Gibson J J, Birks S J, Moncur M C
InnoTech Alberta, 3-4476 Markham Street, Victoria, BC, Canada V8Z 7X8.
University of Victoria, Department of Geography, Victoria, BC, Canada V8W 3R4.
Data Brief. 2018 Dec 31;22:781-786. doi: 10.1016/j.dib.2018.12.074. eCollection 2019 Feb.
Oxygen-18 and deuterium analyses of water samples are provided from a regional survey of lakes, wetlands, soil waters, groundwaters, and snowpack samples collected in the Southern Athabasca Oil Sands (SAOS) region, Alberta, Canada, mainly during 2007-2009. Lake, wetland, and river sampling were conducted by helicopter during late summer, capturing conditions close to peak evaporative enrichment. Shallow soil water from the unsaturated zone was also collected in late summer, whereas deeper groundwaters from Quaternary aquifers, Quaternary channels, and uppermost Cretaceous strata, were collected primarily as part of winter drilling programs by industrial partners. Snowpack samples were collected in late March/early April, prior to significant spring melt. This dataset includes 1576 isotopic analyses made on 788 water samples as well as selected isotope mass balance model outputs (lake evaporation/inflow and water yield to lakes). These basic model data are provided to facilitate evaluation of the method as a tool for spatial mapping of water yield and its interannual variability. Details and further discussion on the isotope mass balance approach are provided in "Mapping water yield distribution across the southern Athabasca Oil Sands area: baseline surveys applying isotope mass balance of lakes" (Gibson et al., 2019). Overall, the data are expected to be useful, in comparison with local and regional datasets, for water resource management and planning, including design of monitoring networks and environmental impact assessments for oil sands projects.
本文提供了对水样的氧 - 18和氘分析结果,这些水样主要采集于2007 - 2009年期间加拿大艾伯塔省阿萨巴斯卡南部油砂(SAOS)地区的湖泊、湿地、土壤水、地下水和积雪样本,是该地区调查的一部分。湖泊、湿地和河流采样在夏末通过直升机进行,捕捉接近蒸发浓缩峰值的条件。非饱和带的浅层土壤水也在夏末采集,而来自第四纪含水层、第四纪河道和最上部白垩纪地层的深层地下水,主要是作为工业合作伙伴冬季钻探计划的一部分进行采集。积雪样本在3月下旬/4月初采集,此时春季尚未发生大量融雪。该数据集包括对788个水样进行的1576次同位素分析,以及选定的同位素质量平衡模型输出结果(湖泊蒸发/入流和湖泊产水量)。提供这些基本模型数据是为了便于评估该方法作为一种绘制产水量空间分布图及其年际变化的工具。关于同位素质量平衡方法的详细信息和进一步讨论,见《绘制阿萨巴斯卡南部油砂地区的产水量分布:应用湖泊同位素质量平衡的基线调查》(吉布森等人,2019年)。总体而言,与当地和区域数据集相比,这些数据有望对水资源管理和规划有用,包括监测网络设计和油砂项目的环境影响评估。