Eco-efficiency of leys—The trigger for sustainable integrated crop-dairy farming systems

IF 2.7 3区 农林科学 Q1 AGRONOMY
Friedhelm Taube, John Kormla Nyameasem, Friederike Fenger, Lianne Alderkamp, Christof Kluß, Ralf Loges
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Abstract

The specialisation of agricultural systems in Western Europe and the intensification of livestock and cropping production are intrinsically linked to substantial resource inputs. This intensified approach frequently leads to nutrient surpluses and biodiversity loss, resulting in detrimental environmental impacts. A transformative agricultural shift is imperative in light of climate and environmental protection objectives. Addressing this need, the Lindhof eco-efficient pasture-based milk production initiative, initiated in 2016, is a tangible manifestation of a productive and profitable dairy system integrated within a ley-based Integrated Crop-Livestock System (ICLS). Operational at the organically managed Lindhof farm, this approach involves a rotational stocking system of spring-calving Jersey cows stocked on grass-clover-herb leys embedded within a cash crop rotation. The dairy cows benefit from these highly productive swards, rich in nutritive value comparable to concentrate feeding. At the same time, the cultivated crops derive advantages from the legacy effect of leys due to nutrient exchange facilitated by grazing excreta and residual crop matter. Compared to specialised systems, the ley-based ICLS emerges as an alternative dairy production paradigm that supports many ecosystem services – including minimised nutrient losses, a lower carbon footprint and positive contributions to agro-biodiversity. These outcomes are realised without compromising overall land-use efficiency while reducing environmental and social costs of 20–30 Eurocent per kg of milk produced compared to specialised systems. Thus, the ley-based ICLS conforms to the principles of ecological intensification, enhancing functional diversity within the agricultural landscape. Essentially, the Lindhof initiative represents a holistic and environmentally responsible approach to farming that could contribute to realising the EU Farm to Fork Strategy.

Abstract Image

草地的生态效率——可持续作物-奶牛综合养殖系统的触发器
西欧农业系统的专门化以及牲畜和作物生产的集约化与大量的资源投入有着内在的联系。这种强化的方法经常导致营养过剩和生物多样性丧失,造成有害的环境影响。鉴于气候和环境保护目标,农业转型势在必行。为了满足这一需求,2016年发起的林德霍夫生态高效牧场奶生产倡议,是在以饲草为基础的作物-牲畜综合系统(ICLS)中整合生产和盈利乳制品系统的具体体现。在有机管理的林德霍夫农场,这种方法包括一个春季产犊的泽西牛的轮作放养系统,放养在经济作物轮作中嵌入的三叶草草本草地上。奶牛受益于这些高产草,其丰富的营养价值可与精料饲料相媲美。与此同时,牧草排泄物和作物残馀物质促进养分交换,使作物受益于草地的遗留效应。与专门的系统相比,以麦芽为基础的ICLS是一种替代的乳制品生产模式,它支持许多生态系统服务,包括最大限度地减少营养损失、降低碳足迹和对农业生物多样性的积极贡献。这些成果在不影响整体土地利用效率的情况下实现,同时与专业系统相比,每公斤牛奶生产的环境和社会成本降低了20-30欧分。因此,基于ley的ICLS符合生态集约化原则,增强了农业景观内部的功能多样性。从本质上讲,林德霍夫倡议代表了一种全面的、对环境负责的农业方法,有助于实现欧盟从农场到餐桌的战略。
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来源期刊
Grass and Forage Science
Grass and Forage Science 农林科学-农艺学
CiteScore
5.10
自引率
8.30%
发文量
37
审稿时长
12 months
期刊介绍: Grass and Forage Science is a major English language journal that publishes the results of research and development in all aspects of grass and forage production, management and utilization; reviews of the state of knowledge on relevant topics; and book reviews. Authors are also invited to submit papers on non-agricultural aspects of grassland management such as recreational and amenity use and the environmental implications of all grassland systems. The Journal considers papers from all climatic zones.
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