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Polymer Enhanced Best Management Practices for Erosion and Sedimentation Control, Water Clarification with a Focus on Nutrient Control and Soil Stabilization

机译:聚合物增强的侵蚀和沉降控制,水净化的最佳管理实践,重点是营养控制和土壤稳定

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Sedimentation and excess nutrient loads, including phosphorous, entering our water bodies from erosion, fertilizers, manures, and crop runoff cause eutrophic conditions that lead to algal blooms and surface water quality degradation. Using water soluble polymer technologies to enhance our current Best Management Practices (BMPs) we are able to greatly reduce sediment and nutrients from leaving a site as well as reduce the amount of sediment and or nutrients in a given water body. Three possible solutions using Polymer Enhanced Best Management Practices (PEBMPs) to accomplish this are as follows: (1) Capture or retain the sediment and nutrient before it can wash into our water bodies, (2) use polymer enhancement in conjunction with aeration systems, fountains, water falls, dewatering ditches, etc. to remove nutrients and turbidity from contaminated waters, and (3) if sediment has been deposited use polymer enhancement to remove unmanageable muck by de-mucking. Through various tests 75-90 percent reduction of phosphorous has been found as well as a 95 percent reduction in Total Suspended Solids (TSS) and Nephelometric Turbidity Units (NTU's). Besides aesthetic effects, meeting compliance standards and the proposed Effluent Limitation Guidelines (ELG's) the importance of such reductions lies in the detrimental effects caused by turbidity. Such effects include the fact that contaminants attach to fine particulates and are thus transported into our various water bodies. Such contaminants include nutrients, phosphorous, bacteria, pesticides, and endocrine disruptors which have negative effects when discharged. These particulates make up turbidity which we measure in NTU's. Very low levels of turbidity have been found to have effects on aquatic life. Various papers and studies have shown that as low as 10-100 NTU's fish will start to show signs of stress. The general focus of this paper will therefore illustrate the most common and effective Polymer Enhanced Best Management Practices (PEBMPs) that have been quantified and are currently being used across various geographical locations to control sedimentation through three stages: dislodgement, transport, and deposition. Using various techniques with this technology it is possible to stabilize soil at the source so that it is not transported into our waters and if it is to perform water clarification to reduce turbidity, and if deposition has occurred to de-muck the sediment. Such systems will include the following: soil stabilization including polymer enhanced soft armoring applications, de-watering systems, pond and lake clarification including nutrient reductions, de-mucking, and SRBs (Sediment Retention Barriers).
机译:沉积物和过多的养分负荷(包括磷)通过侵蚀,肥料,肥料和作物径流进入我们的水体,导致富营养化,导致藻华和地表水质量下降。使用水溶性聚合物技术来增强我们目前的最佳管理规范(BMP),我们能够大大减少离开某个地点的沉积物和养分,并减少给定水体中的沉积物和/或养分的量。使用聚合物增强最佳管理实践(PEBMP)来实现此目的的三种可能的解决方案如下:(1)在沉积物和营养物可以冲入我们的水体之前对其进行捕获或保留,(2)将聚合物增强与曝气系统结合使用,喷泉,瀑布,排水沟等,以去除受污染水域中的养分和浑浊;(3)如果沉积物已经沉积,则使用聚合物增强剂通过除渣来去除难以处理的渣土。通过各种测试,发现磷减少了75-90%,总悬浮固体(TSS)和浊度浊度单位(NTU's)减少了95%。除美学效果外,要达到合规标准和拟议的《污水排放限值指南》(ELG's),减少此类污染物的重要性还在于浊度造成的不利影响。这种影响包括以下事实:污染物会附着在细小颗粒上,并因此被输送到我们的各种水体中。这些污染物包括营养物质,磷,细菌,农药和内分泌干扰物,这些污染物在排放时会产生负面影响。这些颗粒组成了浊度,我们在NTU中测量了浊度。已发现极低的混浊度对水生生物有影响。各种论文和研究表明,低至10-100 NTU的鱼将开始显示出压力迹象。因此,本文的总重点将说明最常见和最有效的聚合物增强最佳管理实践(PEBMP),该实践已被量化,并且目前已在各个地理位置用于通过三个阶段来控制沉积:沉降,运输和沉积。使用各种技术结合这项技术,可以在源头稳定土壤,从而使其不会被输送到我们的水域中,并且如果要进行水净化以减少浊度,并且是否发生了沉积物以去除沉积物的话。此类系统将包括以下内容:土壤稳定化(包括聚合物增强的软装甲应用),脱水系统,池塘和湖泊的澄清(包括减少养分),除泥和SRB(沉积物保留屏障)。

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