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Published in: International Journal of Public Health 5/2013

01-10-2013 | Review

Systematic review of reducing population meat consumption to reduce greenhouse gas emissions and obtain health benefits: effectiveness and models assessments

Authors: Cynthia Sau Chun Yip, Glenis Crane, Jonathan Karnon

Published in: International Journal of Public Health | Issue 5/2013

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Abstract

Objectives

This review evaluates existing co-benefit models for emission and health outcomes of counterfactual scenarios of reduced meat consumption at a population level.

Methods

A novel assessment process was developed, combining selected measures from the Cochrane Review quality assessment tools, from the PRISMA checklist, and model quality measures identified by the authors during the preliminary phases of the review process.

Results

Four emission models and three health outcome models have been identified which show great variation in model characteristics and qualities. The estimated counterfactual scenario emission effects presented in the included studies ranged from a reduction of <3–30 % and reduction in the burden of disease ranged from 1 to 16 %. Meta-analysis could not be conducted due to high heterogeneity of model characteristics.

Conclusions

All co-benefit studies estimated that reducing population meat consumption could reduce greenhouse gas emissions and the burden of disease. However, important attention must be paid to nutrition balance and a systematic approach in input and output attribute parameters is recommended for better model quality.
Literature
go back to reference Akhtar AZ, Greger M, Ferdowsian H, Frank E (2009) Health professionals’ roles in animal agriculture, climate change, and human health. Am J Prev Med 36(2):182–187PubMedCrossRef Akhtar AZ, Greger M, Ferdowsian H, Frank E (2009) Health professionals’ roles in animal agriculture, climate change, and human health. Am J Prev Med 36(2):182–187PubMedCrossRef
go back to reference Aston LM, Smith JN, Powles JW (2012) Impact of a reduced red and processed meat dietary pattern on disease risks and greenhouse gas emissions in the UK: a modelling study. BMJ Open 2(5) Aston LM, Smith JN, Powles JW (2012) Impact of a reduced red and processed meat dietary pattern on disease risks and greenhouse gas emissions in the UK: a modelling study. BMJ Open 2(5)
go back to reference Audsley E, Chatterton J, Graves A, Morris J, Murphy-Bokern D, Pearn K, Sandars D, Williams A (2010) Food, land and greenhouse gases:The effect of changes in UK food consumption on land requirements and greenhouse gas emissions, a report prepared for the United Kingdom’s Government’s Committee on climate change, pp 1–158 Audsley E, Chatterton J, Graves A, Morris J, Murphy-Bokern D, Pearn K, Sandars D, Williams A (2010) Food, land and greenhouse gases:The effect of changes in UK food consumption on land requirements and greenhouse gas emissions, a report prepared for the United Kingdom’s Government’s Committee on climate change, pp 1–158
go back to reference de Vries M, de Boer IJM (2010) Comparing environmental impacts for livestock products: a review of life cycle assessments. Livest Sci 128:1–11CrossRef de Vries M, de Boer IJM (2010) Comparing environmental impacts for livestock products: a review of life cycle assessments. Livest Sci 128:1–11CrossRef
go back to reference EPA (2007) State of the Environmental Report: Western Australia 2007. Environmental Protection Authority, Department of Environment and Conservation, Perth, Western Australia website, Department of Environment and Conservation, Perth, Western Australia. http://www.soe.wa.gov.au/. Accessed 19/10/2011 EPA (2007) State of the Environmental Report: Western Australia 2007. Environmental Protection Authority, Department of Environment and Conservation, Perth, Western Australia website, Department of Environment and Conservation, Perth, Western Australia. http://​www.​soe.​wa.​gov.​au/​. Accessed 19/10/2011
