Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China.
Department of Earth Sciences, Indiana University-Purdue University Indianapolis (IUPUI), Indianapolis, IN, 46202, USA.
Sci Data. 2020 Oct 12;7(1):336. doi: 10.1038/s41597-020-00685-x.
Tap water isotopic compositions could potentially record information on local climate and water management practices. A new water isotope tracer O-excess became available in recent years providing additional information of the various hydrological processes. Detailed data records of tap water O-excess have not been reported. In this report, monthly tap water samples (n = 652) were collected from December 2014 to November 2015 from 92 collection sites across China. The isotopic composition (δH, δO, and δO) of tap water was analyzed by a Triple Water Vapor Isotope Analyzer (T-WVIA) based on Off-Axis Integrated Cavity Output Spectroscopy (OA-ICOS) technique and two second-order isotopic variables (d-excess and O-excess) were calculated. The geographic location information of the 92 collection sites including latitude, longitude, and elevation were also provided in this dataset. This report presents national-scale tap water isotope dataset at monthly time scale. Researchers and water resource managers who focus on the tap water issues could use them to probe the water source and water management strategies at large spatial scales.
自来水的同位素组成可能记录了当地气候和水管理实践的信息。近年来,一种新的水同位素示踪剂 O-过剩可供使用,它提供了各种水文过程的额外信息。尚未报道详细的自来水 O-过剩数据记录。在本报告中,2014 年 12 月至 2015 年 11 月期间,从中国各地的 92 个采集点收集了每月的自来水样本(n=652)。自来水的同位素组成(δH、δO 和 δO)由基于离轴集成腔输出光谱 (OA-ICOS) 技术的三重水汽同位素分析仪 (T-WVIA) 分析,并计算了两个二阶同位素变量(d-过剩和 O-过剩)。本数据集还提供了 92 个采集点的地理位置信息,包括纬度、经度和海拔。本报告介绍了以月为时间尺度的全国规模的自来水同位素数据集。关注自来水问题的研究人员和水资源管理者可以使用这些数据集来探究大空间尺度上的水源和水管理策略。