Lock Alan, Spiers Graeme, Hostetler Blair, Ray James, Wallschläger Dirk
Environmental and Life Sciences Graduate Program, Trent University, Peterborough, Ontario, Canada; MIRARCO, Laurentian University, Sudbury, Ontario, Canada.
MIRARCO, Laurentian University, Sudbury, Ontario, Canada; School of the Environment, Departments of Chemistry, Earth Sciences and Biology, Laurentian University, Sudbury, Ontario, Canada.
Water Res. 2016 Apr 15;93:289-295. doi: 10.1016/j.watres.2016.01.059. Epub 2016 Feb 13.
Spatial surveys of Ramsey Lake, Sudbury, Ontario water quality were conducted using an innovative underwater towed vehicle (UTV) equipped with a multi-parameter probe providing real-time water quality data. The UTV revealed underwater vent sites through high resolution monitoring of different spatial chemical characteristics using common sensors (turbidity, chloride, dissolved oxygen, and oxidation/reduction sensors) that would not be feasible with traditional water sampling methods. Multi-parameter probe vent site identification is supported by elevated alkalinity and silica concentrations at these sites. The identified groundwater vent sites appear to be controlled by bedrock fractures that transport water from different sources with different contaminants of concern. Elevated contaminants, such as, arsenic and nickel and/or nutrient concentrations are evident at the vent sites, illustrating the potential of these sources to degrade water quality.
使用配备多参数探头以提供实时水质数据的创新型水下拖曳式运载工具(UTV),对安大略省萨德伯里拉姆齐湖的水质进行了空间调查。该UTV通过使用普通传感器(浊度、氯化物、溶解氧和氧化/还原传感器)对不同空间化学特征进行高分辨率监测,揭示了水下排放口位置,而这用传统水样采集方法是不可行的。这些位置的碱度和二氧化硅浓度升高,支持了多参数探头对排放口位置的识别。已确定的地下水排放口位置似乎受基岩裂缝控制,这些裂缝从不同来源输送含有不同关注污染物的水。排放口位置明显存在砷、镍等污染物和/或营养物浓度升高的情况,说明这些来源有降低水质的可能性。