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提升养猪系统环境可持续性的热点与瓶颈,重点关注欧洲养猪系统。

Hotspots and bottlenecks for the enhancement of the environmental sustainability of pig systems, with emphasis on European pig systems.

作者信息

Pexas Georgios, Kyriazakis Ilias

机构信息

School of Water, Energy and Environment, Cranfield University, Cranfield, UK.

Institute for Global Food Security, Queen's University Belfast, Belfast, UK.

出版信息

Porcine Health Manag. 2023 Nov 16;9(1):53. doi: 10.1186/s40813-023-00347-5.

Abstract

Although pig systems start from a favourable baseline of environmental impact compared to other livestock systems, there is still scope to reduce their emissions and further mitigate associated impacts, especially in relation to nitrogen and phosphorous emissions. Key environmental impact hotspots of pig production systems are activities associated with feed production and manure management, as well as direct emissions (such as methane) from the animals and energy use. A major contributor to the environmental impacts associated with pig feed is the inclusion of soya in pig diets, especially since European pig systems rely heavily on soya imported from areas of the globe where crop production is associated with significant impacts of land use change, deforestation, carbon emissions, and loss of biodiversity. The "finishing" pig production stage contributes most to these environmental impacts, due to the amount of feed consumed, the efficiency with which feed is utilised, and the amount of manure produced during this stage. By definition therefore, any substantial improvements pig system environmental impact would arise from changes in feed production and manure management. In this paper, we consider potential solutions towards system environmental sustainability at these pig system components, as well as the bottlenecks that inhibit their effective implementation at the desired pace and magnitude. Examples include the quest for alternative protein sources to soya, the limits (perceived or real) to the genetic improvement of pigs, and the implementation of alternative manure management strategies, such as production of biogas through anaerobic digestion. The review identifies and discusses areas that future efforts can focus on, to further advance understanding around the potential sustainability benefits of modifications at various pig system components, and key sustainability trade-offs across the environment-economy-society pillars associated with synergistic and antagonistic effects when joint implementation of multiple solutions is considered. In this way, the review opens a discussion to facilitate the development of holistic decision support tools for pig farm management that account for interactions between the "feed * animal * manure" system components and trade-offs between sustainability priorities (e.g., environmental vs economic performance of pig system; welfare improvements vs environmental impacts).

摘要

尽管与其他畜牧系统相比,养猪系统在环境影响方面有一个良好的基线,但仍有减少其排放并进一步减轻相关影响的空间,特别是在氮和磷排放方面。养猪生产系统的主要环境影响热点是与饲料生产和粪便管理相关的活动,以及动物的直接排放(如甲烷)和能源使用。与猪饲料相关的环境影响的一个主要因素是猪日粮中含有大豆,特别是因为欧洲的养猪系统严重依赖从全球各地进口的大豆,而这些地区的作物生产与土地利用变化、森林砍伐、碳排放和生物多样性丧失的重大影响有关。“育肥”猪生产阶段对这些环境影响的贡献最大,这是由于该阶段消耗的饲料量、饲料利用效率以及产生的粪便量。因此,从定义上讲,养猪系统环境影响的任何实质性改善都将来自饲料生产和粪便管理的变化。在本文中,我们考虑了针对这些养猪系统组成部分实现系统环境可持续性的潜在解决方案,以及阻碍它们以期望的速度和规模有效实施的瓶颈。例子包括寻找大豆的替代蛋白质来源、猪遗传改良的限制(感知到的或实际的),以及实施替代粪便管理策略,如通过厌氧消化生产沼气。该综述确定并讨论了未来努力可以关注的领域,以进一步加深对养猪系统各组成部分修改的潜在可持续性效益的理解,以及在考虑联合实施多种解决方案时,环境 - 经济 - 社会支柱之间关键的可持续性权衡,这些权衡涉及协同和拮抗效应。通过这种方式,该综述开启了一场讨论,以促进开发用于猪场管理的整体决策支持工具,该工具考虑了“饲料动物粪便”系统组成部分之间的相互作用以及可持续性优先事项之间的权衡(例如,养猪系统的环境与经济绩效;福利改善与环境影响)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbe0/10652603/96cc3a25732a/40813_2023_347_Fig1_HTML.jpg

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