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      Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling
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      Chapter

      Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling

      DOI link for Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling

      Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling book

      Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling

      DOI link for Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling

      Impact of placer mining on suspended sediments in rivers of the Kamchatka Peninsula (Russian Federation) and the Selenga River basin (Mongolia) and its modeling book

      ByE. Promakhova, N.I. Alexeevsky
      BookRiver Sedimentation

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      Edition 1st Edition
      First Published 2016
      Imprint CRC Press
      Pages 5
      eBook ISBN 9781315623207
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      ABSTRACT

      The impact of placer mining on suspended sediment concentration (SSC) variability is discussed for rivers of North Kamchatka (Russia) and the Selenga river basin (Mongolia) taking into account a discharge of sewage. It is shown that with a constant input of anthropogenic particles in the river a seasonal surpass over SSC baseline downstream of a placer mining is about 1.6–8.8 times, depending on the river size and water phase. Mathematical algorithm for calculation of suspended particles transport along the river reaches situated downstream of anthropogenic sediment source is proposed; the efficiency was tested on studied phenomena within the accuracy of 6–31%.

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