>.</p>
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