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Halting natural resource depletion: Engaging with economic and political power

Published online by Cambridge University Press:  01 January 2023

David Lindenmayer*
Affiliation:
The Australian National University, Australia
*
David Lindenmayer, Fenner School of Environment & Society, The Australian National University, 14 Linnaeus Way, Canberra, ACT 2601, Australia. Email: David.Lindenmayer@anu.edu.au

Abstract

Globally, fisheries and forestry have been characterised by substantial ecological and economic problems. Both sectors have become notorious for depleting the stocks on which they depend, eroding the value of harvested natural resources over time and having significant negative ‘by-catch’ impacts on non-target natural resources. Problems of resource overuse and potential ecosystem collapse inherently derive from poor decisions influenced by those with undue or excessive economic, political and labour market power. Solutions to problems of unsustainability of resource management will need to engage with these economic drivers and beneficiaries, and require strategies including better and more independent assessments of the status and condition of resources. Deep-seated problems caused by resource over-commitment need more robust approaches to resource assessment that (1) better account for uncertainty (including uncertainty resulting from stock losses due to disturbance), (2) avoid ratchet effects and (3) provide appropriate ecological parameters for resource harvest. The United Nations framework for environmental and economic accounting methods can help assess the economic and other contributions of different resource-based industries and inform decisions about trade-offs between competing interests. Finally, there is value in examining successful and unsuccessful industry restructuring, in which decisions to transition away from demonstrably unsustainable resource industries have been made.

