Resource Assessment of Limestone Based on Engineering and Petrographic Analysis

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
View: 25

This Paper With 17 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_CEJ-8-3_002

تاریخ نمایه سازی: 1 اردیبهشت 1403

Abstract:

The China-Pakistan Economic Corridor (CPEC) is a massive in-progress construction project in Pakistan that connects more than ۷۰ countries via multiple trade channels such as highways, railways, roads, and fiber optics. This project also involves the development of local infrastructure and industrial zones in Pakistan, which demands the discovery of new resources of aggregate to facilitate the construction. Therefore, physical characterization research was carried out on the Kirman hill region (Jurassic limestone), District Kurram, Pakistan, to investigate their suitability for utilization as construction materials using site investigation and laboratory studies. The results outline that all typical engineering parameters are within acceptable limits set by international standards like BS, ASTM, and AASHTO. Bituminous tests revealed that Jurassic limestone is appropriate as an aggregate for asphalt wearing coarse. Likewise, the petrographic study performed shows proper matching with engineering tests. The petrographic analysis of Jurassic limestone showed a minute amount of deleterious content; as a result, it is resistant to Alkali silica reaction (ASR) and Alkali carbonate reaction (ACR) expansions. Based on engineering and petrographic analysis, the Jurassic limestone, Kirman hill region, District Kurram, Pakistan is recommended as a potential aggregate for (i.e., base course, subbase course, cement concrete, and asphalt) and other mega and minor civil construction projects. Doi: ۱۰.۲۸۹۹۱/CEJ-۲۰۲۲-۰۸-۰۳-۰۲ Full Text: PDF

