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Learnings from LCA-based methods: should chemicals in food packaging be a priority focus to protect human health?

机译:从基于LCa的方法中学习:食品包装中的化学品应该成为保护人类健康的重点吗?

摘要

Given the scale and variety of human health damage (HHD) caused by food systems, prioritization methods are urgently needed. In this study HHD is estimated for case studies on red meat and sugary sweetened beverages (SSB) packaged inhigh-impact polystyrene (HIPS) due to various relevant health impacts. Specifically, we aim to asses if chemicals in food packaging are important to HHD in a life cycle context. The functional unit is "daily consumption of a packaged foodper person in the United States." Method developments focus on human toxicity characterization of chemicals migrating from packaging into food. Chemicals and their concentrations in HIPS were identified from regulatory lists. A newhigh-throughput model estimated migration into food, depending on properties of chemicals, packaging, food, and scenario, and HHD was extrapolated following LCA characterization methods. An LCA-based study on the packaged foodsestimated HHD from particulate matter and chemical emissions. Finally, the HHD of consumption of red meat and SSB above the minimum risk level was estimated using novel methods by Stylianou et al. 2016 based on the Global Burden ofDisease studies. Results indicate that impacts caused by consumption of food items over minimum risk are high priority for mitigating HHD, as well as associated PM2.5 emissions from agriculture. Impacts due to the chemicals migrating fromHIPS into food were minor given the study’s assumptions, limitations, and methods. However, calculating the HHD for migration levels at the legally allowable limits resulted in impacts three orders of magnitude greater than impacts from the assumed chemical concentrations, and thus a relevant contributor to HHD. Future work is required to quantify realistic exposure to chemicals in packaging and their potential effects in order to elucidate significance in a life cycle context.Understanding toxicity risks posed by simultaneous exposure to several chemicals at one time, all of which are below safety thresholds, requires cross-fertilization with risk and toxicity research. Lastly, the methods developed are a first steptowards operationalizing LCA for practitioners to ensure that minimizing impacts on the environment and resources due to food packaging design choices do not lead to unintended health risks caused by chemicals in packaging, and vice versa that minimizing exposure to hazardous chemicals do not increase environmental damages.
机译:考虑到由食物系统造成的对人类健康的危害(HHD)的规模和种类,迫切需要确定优先次序的方法。在本研究中,由于各种相关的健康影响,估计HHD可以用于包装在高抗冲聚苯乙烯(HIPS)中的红肉和含糖甜味饮料(SSB)的案例研究。具体来说,我们旨在评估食品包装中的化学物质在生命周期中对HHD是否重要。功能单元是“在美国,每人每天食用包装食品的数量”。方法的发展侧重于从包装迁移到食品中的化学药品的人体毒性表征。化学品及其在HIPS中的浓度从法规清单中确定。一个新的高通量模型根据化学物质,包装,食物和情景的特性估计向食物中的迁移,并根据LCA表征方法推断HHD。基于LCA的包装食品中HHD的研究来自颗粒物和化学物质的排放。最后,使用Stylianou等人的新方法估算了食用红肉和SSB高于最低风险水平的HHD。 2016年基于全球疾病负担研究。结果表明,食用食品超过最低风险所造成的影响是减轻人类健康和其他相关的PM2.5排放的高度优先事项。考虑到这项研究的假设,局限和方法,由化学物质从HIPS迁移到食物中造成的影响很小。但是,计算迁移水平的HHD在法律允许的极限范围内,所产生的影响要比假定的化学浓度所产生的影响大三个数量级,因此对HHD做出了重要贡献。为了阐明在生命周期中的重要性,需要对未来的工作进行量化,以量化包装中化学物质的实际暴露量及其潜在影响。了解一次同时暴露于几种化学物质所造成的毒性风险,所有这些物质均低于安全阈值交叉施肥与风险和毒性研究。最后,所开发的方法是向从业人员实施LCA的第一步,以确保将食品包装设计选择对环境和资源的影响减至最小不会导致包装中的化学品引起意想不到的健康风险,反之亦然,从而将危害性暴露降至最低化学药品不会增加环境损害。

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