Helmholtz Zentrum München, Institute of Groundwater Ecology, Ingolstädter Landstr. 1, D-85764 Neuherberg, Germany.
Environ Sci Technol. 2016 Apr 5;50(7):3290-314. doi: 10.1021/acs.est.5b02818. Epub 2016 Mar 9.
Much interest is directed at the chemical structure of hydraulic fracturing (HF) additives in unconventional gas exploitation. To bridge the gap between existing alphabetical disclosures by function/CAS number and emerging scientific contributions on fate and toxicity, we review the structural properties which motivate HF applications, and which determine environmental fate and toxicity. Our quantitative overview relied on voluntary U.S. disclosures evaluated from the FracFocus registry by different sources and on a House of Representatives ("Waxman") list. Out of over 1000 reported substances, classification by chemistry yielded succinct subsets able to illustrate the rationale of their use, and physicochemical properties relevant for environmental fate, toxicity and chemical analysis. While many substances were nontoxic, frequent disclosures also included notorious groundwater contaminants like petroleum hydrocarbons (solvents), precursors of endocrine disruptors like nonylphenols (nonemulsifiers), toxic propargyl alcohol (corrosion inhibitor), tetramethylammonium (clay stabilizer), biocides or strong oxidants. Application of highly oxidizing chemicals, together with occasional disclosures of putative delayed acids and complexing agents (i.e., compounds designed to react in the subsurface) suggests that relevant transformation products may be formed. To adequately investigate such reactions, available information is not sufficient, but instead a full disclosure of HF additives is necessary.
人们对非常规天然气开采中水力压裂(HF)添加剂的化学结构非常感兴趣。为了弥合现有按功能/CAS 编号的字母披露与关于归宿和毒性的新兴科学文献之间的差距,我们综述了推动 HF 应用的结构特性,以及决定环境归宿和毒性的结构特性。我们的定量综述依赖于自愿性美国披露,这些披露由不同来源从 FracFocus 注册表中评估,并参考了众议院(“Waxman”)名单。在报告的 1000 多种物质中,按化学分类产生了简洁的子集,能够说明其使用的基本原理,以及与环境归宿、毒性和化学分析相关的物理化学特性。虽然许多物质是无毒的,但频繁的披露还包括一些著名的地下水污染物,如石油碳氢化合物(溶剂)、内分泌干扰物的前体,如壬基酚(非乳化剂)、有毒炔丙醇(腐蚀抑制剂)、四甲基铵(粘土稳定剂)、杀生剂或强氧化剂。高度氧化化学品的应用,以及偶尔披露的假定延迟酸和络合剂(即设计在地下反应的化合物)表明可能形成相关的转化产物。为了充分研究这些反应,现有的信息是不够的,而是需要对 HF 添加剂进行全面披露。