Measuring public relative importance for agricultural and rural multifunctionality: an application of case 1 best–worst scaling

IF 1.9 4区 农林科学 Q2 AGRICULTURAL ENGINEERING Paddy and Water Environment Pub Date : 2024-09-15 DOI:10.1007/s10333-024-00998-2
Hideo Aizaki, Hirokazu Akahori, Yasutaka YamamotO
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Abstract

The concept of agricultural and rural multifunctionality expands the public’s understanding of the diverse roles of agriculture and rural areas. However, the establishment of the concept burdens governments with a complicated issue related to formulating an agricultural and rural policy, as the public could have diverse views on the functions that should be promoted via the policy. This study applies case 1 best–worst scaling to measure the relative importance of agricultural and rural multifunctionality in Japan. Sixteen functions, including the primary function of agriculture (agricultural commodity output), were addressed. The results show that, on average, agricultural commodity output was prioritized most, followed by disaster prevention-related, water-related, and biological conservation functions. The clustering results demonstrate that the individuals were divided into seven classes and that the relative importance of functions among the seven classes differed significantly. The heterogeneity in the relative importance of functions among the public indicates that social consensus on weighting multifunctional roles in agricultural and rural policies cannot be reached easily.

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衡量公众对农业和农村多功能的相对重要性:案例 1 最佳-最差比例的应用
农业和农村多功能性的概念拓展了公众对农业和农村地区多样化作用的理解。然而,这一概念的确立给政府带来了一个与制定农业和农村政策有关的复杂问题,因为公众对政策应促进的功能可能有不同的看法。本研究采用案例 1 最佳-最差比例来衡量日本农业和农村多功能性的相对重要性。研究涉及 16 项功能,包括农业的主要功能(农产品产出)。结果表明,平均而言,农业商品产出的优先级最高,其次是与防灾相关的功能、与水相关的功能和生物保护功能。聚类结果表明,个体被分为七个等级,而七个等级之间功能的相对重要性存在显著差异。公众对功能的相对重要性的差异表明,在农业和农村政策中对多功能作用的权重很难达成社会共识。
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来源期刊
Paddy and Water Environment
Paddy and Water Environment AGRICULTURAL ENGINEERING-AGRONOMY
CiteScore
4.70
自引率
4.50%
发文量
36
审稿时长
2 months
期刊介绍: The aim of Paddy and Water Environment is to advance the science and technology of water and environment related disciplines in paddy-farming. The scope includes the paddy-farming related scientific and technological aspects in agricultural engineering such as irrigation and drainage, soil and water conservation, land and water resources management, irrigation facilities and disaster management, paddy multi-functionality, agricultural policy, regional planning, bioenvironmental systems, and ecological conservation and restoration in paddy farming regions.
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