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Estimating Pollution Loads in Snow Removed from a Port Facility: Snow Pile Sampling Strategies

机译:从港口设施中估算雪中的污染负荷:雪堆采样策略

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Choosing the appropriate sampling strategy is significant while estimating the pollutant loads in a snow pile and assessing environmental impacts of dumping snow into water bodies. This paper compares different snow pile sampling strategies, looking for the most efficient way to estimate the pollutant loads in a snow pile. For this purpose, 177 snow samples were collected from nine snow piles (average pile area-30 m(2), height-2 m) during four sampling occasions at Frihamnen, Ports of Stockholm's port area. The measured concentrations of TSS, LOI, pH, conductivity, and heavy metals (Zn, Cu, Cd, Cr, Pb, and V) in the collected samples indicated that pollutants are not uniformly distributed in the snow piles. Pollutant loads calculated from different sampling strategies were compared against the load calculated using all samples collected for each pile (best estimate of mass load, BEML). The results/study showed that systematic grid sampling is the best choice when the objective of sampling is to estimate the pollutant loads accurately. Estimating pollutant loads from single snow column samples (collected at a point from the snow pile through the entire depth of the pile) produced up to 400% variation from BEML, whereas samples composed by mixing volume-proportional subsamples from all samples (horizontal composite samples) produced only up to 50% variation. Around nine samples were required to estimate the pollutant loads within 50% deviation from BEML for the studied snow piles. Converting pollutant concentrations in snow to equivalent concentrations in snowmelt and comparing it with available guideline values for receiving water, Zn was identified as the critical pollutant.
机译:选择合适的抽样策略在估计雪堆中的污染物载荷并评估倾倒雪进入水体的环境影响。本文比较了不同的雪堆采样策略,寻找最有效的方法来估计雪堆中的污染物负荷。为此目的,在Frihamnen港口区港口区的四个采样场合,从九个雪地桩(平均桩区域-30M(2),高度-2米)收集了177个雪样。收集样品中测量的TSS,LOI,pH,PH,电导率和重金属(Zn,Cu,Cd,Cr,Pb和V)的测量浓度表明污染物不均匀地分布在雪地桩中。将根据不同抽样策略计算的污染物载荷与使用每桩收集的所有样品(最佳估计的质量载荷,BEM1)进行比较。结果/研究表明,系统网格采样是准确估计污染物载荷的最佳选择。从单雪柱样品估计污染物载荷(通过堆中的雪堆的点收集),从BEML产生高达400%的变化,而通过混合来自所有样品的体积比例副样品(水平复合样品)组成的样品)仅产生高达50%的变化。需要大约九个样品来估计污染物载荷在从BEML为学习的雪堆的偏差范围内。将污染物浓度转化为散雪中的等同浓度,并将其与接收水的可用准则值进行比较,Zn被鉴定为关键污染物。

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