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<channel><title><![CDATA[ASUPLUS NANOBUBBLE TECHNOLOGY - Blog]]></title><link><![CDATA[https://www.airywater.com/blog]]></link><description><![CDATA[Blog]]></description><pubDate>Wed, 08 Apr 2026 09:40:54 +0900</pubDate><generator>Weebly</generator><item><title><![CDATA[New results tested ]]></title><link><![CDATA[https://www.airywater.com/blog/new-results-tested]]></link><comments><![CDATA[https://www.airywater.com/blog/new-results-tested#comments]]></comments><pubDate>Thu, 29 Sep 2016 09:53:21 GMT</pubDate><category><![CDATA[Uncategorized]]></category><guid isPermaLink="false">https://www.airywater.com/blog/new-results-tested</guid><description><![CDATA[This is the result of newly developed nanobubble generator.  &#8203;For this test rersult,&nbsp;Nanobubbles average (mean) size is 173nm. Mode is 110nm.The graph shows most of nanobubbles are concetrated in the very narrow range.In addition these data is tested after filtering more than 450nm size particles.  			  			  			 			 			 			 			 [...] ]]></description><content:encoded><![CDATA[<h2 class="wsite-content-title">This is the result of newly developed nanobubble generator.</h2>  <div class="paragraph"><font size="5"><br /><br />&#8203;For this test rersult,&nbsp;<br /><br />Nanobubbles average (mean) size is 173nm. Mode is 110nm.<br /><br /><br />The graph shows most of nanobubbles are concetrated in the very narrow range.<br /><br /><br />In addition these data is tested after filtering more than 450nm size particles.</font><br /><br /><br /><br /></div>  <div class="wsite-scribd">			  			  			 			<div title="Scribd&#65306; no-048_after_filtration_2016-09-27_21-38-59-experimentreport.pdf" id="doc_325760510" style="background-color:#fff"></div> 			 			 			</div>]]></content:encoded></item></channel></rss>