Department of International Water Sources, Izmir Institute of Technology, Izmir, Turkey.
Geothermal Energy Research and Application Center, Izmir Institute of Technology, Izmir, Turkey.
J Hazard Mater. 2021 Jul 15;414:125510. doi: 10.1016/j.jhazmat.2021.125510. Epub 2021 Feb 23.
Arsenic has a natural cycle as it travels underground. It can mix with geothermal fluid in different ways under the control of magmatic and tectonic processes. Geogenic arsenic is present in many geothermal fields in the world at concentrations above the limits set for human health. The arsenic content of geothermal fluids is also related to the concept of geothermal play type, which forms geothermal systems, because the natural processes that form the geothermal system also control the arsenic cycle. In this study, an attempt is made to explain the relationship between the geothermal play type concept and geothermal arsenic circulation. For this purpose, geothermal field examples are given from around the world and Turkey. The result shows that arsenic concentrations can reach significant levels along with plate tectonic boundaries in the world. When arsenic concentrations were evaluated, the effect of major faults on the Anatolian Plate was clearly seen. Also, in the Anatolian plate where volcano-sedimentary units are common, geothermal fluids caused more effective alteration along with structural control and increased arsenic concentrations in geothermal systems. This interaction between structural elements, geothermal fluid, and the arsenic cycle shows that the concept of play type in geothermal systems should also be taken into consideration. It was determined that the places with high arsenic values are located within the convective-non-magmatic extensional geothermal play types such as Western Anatolian Extensional System and the North Anatolian Fault. The concept of play type in geothermal systems includes all systematic and external factors that make up these processes. For this reason, it is very important to evaluate the play type classification together with the arsenic cycle.
砷在地下循环时具有天然循环性。在岩浆和构造过程的控制下,它可以以不同的方式与地热流体混合。在世界上许多地热田中,地源性砷的浓度都高于人类健康设定的限制。地热流体中的砷含量也与地热作用类型的概念有关,后者形成了地热系统,因为形成地热系统的自然过程也控制着砷的循环。在这项研究中,尝试解释地热作用类型概念与地热砷循环之间的关系。为此,从世界各地和土耳其举出了地热田的例子。结果表明,砷浓度可以在世界上的板块构造边界附近达到显著水平。在评估砷浓度时,明显看到了安纳托利亚板块上主要断层的影响。此外,在地热系统中,在安纳托利亚板块上火山沉积单元很常见的地方,构造控制下的地热流体引起了更有效的蚀变,并增加了砷浓度。结构要素、地热流体和砷循环之间的这种相互作用表明,地热系统中的作用类型概念也应该考虑在内。确定高砷值的地方位于西安纳托利亚伸展系统和北安纳托利亚断层等对流非岩浆伸展地热作用类型区内。地热系统中的作用类型概念包括构成这些过程的所有系统和外部因素。因此,与砷循环一起评估作用类型分类非常重要。