Type
Sustainability strategies
Copyright
© The Author(s) 2016

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References

Ajani, J (2007) The Forest Wars. Melbourne, VIC, Australia: University of Melbourne Press.Google Scholar
Arnason, R, Kelleher, K, Willmann, R (2009) The Sunken Billions: The Economic Justification for Fisheries Reform. Washington, DC: World Bank.Google Scholar
Biggs, R, Carpenter, SR, Brock, WA (2009) Turning back from the brink: detecting an impending regime shift in time to avert it. Proceedings of the National Academy of Sciences of the USA 106: 826831.CrossRefGoogle Scholar
Blair, DP, McBurney, LM, Blanchard, W, et al . (2016) Disturbance gradient shows logging affects plant functional groups more than fire. Ecological Applications 26(7): 22802301.CrossRefGoogle ScholarPubMed
Boland, DJ, Brooker, MI, Chippendale, GM, et al . (2006) Forest Trees of Australia. 5th ed. Melbourne, VIC, Australia: CSIRO Publishing.CrossRefGoogle Scholar
Brown, JC (1883) French Forest Ordinance of 1669. Edinburgh: Oliver and Boyd.Google Scholar
Burgman, MA (2005) Risks and Decisions for Conservation and Environmental Management. New York: Cambridge University Press.CrossRefGoogle Scholar
Burgman, MA, Church, R, Ferguson, I, et al . (1994a) Wildlife planning using FORPLAN: a review and examples from Victorian forests. Australian Forestry 57(3): 131140.CrossRefGoogle Scholar
Burgman, MA, Incoll, W, Ades, PK, et al . (1994b) Mortality models for mountain and alpine ash. Forest Ecology and Management 67(1–3): 319327.CrossRefGoogle Scholar
Burns, EL, Lindenmayer, DB, Stein, J, et al . (2015) Ecosystem assessment of mountain ash forest in the Central Highlands of Victoria, south-eastern Australia. Austral Ecology 40(4): 386399.CrossRefGoogle Scholar
Costello, C, Ovando, D, Clavelle, T, et al . (2016) Global fishery prospects under contrasting management regimes. Proceedings of the National Academy of Sciences of the USA 113(18): 51255129.CrossRefGoogle ScholarPubMed
Cullingham, CI, Cooke, JEK, Dang, S, et al . (2011) Mountain pine beetle host-range expansion threatens the boreal forest. Molecular Ecology 20(10): 21572171.CrossRefGoogle ScholarPubMed
Davis, LS, Johnson, KN, Bettinger, PS, et al . (2001) Forest Management to Sustain Ecological, Economic, and Social Values. 4th ed. New York: McGraw-Hill Education.Google Scholar
Demeritt, D (2001) Scientific forest conservation and the statistical picturing of nature’s limits in the progressive-era United States. Environment and Planning D: Society & Space 19(4): 431459.CrossRefGoogle Scholar
Department of Agriculture and Water Resources (2016) Regional Forest Agreements. Canberra, ACT, Australia: Department of Agriculture and Water Resources. Available at: http://www.agriculture.gov.au/forestry/policies/rfa (accessed 20 October 2016).Google Scholar
Department of the Environment (2016a) National Recovery Plan for Leadbeater’s Possum (Gymnobelideus leadbeateri). Canberra, ACT, Australia: Department of the Environment.Google Scholar
Department of the Environment (2016b) Wild Harvesting of Australian Native Animals. Canberra, ACT, Australia: Department of the Environment.Google Scholar
Flint, A, Fagg, P (2007) Mountain ash in Victoria’s state forests. Silviculture Reference Manual No. 1. Melbourne, VIC, Australia: Department of Sustainability and Environment.Google Scholar
Freese, L, Auster, PJ, Heifetz, J, et al . (1999) Effects of trawling on seafloor habitat and associated invertebrate taxa in the Gulf of Alaska. Marine Ecology Progress Series 182: 119126.CrossRefGoogle Scholar
Gillard, J (2014) My Story. Sydney, NSW, Australia: Knopf and Random House.Google Scholar
Gustafsson, L, Baker, S, Bauhus, J, et al . (2012) Retention forestry to maintain multifunctional forests: a world perspective. BioScience 62: 633645.CrossRefGoogle Scholar
Hanich, Q, Gullett, W, Leadbitter, D, et al . (2014) Fisheries. In: Lindenmayer, DB, Dovers, S, Morton, S (eds) Ten Commitments Revisited. Melbourne, VIC, Australia: CSIRO Publishing, pp. 139146.Google Scholar
Harris, M (1998) Lament for an Ocean: The Collapse of the Atlantic Cod Fishery. Toronto, ON, Canada: McClelland & Stewart.Google Scholar
Heinsohn, R, Webb, M, Lacy, R, et al . (2015) A severe predator-induced population decline predicted for endangered, migratory swift parrots (Lathamus discolor). Biological Conservation 186: 7582.Google Scholar
Keith, DA, Rodríguez, JP, Rodríguez-Clark, KM, et al . (2013) Scientific foundations for an IUCN Red List of Ecosystems. PLoS ONE 8(5): e62111.CrossRefGoogle ScholarPubMed
