4.7 Review

Freshwater salinisation: a research agenda for a saltier world

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Summary: Road salt runoff causes salinization of freshwaters, with significant impacts on aquatic species. The experiment revealed that salt addition increased zooplankton biomass and reduced phytoplankton biomass. Zooplankton showed a salt-limited response at low ionic concentrations, and salinity primarily affected phytoplankton biomass through top-down regulation by grazers.

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Salinization of Alpine rivers during winter months

Georg H. Niedrist et al.

Summary: Human-induced salinization, particularly from deicing road salt in Alpine rivers, can significantly impact aquatic biodiversity and ecosystem functioning, especially leading to peak salinity levels in late winter/early spring. Small rivers highly connected to urban infrastructures are more prone to considerable salinity peaks during late winter/early spring, which may have potential consequences on ecosystem functioning and require management practices to prevent degradation.

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Summary: Potash abandoned mines lead to severe environmental damage to freshwater ecosystems, especially through uncontrolled discharge of hypersaline effluents. This study evaluated the ecological impact of a hypersaline effluent from an abandoned potash mine in Germany on freshwater biofilms and diatom communities. The biofilm exposed to the mining effluent showed significant functional and structural responses, with recovery over time, and a notable shift in diatom community structure.

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Increasing anthropogenic salinisation leads to declines in community diversity, functional diversity and trophic links in mountain streams

Qian Zhao et al.

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The effect of salinity fluctuation in freshwater streams on the fecundity of post-diapause Chironomus dilutus

Emily Dobry et al.

Summary: The study evaluated the effects of pulsed patterns of salinity on Chironomus dilutus in a laboratory setting over two generations, showing that high salt treatment reduced fecundity. No significant effects were observed on emergence success or sex ratios. Intermediate and decreasing salinities may protect sensitive life stages from negative impacts. More research is needed to fully understand the long-term effects of reduced fecundity on population viability.

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Summary: Secondary salinization of freshwater ecosystems due to effluents from potash mining industry has led to significant biodiversity loss and reproductive failure in local fish species. Experimental investigation showed that high concentrations and imbalances of ions in the effluents negatively affected sperm motility, fertilization rate, egg size, and early development of native freshwater teleosts. The overall impact was more pronounced with the sum of high ion concentrations, indicating the need to reevaluate current and future ion thresholds.

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Invertebrate turnover along gradients of anthropogenic salinisation in rivers of two German regions

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Salt pulses effects on in-stream litter processing and recovery capacity depend on substrata quality

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