传统养牛还是有机养牛?作物产量、畜牧能力、有机溢价和政府支付之间的权衡

IF 6.1 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY Agricultural Systems Pub Date : 2024-05-09 DOI:10.1016/j.agsy.2024.103991
Rasmus Bang , Bjørn Gunnar Hansen , Mario Guajardo , Jon Kristian Sommerseth , Ola Flaten , Leif Jarle Asheim
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引用次数: 0

摘要

内容对农民来说,一个重要的问题是以传统方式还是有机方式经营农场。本研究的主要目的是比较传统养牛系统和有机养牛系统的盈利能力,并研究盈利能力如何与各个农场的特点相关联,如饲草生产能力、饲草质量、牛奶配额、牲畜饲养量以及它们之间的相对关系。该模型的主要目标是在遵守一系列约束条件的前提下,通过优化与土地使用和牲畜存栏相关的决策,实现毛利率最大化。我们系统地求解了 20 多万个具有不同农场特征的模型实例:如果优质草料唾手可得,但由于畜舍和牛奶配额的限制,畜牧业无法扩大,那么有机农业可能会超越传统农业。否则,传统农业的毛利率将达到最大化。这些发现强调,在考虑从传统农业向有机农业过渡时,与可用牛奶配额和基础设施相关的饲草生产能力和质量起着至关重要的作用。广泛的敏感性分析证实了这些结论的稳健性。政府农业补贴等地区监管因素也发挥着重要作用,并影响着最佳耕作方式。此外,我们还表明,即使在政府支付占农业收入很大一部分的系统中,有机产品溢价的增加也会显著影响有机农业的竞争力。该模型还可用于政策制定者确定所需的支持水平,以使不同类型的农场值得转产。我们还表明,现有的政府支付计划导致挪威有机农业激励措施存在地区差异。为了确保在全国范围内对有机农业的平等激励,必须对有机农业补贴进行地区性调整,这与其他地区性政府补贴是一致的。政策制定者和其他利益相关者可能会对这一见解非常感兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Conventional or organic cattle farming? Trade-offs between crop yield, livestock capacity, organic premiums, and government payments

CONTEXT

An important question for farmers is whether to run their farm conventionally or organically. This choice can significantly affect the farm's financial performance and its impact on the environment.

OBJECTIVE

The primary objective of this study is to compare the profitability of conventional and organic cattle systems and investigate how it is associated with individual farm characteristics, like forage production capacity, forage quality, milk quota, animal housing capacity, and their relative presences.

METHOD

We employ a whole farm optimization model, customized for Norwegian cattle farming. The primary goal of this model is to maximize the gross margin by optimizing decisions related to land usage and animal inventory while adhering to a set of constraints. We systematically solve more than 200,000 model instances, with varying farm characteristics.

RESULTS AND CONCLUSIONS

The results can be distilled to the following key points: If forage of good quality is readily available, but the livestock operation cannot be expanded due to animal housing and milk quota restrictions, organic may outcompete conventional farming. Otherwise, gross margin is maximized with conventional farming. These findings emphasize the crucial role of forage production capacity and quality in relation to available milk quota and infrastructure when considering the transition from conventional to organic farming. Extensive sensitivity analyses affirm the robustness of these conclusions. Regional regulatory factors, such as government farm payments, also play a significant role, and influence the optimal farming approach. Additionally, we show that increases in organic price premiums can markedly impact the competitiveness of organic farming, even in a system where government payments make out a significant part of the farm revenue.

SIGNIFICANCE

The model can support farmers to make informed decisions about converting to organic or conventional farming. It can also be used by policymakers to determine the level of support required to make it worthwhile for different types of farms to convert. We also show that existing government payment schemes give rise to regional differences in the incentives for organic farming in Norway. To ensure equal incentives for organic farming across the country, the organic payments would have to be regionally adjusted, in line with the other already regionally dependent government payments. This insight may be of significant interest to policymakers and other stakeholders.

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来源期刊
Agricultural Systems
Agricultural Systems 农林科学-农业综合
CiteScore
13.30
自引率
7.60%
发文量
174
审稿时长
30 days
期刊介绍: Agricultural Systems is an international journal that deals with interactions - among the components of agricultural systems, among hierarchical levels of agricultural systems, between agricultural and other land use systems, and between agricultural systems and their natural, social and economic environments. The scope includes the development and application of systems analysis methodologies in the following areas: Systems approaches in the sustainable intensification of agriculture; pathways for sustainable intensification; crop-livestock integration; farm-level resource allocation; quantification of benefits and trade-offs at farm to landscape levels; integrative, participatory and dynamic modelling approaches for qualitative and quantitative assessments of agricultural systems and decision making; The interactions between agricultural and non-agricultural landscapes; the multiple services of agricultural systems; food security and the environment; Global change and adaptation science; transformational adaptations as driven by changes in climate, policy, values and attitudes influencing the design of farming systems; Development and application of farming systems design tools and methods for impact, scenario and case study analysis; managing the complexities of dynamic agricultural systems; innovation systems and multi stakeholder arrangements that support or promote change and (or) inform policy decisions.
期刊最新文献
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