Voluntary sustainability standards could significantly reduce detrimental impacts of global agriculture

Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production outcomes. While institutional commitments to use VSS to meet sustainable procurement policies have grown rapidly over the past decade, we still have...

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Published inProceedings of the National Academy of Sciences - PNAS Vol. 116; no. 6; pp. 2130 - 2137
Main Authors Smith, W. K., Nelson, E., Johnson, J. A., Polasky, S., Milder, J. C., Gerber, J. S., West, P. C., Siebert, S., Brauman, K. A., Carlson, K. M., Arbuthnot, M., Rozza, J. P., Pennington, D. N.
Format Journal Article
LanguageEnglish
Published United States National Academy of Sciences 05.02.2019
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Abstract Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production outcomes. While institutional commitments to use VSS to meet sustainable procurement policies have grown rapidly over the past decade, we still have relatively little understanding of the (i) direct environmental benefits of large-scale VSS adoption; (ii) potential perverse indirect impacts of adoption; and (iii) implementation pathways. Here, we illustrate and address these knowledge gaps using an ecosystem service modeling and scenario analysis of Bonsucro, the leading VSS for sugarcane. We find that global compliance with the Bonsucro environmental standards would reduce current sugarcane production area (−24%), net tonnage (−11%), irrigation water use (−65%), nutrient loading (−34%), and greenhouse gas emissions from cultivation (−51%). Under a scenario of doubled global sugarcane production, Bonsucro adoption would further limit water use and greenhouse gas emissions by preventing sugarcane expansion into water-stressed and high-carbon stock ecosystems. This outcome was achieved via expansion largely on existing agricultural lands. However, displacement of other crops could drive detrimental impacts from indirect land use. We find that over half of the potential direct environmental benefits of Bonsucro standards under the doubling scenario could be achieved by targeting adoption in just 10% of global sugarcane production areas. However, designing policy that generates the most environmentally beneficial Bonsucro adoption pathway requires a better understanding of the economic and social costs of VSS adoption. Finally, we suggest research directions to advance sustainable consumption and production.
AbstractList Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production outcomes. While institutional commitments to use VSS to meet sustainable procurement policies have grown rapidly over the past decade, we still have relatively little understanding of the (i) direct environmental benefits of large-scale VSS adoption; (ii) potential perverse indirect impacts of adoption; and (iii) implementation pathways. Here, we illustrate and address these knowledge gaps using an ecosystem service modeling and scenario analysis of Bonsucro, the leading VSS for sugarcane. We find that global compliance with the Bonsucro environmental standards would reduce current sugarcane production area (−24%), net tonnage (−11%), irrigation water use (−65%), nutrient loading (−34%), and greenhouse gas emissions from cultivation (−51%). Under a scenario of doubled global sugarcane production, Bonsucro adoption would further limit water use and greenhouse gas emissions by preventing sugarcane expansion into water-stressed and high-carbon stock ecosystems. This outcome was achieved via expansion largely on existing agricultural lands. However, displacement of other crops could drive detrimental impacts from indirect land use. We find that over half of the potential direct environmental benefits of Bonsucro standards under the doubling scenario could be achieved by targeting adoption in just 10% of global sugarcane production areas. However, designing policy that generates the most environmentally beneficial Bonsucro adoption pathway requires a better understanding of the economic and social costs of VSS adoption. Finally, we suggest research directions to advance sustainable consumption and production.
Significance Voluntary sustainability standards (VSS) may be an effective way to reduce the negative impacts of agriculture at regional to global scales. Here, we present an approach that highlights the potential of VSS to reduce some of the negative externalities associated with agriculture production. To illustrate this potential, we show that VSS could reduce the global environmental impacts from growing sugarcane. Further, most of this environmental benefit comes from targeting just 10% of production area. To realize these environmental gains, incentives for VSS adoption need to be sufficient to cover the costs of criteria compliance. Determining these costs and public and private-sector mechanisms for efficiently transferring VSS-adoption subsidies to farmers and millers are key future research needs. Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production outcomes. While institutional commitments to use VSS to meet sustainable procurement policies have grown rapidly over the past decade, we still have relatively little understanding of the ( i ) direct environmental benefits of large-scale VSS adoption; ( ii ) potential perverse indirect impacts of adoption; and ( iii ) implementation pathways. Here, we illustrate and address these knowledge gaps using an ecosystem service modeling and scenario analysis of Bonsucro, the leading VSS for sugarcane. We find that global compliance with the Bonsucro environmental standards would reduce current sugarcane production area (−24%), net tonnage (−11%), irrigation water use (−65%), nutrient loading (−34%), and greenhouse gas emissions from cultivation (−51%). Under a scenario of doubled global sugarcane production, Bonsucro adoption would further limit water use and greenhouse gas emissions by preventing sugarcane expansion into water-stressed and high-carbon stock ecosystems. This outcome was achieved via expansion largely on existing agricultural lands. However, displacement of other crops could drive detrimental impacts from indirect land use. We find that over half of the potential direct environmental benefits of Bonsucro standards under the doubling scenario could be achieved by targeting adoption in just 10% of global sugarcane production areas. However, designing policy that generates the most environmentally beneficial Bonsucro adoption pathway requires a better understanding of the economic and social costs of VSS adoption. Finally, we suggest research directions to advance sustainable consumption and production.
