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Acidic Mining Lakes
Ecological Potentials for Planktonic Development and Food Web Interactions in Extremely Acidic Mining Lakes in Lusatia
other
Author(s):
B. Nixdorf
,
K. Wollmann
,
R. Deneke
Publication date
(Print):
1998
Publisher:
Springer Berlin Heidelberg
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The use of DAPI for identifying and counting aquatic microflora1
Karen Porter
,
Yvette S. Feig
(1980)
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Dynamics of Autotrophic Picoplankton in Marine and Freshwater Ecosystems
Thomas Weisse
(1993)
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Primary Production and Phytoplankton in the Experimental Lakes Area, Northwestern Ontario, and other Low-Carbonate Waters, and a Liquid Scintillation Method for Determining 14C Activity in Photosynthesis
S. Holmgren
,
D. Schindler
(1971)
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Book Chapter
Publication date (Print):
1998
Pages
: 147-167
DOI:
10.1007/978-3-642-71954-7_8
SO-VID:
fdf3ee52-9282-49f2-ab16-fa669b701c51
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Book chapters
pp. 3
Natural and Anthropogenic Sulfuric Acidification of Lakes
pp. 15
Regional Geology of the Lignite Mining Districts in Eastern Germany
pp. 25
Chemical Characteristics of Water and Sediment in Acid Mining Lakes of the Lusatian Lignite District
pp. 47
In-Lake Neutralization of Acid Mine Lakes
pp. 65
Acid Generation and Metal Immobilization in the Vicinity of a Naturally Acidic Lake in Central Yukon Territory, Canada
pp. 87
Geochemical Behaviour of Submerged Pyrite-Rich Tailings in Canadian Lakes
pp. 127
Phytoplankton Composition and Biomass Spectra Created by Flow Cytometry and Zooplankton Composition in Mining Lakes of Different States of Acidification
pp. 147
Ecological Potentials for Planktonic Development and Food Web Interactions in Extremely Acidic Mining Lakes in Lusatia
pp. 169
Colonization and Development of Vegetation in Mining Lakes of the Lusatian Lignite Area Depending on Water Genesis
pp. 197
Pyrite Chemistry: The Key for Abatement of Acid Mine Drainage
pp. 223
Chemical Reactions in Aquifers Influenced by Sulfide Oxidation and in Sulfide Oxidation Zones
pp. 237
Oxygen as a Limiting Factor for Pyrite Weathering in the Overburden of Open Pit Lignite Areas
pp. 251
Effects of Superficial Tertiary Dump Substrates and Recultivation Variants on Acid Output, Salt Leaching and Development of Seepage Water Quality
pp. 269
Microbial Processes for Potential in Situ Remediation of Acidic Lakes
pp. 285
Biological Abatement of Acid Mine Drainage: The Role of Acidophilic Protozoa and Other Indigenous Microflora
pp. 303
Treatment of Mine Drainage by Anoxic Limestone Drains and Constructed Wetlands
pp. 321
Biological Polishing of Zinc in a Mine Waste Management Area
pp. 335
Development of a Long-Term Strategy for the Treatment of Acid Mine Drainage at Wheal Jane
pp. 347
Bioremediation of Metals in Acid Tailings by Mixed Microbial Mats
pp. 365
Managing the pH of an Acid Lake by Adding Phosphate Fertiliser
pp. 385
Model Calculations for Active Treatment of Acidic, Iron-Containing Lake Water Assuming Mining Lakes as Chemical Reactors
pp. 401
Ways of Controlling Acid by Ecotechnology
pp. 419
Pyrite Oxidation Control
pp. 423
Limnological Fundamentals of Acid Mining Lakes
pp. 427
Approaches for the Restoration of Strongly Acidic Mining Lakes
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