scholarly journals The healthiness and sustainability of national and global food based dietary guidelines: modelling study

BMJ ◽  
2020 ◽  
pp. m2322 ◽  
Author(s):  
Marco Springmann ◽  
Luke Spajic ◽  
Michael A Clark ◽  
Joseph Poore ◽  
Anna Herforth ◽  
...  

AbstractObjectiveTo analyse the health and environmental implications of adopting national food based dietary guidelines (FBDGs) at a national level and compared with global health and environmental targets.DesignModelling study.Setting85 countries.ParticipantsPopulation of 85 countries.Main outcome measuresA graded coding method was developed and used to extract quantitative recommendations from 85 FBDGs. The health and environmental impacts of these guidelines were assessed by using a comparative risk assessment of deaths from chronic diseases and a set of country specific environmental footprints for greenhouse gas emissions, freshwater use, cropland use, and fertiliser application. For comparison, the impacts of adopting the global dietary recommendations of the World Health Organization and the EAT-Lancet Commission on Healthy Diets from Sustainable Food Systems were also analysed. Each guideline’s health and sustainability implications were assessed by modelling its adoption at both the national level and globally, and comparing the impacts to global health and environmental targets, including the Action Agenda on Non-Communicable Diseases, the Paris Climate Agreement, the Aichi biodiversity targets related to land use, and the sustainable development goals and planetary boundaries related to freshwater use and fertiliser application.ResultsAdoption of national FBDGs was associated with reductions in premature mortality of 15% on average (95% uncertainty interval 13% to 16%) and mixed changes in environmental resource demand, including a reduction in greenhouse gas emissions of 13% on average (regional range −34% to 35%). When universally adopted globally, most of the national guidelines (83, 98%) were not compatible with at least one of the global health and environmental targets. About a third of the FBDGs (29, 34%) were incompatible with the agenda on non-communicable diseases, and most (57 to 74, 67% to 87%) were incompatible with the Paris Climate Agreement and other environmental targets. In comparison, adoption of the WHO recommendations was associated with similar health and environmental changes, whereas adoption of the EAT-Lancet recommendations was associated with 34% greater reductions in premature mortality, more than three times greater reductions in greenhouse gas emissions, and general attainment of the global health and environmental targets. As an example, the FBDGs of the UK, US, and China were incompatible with the climate change, land use, freshwater, and nitrogen targets, and adopting guidelines in line with the EAT-Lancet recommendation could increase the number of avoided deaths from 78 000 (74 000 to 81 000) to 104 000 (96 000 to 112 000) in the UK, from 480 000 (445 000 to 516 000) to 585 000 (523 000 to 646 000) in the USA, and from 1 149 000 (1 095 000 to 1 204 000) to 1 802 000 (1 664 000 to 1 941 000) in China.ConclusionsThis analysis suggests that national guidelines could be both healthier and more sustainable. Providing clearer advice on limiting in most contexts the consumption of animal source foods, in particular beef and dairy, was found to have the greatest potential for increasing the environmental sustainability of dietary guidelines, whereas increasing the intake of whole grains, fruits and vegetables, nuts and seeds, and legumes, reducing the intake of red and processed meat, and highlighting the importance of attaining balanced energy intake and weight levels were associated with most of the additional health benefits. The health results were based on observational data and assuming a causal relation between dietary risk factors and health outcomes. The certainty of evidence for these relations is mostly graded as moderate in existing meta-analyses.

2020 ◽  
Vol 12 (17) ◽  
pp. 6838
Author(s):  
Elly Mertens ◽  
Sander Biesbroek ◽  
Marcela Dofková ◽  
Lorenza Mistura ◽  
Laura D’Addezio ◽  
...  

Meat replacers could play a role in achieving more plant-based diets, but their current consumption is limited. The present modelling study aimed to explore the nutritional and greenhouse gas emissions impacts of meat replacers. Using dietary surveys from Denmark, Czech Republic, Italy and France (~6500 adults), we composed alternative diets in which all the meat in the observed diet (in grams) was substituted by similar use meat replacers (with and without fortification). Starting from the observed diets and meat-replacement diets, diets with improved adherence to food-based dietary guidelines (FBDGs) were modelled using Data Envelopment Analysis. These improved diets were then further optimised for dietary preferences (MaxP, diet similarity index), nutrient quality (MaxH, Nutrient Rich Diet score, NRD15.3) or diet-related greenhouse gas emissions (GHGE) (MaxS, CO2 equivalents). In all optimised modelled diets, the total amount of meat was lower than in the observed diets, i.e., 30% lower in the MaxP, 50% lower in the MaxH, and 75% lower in the MaxS diets. In the MaxP diet, NRD15.3 was ~6% higher, GHGE was ~9% lower, and ~83% of food intake remained similar. In the MaxH diet, NRD15.3 was ~17% higher, GHGE was ~15% lower, and ~66% of food intake remained similar. In the MaxS diet, NRD15.3 was ~9% higher, GHGE was ~33% lower, and ~65% of food intake remained similar. When using fortified meat replacers, for all modelled diets, the diet similarity was on average 2% lower and the GHGE reduction was on average 3% higher as compared with the same scenarios without fortification. This analysis showed that meat replacers, provided their preference is similar to meat, can provide benefits for GHGE, without necessarily compromising nutrient quality.


