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基于膦酸盐的阻垢剂对地下条件下盐水-黑云母相互作用的影响。

The Effects of Phosphonate-Based Scale Inhibitor on Brine-Biotite Interactions under Subsurface Conditions.

机构信息

Department of Energy, Environmental and Chemical Engineering , Washington University , St. Louis , Missouri 63130 , United States.

出版信息

Environ Sci Technol. 2018 May 15;52(10):6042-6049. doi: 10.1021/acs.est.7b05785. Epub 2018 May 3.

Abstract

To explore the effects of scale inhibitors on subsurface water-mineral interactions, here batch experiments on biotite dissolution (0-96 h) were conducted in solutions containing 0-1.0 mM diethylenetriaminepenta(methylene)phosphonate (DTPMP, a model scale inhibitor), at conditions simulating subsurface environments (95 °C and 102 atm CO). The phosphonate groups in DTPMP enhanced biotite dissolution through both aqueous and surface complexations with Fe, with more significant effects at a higher DTPMP concentration. Surface complexation made cracked biotite layers bend, and these layers detached at a later stage (≥44 h). The presence of DTPMP also promoted secondary precipitation of Fe- and Al-bearing minerals both in the solution and on the reacted biotite surfaces. With 1.0 mM DTPMP after 44 h, significant coverage of biotite surfaces by precipitates and less detachment of cracked layers blocked reactive sites and inhibited further biotite dissolution. Furthermore, adsorption of DTPMP made the reacted biotite basal surfaces more hydrophilic, which may affect the transport of reactive fluids. This study provides new information on the impacts of phosphonates in brine-mineral interactions, benefiting safer and more environmentally sustainable design and operation of engineered subsurface processes.

摘要

为了探究阻垢剂对地下水中矿物相互作用的影响,本研究在含有 0-1.0 mM 二乙烯三胺五甲叉膦酸(DTPMP,一种阻垢剂模型)的溶液中进行了黑云母溶解的批实验(0-96 h),实验条件模拟了地下环境(95°C 和 102 大气压 CO)。DTPMP 中的膦酸基团通过与 Fe 的水相和表面络合来促进黑云母的溶解,在更高的 DTPMP 浓度下效果更为显著。表面络合使开裂的黑云母层弯曲,这些层在后期(≥44 h)脱落。DTPMP 的存在还促进了溶液中和反应后的黑云母表面上的 Fe 和 Al 矿物的次生沉淀。在 44 h 后添加 1.0 mM DTPMP 时,沉淀对黑云母表面的大量覆盖以及开裂层的较少脱落阻止了反应位点,并抑制了进一步的黑云母溶解。此外,DTPMP 的吸附使反应后的黑云母基面更亲水,这可能会影响反应性流体的传输。本研究为地下水中矿物相互作用中磷的影响提供了新的信息,有助于设计和操作工程地下过程时实现更安全和更环保的可持续性。

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