Department of Environment & Energy, Sejong University, Seoul 05006, South Korea; Environmental Program, Guangdong Technion - Israel Institute of Technology, Shantou 515063, China.
Department of Earth System Sciences, Yonsei University, Seoul 03722, South Korea.
Mar Pollut Bull. 2018 Dec;137:331-338. doi: 10.1016/j.marpolbul.2018.10.036. Epub 2018 Oct 20.
Biogeochemical parameters of pore waters, including dissolved organic matter, nutrients, sulfate, alkalinity, and chloride are explored as convenient and sensitive proxies to monitor the CO geological storage sites. Five sites for a CO storage project in the Pohang Basin of the East Sea in South Korea were investigated for the pre-injection biogeochemical conditions of these sites. Higher dissolved organic carbon (~36 mg L), chromophoric and fluorescent dissolved organic matter, nutrients, and alkalinity were observed in a fluvially affected acoustic blanking site with geological faults. A general increasing downcore trend of measured DOM parameters, nutrients, and alkalinity with depth was found at the acoustic blanking site affected by riverine runoff with significant correlations among the parameters (R: ~0.4-0.8), highlighting the impact of geological features and external inputs on the downcore biogeochemical properties. The results presented in this study suggest that DOM could be utilized as a robust and complementary biogeochemical parameter.
孔隙水的生物地球化学参数,包括溶解有机质、养分、硫酸盐、碱度和氯化物,被探索作为监测 CO2地质储存场所的便捷和敏感的替代指标。对韩国东海浦项盆地的一个 CO2储存项目的五个地点进行了调查,以了解这些地点的预注入生物地球化学条件。在一个受河流影响的具有地质断层的声障区,观察到较高的溶解有机碳(36mg/L)、显色和荧光溶解有机质、养分和碱度。在受河流径流影响的声障区,测量的 DOM 参数、养分和碱度随深度呈总体增加的趋势,参数之间存在显著相关性(R:0.4-0.8),突出了地质特征和外部输入对底层生物地球化学性质的影响。本研究的结果表明,DOM 可以用作一种稳健且互补的生物地球化学参数。