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Understanding exposure from natural gas drilling puts current air standards to the test

机译:了解天然气钻井的暴露程度可以测试当前的空气标准

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Case study descriptions of acute onset of respiratory, neurologic, dermal, vascular, abdominal, and gastrointestinal sequelae near natural gas facilities contrast with a subset of emissions research, which suggests that there is limited risk posed by unconventional natural gas development (UNGD). An inspection of the patho-physiological effects of acute toxic actions reveals that current environmental monitoring protocols are incompatible with the goal of protecting the health of those living and working near UNGD activities. The intensity, frequency, and duration of exposures to toxic materials in air and water determine the health risks to individuals within a population. Currently, human health risks near UNGD sites are derived from average population risks without adequate attention to the processes of toxicity to the body. The objective of this paper is to illustrate that current methods of collecting emissions data, as well as the analyses of these data, are not sufficient for accurately assessing risks to individuals or protecting the health, of those near UNGD sites. Focusing on air pollution impacts, we examined data from public sources and from the published literature. We compared the methods commonly used to evaluate health safety near UNGD sites with the information that would be reasonably needed to determine plausible outcomes of actual exposures. Such outcomes must be based on the pathophysiological effects of the agents present and the susceptibility of residents near these sites. Our study has several findings. First, current protocols used for assessing compliance with ambient air standards do not adequately determine the intensity, frequency or durations of the actual human exposures to the mixtures of toxic materials released regularly at UNGD sites. Second, the typically used periodic 24-h average measures can underestimate actual exposures by an order of magnitude. Third, reference standards are set in a form that inaccurately determines health risk because they do not fully consider the potential synergistic combinations of toxic air emissions. Finally, air dispersion modeling shows that local weather conditions are strong determinates of individual exposures. Appropriate estimation of safety requires nested protocols that measure real time exposures. New protocols are needed to provide 1) continuous measures of a surrogate compound to show periods of extreme exposure; 2) a continuous screening model based on local weather conditions to warn of periodic high exposures; and 3) comprehensive detection of chemical mixtures using canisters or other devices that capture the major components of the mixtures.
机译:案例研究描述了天然气设施附近呼吸,神经,皮肤,血管,腹部和胃肠道后遗症的急性发作,与排放研究的一部分形成对比,这表明非常规天然气开发(UNGD)带来的风险有限。对急性毒性作用的病理生理影响的检查显示,当前的环境监测方案与保护在UNGD活动附近生活和工作的人的健康这一目标不符。空气和水中有毒物质暴露的强度,频率和持续时间决定了人群中个体的健康风险。目前,UNGD场所附近的人类健康风险来自普通人群的风险,而没有充分注意对人体的毒性过程。本文的目的是说明当前收集排放数据的方法以及对这些数据的分析不足以准确评估UNGD场所附近人员的个人风险或保护健康。着眼于空气污染的影响,我们研究了来自公共资源和公开文献的数据。我们将通常用于评估UNGD场所附近健康安全性的方法与确定实际暴露的合理结果所需的信息进行了比较。此类结果必须基于存在的药物的病理生理作用以及这些部位附近居民的易感性。我们的研究有几个发现。首先,目前用于评估是否符合环境空气标准的协议不能充分确定实际人类暴露于UNGD场所定期释放的有毒物质混合物的强度,频率或持续时间。其次,通常使用的24小时定期平均量度可能会低估实际暴露量一个数量级。第三,参考标准的设置不能准确地确定健康风险,因为它们没有充分考虑有毒气体排放的潜在协同作用。最后,空气扩散模型表明,当地的天气状况是个体暴露的重要决定因素。适当的安全估计需要使用嵌套协议来测量实时暴露。需要新的协议来提供1)替代化合物的连续测量以显示极端暴露的时期; 2)基于当地天气状况的连续筛选模型,以警告周期性的高暴露; 3)使用罐或其他捕获混合物主要成分的设备对化学混合物进行全面检测。

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