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Senior Associate Florida Successes of Polymer Enhanced Best Management Practices (PEBMPs) Steven R. Iwinski Environmental Scientist March 16 th, 2007
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Bonita Springs Highway 98 City or Orlando Fort Pierce Polk County
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Highway 98 Beach and Sand Stabilization
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Highway 98 Damage by Hurricane Dennis July 2005 (Carabelle to Eastpoint)
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Highway 98 Repair - Carabelle to Eastpoint
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Erosion after initial repair required an industrial BMP that would work on beach sands
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Polymer Enhanced Soft Armor Systems was chosen. After grading, compost was placed as an organic layer
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Jute matting was placed over the organic layer as a binding media for attachment of the polymer, sand and soil
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Jute matting was placed over the 14 miles or repair area. 50 pounds / acre polymer application rate was used
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Sod was placed over the polymer enhanced BMP
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This polymer enhanced BMP offers ready access to the beach and has shown extensive vehicle traffic
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One year after placement shows no erosion or need for further repair. This area received a tropical depression and a category 1 hurricane after initial installation
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After 16 months, no erosion can be found over the 14 miles showing that beach sands can be stabilized even under hurricane conditions
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City or Orlando Demucking and Mud Removal
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A PEBMP for mud removal from ponds. After determining the correct polymer type to use, the polymer is applied using a leaf blower
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Once applied, the polymer is mixed into the mud until thickening occurs
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Testing for the correct polymer type and thickening is required for good performance
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Thickened mud is easily handled and can be used as an erosion resistant cover material or top soil
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The polymer enhanced mud greatly reduces erosion, increases stormwater quality and holds nutrients in the soil
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Polymer enhanced thickened mud can greatly reduce operational cost while increasing growth potential of vegetation
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Polk County Dewatering of Phosphate Clay
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Bonnie Mine Road Project during the 2005 hurricane season developed large amounts of water that required dewatering
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Phosphitic clay from gypsum mining required two different polymer log types or duplex system in order to produce the correct conditions for dewatering
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Once mixing was complete with the logs the particulate formed was collected onto jute matting within the open channel ditch system
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Water having 800 NTU was reduced to less than 20 NTU at a 1000 GPM continuous flow rate
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This photo shows the before and after water clarity of the dewatering treatment system
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Fort Pierce Lake Worth Dewatering Project
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Dewatering / mixing pipe showing clay specific polymer logs with jute matting. Contaminated water from construction activity is pumped from the site into the mixing system.
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With flow stopped, jute matting shows the clay attached to the matting that was removed from the water
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Water from the construction settling pond was pumped over the logs that reacted throughout the entire pipe system
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Near end of the reaction pipe shows clarified water at less than 20 NTU
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Final discharge of clarified water discharged to Lake Worth. Absence of aquatic toxicity potential allows for a flow through system with no hazard to the environment
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Bonita Springs Leitner Creek By-pass Canal
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Leitner Creek By-pass Canal 4400’ long discharges to Estero Bay a OFW (Outstanding Florida Waterbody).
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OFWs are the most sensitive waters in the state of Florida requiring very effective BMPs
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Yearly cleaning maintenance on this cannel produces ranges between 400-1000 NTU values with background values being 5-13 NTU
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A basket containing the precise polymer logs matched to the turbidity characteristics was used as a mixing device to react with the turbidity
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The basket was placed in the canal downstream from the work area to intercept the turbid water flow
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As the turbid water flowed through the basket a low dosage of the polymer mix in the logs reacted with the turbidity in the water
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To prevent the reacted particles from escaping the canal, particle curtains were installed to attach the particulate to the surface of the curtains
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Reacted particles attach to the surface of the particle curtains while allowing the water to flow through the curtains
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The combination of correct polymer selection and particle capture BMP can produce very clean water meeting OFW requirements
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The polymer enhanced BMP for this project maintained clear water discharges with NTU values within OFW requirements
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Polymer enhanced BMPs significantly reduce odor and increased water clarity resulting in reduced complaints from area residents
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Senior Associate Reference Web Sites www.stormwater.ucf.edu www.siltstop.com www.rhmooreassociates.com www.riversofgrass.com
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