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Dose to lung from inhaled tritiated particles.

机译:剂量从吸入肺氚化粒子。

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摘要

Tritiated particulate materials are of potential hazard in fission, fusion, and other tritium handling facilities. The absorbed fractions (fraction of energy emitted that is absorbed by the target region) are calculated for tritiated particles deposited in the alveolar-interstitial (AI) region of the respiratory tract. The energy absorbed by radiologically sensitive tissue irradiated by tritiated particles, in regions of the lung other than in the AI region, is negligible. The ICRP Publication 71 assumes the absorbed fraction is unity for tritium deposited in the AI region. We employed Monte Carlo methods in a model to evaluate the energy deposition in the wall of the alveolar sac from particles of tritiated beryllium, tritiated graphite, titanium tritide, tritiated iron hydroxide and zirconium tritide. For the five materials examined, the absorbed fraction in alveolar tissue ranged from 0.31 to 0.61 for particles of 1 microm physical diameter and 0.07 to 0.21 for 5 microm diameter particles. The dose to alveolar tissue, for an acute inhalation of tritiated particles by an adult male worker, was calculated based on the ICRP 66 lung model and the particle dissolution model of Mercer (1967). For particles of 5 microm activity median aerodynamic diameter (AMAD), the committed equivalent dose to alveolar tissue, calculated for the five materials, ranged from 32-42%, respectively, of the committed equivalent dose derived assuming the absorbed fractions were unity.
机译:氚化颗粒材料的潜力风险在裂变、聚变和其他氚处理设施。(吸收一部分能量释放氚化的目标区域)计算alveolar-interstitial颗粒沉积(AI)地区的呼吸道。吸收放射检查敏感的组织氚化粒子辐照的地区AI地区以外的肺可以忽略不计。吸收分数是氚沉积的统一在AI地区。在模型评估沉积的能量粒子的肺泡囊的墙氚化铍、氚化石墨、钛氚化,氚化氢氧化铁和锆氚化。吸收分数范围从肺泡组织0.31到0.61 1 microm物理的粒子直径和0.07 - 0.21 5 microm直径粒子。急性吸入氚化粒子的成年男性工人,是基于计算ICRP 66肺模型和粒子溶解美世(1967)的模型。活动中空气动力学直径(哈桑)承诺对肺泡组织等效剂量,计算出五个材料,包括32 - 42%,分别的承诺剂量派生假设吸收分数团结。

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