The water footprint of hydraulic fracturing for shale gas extraction in China

被引:11
|
作者
Gao, Jinliang [1 ]
Zou, Caineng [1 ]
Zhang, Xiaowei [1 ]
Guo, Wei [1 ]
Yu, Rongze [1 ]
Ni, Yunyan [2 ]
Liu, Dan [1 ]
Kang, Lixia [1 ]
Liu, Yuyang [1 ]
Kondash, Andrew [3 ]
Vengosh, Avner [3 ]
机构
[1] Petrochina Res Inst Petr Explorat & Dev, Beijing 100083, Peoples R China
[2] China Univ Petr, State Key Lab Petr Resources & Prospecting, Beijing 102249, Peoples R China
[3] Duke Univ, Nicholas Sch Environm, Durham, NC 27708 USA
关键词
Hydraulic fracturing; Shale gas; China; Water use; Flowback and produced water; Water intensity; MARCELLUS SHALE; SICHUAN BASIN; UNCONVENTIONAL OIL; ISOTOPIC EVOLUTION; APPALACHIAN BASIN; FLOWBACK WATER; UNITED-STATES; PENNSYLVANIA; WASTEWATERS; CHALLENGES;
D O I
10.1016/j.scitotenv.2023.168135
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The rapid expansion of shale gas extraction worldwide has raised significant concerns about its impact on water resources. China is expected to undergo a shale revolution following the U.S. Most of the information on water footprint of shale gas exploration and hydraulic fracturing has been focused on the U.S. Here, we addressed this knowledge gap by establishing a comprehensive database of shale gas extraction in China, utilizing operational data from over 90 % of shale gas wells across the country. We present systematic analysis of water usage and flowback and produced water (FP water) production from all the major shale gas fields in China. Between 2012 and 2022, a total of 2740 shale gas wells were hydraulically fractured in China, primarily located in Sichuan and Chongqing Province. About 113 million m(3) water was used for hydraulic fracturing, resulting in a cumulative shale gas production of 116 billion m(3). As of 2022, the annual water use for hydraulic fracturing exceeded 20 million m(3), and the annual FP water production reached 8.56 million m(3). Notably, 80 % similar to 90 % of the FP water has been reused for hydraulic fracturing since 2020, accounting for 29 % to 35 % of the annual water usage for hydraulic fracturing. Water use per well in China varies primarily between 21,730 m(3) to 61,070 m(3) per well, and water use per horizontal length ranges primarily between 20 m(3)/m and 35 m(3)/m. The average ultimate FP water production per well in China was estimated to be 22,460 m(3). The water use intensity (WUI) for shale gas extraction in China mainly ranges from 7 to 25.4 L/GJ, which is significantly higher than that of the U.S. This disparity is largely due to the lower Estimated Ultimate Recovery (EUR) of shale gas wells in China. Despite the considerable water consumption during the hydraulic fracturing process, shale gas has a relatively low water footprint compared to other conventional energy resources in China. The Produced water intensity (PWI) for shale gas extraction in China ranges from 3.9 to 7.3 L/GJ, which is consistent with the previously reported PWI values for shale gas extraction in the U.S. This study predicts water usage and FP production spanning the period 2023 to 2050 under two scenarios to assess the potential impact of shale gas extraction on water resources in the Longmaxi shale region in Sichuan Basin. The first scenario assumed a constant drilling rate, while the second assumed a yearly 10 % increase in drilling rate. With an assumed FP water reuse rate of 85 % for hydraulic fracturing, the estimated annual freshwater consumption for the two scenarios is 10.4 million m(3) and 163 million m(3), respectively. This accounts for only 0.28 parts per thousand and 4.4 parts per thousand of the total annual surface water resources in Sichuan and Chongqing Province. Our findings suggest that freshwater usage for hydraulic fracturing in humid Southern China is small relative to available surface water resources. However, prospective large-scale shale gas extraction in other arid and semi-arid regions may enhance the regional water scarcity. It is necessary to develop new hydraulic fracturing technologies that can use saline groundwater or other types of marginal water, and explore alternative management and treatment strategies for FP water.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Addresing environmental challenges to shale gas and hydraulic fracturing
    Vadillo Fernandez, Lucas
    Rodriguez Gomez, Virginia
    Fernandez Naranjo, Francisco Javier
    BOLETIN GEOLOGICO Y MINERO, 2016, 127 (04): : 775 - 789
  • [22] Numerical simulation of hydraulic fracturing in shale gas reservoir
    Liu, Jianjun (liujj0906@163.com), 1600, E-Journal of Geotechnical Engineering (19):
  • [23] A South African perspective on shale gas hydraulic fracturing
    Vermeulen, P. D.
    INTERNATIONAL MINE WATER ASSOCIATION SYMPOSIUM (2012: BUNBURY, WESTERN AUSTRALIA) PROCEEDINGS, 2012, : 149 - 156
  • [24] Water footprint of shale gas development in China in the carbon neutral era
    Zhong, Cheng
    Hou, Deyi
    Liu, Baicang
    Zhu, Songbai
    Wei, Tong
    Gehman, Joel
    Alessi, Daniel S.
    Qian, Pei-Yuan
    JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2023, 331
  • [25] Water scarcity footprint assessment for China's shale gas development
    Liu, Rui
    Wang, Jianliang
    Lin, Lu
    EXTRACTIVE INDUSTRIES AND SOCIETY-AN INTERNATIONAL JOURNAL, 2021, 8 (02):
  • [26] The effects of shale gas exploration and hydraulic fracturing on the quality of water resources in the United States
    Vengosh, Avner
    Warner, Nathaniel
    Jackson, Rob
    Darrah, Tom
    PROCEEDINGS OF THE FOURTEENTH INTERNATIONAL SYMPOSIUM ON WATER-ROCK INTERACTION, WRI 14, 2013, 7 : 863 - 866
  • [27] Microbial communities in flowback water impoundments from hydraulic fracturing for recovery of shale gas
    Mohan, Arvind Murali
    Hartsock, Angela
    Hammack, Richard W.
    Vidic, Radisav D.
    Gregory, Kelvin B.
    FEMS MICROBIOLOGY ECOLOGY, 2013, 86 (03) : 567 - 580
  • [28] Numerical Modeling of Gas and Water Flow in Shale Gas Formations with a Focus on the Fate of Hydraulic Fracturing Fluid
    Edwards, Ryan W. J.
    Doster, Florian
    Celia, Michael A.
    Bandilla, Karl W.
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2017, 51 (23) : 13779 - 13787
  • [29] Utilization law of shale gas in hydraulic fracturing with the Changning-Weyuan block in China as an example
    Ma, Yulin
    Li, Jing
    PHYSICS OF FLUIDS, 2024, 36 (10)
  • [30] Experimental study on physical simulation of shale gas hydraulic fracturing
    Yin Jun
    Zhang Peifei
    Liu Zhihui
    Wang Rongjing
    Xie Jingyu
    Jiang Guosheng
    2018 INTERNATIONAL CONFERENCE OF GREEN BUILDINGS AND ENVIRONMENTAL MANAGEMENT (GBEM 2018), 2018, 186