Pinder J E, McLeod K W, Adriano D C, Corey J C, Boni A L
Savannah River Ecology Laboratory, Aiken, SC 29801.
Health Phys. 1990 Dec;59(6):853-67. doi: 10.1097/00004032-199012000-00009.
Plutonium released to the environment may contribute to dose to humans through inhalation or ingestion of contaminated foodstuffs. Plutonium contamination of agricultural plants may result from interception and retention of atmospheric deposition, resuspension of Pu-bearing soil particles to plant surfaces, and root uptake. Plutonium on vegetation surfaces may be transferred to grain surfaces during mechanical harvesting. Data obtained from corn grown near the U.S. Department of Energy's H-Area nuclear fuel chemical separations facility on the Savannah River Site were used to estimate parameters of a simple model of Pu transport in agroecosystems. The parameter estimates for corn were compared to those previously obtained for wheat and soybeans. Despite some differences in parameter estimates among crops, the relative importances of atmospheric deposition, resuspension, and root uptake were similar among crops. For even small deposition rates, the relative importances of processes for Pu contamination of corn grain should be: transfer of atmospheric deposition from vegetation surfaces to grain surfaces during combining greater than resuspension of soil to grain surfaces greater than root uptake. Approximately 3.9 X 10(-5) of a year's atmospheric deposition is transferred to grain. Approximately 6.2 X 10(-9) of the Pu inventory in the soil is resuspended to corn grain, and a further 7.3 X 10(-10) of the soil Pu inventory is absorbed and translocated to grains.
释放到环境中的钚可能通过吸入或摄入受污染的食物对人类造成剂量影响。农业植物的钚污染可能源于大气沉降的截留和滞留、含钚土壤颗粒再悬浮到植物表面以及根系吸收。在机械收割过程中,植被表面的钚可能转移到谷物表面。利用在美国能源部位于萨凡纳河场地的H区核燃料化学分离设施附近种植的玉米所获得的数据,来估算农业生态系统中钚迁移简单模型的参数。将玉米的参数估计值与之前从小麦和大豆获得的参数估计值进行比较。尽管不同作物的参数估计存在一些差异,但大气沉降、再悬浮和根系吸收的相对重要性在不同作物中相似。即使对于很小的沉降速率,玉米籽粒钚污染过程的相对重要性应为:联合收割期间大气沉降从植被表面转移到谷物表面大于土壤再悬浮到谷物表面大于根系吸收。一年大气沉降中约3.9×10⁻⁵转移到谷物中。土壤中钚存量的约6.2×10⁻⁹再悬浮到玉米籽粒中,土壤钚存量的另外7.3×10⁻¹⁰被吸收并转运到籽粒中。