Abstract:
A method of separating a mined material that comprises assessing the grade of successive segments of the mined material, and separating each segment on the basis of grade into a category that is at or above a grade threshold or a category that is below the grade threshold. An apparatus is also disclosed.
Abstract:
A method of sorting material that comprises determining whether a volume of material to be mined or a volume of stockpiled material is upgradable to produce a supply of material of greater economic value. If the determination is positive, the material is dry sorted to increase the grade or economic value. The determination is done by taking a plurality of samples from the initial volume of material and analyzing the material to determine if the material is able to be upgraded. The determination can be by X-Ray analysis. The upgrading can involve a size reduction step.
Abstract:
A method of sorting material that comprises determining whether a volume of material to be mined or a volume of stockpiled material is upgradable to produce a supply of material of greater economic value. If the determination is positive, the material is dry sorted to increase the grade or economic value. The determination is done by taking a plurality of samples from the initial volume of material and analysing the material to determine if the material is able to be upgraded. The determination can be by X-Ray analysis. The upgrading can involve a size reduction step
Abstract:
A method for sorting mined material in a sorting apparatus is disclosed. The method includes supplying particles of a mined material onto a conveyor belt (5), transporting the particles on the conveyor belt past a detection assembly (9, 13) and assessing the particles, and separating the particles based on the assessment into an accepts stream and a rejects stream at a discharge end of the belt using a separator assembly (29). The method also includes controlling the arrangement of particles so that there is an ordered arrangement of particles on the belt to optimise the throughput of particles through the sorting apparatus.
Abstract:
The present disclosure provides an apparatus for sorting a particulate material. The apparatus comprises a receiving portion for receiving the particulate material having a particle size within a predetermined range of sizes. The apparatus also comprises a distributor for receiving the particulate material at an upper end thereof and having a sloped distribution surface along which, in use, the particulate material passes substantially by gravity. A surface area of the sloped distribution surface increases towards a lower end of the distributor to facilitate a monolayer feed stream of the particles exiting and falling from a lower end of the distributor distributed as a curtain-like stream of particles. The apparatus further comprises a magnetic element for generating a magnetic force that is directed such that the particles of the falling feed stream that exit the lower end of the distributor have pathways that depend on magnetic properties of the particles. The apparatus also comprises sorting portions for sorting the particles based on the pathways of the particles.
Abstract:
A method of mining ore in a mine pit (3) and a mine are disclosed. The method comprises drilling and blasting ore in a bench (19) of ore within the mine pit and collecting ore blasted from the bench from a floor (5) of the mine pit using at least one mobile excavation machine (11). The method also comprises delivering ore that has been collected by the mobile excavation machine to at least one mobile-in-pit crusher (41), and transporting crushed ore to outside the pit on at least one ladder conveyor (23) that extends up the wall of the pit.
Abstract:
A method of separating a mined material that comprises assessing the grade of successive segments of the mined material, and separating each segment on the basis of grade into a category that is at or above a grade threshold or a category that is below the grade threshold. An apparatus is also disclosed.