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There are still many areas related to chloride where additional research and information may help to inform management decisions. There are 12 main areas that would benefit from additional information. | There are still many areas related to chloride where additional research and information may help to inform management decisions. There are 12 main areas that would benefit from additional information. | ||
#'''Chloride reductions when implementing the BMPs'''. The WMAt is the first ever, exhaustive resource of all known salt saving BMPs. The reduction potential for each BMP is largely unknown. The WMAt is limited by available research, in how much of a reduction that can be attained by improving each individual practice. More research is needed on many BMPs to understand how much salt can be saved when the BMP is implemented. The tool contains a list of over 200 BMPs, most of which would benefit from reduction potential research. | #'''Chloride reductions when implementing the BMPs'''. The WMAt is the first ever, exhaustive resource of all known salt saving BMPs. The reduction potential for each BMP is largely unknown. The WMAt is limited by available research, in how much of a reduction that can be attained by improving each individual practice. More research is needed on many BMPs to understand how much salt can be saved when the BMP is implemented. The tool contains a list of over 200 BMPs, most of which would benefit from reduction potential research. | ||
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#'''Water experts'''. Research is needed to better understand how to capture chloride before it enters the water and how to remove it once it enters our surface water or ground water. Special attention should be directed toward preserving the food chain living in surface water systems when considering filtration methods for removing chloride from lakes, rivers, and wetlands. | #'''Water experts'''. Research is needed to better understand how to capture chloride before it enters the water and how to remove it once it enters our surface water or ground water. Special attention should be directed toward preserving the food chain living in surface water systems when considering filtration methods for removing chloride from lakes, rivers, and wetlands. | ||
#'''Reuse'''. An evaluation of the feasibility of re-using wastewater with chloride for winter maintenance should be conducted, including brine from RO processes. As part of this evaluation, an understanding of the other chemicals present in the wastewater will be important in determining the feasibility of re-using wastewater. | #'''Reuse'''. An evaluation of the feasibility of re-using wastewater with chloride for winter maintenance should be conducted, including brine from RO processes. As part of this evaluation, an understanding of the other chemicals present in the wastewater will be important in determining the feasibility of re-using wastewater. | ||
− | #'''Non-chloride and reduced chloride.''' The MnDOT has evaluated many different options for deicing, but some may need additional research into the effectiveness. Information can be found at | + | #'''Non-chloride and reduced chloride.''' The MnDOT has evaluated many different options for deicing, but some may need additional research into the effectiveness. Information can be found at “[http://www.dot.state.mn.us/research/TRS/2014/TRS1411.pdf Chloride Free Snow and Ice Control Material].” |
#'''Septic Systems'''. More research into septic systems and the amount of chloride loading to the groundwater needs to be better understood as well as other contributors of chloride to groundwater. | #'''Septic Systems'''. More research into septic systems and the amount of chloride loading to the groundwater needs to be better understood as well as other contributors of chloride to groundwater. | ||
#'''Climate Change.''' Additional research is needed to understand how climate change will affect precipitation patterns and temperatures and their effects on chloride. Precipitation and temperature could cause increases or decreases in chloride application. However, increased or decreased precipitation could also affect the amount of runoff available for dilution and flushing of chloride. | #'''Climate Change.''' Additional research is needed to understand how climate change will affect precipitation patterns and temperatures and their effects on chloride. Precipitation and temperature could cause increases or decreases in chloride application. However, increased or decreased precipitation could also affect the amount of runoff available for dilution and flushing of chloride. | ||
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+ | <noinclude> | ||
+ | ==Related pages== | ||
+ | *[[TCMA Chloride Management Plan - Background and Description]] | ||
+ | *[[TCMA Chloride Management Plan - TCMA Chloride Conditions]] | ||
+ | *[[TCMA Chloride Management Plan - Prioritizing and Implementing Restoration and Protection]] | ||
+ | *[[TCMA Chloride Management Plan - Monitoring, tracking, reporting, and adaptive management]] | ||
+ | *[[TCMA Chloride Management Plan - Research Needs]] | ||
+ | *[[TCMA Chloride Management Plan - Stakeholder and Public Involvement Process]] | ||
+ | *[[TCMA Chloride Management Plan - Appendix A – TCMA Chloride TMDL]] | ||
+ | *[[TCMA Chloride Management Plan - Appendix B – Winter Maintenance Assessment tool (WMAt)]] | ||
+ | *[[TCMA Chloride Management Plan - Appendix C – Sidewalk Survey Results]] | ||
+ | *[[TCMA Chloride Management Plan - Appendix D – Educational Resources]] | ||
+ | *[[TCMA Chloride Management Plan - References]] | ||
+ | |||
+ | [[Category:Level 2 - Pollutants/Chloride]] | ||
+ | [[Category:Level 2 - Management/Winter management]] | ||
+ | </noinclude> |
There are still many areas related to chloride where additional research and information may help to inform management decisions. There are 12 main areas that would benefit from additional information.
This page was last edited on 23 November 2022, at 16:33.