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- W2149641572 abstract "Urban snow is often considered an inconvenience but can instead be an environmental alternative for different cooling purposes. In many towns snow is removed from roads and placed into an above ground snow deposit (AGSD). Alternatively, a town’s removed snow can be put into a snow cooling plant (SCP) to help meet summer cooling demands. A SCP works by transporting chilled water out of an embanked snow deposit through pipes, returning luke-warm water for recirculation or rejection. An impermeable liner-equipped snow cooling plant built in Sundsvall, Sweden worked well, but the initial investment was high. If a snow cooling plant is built without a liner this cost would be significantly reduced. Since urban snow is polluted, and a permeable snow cooling plant (PSCP) allows percolation, the pollutant loads leaving a PSCP and an AGSD must be compared. The common contaminants in urban snow are metals, nutrients, and suspended solids. Standard values for snowmelt contaminant concentrations in dissolved and particulate phase are not available making local studies necessary. Dissolved contaminants migrate with water, while particulate migration is dependent on surface water velocity. For an AGSD meltwater infiltration rates depend on soil parameters and melt rate, melt in excess of the infiltration capacity becomes surface runoff. A PSCP blocks the surface runoff pathway cutting off particulate flow. With low soil hydraulic conductivity, infiltration and percolation is low while surface runoff is high allowing a large particulate migration from an AGSD and more control of pollutants through filtering and treatment of PSCP reject water." @default.
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- W2149641572 date "2008-01-01" @default.
- W2149641572 modified "2023-10-02" @default.
- W2149641572 title "Expected Pollutant Pathway Differences between Snow Deposits and a Permeable Snow Cooling Plant" @default.
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