Voluntary sustainability standards (VSS) may be an effective way to reduce the negative impacts of agriculture at regional to global scales. Here, we present an approach that highlights the potential of VSS to reduce some of the negative externalities associated with agriculture production. To illustrate this potential, we show that VSS could reduce the global environmental impacts from growing sugarcane. Further, most of this environmental benefit comes from targeting just 10% of production area. To realize these environmental gains, incentives for VSS adoption need to be sufficient to cover the costs of criteria compliance. Determining these costs and public and private-sector mechanisms for efficiently transferring VSS-adoption subsidies to farmers and millers are key future research needs. Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production outcomes. While institutional commitments to use VSS to meet sustainable procurement policies have grown rapidly over the past decade, we still have relatively little understanding of the ( i ) direct environmental benefits of large-scale VSS adoption; ( ii ) potential perverse indirect impacts of adoption; and ( iii ) implementation pathways. Here, we illustrate and address these knowledge gaps using an ecosystem service modeling and scenario analysis of Bonsucro, the leading VSS for sugarcane. We find that global compliance with the Bonsucro environmental standards would reduce current sugarcane production area (−24%), net tonnage (−11%), irrigation water use (−65%), nutrient loading (−34%), and greenhouse gas emissions from cultivation (−51%). Under a scenario of doubled global sugarcane production, Bonsucro adoption would further limit water use and greenhouse gas emissions by preventing sugarcane expansion into water-stressed and high-carbon stock ecosystems. This outcome was achieved via expansion largely on existing agricultural lands. However, displacement of other crops could drive detrimental impacts from indirect land use. We find that over half of the potential direct environmental benefits of Bonsucro standards under the doubling scenario could be achieved by targeting adoption in just 10% of global sugarcane production areas. However, designing policy that generates the most environmentally beneficial Bonsucro adoption pathway requires a better understanding of the economic and social costs of VSS adoption. Finally, we suggest research directions to advance sustainable consumption and production.
Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production outcomes. While institutional commitments to use VSS to meet sustainable procurement policies have grown rapidly over the past decade, we still have relatively little understanding of the ( ) direct environmental benefits of large-scale VSS adoption; ( ) potential perverse indirect impacts of adoption; and ( ) implementation pathways. Here, we illustrate and address these knowledge gaps using an ecosystem service modeling and scenario analysis of Bonsucro, the leading VSS for sugarcane. We find that global compliance with the Bonsucro environmental standards would reduce current sugarcane production area (-24%), net tonnage (-11%), irrigation water use (-65%), nutrient loading (-34%), and greenhouse gas emissions from cultivation (-51%). Under a scenario of doubled global sugarcane production, Bonsucro adoption would further limit water use and greenhouse gas emissions by preventing sugarcane expansion into water-stressed and high-carbon stock ecosystems. This outcome was achieved via expansion largely on existing agricultural lands. However, displacement of other crops could drive detrimental impacts from indirect land use. We find that over half of the potential direct environmental benefits of Bonsucro standards under the doubling scenario could be achieved by targeting adoption in just 10% of global sugarcane production areas. However, designing policy that generates the most environmentally beneficial Bonsucro adoption pathway requires a better understanding of the economic and social costs of VSS adoption. Finally, we suggest research directions to advance sustainable consumption and production.
Author Nelson, E.
Carlson, K. M.
West, P. C.
Siebert, S.
Johnson, J. A.
Smith, W. K.
Brauman, K. A.
Gerber, J. S.
Rozza, J. P.
Arbuthnot, M.
Polasky, S.
Milder, J. C.
Pennington, D. N.
