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辰砂的形成——对瑞典拟建储存库中有利条件的评估

Formation of cinnabar--estimation of favourable conditions in a proposed Swedish repository.

作者信息

Svensson Margareta, Düker Anders, Allard Bert

机构信息

Man-Technology-Environment Research Centre, Orebro University, SE-701 82 Orebro, Sweden.

出版信息

J Hazard Mater. 2006 Aug 25;136(3):830-6. doi: 10.1016/j.jhazmat.2006.01.018. Epub 2006 Feb 28.

DOI:10.1016/j.jhazmat.2006.01.018
PMID:16504396
Abstract

A deep repository for permanent storage of mercury will be designed and built in Sweden. The preferred chemical state for mercury in such a repository would be the sulphide HgS (cinnabar), which is a highly insoluble and the dominating natural mercury mineral. The possible formation of HgS from HgO or Hg(0) by reaction with a sulphur source (S, FeS or FeS(2)) is discussed from thermodynamic considerations, and pe-pH-diagrams are constructed by using the computer code MEDUSA to illustrate under which conditions HgS would dominate. Calculations of the speciation (PHREEQE) under varying conditions (S/Hg-ratios, presence of chloride) are given. Long-term laboratory experiments are performed, where the formation of HgS from the basic components is demonstrated (after mixing under various conditions and storage at room temperature for up to 3 years). The feasibility of HgS-formation with time in a geologic repository under conditions representative of deep granitic bedrock (calcium-bicarbonate buffered to pH 7-8.5) is discussed, as well as effects of alkaline conditions (concrete environment, pH 10.5-12.5). Formation of soluble polysulphides is not expected as long as the S/Hg mole ratio is within 1-1.3 and pH is below 10.5-11. Concrete should be used with caution. Suitable ballast materials could be introduced that would reduce porewater-pH that otherwise would be above 12.

摘要

瑞典将设计并建造一个用于永久储存汞的深层储存库。在这样一个储存库中,汞的首选化学形态将是硫化物HgS(辰砂),它是一种高度不溶且占主导地位的天然汞矿物。从热力学角度讨论了通过与硫源(S、FeS或FeS₂)反应由HgO或Hg(0)形成HgS的可能性,并使用计算机代码MEDUSA构建pe-pH图来说明HgS在哪些条件下占主导地位。给出了在不同条件(S/Hg比、氯化物的存在)下的物种形成计算(PHREEQE)。进行了长期实验室实验,证明了从基本成分中形成HgS(在各种条件下混合并在室温下储存长达3年之后)。讨论了在代表深部花岗岩基岩的条件(碳酸氢钙缓冲至pH 7 - 8.5)下,HgS在地质储存库中随时间形成的可行性,以及碱性条件(混凝土环境,pH 10.5 - 12.5)的影响。只要S/Hg摩尔比在1 - 1.3范围内且pH低于10.5 - 11,就预计不会形成可溶性多硫化物。应谨慎使用混凝土。可以引入合适的压载材料,以降低孔隙水的pH值,否则孔隙水的pH值会高于12。

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