Keith, H, Lindenmayer, DB, Mackey, BG, et al . (2014) Managing temperate forests for carbon storage: impacts of logging versus forest protection on carbon stocks. Ecosphere 5(6): art75.CrossRefGoogle Scholar
Keith, H, Vardon, M, Stein, J, et al . (2016) Experimental Ecosystem Accounts for the Central Highlands of Victoria. Canberra, ACT, Australia: The Australian National University.Google Scholar
Kirby, MX (2004) Fishing down the coast: historical expansion and collapse of oyster fisheries along continental margins. Proceedings of the National Academy of Sciences of the USA 101: 1309613099.CrossRefGoogle ScholarPubMed
Kurlansky, M (1999) COD: A Biography of the Fish that Changed the World. London: Random House.Google Scholar
Larkin, PA (1977) An epitaph for the concept of maximum sustained yield. Transactions of the American Fisheries Society 106: 111.2.0.CO;2>CrossRefGoogle Scholar
Leuschner, WA (1990) Forest Regulation, Harvest Scheduling and Planning Schedules. New York: John Wiley & Sons.Google Scholar
Lindenmayer, DB, Burgman, MA (2005) Practical Conservation Biology. Melbourne, VIC, Australia: CSIRO Publishing.CrossRefGoogle Scholar
Lindenmayer, DB, Franklin, JF (2002) Conserving Forest Biodiversity: A Comprehensive Multiscaled Approach. Washington, DC: Island Press.Google Scholar
Lindenmayer, DB, Likens, GE (2010) Effective Ecological Monitoring. Melbourne, VIC, Australia; London: CSIRO Publishing and Earthscan.CrossRefGoogle Scholar
Lindenmayer, DB, Blair, D, McBurney, L, et al . (2015a) Mountain Ash: Fire, Logging and the Future of Victoria’s Giant Forests. Melbourne, VIC, Australia: CSIRO Publishing.CrossRefGoogle Scholar
Lindenmayer, DB, Blair, D, McBurney, L, et al . (2015b) The need for a comprehensive reassessment of the Regional Forest Agreements in Australia. Pacific Conservation Biology 24(4): 266270.CrossRefGoogle Scholar
Lindenmayer, DB, Messier, C, Sato, C (2016) Avoiding ecosystem collapse in managed forest ecosystems. Frontiers in Ecology and the Environment 14(1): 561568.CrossRefGoogle Scholar
Løkkeborg, S (2011) Best practices to mitigate seabird bycatch in longline, trawl and gillnet fisheries – efficiency and practical applicability. Marine Ecology Progress Series 435: 285303.CrossRefGoogle Scholar
Love, K (1995) Correspondence to Premier of Victoria regarding AMCOR Forest resource security (Dated 22 December 1995). Melbourne, VIC, Australia: Department of Premier and Cabinet.Google Scholar
Ludwig, D (1993) Environmental sustainability: magic, science, and religion in natural resource management. Ecological Applications 3(4): 555558.CrossRefGoogle ScholarPubMed
McCarthy, MA, Gill, AM, Lindenmayer, DB (1999) Fire regimes in mountain ash forest: evidence from forest age structure, extinction models and wildlife habitat. Forest Ecology and Management 124(2–3): 193203.CrossRefGoogle Scholar
Macintosh, A, Keith, H, Lindenmayer, DB (2015) Rethinking forest carbon assessments to account for policy institutions. Nature Climate Change 5: 946949.Google Scholar
Mansfield, B (2011) ‘Modern’ industrial fisheries and the crisis of overfishing. In: Peet, R, Robbins, P, Watts, M (eds) Global Political Ecology. London: Routledge, pp. 8499.Google Scholar
Marvin, DC, Asner, GP, Knapp, DE, et al . (2014) Amazonian landscapes and the bias in field studies of forest structure and biomass. Proceedings of the National Academy of Sciences of the USA 111: E5224E5232.CrossRefGoogle ScholarPubMed
Myers, RA, Hutchings, JA, Barrowman, NJ (1997) Why do fish stocks collapse? The example of cod in Atlantic Canada. Ecological Applications 7: 91106.CrossRefGoogle Scholar
Oliver, CD, Larson, BC (1996) Forest Stand Dynamics. New York: John Wiley & Sons.Google Scholar
Ough, K, Murphy, A (1996) The effect of clearfell logging on tree-ferns in Victorian wet forest. Australian Forestry 59(4): 178188.CrossRefGoogle Scholar
Pauly, D, MacLean, J (2003) In a Perfect Ocean: The State of Fisheries and Ecosystems in the North Atlantic. Washington, DC: Island Press.Google Scholar
Pauly, D, Christensen, V, Dalsgaard, J, et al . (1998) Fishing down marine food webs. Science 279: 860863.CrossRefGoogle ScholarPubMed
Payette, S, Delwaide, A (2003) Shift of conifer boreal forest to lichen-heath parkland caused by successive stand disturbances. Ecosystems 6(6): 540550.CrossRefGoogle Scholar
Pershing, AJ, Alexander, MA, Hernandez, CM, et al . (2016) Slow adaptation in the face of rapid warming leads to collapse of the Gulf of Maine cod fishery. Science 350: 809812.CrossRefGoogle Scholar
Peterson, GD, Cumming, GS, Carpenter, SR (2003) Scenario planning: a tool for conservation in an uncertain world. Conservation Biology 17(2): 358366.CrossRefGoogle Scholar
