SC-CO2 and emulsion explosives equivalence of rock-breaking effect in granite and mudstone sites

IF 7.2 2区 工程技术 Q1 CHEMISTRY, MULTIDISCIPLINARY
Nan Jiang , Bin Zhu , Yingkang Yao , Xuedong Luo
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Abstract

How to quantitatively account for the effect of SC-CO2 (Supercritical Carbon) rock-breaking in different rock sites is the key concern in the engineering application of non-explosive rock-breaking technology and economic comparison and there is a lack of experimental basis for relevant studies. Through the equivalent calculation of industrial emulsion explosives, a typical representative granite and mudstone site was selected, and a field experimental program was designed to compare the equivalence of the rock-breaking effects of SC-CO2 and industrial explosives. Based on the rock-breaking equivalent field experiment, we compared and analyzed the rock-breaking area characteristics and parameter changes, such as rock-breaking volume, the morphology of the rock-breaking area, bulk rate, and unit consumption, between SC-CO2 and industrial explosives. A correction of the equivalent conversion formula based on the volume of broken rock was realized. The study shows that SC-CO2 breaks the rock in an elliptical volume shape, the explosives are round, the range of SC-CO2 fracturing breaks the rock is smaller than the range of explosives breaks the rock, and the unit consumption of CO2 is 6–10 times of the unit consumption of explosives. The rock bulk rate is higher after SC-CO2 breaking, while the explosive blast stress wave distribution is uniform, and the bulk rate is low. SC-CO2 rock-breaking produced by the surface vibration velocity is much smaller than the industrial explosives rock-breaking, industrial explosives blasting point of the combined vibration velocity value of the SC-CO2 rock-breaking point of the combined vibration velocity value of 9–11 times, SC-CO2 rock-breaking vibration impact on the surrounding environment is relatively small. The peak combined stress at the measurement point generated by SC-CO2 rock breaking is higher than that of industrial explosives rock breaking, which is 1.2–1.6 times the corresponding measurement point value in the explosives rock breaking test. The study provides an experimental basis for research on the equivalence of SC-CO2 rock-breaking and industrial explosives rock-breaking.

SC-CO2 和乳化炸药在花岗岩和泥岩场地的破岩效果等效性
如何定量核算SC-CO2(超临界碳)在不同岩场的破岩效果,是非爆破破岩技术工程应用和经济对比的关键问题,相关研究缺乏实验依据。通过对工业乳化炸药的等效计算,选取了具有代表性的典型花岗岩和泥岩场地,设计了现场实验方案,比较了 SC-CO2 和工业炸药的破岩效果等效性。在破岩等效现场实验的基础上,对比分析了 SC-CO2 和工业炸药的破岩面积特征和参数变化,如破岩量、破岩面积形态、散装率和单耗等。实现了基于破岩体积的等效换算公式的修正。研究表明,SC-CO2 破岩体积呈椭圆形,而炸药呈圆形,SC-CO2 压裂破岩范围小于炸药破岩范围,二氧化碳单耗是炸药单耗的 6-10 倍。SC-CO2 破岩后岩石松散率较高,而炸药爆破应力波分布均匀,松散率较低。SC-CO2破岩产生的地表振动速度远小于工业炸药破岩,工业炸药爆破点的综合振动速度值是SC-CO2破岩点综合振动速度值的9-11倍,SC-CO2破岩振动对周围环境影响相对较小。SC-CO2破岩产生的测点综合应力峰值高于工业炸药破岩,是炸药破岩试验相应测点值的1.2-1.6倍。该研究为研究 SC-CO2 破岩与工业炸药破岩的等效性提供了实验依据。
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来源期刊
Journal of CO2 Utilization
Journal of CO2 Utilization CHEMISTRY, MULTIDISCIPLINARY-ENGINEERING, CHEMICAL
CiteScore
13.90
自引率
10.40%
发文量
406
审稿时长
2.8 months
期刊介绍: The Journal of CO2 Utilization offers a single, multi-disciplinary, scholarly platform for the exchange of novel research in the field of CO2 re-use for scientists and engineers in chemicals, fuels and materials. The emphasis is on the dissemination of leading-edge research from basic science to the development of new processes, technologies and applications. The Journal of CO2 Utilization publishes original peer-reviewed research papers, reviews, and short communications, including experimental and theoretical work, and analytical models and simulations.
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