CrossRef Open Access 2024 3 sitasi

Strip mining in thick overburden context: A review

Redouane Oubah Latifa Ouadif Youssef Zerradi Amine Soufi Anas Driouch

Abstrak

Among surface mining methods, strip mining is a widely used technique for extracting mineral resources. This method is suitable for most near-surface stratiform sedimentary deposits and has historically been linked to surface mining of deposits such as coal, phosphates, and other natural substances. Given the significant economic interest that strip mining represents, it is in the best interest of mining companies to exploit as much of the reserves as possible using this technique, as it offers many advantages compared to open-pit or underground methods, particularly regarding safety and ore recovery rates. Today, the exploited deposits have become deeper, making the strip mining process more complex. Hence, there is a need for certain adaptations and the introduction of new techniques to address these geological conditions that threaten the feasibility of this method. This article explores the challenges that strip mining faces in contexts of thick overburden and subsequently presents the various techniques proposed by researchers worldwide aimed at overcoming these difficulties. The paper is based on an in-depth review of existing literature that deals with case studies of open-cast mines in different contexts. The examination of various approaches and techniques used for optimizing exploitation under thick overburden conditions by strip mining, along with their limitations, is presented.

Penulis (5)

R

Redouane Oubah

L

Latifa Ouadif

Y

Youssef Zerradi

A

Amine Soufi

A

Anas Driouch

Format Sitasi

Oubah, R., Ouadif, L., Zerradi, Y., Soufi, A., Driouch, A. (2024). Strip mining in thick overburden context: A review. https://doi.org/10.1177/25726668241289045

Akses Cepat

Lihat di Sumber doi.org/10.1177/25726668241289045
Informasi Jurnal
Tahun Terbit
2024
Bahasa
en
Total Sitasi
Sumber Database
CrossRef
DOI
10.1177/25726668241289045
Akses
Open Access ✓