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放射性钴在小麦-土壤系统中的迁移动力学
引用本文:孙志明,陈传群,王寿祥,王辅俊.放射性钴在小麦-土壤系统中的迁移动力学[J].核技术,2001,24(1):52-56.
作者姓名:孙志明  陈传群  王寿祥  王辅俊
作者单位:1. 浙江大学原子核农业科学研究所
2. 华东师范大学数学系
基金项目:国家自然科学基金 !(395 70 149)
摘    要:研究了^60Co在小麦-土壤系统中的迁移、消长和分配动态。结果表明,进入土壤表面的^60Co将在系统内发生迁移。小麦植株中^60Co比活度起初随时间迅速增高,在达到某一最大值后开始下降;小麦各部位中^60Co比活度的大小顺序为:麦根>麦秸>麦壳>麦粒。土壤中^60Co主要滞留于表层5cm,其比活度与距土表深度呈单项指数负相关;小麦对土壤中的^60Co具有一定的富集能力。

关 键 词:小麦  迁移  分室模型  钴60  放射性钴  土壤  放射性污染  环境毒理  富集
修稿时间:1999年2月1日

Transference kinetics of active cobalt in wheat-soil system
SUN Zhiming,CHEN Chuanqun,WANG Shouxiang,Wang Fujun.Transference kinetics of active cobalt in wheat-soil system[J].Nuclear Techniques,2001,24(1):52-56.
Authors:SUN Zhiming  CHEN Chuanqun  WANG Shouxiang  Wang Fujun
Abstract:Studies on the dynamics of transportation, accumulation, disappearance and distribution of 60Co in the wheat-soil system were accomplished. It was shown that 60Co was transported rapidly in the system after it was put into the surface layer of soil. The specific activity of 60Co in wheat plant rapidly increased to a maximum value, then decreased. The specific activity of 60Co in each part of wheat plant was found to be arranged in order of root 》 straw 》 husk > seed. 60Co is mainly detained in 5cm of soil surface,and specific activity of 60Co in soil present an individual exponential declining with depth of soil. The wheat plant has some ability to accumulate 60Co in soil.
Keywords:Co  Wheat  Transference  Compartment model
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