Feedback

X
Green Low-Carbon Technology for Metalliferous Minerals

Green Low-Carbon Technology for Metalliferous Minerals

0 Ungluers have Faved this Work
Metalliferous minerals play a central role in the global economy. They will continue to provide the raw materials we need for industrial processes. Significant challenges will likely emerge if the climate-driven green and low-carbon development transition of metalliferous mineral exploitation is not managed responsibly and sustainably. Green low-carbon technology is vital to promote the development of metalliferous mineral resources shifting from extensive and destructive mining to clean and energy-saving mining in future decades. Global mining scientists and engineers have conducted a lot of research in related fields, such as green mining, ecological mining, energy-saving mining, and mining solid waste recycling, and have achieved a great deal of innovative progress and achievements. This Special Issue intends to collect the latest developments in the green low-carbon mining field, written by well-known researchers who have contributed to the innovation of new technologies, process optimization methods, or energy-saving techniques in metalliferous minerals development.

This book is included in DOAB.

Why read this book? Have your say.

You must be logged in to comment.

Rights Information

Are you the author or publisher of this work? If so, you can claim it as yours by registering as an Unglue.it rights holder.

Downloads

This work has been downloaded 28 times via unglue.it ebook links.
  1. 28 - pdf (CC BY) at Unglue.it.

Keywords

  • ABCA
  • acceleration
  • accident statistics
  • artificial microbial community
  • As(III)
  • As(V)
  • backfill
  • backfill slurry
  • backfilling
  • bearing characteristics
  • blasting dust movement
  • blasting dust reduction
  • calcium hydroxide
  • causation analysis
  • cemented paste backfill
  • cemented tailings backfill
  • coal-based solid waste
  • complex network
  • computational fluid dynamics
  • confining pressure
  • constitutive model
  • Copper
  • dam break
  • degree of influence
  • digital mine
  • dust concentration
  • dynamic load
  • engineering performance
  • ESEM
  • filling mining
  • floc networks
  • fractal dimension
  • granular backfill
  • green mining
  • haulage equipment dispatch plan
  • hazard identification
  • hazard management
  • high temperature
  • History of engineering & technology
  • increasing resistance and reducing pressure
  • inhomogeneity of cemented backfill
  • K-Means
  • limestone
  • log-sigmoid
  • metal mine
  • metallurgical slag-based binders
  • mine short-term production planning
  • Mining technology & engineering
  • n/a
  • NSGA
  • numerical model
  • Numerical Simulation
  • open-pit mine
  • orthogonal experiment
  • Other technologies & applied sciences
  • particle sedimentation
  • particle size
  • particle size distribution
  • physical model
  • picture processing
  • pipeline transportation
  • PLAXIS 3D
  • pumping agent
  • reclamation risk
  • Recovery
  • regional distribution
  • Regression analysis
  • safety factor
  • settlement velocity measurement
  • SHPB
  • solid waste utilization
  • solidification/stabilisation
  • spiral pipe
  • stowing gradient
  • strength development
  • strength of cemented backfill
  • Structural parameter
  • sublevel caving
  • sulfide concentrate
  • surface subsidence
  • tailings
  • tailings backfill
  • tailings pond
  • Technology, engineering, agriculture
  • Technology: general issues
  • unsupervised learning
  • Zinc

Links

DOI: 10.3390/books978-3-0365-5798-4

Editions

edition cover

Share

Copy/paste this into your site: