Sustainable development principles for the disposal of mining and mineral processing wastes

This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of susta...

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Published inResources policy Vol. 36; no. 2; pp. 114 - 122
Main Authors Franks, Daniel M., Boger, David V., Côte, Claire M., Mulligan, David R.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.06.2011
Elsevier
SeriesResources Policy
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Abstract This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of sustainable development principles for the disposal of mining and mineral processing wastes, and discusses the implications for current and future practise. In practise, the principles can guide waste disposal decisions through the consideration of what risk and magnitude, in any given local context, a particular management solution poses to their application. The sustainability challenge in the management of tailings and waste rock is to dispose of material, such that it is inert or, if not, stable and contained, to minimise water and energy inputs and the surface footprint of wastes and to move toward finding alternate uses. Future trends in mining and processing may compound the challenges of waste management, as lower ore grades increase the ratio of waste produced for a given unit of resource, and emphasise the urgency and need for the industry to adopt new approaches. New technologies and innovations, such as thickened tailings, dry stacking and paste backfill, have greatly increased the waste disposal methods available to meet the future challenges to sustainable development. ► Examines mining and mineral processing wastes with respect to sustainable development. ► Finds that there is still a need for collective agreement on standards of practise. ► Develops a set of principles and discusses implications for practise. ► Finds that future trends in mining and processing may compound the challenges. ► Emphasises the role of paste and thickened tailings to meet the future challenges.
AbstractList This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of sustainable development principles for the disposal of mining and mineral processing wastes, and discusses the implications for current and future practise. In practise, the principles can guide waste disposal decisions through the consideration of what risk and magnitude, in any given local context, a particular management solution poses to their application. The sustainability challenge in the management of tailings and waste rock is to dispose of material, such that it is inert or, if not, stable and contained, to minimise water and energy inputs and the surface footprint of wastes and to move toward finding alternate uses. Future trends in mining and processing may compound the challenges of waste management, as lower ore grades increase the ratio of waste produced for a given unit of resource, and emphasise the urgency and need for the industry to adopt new approaches. New technologies and innovations, such as thickened tailings, dry stacking and paste backfill, have greatly increased the waste disposal methods available to meet the future challenges to sustainable development. Examines mining and mineral processing wastes with respect to sustainable development. Finds that there is still a need for collective agreement on standards of practise. Develops a set of principles and discusses implications for practise. Finds that future trends in mining and processing may compound the challenges. Emphasises the role of paste and thickened tailings to meet the future challenges. [Copyright Elsevier B.V.]
This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of sustainable development principles for the disposal of mining and mineral processing wastes, and discusses the implications for current and future practise. In practise, the principles can guide waste disposal decisions through the consideration of what risk and magnitude, in any given local context, a particular management solution poses to their application. The sustainability challenge in the management of tailings and waste rock is to dispose of material, such that it is inert or, if not, stable and contained, to minimise water and energy inputs and the surface footprint of wastes and to move toward finding alternate uses. Future trends in mining and processing may compound the challenges of waste management, as lower ore grades increase the ratio of waste produced for a given unit of resource, and emphasise the urgency and need for the industry to adopt new approaches. New technologies and innovations, such as thickened tailings, dry stacking and paste backfill, have greatly increased the waste disposal methods available to meet the future challenges to sustainable development.
This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of sustainable development principles for the disposal of mining and mineral processing wastes, and discusses the implications for current and future practise. In practise, the principles can guide waste disposal decisions through the consideration of what risk and magnitude, in any given local context, a particular management solution poses to their application. The sustainability challenge in the management of tailings and waste rock is to dispose of material, such that it is inert or, if not, stable and contained, to minimise water and energy inputs and the surface footprint of wastes and to move toward finding alternate uses. Future trends in mining and processing may compound the challenges of waste management, as lower ore grades increase the ratio of waste produced for a given unit of resource, and emphasise the urgency and need for the industry to adopt new approaches. New technologies and innovations, such as thickened tailings, dry stacking and paste backfill, have greatly increased the waste disposal methods available to meet the future challenges to sustainable development. Examines mining and mineral processing wastes with respect to sustainable development. Finds that there is still a need for collective agreement on standards of practise. Develops a set of principles and discusses implications for practise. Finds that future trends in mining and processing may compound the challenges. Emphasises the role of paste and thickened tailings to meet the future challenges.
This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of sustainable development principles for the disposal of mining and mineral processing wastes, and discusses the implications for current and future practise. In practise, the principles can guide waste disposal decisions through the consideration of what risk and magnitude, in any given local context, a particular management solution poses to their application. The sustainability challenge in the management of tailings and waste rock is to dispose of material, such that it is inert or, if not, stable and contained, to minimise water and energy inputs and the surface footprint of wastes and to move toward finding alternate uses. Future trends in mining and processing may compound the challenges of waste management, as lower ore grades increase the ratio of waste produced for a given unit of resource, and emphasise the urgency and need for the industry to adopt new approaches. New technologies and innovations, such as thickened tailings, dry stacking and paste backfill, have greatly increased the waste disposal methods available to meet the future challenges to sustainable development. All rights reserved, Elsevier
This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still needed to forge collective agreement on norms and standards of practise. To encourage further debate, the paper develops a set of sustainable development principles for the disposal of mining and mineral processing wastes, and discusses the implications for current and future practise. In practise, the principles can guide waste disposal decisions through the consideration of what risk and magnitude, in any given local context, a particular management solution poses to their application. The sustainability challenge in the management of tailings and waste rock is to dispose of material, such that it is inert or, if not, stable and contained, to minimise water and energy inputs and the surface footprint of wastes and to move toward finding alternate uses. Future trends in mining and processing may compound the challenges of waste management, as lower ore grades increase the ratio of waste produced for a given unit of resource, and emphasise the urgency and need for the industry to adopt new approaches. New technologies and innovations, such as thickened tailings, dry stacking and paste backfill, have greatly increased the waste disposal methods available to meet the future challenges to sustainable development. ► Examines mining and mineral processing wastes with respect to sustainable development. ► Finds that there is still a need for collective agreement on standards of practise. ► Develops a set of principles and discusses implications for practise. ► Finds that future trends in mining and processing may compound the challenges. ► Emphasises the role of paste and thickened tailings to meet the future challenges.
Author Franks, Daniel M.
Boger, David V.
Mulligan, David R.
Côte, Claire M.
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  fullname: Franks, Daniel M.
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– sequence: 2
  givenname: David V.
  surname: Boger
  fullname: Boger, David V.
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– sequence: 3
  givenname: Claire M.
  surname: Côte
  fullname: Côte, Claire M.
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  organization: Centre for Water in the Minerals Industry, The University of Queensland, Sustainable Minerals Institute, St. Lucia, Brisbane, Queensland, Australia 4072, Australia
– sequence: 4
  givenname: David R.
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Fri Oct 25 04:52:09 EDT 2024
Sat Oct 26 00:53:50 EDT 2024
Fri Oct 25 06:59:08 EDT 2024
Thu Sep 26 19:01:26 EDT 2024
Wed Aug 18 04:17:43 EDT 2021
Fri Feb 23 02:21:02 EST 2024
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Issue 2
Keywords Waste management
Policy
Mining
L72
O19
N50
Sustainable development
Tailings
Language English
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Snippet This paper examines the minerals industry's response to sustainable development in the area of waste disposal and argues that leadership and guidance are still...
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SubjectTerms Government policy
Industrial waste
Innovation
Leadership
Management
Mineral processing
Mineral resources
Mining
Mining industry
Pastes
Policy
Strategic planning
Sustainable development
Sustainable development Tailings Waste management Policy Mining
Tailings
Technology
Waste disposal
Waste management
Wastes
Title Sustainable development principles for the disposal of mining and mineral processing wastes
URI https://dx.doi.org/10.1016/j.resourpol.2010.12.001
http://econpapers.repec.org/article/eeejrpoli/v_3a36_3ay_3a2011_3ai_3a2_3ap_3a114-122.htm
https://search.proquest.com/docview/1753530039
https://search.proquest.com/docview/873117182
https://search.proquest.com/docview/874197661
https://search.proquest.com/docview/881466728
Volume 36
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