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Cites_doi 10.1038/ncomms11382
10.1038/nature10452
10.1038/nature11420
10.1073/pnas.1412835111
10.1111/j.1365-2486.2011.02618.x
10.2307/3298564
10.1111/cobi.12411
10.1126/science.1253425
10.7551/mitpress/5286.003.0010
10.1111/gcb.12160
10.1080/09640568.2013.875463
10.5751/ES-05595-180321
10.1016/j.jhydrol.2009.07.031
10.1016/j.foodpol.2005.05.006
10.1126/science.1246067
10.1073/pnas.1116437108
10.1126/science.1234485
10.1073/pnas.1604768114
10.1016/S0140-6736(12)60685-0
10.1038/461472a
10.1073/pnas.0706436105
10.1016/j.cosust.2012.01.014
10.1016/j.cosust.2013.10.016
10.1029/2007GB002947
10.1088/1748-9326/11/4/045003
10.1016/j.ecolecon.2007.09.017
10.1038/nature17174
10.1016/j.agwat.2009.07.002
10.1016/j.gloenvcha.2014.06.007
10.1111/j.1523-1739.2011.01774.x
10.1002/ieam.1744
10.1016/j.jrurstud.2012.09.006
10.1146/annurev.environ.33.013007.103754
10.1016/j.landusepol.2015.01.001
10.1016/j.ecoser.2016.03.004
10.1080/14735903.2016.1174810
10.1088/1748-9326/11/9/094005
10.1126/science.aad0055
ContentType Journal Article
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Issue 6
Keywords agriculture
environmental policy
land use change
sustainability standards
ecosystem services
Language English
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Author contributions: W.K.S., E.N., J.A.J., S.P., J.C.M., J.S.G., P.C.W., S.S., K.A.B., K.M.C., M.A., J.P.R., and D.N.P. designed research; W.K.S. and D.N.P. performed research; W.K.S. analyzed data; and W.K.S., E.N., J.A.J., S.P., J.C.M., J.S.G., P.C.W., S.S., K.A.B., K.M.C., M.A., J.P.R., and D.N.P. wrote the paper.
Contributed by S. Polasky, July 12, 2018 (sent for review May 11, 2017; reviewed by Daniel C. Nepstad and Vivek Anand Voora)
Reviewers: D.C.N., Earth Innovation Institute; and V.A.V., Central European University.
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References e_1_3_3_17_2
Millennium Ecosystem Assessment (e_1_3_3_4_2) 2005
e_1_3_3_16_2
e_1_3_3_19_2
e_1_3_3_38_2
e_1_3_3_39_2
e_1_3_3_36_2
e_1_3_3_12_2
Popp J (e_1_3_3_18_2) 2007; 3
e_1_3_3_37_2
e_1_3_3_15_2
e_1_3_3_34_2
e_1_3_3_14_2
Banana AY (e_1_3_3_25_2) 2000
Wiyo AW (e_1_3_3_27_2) 2014; 8
e_1_3_3_35_2
e_1_3_3_32_2
e_1_3_3_33_2
e_1_3_3_11_2
e_1_3_3_30_2
e_1_3_3_10_2
e_1_3_3_31_2
e_1_3_3_40_2
e_1_3_3_6_2
e_1_3_3_5_2
e_1_3_3_8_2
Potts J (e_1_3_3_13_2) 2014
e_1_3_3_7_2
e_1_3_3_28_2
e_1_3_3_9_2
e_1_3_3_29_2
e_1_3_3_24_2
e_1_3_3_47_2
e_1_3_3_23_2
e_1_3_3_26_2
e_1_3_3_45_2
e_1_3_3_46_2
e_1_3_3_2_2
e_1_3_3_20_2
e_1_3_3_43_2
e_1_3_3_1_2
e_1_3_3_44_2
e_1_3_3_22_2
e_1_3_3_41_2
e_1_3_3_3_2
e_1_3_3_21_2
e_1_3_3_42_2
References_xml – ident: e_1_3_3_7_2
  doi: 10.1038/ncomms11382
– ident: e_1_3_3_1_2
  doi: 10.1038/nature10452
– ident: e_1_3_3_5_2
  doi: 10.1038/nature11420
– ident: e_1_3_3_6_2
  doi: 10.1073/pnas.1412835111
– ident: e_1_3_3_9_2
  doi: 10.1111/j.1365-2486.2011.02618.x
– ident: e_1_3_3_26_2
– ident: e_1_3_3_40_2
  doi: 10.2307/3298564
– ident: e_1_3_3_12_2
  doi: 10.1111/cobi.12411
– ident: e_1_3_3_24_2
  doi: 10.1126/science.1253425
– start-page: 87
  volume-title: People and Forest: Communities, Institutions and Governance
  year: 2000
  ident: e_1_3_3_25_2
  doi: 10.7551/mitpress/5286.003.0010
  contributor:
    fullname: Banana AY
– ident: e_1_3_3_10_2
  doi: 10.1111/gcb.12160
– ident: e_1_3_3_14_2
  doi: 10.1080/09640568.2013.875463
– ident: e_1_3_3_34_2
  doi: 10.5751/ES-05595-180321
– ident: e_1_3_3_37_2
– ident: e_1_3_3_47_2
  doi: 10.1016/j.jhydrol.2009.07.031
– ident: e_1_3_3_43_2
  doi: 10.1016/j.foodpol.2005.05.006
– ident: e_1_3_3_2_2
  doi: 10.1126/science.1246067
