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水力压裂废水中的镭:悬浮固体中的分布及其对硫酸盐共沉淀处理的影响。

Radium in hydraulic fracturing wastewater: distribution in suspended solids and implications to its treatment by sulfate co-precipitation.

机构信息

Department of Earth Sciences, Dartmouth College, HB6105 Fairchild Hall, Hanover, New Hampshire 03755, USA.

出版信息

Environ Sci Process Impacts. 2019 Feb 21;21(2):339-351. doi: 10.1039/c8em00311d.

DOI:10.1039/c8em00311d
PMID:30516236
Abstract

High concentrations of barium (Ba), strontium (Sr) and radium (Ra) are present in both the liquid and suspended solid portions of wastewater produced from hydraulic fracturing. These high concentrations often require special treatment in which the solid and liquid portions are separated and then independently treated prior to disposal. The solids are typically disposed in landfills while the liquids are further treated, recycled for future hydraulic fracturing, or disposed via injection wells. Finding optimal treatment methods of both the solid and the liquid fractions requires a thorough understanding of potential Ra mobility from both the raw suspended solids and mineral precipitates formed during treatment. Using a sequential extraction procedure, we found that, without treatment, more than 50% of Ra-226 in the suspended solids was associated with soluble salts and readily exchangeable fractions. When the liquid portion of the wastewater was treated by mixing with acid mine drainage (AMD), which contained high sulfate concentrations, approximately 80-97% of the total Ra-226 in the mixture solution is found in the insoluble sulfate fraction of the precipitate. The activity of Ra-226 sequestered in the precipitated solid sulfate fractions is positively correlated with the Sr/Ba ratio of the wastewater-AMD solution. We discuss implications of these findings for effective long-term management of elevated radium in both solid and liquid wastes.

摘要

废水中存在高浓度的钡(Ba)、锶(Sr)和镭(Ra),这些元素既存在于液相,也存在于悬浮固体部分。这些高浓度的元素通常需要特殊的处理方法,即将固液部分分离,然后分别进行处理,最后再进行处置。固体部分通常被处置在垃圾填埋场,而液体部分则进一步处理、回收用于未来的水力压裂,或通过注入井进行处置。要找到固液两部分的最佳处理方法,需要深入了解原始悬浮固体和处理过程中形成的矿物沉淀物中镭的潜在迁移性。我们采用连续提取程序,发现未经处理时,悬浮固体中超过 50%的镭-226 与可溶性盐和易交换部分有关。当废水的液相通过与含有高硫酸盐浓度的酸性矿山排水(AMD)混合进行处理时,混合物溶液中约 80-97%的总镭-226 存在于沉淀物中的不溶性硫酸盐部分。沉淀固体硫酸盐部分中被固定的镭-226 的活性与废水-AMD 溶液中的 Sr/Ba 比值呈正相关。我们讨论了这些发现对有效长期管理固体和液体废物中升高的镭的意义。

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