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Quantifying the Economic Impact of Hydraulic Fracturing Proppant Selection in Light of Occupational Exposure Risk and Functional Requirements

机译:根据职业接触风险和功能要求量化水力压裂支撑剂选择对经济的影响

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摘要

Selection of an effective and economic proppant material for hydraulic fracturing is an important design choice to optimize the production of oil and natural gas. Proppants are made of silica (quartz sand), alumina, resin-coated silica, ceramics, and others. These materials can be toxic to varying degrees and lead to health problems in the employees handling them primarily due to inhalation exposure. Proppants are selected based on grain size, shape, strength, and cost. Current use is dominated by crystalline silica-the proppant that also has the greatest hazard as an inhalation toxin. Existing research describes the effect of silica on human health, but little research has been done to determine the risk-reduction and social-cost-effectiveness associated with using alternative proppants in light of the health risks. This study quantifies the relative risks or benefits to human health by the use of these proppants through an economic analysis considering the health-related economic impact and its technical attributes. Results show that the use of each ton of silica proppant results in $123 of external costs from fatalities and nonfatal illness arising due to exposure to silica for a crew handing 60,000 tons of proppants. If these health-related externalities were incorporated into the cost, silica proppant could be economically replaced by less harmful, more expensive alternatives for hydraulic fracturing crews handling less than 60,000 tons of proppant each year.
机译:选择用于水力压裂的有效且经济的支撑剂材料是优化石油和天然气产量的重要设计选择。支撑剂由二氧化硅(石英砂),氧化铝,树脂涂层的二氧化硅,陶瓷等制成。这些材料可能有不同程度的毒性,并且主要由于吸入暴露而导致在处理它们的员工中出现健康问题。根据晶粒尺寸,形状,强度和成本选择支撑剂。当前使用的是结晶二氧化硅-支撑剂,该支撑剂作为吸入毒素也具有最大的危害。现有研究描述了二氧化硅对人体健康的影响,但针对健康风险,很少有研究确定使用替代支撑剂带来的风险降低和社会成本效益。本研究通过考虑健康相关的经济影响及其技术属性的经济分析,通过使用这些支撑剂来量化对人体健康的相对风险或益处。结果表明,每吨二氧化硅支撑剂的使用导致因搬运6万吨支撑剂的工作人员暴露于二氧化硅而导致的死亡和非致命疾病而导致的外部成本为123美元。如果将这些与健康相关的外部因素计入成本中,那么对于每年处理少于6万吨支撑剂的水力压裂团队来说,可以用危害较小,价格昂贵的替代品来经济地替代二氧化硅支撑剂。

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