go back to reference Eurobarometer (2011) Climate change. European Commission Eurobarometer (2011) Climate change. European Commission
go back to reference Ezzati M, Lopez A, Rodgers A, Murray C (2004) Ch 25 Comparative quantification of health risks: global and regional burden of disease attributable to selected risk factors, vol 1. World Health Organization, Geneva, pp 2129–2140 Ezzati M, Lopez A, Rodgers A, Murray C (2004) Ch 25 Comparative quantification of health risks: global and regional burden of disease attributable to selected risk factors, vol 1. World Health Organization, Geneva, pp 2129–2140
go back to reference Ezzati M, Hoorn SV, Lopez AD, Danaei G, Rodgers A, Mathers CD, Murray CLJ (2006) Ch 4 Comparative quantification of mortality and burden of disease attributable to selected risk factors. In: Global burden of disease and risk factors. The International Bank for Reconstruction and Development/The World Bank, Washington, DC Ezzati M, Hoorn SV, Lopez AD, Danaei G, Rodgers A, Mathers CD, Murray CLJ (2006) Ch 4 Comparative quantification of mortality and burden of disease attributable to selected risk factors. In: Global burden of disease and risk factors. The International Bank for Reconstruction and Development/The World Bank, Washington, DC
go back to reference Færgeman O (2008) Climate change, disease and public health. Ugeskr Laeger 170(35):2667–2668PubMed Færgeman O (2008) Climate change, disease and public health. Ugeskr Laeger 170(35):2667–2668PubMed
go back to reference Færgeman O, Østergaard L (2009) Climate change, food production and human health (Klimaforandringer, fødevareproduktion og human sundhed). Ugeskrift for Laeger 171(44):3181–3184PubMed Færgeman O, Østergaard L (2009) Climate change, food production and human health (Klimaforandringer, fødevareproduktion og human sundhed). Ugeskrift for Laeger 171(44):3181–3184PubMed
go back to reference Friel S, Dangour AD, Garnett T, Lock K, Chalabi Z, Roberts I, Butler A, Butler CD, Waage J, McMichael AJ, Haines A (2009) Public health benefits of strategies to reduce greenhouse-gas emissions: food and agriculture. Lancet 374(December):2016–2025PubMedCrossRef Friel S, Dangour AD, Garnett T, Lock K, Chalabi Z, Roberts I, Butler A, Butler CD, Waage J, McMichael AJ, Haines A (2009) Public health benefits of strategies to reduce greenhouse-gas emissions: food and agriculture. Lancet 374(December):2016–2025PubMedCrossRef
go back to reference Gold M (2004) The global benefits of eating less meat. Compassion in World Farming Trust, Petersfield Gold M (2004) The global benefits of eating less meat. Compassion in World Farming Trust, Petersfield
go back to reference Hartung E (2000) Quantify airborne emissions from buildings, stores and land application greenhouse gas emissions from animal husbandry, sustainable animal production workshops discussion Hartung E (2000) Quantify airborne emissions from buildings, stores and land application greenhouse gas emissions from animal husbandry, sustainable animal production workshops discussion
go back to reference Hoorn S, Ezzati M, Rodgers A, Lopez A, Murray C (2004) Estimating attributable burden of disease from exposure and hazard. In: Ezzati M, Lopez A, Rodgers A, Murray C (eds) Comparative quantification of health risks: Global and regional burden of disease attributable to selected risk factors. World Health Organization, Geneva, pp 2129–2140 Hoorn S, Ezzati M, Rodgers A, Lopez A, Murray C (2004) Estimating attributable burden of disease from exposure and hazard. In: Ezzati M, Lopez A, Rodgers A, Murray C (eds) Comparative quantification of health risks: Global and regional burden of disease attributable to selected risk factors. World Health Organization, Geneva, pp 2129–2140
go back to reference Hu FB, Manson JE, Willett WC (2001) Types of dietary fat and risk of coronary heart disease: a critical review. J Am Coll Nutr 20:5–19PubMedCrossRef Hu FB, Manson JE, Willett WC (2001) Types of dietary fat and risk of coronary heart disease: a critical review. J Am Coll Nutr 20:5–19PubMedCrossRef
