
How to produce <strong>Oxygen 15</strong>
Cyclotron
Target
Chemistry
Optimized production route
Cyclone 3D
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Cyclone 3D
<p>The Cyclone<sup>®</sup> 3D was developed to answer a need of Oxygen-15 production. It is capable of accelerating deuterons up to around 3.4MeV and produces <sup>15</sup>O using the <sup>14</sup>N(d,n)<sup>15</sup>O nuclear reaction. </p>
Nirta® Gas target
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Nirta® Gas target
<p>Nirta® Gas target is an irradiation system for the production of [<sup>15</sup>O]O<sub>2</sub> or [<sup>15</sup>O]CO. <br /> The irradiation of Nitrogen-14 with deuteron produces the <sup>14</sup>N(d,n)<sup>15</sup>O nuclear reaction. </p> More about Nirta® target
Pinctada® water
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Pinctada® water
<p>IBA Pinctada<sup>®</sup> water is a fully automated module that employs effective flow chemistry to produce high yield of [<sup>15</sup>O]H<sub>2</sub>O in batch mode</p> More about Pinctada® water
Alternative
Cyclone® KIUBE
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Cyclone® KIUBE
<p>To produce <sup>15</sup>O a cyclotron using positively charged ions, the optimal energy to reach the target is 13 MeV, The Cyclone<sup>®</sup> KIUBE is equipped with a degrador foil on the <sup>15</sup>O target to reach the 13 MeV. </p> More about Cyclone® KIUBE
Nirta® Gas target
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Nirta® Gas target
<p>Nirt<span>a</span><sup>®</sup> Gas target is an irradiation system for the production of [<sup>15</sup>O]O<sub>2</sub> or [<sup>15</sup>O]CO. The irradiation of low volume of enriched <sup>15</sup>N with proton produces the <sup>15</sup>O isotope</p> Nirta® Gas target
Pinctada® water
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Pinctada® water
<p><span>IBA</span> <span>Pinctada</span><sup>®</sup> water is a fully automated module that employs effective flow chemistry to produce high yield of [<sup>15</sup>O]-H<sub>2</sub>O in batch mode</p> More about Pinctada® waterAsk your <strong>Expert!</strong>
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