Pielke, RA (2007) The Honest Broker: Making Sense of Science in Policy and Politics. Cambridge: Cambridge University Press.CrossRefGoogle Scholar
Powers, TM (1998) Lost Landscapes and Failed Economies. Washington, DC: Island Press.Google Scholar
Premier of Victoria (1995) Correspondence to Mr Sam Wallis, General Manager AMCOR Limited (Dated 22 December 1995). Melbourne, VIC, Australia: Public Record Office Victoria.Google Scholar
PricewaterhouseCoopers (2016) Rethinking Victoria’s Approach to Forestry. Melbourne, VIC, Australia: PricewaterhouseCoopers.Google Scholar
Puettmann, KJ, Coates, KD, Messier, C (2008) A Critique of Silviculture: Managing for Complexity. Washington, DC: Island Press.Google Scholar
Raffa, KF, Aukema, BH, Bentz, BJ, et al . (2008) Cross-scale drivers of natural disturbances prone to anthropogenic amplification: the dynamics of bark beetle eruptions. BioScience 58(6): 501507.CrossRefGoogle Scholar
Redford, K, Taber, A (2000) Writing the wrongs: developing a safe-fail culture in conservation. Conservation Biology 14(6): 15671568.Google Scholar
Robertson, GG (2000) Effect of line sink rate on albatross mortality in the Patagonian toothfish long-line fishery. CCAMLR Science 7: 133150.Google Scholar
Rosenberg, AA (2003) Managing to the margins: the overexploitation of fisheries. Frontiers in Ecology and the Environment 1(2): 102106.CrossRefGoogle Scholar
Rosenberg, AA, Fogarty, MJ, Sissenwine, MP, et al . (1993) Achieving sustainable use of renewable resources. Science 262: 828829.CrossRefGoogle ScholarPubMed
Schuler, A (1998) Sustainability and biodiversity – forest historical notes on two main concerns of environmental utilisation. In: Bachmann, P, Köhl, P, Päivenen, R (eds) Assessment of Biodiversity for Improved Forest Planning. Dordrecht: Kluwer Academic Publishers, pp. 353360.CrossRefGoogle Scholar
Schultz, LG (1980) Letter to Minister Granter (A.P.M. Forests Proprietary Limited, South Gate). South Melbourne, VIC, Australia: A.P.M. Forests Proprietary Limited.Google Scholar
Smith, AL, Blair, D, McBurney, L, et al . (2013) Dominant drivers of seedling establishment in a fire-dependent obligate seeder: climate or fire regimes? Ecosystems 17(2): 258270.CrossRefGoogle Scholar
Stankey, GH, Bormann, BT, Ryan, C, et al . (2003) Adaptive management and the Northwest Forest Plan – rhetoric and reality. Journal of Forestry 101(1): 4046.Google Scholar
Talbot, LM (1993) Principles for Living Resource Conservation: Draft preliminary report on consultations. Washington, DC: The Marine Mammal Commission.Google Scholar
Tyndale-Biscoe, CH, Smith, RFC (1969) Studies of the marsupial glider, Schoinobates volans (Kerr) III. Response to habitat destruction. Journal of Animal Ecology 38(3): 651659.CrossRefGoogle Scholar
United Nations (2012) System of Environmental-Economic Accounting Central Framework. New York, NY: United Nations.Google Scholar
Vader, J (2002) Red Gold: The Tree That Built a Nation. Sydney, NSW, Australia: New Holland Publishers.Google Scholar
Valiente-Banuet, A, Verdu, M (2013) Human impacts on multiple ecological networks act synergistically to drive ecosystem collapse. Frontiers in Ecology and the Environment 11(8): 408413.CrossRefGoogle Scholar
Van Nieuwstadt, MG, Shiel, D, Kartawinata, D (2001) The ecological consequences of logging in the burned forests of east Kalimantan, Indonesia. Conservation Biology 15(4): 11831186.CrossRefGoogle Scholar
Vardon, M, Burnett, P, Dovers, S (2016) The accounting push and the policy pull: balancing environment and economic decisions. Ecological Economics 124: 145152.CrossRefGoogle Scholar
Vertessy, RA, Watson, FGR, O’Sullivan, SK (2001) Factors determining relations between stand age and catchment water balance in mountain ash forests. Forest Ecology and Management 143(1): 1326.CrossRefGoogle Scholar
VicForests (2013) Corporate and Business Plans, 2013–2014 to 2015–2016. Melbourne, VIC, Australia: VicForests.Google Scholar
Viggers, JI, Weaver, HJ, Lindenmayer, DB (2013) Melbourne’s Water Catchments: Perspectives on a World Class Water Supply. Melbourne, VIC, Australia: CSIRO Publishing.CrossRefGoogle Scholar
Walker, B, Salt, D (2012) Resilience Practice: Building Capacity to Absorb Disturbance and Maintain Function. Washington, DC: Island Press.CrossRefGoogle Scholar
Wilcox, C, Heathcote, G, Goldberg, J, et al . (2014) Understanding the sources and effects of abandoned, lost, and discarded fishing gear on marine turtles in northern Australia. Conservation Biology 29(1): 198206.CrossRefGoogle ScholarPubMed
Yaffee, SL (1994) The Wisdom of the Spotted Owl: Policy Lessons for a New Century. Washington, DC: Island Press.Google Scholar