<p>Mining operations in Canada, including uranium mining and milling, generate by-products containing radionuclides, including radium-226 (<sup>226</sup>Ra), a long-lived, bioaccumulative calcium (Ca<sup>2+</sup>) analog. Despite strict discharge regulations, there is limited evidence to suggest that current thresholds for <sup>226</sup>Ra adequately protect aquatic organisms. Furthermore, Canada lacks a federal water quality guideline for <sup>226</sup>Ra, underscoring the need for protective limits to safeguard aquatic ecosystems. Hence, this research aimed to generate data on <sup>226</sup>Ra toxicity to the model aquatic invertebrate <i>Daphnia magna</i>. For this purpose, two 21-day chronic toxicity tests with <i>D. magna</i> were conducted, with survival and reproduction as the endpoints, as well as a reduced water hardness experiment, a multigenerational study, and a bioaccumulation assay. These experiments demonstrated that a high activity concentration (nominal 50&#xa0;Bq/L) of <sup>226</sup>Ra can significantly impact the survival of <i>D. magna.</i> <sup>226</sup>Ra was also found to bioaccumulate in <i>D. magna</i> with a BAF of 72.8. Since the Canadian <i>Metal and Diamond Mining Effluent Regulations</i> (MDMER) monthly mean effluent limit is currently set at 0.37&#xa0;Bq <sup>226</sup>Ra /L, the limit for composite samples at 0.74&#xa0;Bq/L <sup>226</sup>Ra, and&#xa0;the limit for grab samples at 1.11&#xa0;Bq/L <sup>226</sup>Ra, it is unlikely that toxic effects to aquatic cladocerans like <i>D. magna</i> from <sup>226</sup>Ra will be observed downstream of Canadian mines and mills.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Chronic Radium-226 Bioaccumulation and Toxicity in the Aquatic Invertebrate Daphnia magna

  • Charlotte Lacroix-Durand,
  • David Janz,
  • Karsten Liber

摘要

Mining operations in Canada, including uranium mining and milling, generate by-products containing radionuclides, including radium-226 (226Ra), a long-lived, bioaccumulative calcium (Ca2+) analog. Despite strict discharge regulations, there is limited evidence to suggest that current thresholds for 226Ra adequately protect aquatic organisms. Furthermore, Canada lacks a federal water quality guideline for 226Ra, underscoring the need for protective limits to safeguard aquatic ecosystems. Hence, this research aimed to generate data on 226Ra toxicity to the model aquatic invertebrate Daphnia magna. For this purpose, two 21-day chronic toxicity tests with D. magna were conducted, with survival and reproduction as the endpoints, as well as a reduced water hardness experiment, a multigenerational study, and a bioaccumulation assay. These experiments demonstrated that a high activity concentration (nominal 50 Bq/L) of 226Ra can significantly impact the survival of D. magna. 226Ra was also found to bioaccumulate in D. magna with a BAF of 72.8. Since the Canadian Metal and Diamond Mining Effluent Regulations (MDMER) monthly mean effluent limit is currently set at 0.37 Bq 226Ra /L, the limit for composite samples at 0.74 Bq/L 226Ra, and the limit for grab samples at 1.11 Bq/L 226Ra, it is unlikely that toxic effects to aquatic cladocerans like D. magna from 226Ra will be observed downstream of Canadian mines and mills.