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<oembed><version>1.0</version><provider_name>Fine Particle and Aerosol Technology Laboratory</provider_name><provider_url>https://sites.uef.fi/fine</provider_url><title>Spray Pyrolysis (SP) - Fine Particle and Aerosol Technology Laboratory</title><type>rich</type><width>600</width><height>338</height><html>&lt;blockquote class="wp-embedded-content" data-secret="uoaKISEZHM"&gt;&lt;a href="https://sites.uef.fi/fine/front-page/funktiomat/spray-pyrolysis-sp/"&gt;Spray Pyrolysis (SP)&lt;/a&gt;&lt;/blockquote&gt;&lt;iframe sandbox="allow-scripts" security="restricted" src="https://sites.uef.fi/fine/front-page/funktiomat/spray-pyrolysis-sp/embed/#?secret=uoaKISEZHM" width="600" height="338" title="&#x201C;Spray Pyrolysis (SP)&#x201D; &#x2014; Fine Particle and Aerosol Technology Laboratory" data-secret="uoaKISEZHM" frameborder="0" marginwidth="0" marginheight="0" scrolling="no" class="wp-embedded-content"&gt;&lt;/iframe&gt;&lt;script type="text/javascript"&gt;
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</html><description>A spray pyrolysis shown in Figure below is well known in the production of oxide, metal-oxide and metal powders. The particle composition and properties are tightly linked to the precursor solution that can contain either dissolved or suspended reagents. The precursor solution is first atomized to the droplets using e.g. ultrasonic nebulizer. The droplets are [&hellip;]</description><thumbnail_url>https://sites.uef.fi/fine/wp-content/uploads/sites/158/2020/11/spray_pyrolysis.png</thumbnail_url></oembed>

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