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • Rehman, G., Zhang, G., Rahman, M. U., Rahman, N. U., ...
  • Gkouma, M., Karkanas, P., & Iacovou, M. (2021). A geoarchaeological ...
  • Naeem, M., Zafar, T., Karim, M. A. M., Miraj, M. ...
  • Gorospe, K., Booya, E., Ghaednia, H., & Das, S. (2019). ...
  • Koukis, G., Sabatakakis, N., & Spyropoulos, A. (2007). Resistance variation ...
  • Tanyu, B. F., Yavuz, A. B., & Ullah, S. (2017). ...
  • Přikryl, R. (2021). Geomaterials as construction aggregates: a state-of-the-art. Bulletin ...
  • Naeem, M., Khalid, P., & Anwar, A. W. (2015). Construction ...
  • Ndukauba, E., & Akaha, C. T. (2012). Engineering-Geological Evaluation of ...
  • Huang, Y., Bird, R., & Heidrich, O. (2009). Development of ...
  • Gondal, M. M. I., Ahsan, N., & Javid, A. Z. ...
  • Naeem, M., Khalid, P., Sanaullah, M., & Zia ud Din. ...
  • Khan, S. (2000). Study of the Geology of Kirana Group, ...
  • Ullah, R., Ullah, S., Rehman, N., Ali, F., Asim, M., ...
  • Ersoy, H., Karahan, M., Kolaylı, H., & Sünnetci, M. O. ...
  • Gu, X., Li, X., Zhang, W., Gao, Y., Kong, Y., ...
  • Zarif, I. H., & Tuǧrul, A. (2003). Aggregate properties of ...
  • Nweke, O. M., & Okogbue, C. O. (2021). Geotechnical evaluation ...
  • Ramsay, D. M., Dhir, R. K., & Spence, I. M. ...
  • Lees, G., & Kennedy, C. K. (1975). Quality, Shape and ...
  • Abbas, S. M. (2012). Geology and Structure of the Westernmost ...
  • Gansser-Biaggi, A. (1964). Geology of the Himalayas. London, Interscience Publisher, ...
  • Badshah, M. S., Gnos, E., Jan, M. Q., & Afridi, ...
  • Meissner, C. R., Hussain, M., Rashid, M. A., & Sethi, ...
  • Beck, R. A., Burbank, D. W., Sercombe, W. J., Khan, ...
  • Davies, L. M. (1930). The fossil fauna of the Samana ...
  • Shah, S. (1977). Stratigraphy of Pakistan, volume 12 of the ...
  • Fatmi, A. N. (1974). Lithostratigraphic units of the kohat-potwar province, ...
  • ASTM D75-87. (1992). Standard practice for sampling aggregates. ASTM International, ...
  • AASHTO, (2014). Standard specifications for transportation materials and methods of ...
  • ASTM C125-03. (2003). Standard terminology relating to concrete and concrete ...
  • Johnson, R.B., & DeGraff, J. V. (1988). Principles of engineering ...
  • Dunham, R. J., (1962). Classification of Carbonate Rocks According to ...
  • Kandhal, P. S., Mallick, R. B., & Huner, M. (2000). ...
  • Tsikouras, B., Pomonis, P., Rigopoulos, I., & Hatzipanagiotou, K. (2005). ...
  • Mpalatsas, I., Rigopoulos, I., Tsikouras, Β., & Hatzipanagiotou, K. (2010). ...
  • Jethro, M. A., Shehu, S. A., & Olaleye, B. (2014). ...
  • AASHTO T 85, (2014). Standard Method of Testing for Specific ...
  • BS-812-105.1 (1989). Testing aggregates. Methods for determination of particle shape ...
  • BS 812-105.2 (1990). Testing aggregates. Methods for determination of particle ...
  • ASTM C131-06. (2006). Standard test method for resistance to degradation ...
  • AASHTO-T-104-99. (2007). Standard method of test for soundness of aggregate ...
  • BS-812-112. (1990). Testing aggregates method for determination of aggregate impact ...
  • BS-812-110. (1990). Testing aggregates methods for determination of aggregate crushing ...
  • ASTM C29 (2009). Standard test method for bulk density (“Unit ...
  • AASHTO-T-182-84. (2002). Standard method for coating and stripping of bitumen-aggregate ...
  • Irfan, T. Y. (1996). Mineralogy, fabric properties and classification of ...
  • Ahsan, N., & Gondal, M. M. I. (2016). Aggregate suitability ...
  • Flügel, E. (2004). Depositional Models, Facies Zones and Standard Microfacies. ...
  • Peng, J., Wu, X., Ni, S., Wang, J., Song, Y., ...
  • Chen, J. S., Shiah, M. S., & Chen, H. J. ...
  • Ahsan, N., & Gondal, M. M. I. (2016). Aggregate suitability ...
  • Blyth, F.G.H. and De Freitas, M.H. (1974). A Geology of ...
  • Lees, G., & Kennedy, C. K. (1975). Quality, Shape and ...
  • Hassan, E. U., Hannan, A., Rashid, M. U., Ahmed, W., ...
  • Croney, D., & Croney, P. (1991). The design and performance ...
  • Zhang, D., Cheng, Z., Geng, D., Xie, S., & Wang, ...
  • Carlos, A., Masumi, I., Hiroaki, M., Maki, M., & Takahisa, ...
  • Pouranian, M. R., & Haddock, J. E. (2018). Determination of ...
  • Williams, S. G., & Cunningham, J. B. (2012). Evaluation of ...
  • Fournari, R., & Ioannou, I. (2019). Correlations between the properties ...
  • Kazmi, D., Serati, M., Williams, D. J., Qasim, S., & ...
  • Bayane, B. M., & Yanjun, Q. (2017). Evaluation of physical ...
  • Neville, A. M. (1995). Properties of concrete (4th Ed.). Longman ...
  • Smith, M.R., Collis, L. (2001). Aggregates: sand, gravel and crushed ...
  • Mitchell, C. (2007). GoodQuarry Quarry Fines and Waste. British Geological ...
  • Demez, A., & Karakoç, M. B. (2020). Mechanical properties of ...
  • Fookes, P. G., Gourley, C. S., & Ohikere, C. (1988). ...
  • Verma, A., Babu, V. S., & Arunachalam, S. (2022). Characterization ...
  • West, G. (1996). Alkali-aggregate reaction in concrete roads and bridges. ...
  • Masad, E., Panoskaltsis, V. P., & Wang, L. (2006). Asphalt ...
  • Read, J., & Whiteoak, D. (2003). The shell bitumen handbook ...
  • Abo-Qudais, S., & Al-Shweily, H. (2007). Effect of aggregate properties ...
  • Hamedi, G. H., Sahraei, A., & Esmaeeli, M. R. (2021). ...
  • Li, Q., Xu, F., Zheng, H., Shi, J., & Zhang, ...
  • Hussain, J., Zhang, J., Fitria, F., Shoaib, M., Hussain, H., ...
  • نمایش کامل مراجع