go back to reference Jakobsen MU, O’Reilly EJ, Heitmann BL, Pereira MA (2009) Major types of dietary fat and risk of coronary heart disease: a pooled analysis of 11 cohort studies. Am J Clin Nutr 89(5):1425–1432 Jakobsen MU, O’Reilly EJ, Heitmann BL, Pereira MA (2009) Major types of dietary fat and risk of coronary heart disease: a pooled analysis of 11 cohort studies. Am J Clin Nutr 89(5):1425–1432
go back to reference Larsson SC, Virtamo J, Wolk A (2011a) Red meat consumption and risk of stroke in Swedish men. Am J Clin Nutr 94:417–421PubMedCrossRef Larsson SC, Virtamo J, Wolk A (2011a) Red meat consumption and risk of stroke in Swedish men. Am J Clin Nutr 94:417–421PubMedCrossRef
go back to reference Larsson SC, Virtamo J, Wolk A (2011b) Red meat consumption and risk of stroke in Swedish women. Stroke J Cerebral Circ 42(2):324–329CrossRef Larsson SC, Virtamo J, Wolk A (2011b) Red meat consumption and risk of stroke in Swedish women. Stroke J Cerebral Circ 42(2):324–329CrossRef
go back to reference Lindeberg S (2012) Dietary shifts and human health: cancer and cardiovascular disease in a sustainable world. J Gastrointest Cancer 43(1):8–12PubMedCrossRef Lindeberg S (2012) Dietary shifts and human health: cancer and cardiovascular disease in a sustainable world. J Gastrointest Cancer 43(1):8–12PubMedCrossRef
go back to reference Lloyd-Williams F, O’Flaherty M, Mwatsama M, Birt C, Ireland R, Capewell S (2008) Estimating the cardiovascular mortality burden attributable to the European Common Agricultural Policy on dietary saturated fats. Bull World Health Organ 86:535–541PubMedCrossRef Lloyd-Williams F, O’Flaherty M, Mwatsama M, Birt C, Ireland R, Capewell S (2008) Estimating the cardiovascular mortality burden attributable to the European Common Agricultural Policy on dietary saturated fats. Bull World Health Organ 86:535–541PubMedCrossRef
go back to reference McMichael AJ, Powles JW, Butler CD, Uauy R (2007) Food, livestock production, energy, climate change, and health. Lancet 370(9594):1253–1263PubMedCrossRef McMichael AJ, Powles JW, Butler CD, Uauy R (2007) Food, livestock production, energy, climate change, and health. Lancet 370(9594):1253–1263PubMedCrossRef
go back to reference Micha R, Wallace SK, Mozaffarian D (2010) Red and processed meat consumption and risk of incident coronary heart disease, stroke, and diabetes mellitus. Circulation 121:2271–2283PubMedCrossRef Micha R, Wallace SK, Mozaffarian D (2010) Red and processed meat consumption and risk of incident coronary heart disease, stroke, and diabetes mellitus. Circulation 121:2271–2283PubMedCrossRef
go back to reference Michaelowa A, Dransfeld B (2008) Greenhouse gas benefits of fighting obesity. Ecol Econ 66(2–3):1–24 Michaelowa A, Dransfeld B (2008) Greenhouse gas benefits of fighting obesity. Ecol Econ 66(2–3):1–24
go back to reference Mozaffarian D, Micha R, Wallace S (2010) Effects on coronary heart disease of increasing polyunsaturated fat in place of saturated fat: a systematic review and meta-analysis of randomized controlled trials. PLoS Med 7(3):e1000252. doi:10.1371/journal.pmed.1000252 PubMedCrossRef Mozaffarian D, Micha R, Wallace S (2010) Effects on coronary heart disease of increasing polyunsaturated fat in place of saturated fat: a systematic review and meta-analysis of randomized controlled trials. PLoS Med 7(3):e1000252. doi:10.​1371/​journal.​pmed.​1000252 PubMedCrossRef
go back to reference Pan A, Sun Q, Bernstein AM, Schulze MB, Manson JE, Willett WC, Hu FB (2011) Red meat consumption and risk of type 2 diabetes: 3 cohorts of U.S. Adults and an updated meta-analysis. Am J Clin Nutr 94(4):1088–1096 Pan A, Sun Q, Bernstein AM, Schulze MB, Manson JE, Willett WC, Hu FB (2011) Red meat consumption and risk of type 2 diabetes: 3 cohorts of U.S. Adults and an updated meta-analysis. Am J Clin Nutr 94(4):1088–1096