– ident: e_1_3_3_38_2
  doi: 10.1073/pnas.1116437108
– ident: e_1_3_3_31_2
  doi: 10.1126/science.1234485
– ident: e_1_3_3_19_2
  doi: 10.1073/pnas.1604768114
– ident: e_1_3_3_45_2
  doi: 10.1016/S0140-6736(12)60685-0
– volume: 3
  start-page: 225
  year: 2007
  ident: e_1_3_3_18_2
  article-title: The role of stakeholders’ perceptions in addressing water quality disputes in an embattled watershed
  publication-title: J Environ Monit Restor
  contributor:
    fullname: Popp J
– ident: e_1_3_3_3_2
  doi: 10.1038/461472a
– ident: e_1_3_3_23_2
  doi: 10.1073/pnas.0706436105
– volume: 8
  start-page: 251
  year: 2014
  ident: e_1_3_3_27_2
  article-title: Solving deforestation, protecting and managing key water catchments in Malawi using smart public and private partnerships
  publication-title: J Sustain Dev
  contributor:
    fullname: Wiyo AW
– ident: e_1_3_3_30_2
  doi: 10.1016/j.cosust.2012.01.014
– ident: e_1_3_3_29_2
  doi: 10.1016/j.cosust.2013.10.016
– ident: e_1_3_3_46_2
  doi: 10.1029/2007GB002947
– ident: e_1_3_3_28_2
– ident: e_1_3_3_41_2
  doi: 10.1088/1748-9326/11/4/045003
– ident: e_1_3_3_22_2
  doi: 10.1016/j.ecolecon.2007.09.017
– ident: e_1_3_3_8_2
  doi: 10.1038/nature17174
– ident: e_1_3_3_15_2
  doi: 10.1016/j.agwat.2009.07.002
– ident: e_1_3_3_39_2
– ident: e_1_3_3_33_2
  doi: 10.1016/j.gloenvcha.2014.06.007
– ident: e_1_3_3_36_2
– ident: e_1_3_3_42_2
  doi: 10.1111/j.1523-1739.2011.01774.x
– ident: e_1_3_3_35_2
  doi: 10.1002/ieam.1744
– volume-title: The State of Sustainability Initiatives Review 2014
  year: 2014
  ident: e_1_3_3_13_2
  contributor:
    fullname: Potts J
– ident: e_1_3_3_16_2
  doi: 10.1016/j.jrurstud.2012.09.006
– ident: e_1_3_3_44_2
  doi: 10.1146/annurev.environ.33.013007.103754
– ident: e_1_3_3_17_2
  doi: 10.1016/j.landusepol.2015.01.001
– ident: e_1_3_3_21_2
  doi: 10.1016/j.ecoser.2016.03.004
– year: 2005
  ident: e_1_3_3_4_2
  publication-title: Ecosystems and Human Well-Being: Synthesis
  contributor:
    fullname: Millennium Ecosystem Assessment
– ident: e_1_3_3_11_2
  doi: 10.1080/14735903.2016.1174810
– ident: e_1_3_3_20_2
  doi: 10.1088/1748-9326/11/9/094005
– ident: e_1_3_3_32_2
  doi: 10.1126/science.aad0055
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Snippet Voluntary sustainability standards (VSS) are stakeholder-derived principles with measurable and enforceable criteria to promote sustainable production...
Significance Voluntary sustainability standards (VSS) may be an effective way to reduce the negative impacts of agriculture at regional to global scales. Here,...
Voluntary sustainability standards (VSS) may be an effective way to reduce the negative impacts of agriculture at regional to global scales. Here, we present...
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SubjectTerms Agricultural economics
Agricultural land
Biological Sciences
Cultivation
Ecosystems
Emissions
Environment models
Environmental impact
Food processing industry
Green procurement
Greenhouse effect
Greenhouse gases
Irrigation water
Land use
Nutrient loading
PNAS Plus
Pollution load
Procurement policy
Social Sciences
Sugarcane
Sustainability
Sustainable agriculture
Sustainable consumption
Sustainable use
Tonnage
Water use
Title Voluntary sustainability standards could significantly reduce detrimental impacts of global agriculture
URI https://www.jstor.org/stable/26663794
https://www.ncbi.nlm.nih.gov/pubmed/30670643
https://www.proquest.com/docview/2178570934
https://search.proquest.com/docview/2179478802
https://pubmed.ncbi.nlm.nih.gov/PMC6369756
Volume 116
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