在受监管的工业场所地下水中的化物地质化学
Andrew Fowler1, Nigel Goulding1, Shanna Law1
1Remediation Service Line, EHS Support, LLC, Pittsburgh, Pennsylvania, USA.
概括
地化学过程控制工业场所的化物流动性,类似于自然水. 了解这些因素对于有效的地下水监测和修复策略至关重要.
科学领域:
- 环境地质化学环境地质化学
- 水文地质学 水文地质学
- 工业废物管理 工业废物管理
背景情况:
- 自然水化物地质化学在工业场所的有限应用.
- 对监测和补救策略的负面影响.
- 需要了解工业地下水中的化物命运.
研究的目的:
- 将地化学概念应用于工业化物污染.
- 在各种工业废物条件下分析化物行为.
- 通知采样,监测和补救决策.
主要方法:
- 来自566个地下水样本的地化学数据的汇编.
- 对工业废物流的分析 (废,燃煤,石膏堆).
- 地化学建模的应用,以识别控制过程.
主要成果:
- 在极端的pH值处化物度升高,在中性pH值处度降低.
- 控制pH值依赖的化物复合 (低pH值) 和碳酸盐稳定性 (高pH值) 的移动性.
- 数据的局限性和不确定性影响了定量化物流动性模型.
结论:
- 地化学基本原理决定了化物的命运和工业场所的运输.
- 化物是有反应性的,并确定了衰减因子.
- 地化学模型有助于识别衰减,但由于数据不确定性,具有定量限制.
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