go back to reference Pan A, Sun Q, Bernstein AM, Schulze MB, Manson JAE, Stampfer MJ, Willett WC, Hu FB (2012) Red meat consumption and mortality: results from 2 prospective cohort studies. Arch Intern Med 172(7):555PubMedCrossRef Pan A, Sun Q, Bernstein AM, Schulze MB, Manson JAE, Stampfer MJ, Willett WC, Hu FB (2012) Red meat consumption and mortality: results from 2 prospective cohort studies. Arch Intern Med 172(7):555PubMedCrossRef
go back to reference Parker CL (2011) Slowing global warming: benefits for patients and the planet. Am Fam Phys 84(3):271–278 Parker CL (2011) Slowing global warming: benefits for patients and the planet. Am Fam Phys 84(3):271–278
go back to reference Roberts I (2009) The health co-benefits of climate change policies: doctors have a responsibility to future generations. Clin Med J R Coll Phys Lond 9(3):212–213 Roberts I (2009) The health co-benefits of climate change policies: doctors have a responsibility to future generations. Clin Med J R Coll Phys Lond 9(3):212–213
go back to reference Scarborough P, Allender S, Clarke D, Wickramasinghe K, Rayner M (2012a) Modelling the health impact of environmentally sustainable dietary scenarios in the UK. Eur J Clin Nutr 66(6):710–715 Scarborough P, Allender S, Clarke D, Wickramasinghe K, Rayner M (2012a) Modelling the health impact of environmentally sustainable dietary scenarios in the UK. Eur J Clin Nutr 66(6):710–715
go back to reference Scarborough P, Nnoaham K, Clarke D, Rayner M, Capewell S (2012b) Modelling the impact of a healthy diet on cardiovascular disease and cancer mortality. J Epidemiol Community Health 66:420–426PubMedCrossRef Scarborough P, Nnoaham K, Clarke D, Rayner M, Capewell S (2012b) Modelling the impact of a healthy diet on cardiovascular disease and cancer mortality. J Epidemiol Community Health 66:420–426PubMedCrossRef
go back to reference Scollan N, Moran D, Kim EJ, Thomas C (2010) The environmental impact of meat production systems, report to the international meat secretariat. UK Scollan N, Moran D, Kim EJ, Thomas C (2010) The environmental impact of meat production systems, report to the international meat secretariat. UK
go back to reference Sinha R, Cross AJ, Graubard BI, Leitzmann MF, Schatzkin A (2009) Meat intake and mortality: a prospective study of over half a million people. Arch Intern Med 169(6):562–571PubMedCrossRef Sinha R, Cross AJ, Graubard BI, Leitzmann MF, Schatzkin A (2009) Meat intake and mortality: a prospective study of over half a million people. Arch Intern Med 169(6):562–571PubMedCrossRef
go back to reference Tukker A, Goldbohm RA, De Koning A, Verheijden M, Kleijn R, Wolf O, Pérez-Domínguez I, Rueda-Cantuche JM (2011) Environmental impacts of changes to healthier diets in Europe. Ecol Econ 70(10):1776–1788CrossRef Tukker A, Goldbohm RA, De Koning A, Verheijden M, Kleijn R, Wolf O, Pérez-Domínguez I, Rueda-Cantuche JM (2011) Environmental impacts of changes to healthier diets in Europe. Ecol Econ 70(10):1776–1788CrossRef
go back to reference WHO (2003) Diet, nutrition and the prevention of chronic diseases. Report of a joint WHO/FAO expert consultation. Technical report series 916. World Health Organization, Geneva WHO (2003) Diet, nutrition and the prevention of chronic diseases. Report of a joint WHO/FAO expert consultation. Technical report series 916. World Health Organization, Geneva
go back to reference Wyness L, Weichselbaum E, O’Connor A, Williams EB, Benelam B, Riley H, Stanner S (2011) Red meat in the diet: an update. Nutr Bull 36:34–77CrossRef Wyness L, Weichselbaum E, O’Connor A, Williams EB, Benelam B, Riley H, Stanner S (2011) Red meat in the diet: an update. Nutr Bull 36:34–77CrossRef
Metadata
Title
Systematic review of reducing population meat consumption to reduce greenhouse gas emissions and obtain health benefits: effectiveness and models assessments
Authors
Cynthia Sau Chun Yip
Glenis Crane
Jonathan Karnon
Publication date
01-10-2013
Publisher
Springer Basel
Published in
International Journal of Public Health / Issue 5/2013
Print ISSN: 1661-8556
Electronic ISSN: 1661-8564
DOI
https://doi.org/10.1007/s00038-013-0484-z

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