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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Reduction of 68Ge activity containing liquid waste from 68Ga PET chemistry in nuclear medicine and radiopharmacy by solidification
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Reduction of 68Ge activity containing liquid waste from 68Ga PET chemistry in nuclear medicine and radiopharmacy by solidification

机译:通过固化减少核医学和放射药学中68Ga PET化学中含68Ge活性的废液

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摘要

PET with 68Ga from the TiO2- or SnO2- based 68Ge/68Ga generators is of increasing interest for PET imaging in nuclear medicine. In general, radionuclidic purity (68Ge vs. 68Ga activity) of the eluate of these generators varies between 0.01 and 0.001%. Liquid waste containing low amounts of 68Ge activity is produced by eluting the 68Ge/ 68Ga generators and residues from PET chemistry. Since clearance level of 68Ge activity in waste may not exceed 10 Bq/g, as stated by European Directive 96/29/EURATOM, our purpose was to reduce 68Ge activity in solution from >10 kBq/g to <10 Bq/g; which implies the solution can be discarded as regular waste. Most efficient method to reduce the 68Ge activity is by sorption of TiO2 or Fe 2O3 and subsequent centrifugation. The required 10 Bq per mL level of 68Ge activity in waste was reached by Fe 2O3 logarithmically, whereas with TiO2 asymptotically. The procedure with Fe2O3 eliminates a‰¥ 90% of the 68Ge activity per treatment. Eventually, to simplify the processing a recirculation system was used to investigate 68Ge activity sorption on TiO2, Fe 2O3 or Zeolite. Zeolite was introduced for its high sorption at low pH, therefore 68Ge activity containing waste could directly be used without further interventions. 68Ge activity containing liquid waste at different HCl concentrations (0.05-1.0 M HCl), was recirculated at 1 mL/min. With Zeolite in the recirculation system, 68Ge activity showed highest sorption.
机译:基于TiO2-或SnO2的68Ge / 68Ga发生器产生的68Ga PET越来越受到核医学PET成像的关注。通常,这些发生器的洗脱液的放射性核素纯度(68Ge对68Ga活性)在0.01%和0.001%之间变化。通过洗脱68Ge / 68Ga发生器和PET化学残留物可产生含68Ge活性低的废液。正如欧洲指令96/29 / EURATOM所述,由于废物中68Ge活性的清除水平可能不超过10 Bq / g,因此我们的目的是将溶液中的68Ge活性从> 10 kBq / g降低到<10 Bq / g;这意味着该溶液可以作为常规废物丢弃。降低68Ge活性的最有效方法是吸附TiO2或Fe 2O3,然后进行离心分离。 Fe 2O3以对数方式达到废物中所需的10 Bq / mL的68Ge活性水平,而TiO2则以渐进方式达到。用Fe2O3进行的过程消除了每次处理的68Ge活性的约¥ 90%。最终,为了简化处理,使用了再循环系统来研究68Ge活性在TiO2,Fe 2O3或沸石上的吸附。引入沸石是因为它在低pH下具有高吸附能力,因此无需进一步干预即可直接使用含68Ge活性的废物。将含有68Ge活性的不同HCl浓度(0.05-1.0 M HCl)的废液以1 mL / min的速度再循环。在再循环系统中使用沸石时,68Ge活性显示出最高的吸附性。

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