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. 2023 Mar;153(3):857-869.
doi: 10.1016/j.tjnut.2023.02.001. Epub 2023 Feb 6.

The Environmental Sustainability of Plant-Based Dietary Patterns: A Scoping Review

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Free article

The Environmental Sustainability of Plant-Based Dietary Patterns: A Scoping Review

Cassandra N Carey et al. J Nutr. 2023 Mar.
Free article

Abstract

Background: A large part of the existential threat associated with climate change is the result of current human feeding patterns. Over the last decade, research evaluating the diet-related environmental impacts of plant-based diets has emerged, and a synthesis of the available data is now due.

Objectives: The objectives of the study were as follows: 1) to compile and summarize the literature on diet-related environmental impacts of plant-based dietary patterns; 2) to assess the nature of the data on impacts of plant-based dietary patterns on both environmental parameters and health (e.g., if land use is reduced for a particular diet, is cancer risk also reduced?); and 3) to determine where sufficient data exist for meta-analyses, in addition to identifying gaps within the literature.

Methods: Global peer-reviewed studies on the environmental impacts of plant-based diets were searched in Ovid MEDLINE, EMBASE, and Web of Science. After removing duplicates, the screening identified 1553 records. After 2 stages of independent review by 2 reviewers, 65 records met the inclusion criteria and were eligible to be used in synthesis.

Results: Evidence suggests that plant-based diets may offer lower greenhouse gas emissions (GHGEs), land use, and biodiversity loss than offered by standard diets; however, the impact on water and energy use may depend on the types of plant-based foods consumed. Further, the studies were consistent in demonstrating that plant-based dietary patterns that reduce diet-related mortality also promote environmental sustainability.

Conclusions: Overall, there was agreement across the studies regarding the impact of plant-based dietary patterns on GHGE, land used, and biodiversity loss despite varied plant-based diets assessed.

Keywords: Dietary sustainability; biodiversity loss; dietary patterns; energy use; environmental impacts; greenhouse gas emission; land use; plant-based diets; water use.

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