Author(s):  
Ю.В. Кузминых ◽  
С.Е. Грязнов

Изменение климата планеты вследствие концентрации парниковых газов в атмосфере является на сегодняшний день одной из основных глобальных экологических проблем. Лесные экосистемы и связанная с ними деятельность занимают важное место в формировании баланса углерода в атмосфере. Положительное влияние лесных экосистем на формирование углеродного баланса планеты признается международными климатическими соглашениями. Парижское соглашение об изменении климата, которое вступило в силу 4 ноября 2016 г., подтверждает возможность выполнения национальных обязательств стран за счет увеличения поглощения углерода лесами. Российской Федерацией продекларированы следующие обязательства по  предотвращению глобального изменения климата – ограничить выбросы парниковых газов на уровне 70–75% от уровня 1990 г. к 2030 г. при условии максимально возможного учета поглощающей способности лесов. В условиях замедления темпов развития российской экономики обязательства, заявленные Российской Федерацией, будут выполнены при условии реализации мер по ограничению и сокращению выбросов парниковых газов, тесно увязанных с политикой и мерами по модернизации российской экономики. Специальных дополнительных мер не потребуется. В перспективе управляемые леса России будут по-прежнему обеспечивать накопление углерода, но поглощаемая ими величина углекислых газов существенно уменьшится. В целях предотвращения снижения вклада лесных экосистем страны в формирование углеродного баланса в атмосфере необходимо проведение мероприятий по сохранению и расширению покрытой лесом площади, а также по совершенствованию управления лесными ресурсами. Лесной сектор России может выступить на международном уровне в качестве поставщика экологических углеродных услуг по сокращению выбросов парниковых газов и увеличения поглощения углерода лесными экосистемами. Основой для их реализации является механизм международной кооперации Парижского климатического соглашения. The climate change due to greenhouse gas concentrations in the atmosphere is today one of the major global environmental problems. Forest ecosystems and related activities occupy an important place in the formation of the carbon balance in the atmosphere. A positive effect of forest ecosystems on the formation of the carbon balance of the planet is recognized in international climate agreements. The Paris agreement on climate change, which entered into force on 4 November 2016, confirms the possibility of fulfilling the national commitment of the countries due to the increase of forests carbon absorbing. The Russian Federation declared the following commitments to prevent global climate change ‒ to limit greenhouse gas emissions by 70–75 percent from 1990 levels by 2030, assuming the maximum possible given the absorptive capacity of forests. In the face of a slowing Russian economy development the commitment of the Russian Federation will be implemented under condition of limiting and reducing greenhouse gas emissions, which are closely linked to the policies and measures on modernization of the Russian economy. Special additional measures are not required. In the future Russian managed forests will continue to provide carbon accumulation, but absorbed amount of carbon dioxide will decrease significantly. In order to prevent reduction of the contribution of forest ecosystems of the country in the formation of the carbon balance in the atmosphere it is necessary to conduct activities for the conservation and expansion of forested area, and on improving the management of forest resources. The forest sector of Russia can act at the international level as a provider of environmental services of carbon to reduce greenhouse gas emissions and increase carbon sequestration in forest ecosystems. The basis for their implementation is a mechanism of international cooperation of the Paris climate agreement. 


2019 ◽  
Vol 213 ◽  
pp. 588-598 ◽  
Author(s):  
Laura Batlle-Bayer ◽  
Alba Bala ◽  
Isabel García-Herrero ◽  
Elodie Lemaire ◽  
Guobao Song ◽  
...  

2005 ◽  
Vol 85 (2) ◽  
pp. 101-119 ◽  
Author(s):  
J. Tzilivakis ◽  
D.J. Warner ◽  
M. May ◽  
K.A. Lewis ◽  
K. Jaggard

Sign in / Sign up

Export Citation Format

Share Document