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Method for selective recovery of PET-usable quantities of .sup. 18 F fluoride and .sup.13 N nitrate/nitrite from a single irradiation of low- enriched .sup.18 O water
Method for selective recovery of PET-usable quantities of .sup. 18 F fluoride and .sup.13 N nitrate/nitrite from a single irradiation of low- enriched .sup.18 O water
A process for simultaneously producing PET-usable quantities of [.sup. 13 N]NH.sub.3 and [.sup.18 F]F.sup.- for radiotracer synthesis is disclosed. The process includes producing [.sup.13 N]NO.sub.2.sup.- /NO. sub.3.sup.- and [.sup.18 F]F.sup.- simultaneously by exposing a low- enriched (20%-30%) [.sup.18 O]H.sub.2 O target to proton irradiation, sequentially isolating the [.sup.13 N]NO.sub.2.sup.- /NO.sub.3.sup.- and [.sup.18 F]F.sup.- from the [.sup.18 O]H.sub.2 O target, and reducing the [.sup.13 N]NO.sub.2.sup.- /NO.sub.3.sup.- to [.sup.13 N]NH.sub.3. The [. sup.13 N]NH.sub.3 and [.sup.18 F]F.sup.- products are then conveyed to a laboratory for radiotracer applications. The process employs an anion exchange resin for isolation of the isotopes from the [.sup.18 O]H.sub.2 O, and sequential elution of [.sup.13 N]NO.sub.2.sup.- /NO.sub.3.sup.- and [ .sup.18 F]F.sup.- fractions. Also the apparatus is disclosed for simultaneously producing PET-usable quantities of [.sup.13 N]NH.sub.3 and [.sup.18 F]F.sup.- from a single irradiation of a single low-enriched [. sup.18 O]H.sub.2 O target.
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