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A multi-actor, participatory approach to identify policy and technical barriers to better farming practices that protect our drinking water sources

机译:一个多演员,参与式方法,以确定政策和技术障碍,以更好的耕作实践,保护我们的饮用水来源

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摘要

Despite an improvement of water quality across Europe there are many pollution hotspots for both nitrates and PPPs, mainly due to agricultural activities. The BMPs and MMs to reduce pollution from agriculture are well known, and there are policy instruments in place to ensure drinking water standards, but the current approach has not been efficient enough. Within the H2020 Water Protect project the premise was that there is a need for a multi-actor, participatory approach to tackle the issue from a new angle, and to assess why the uptake of known BMPs and MMs was not better among farmers. Seven "Action Labs" were selected that represent major physical, socio-economical, cultural and farming settings across Europe. A methodology of multi-actor engagement was chosen but with different approaches due to the local context. Initially the level of farmers' awareness about water quality issues was matched to the observed uptake rates of BMPs and MMs. In a second survey barriers hindering the uptake of measures were identified. The first survey revealed a low general awareness on the potential pollution to drinking water sources. Despite this, between 24% to 88% of the surveyed farmers per Action Lab were already voluntarily adopting one quarter of the selected BMPs and MMs. The second survey demonstrated the need to address organisational, legislative, sociological and technical barriers. The lack of coordination between different institutional bodies promoting measures and the financial incentives needed to invest and operate these often-costly measures need to be considered. The multi-actor, participatory approach with its improved awareness and collaboration made it possible to identify the crucial factors for improvement - to build a social acceptance among all actors and communicate the issues and solutions from the start.
机译:尽管欧洲水质提高了水质,但硝酸盐和PPP都有许多污染热点,主要是由于农业活动。 BMP和MMS减少农业污染是众所周知的,并且有政策仪器到位,以确保饮用水标准,但目前的方法尚未有效。在H2020水保护项目中,前提是需要一种多功能者,参与性方法来解决新角度问题,并评估为什么在农民之间的接受不佳的额外摄取BMP和MMS并不更好。选择了七个“行动实验室”,代表欧洲的主要物理,社会经济,文化和农业环境。选择多actor接合的方法,但由于本地背景,采用不同的方法。最初,农民对水质问题的认识程度与观察到的BMP和MMS的摄取率相匹配。在第二次调查障碍中,妨碍了确定措施的吸收。第一次调查揭示了对饮用水源潜在污染的一般意识。尽管如此,每次行动实验室的24%至88%的受访农民已经自愿采用四分之一的选定的BMP和MMS。第二次调查表明,需要解决组织,立法,社会学和技术障碍。不同机构机构之间缺乏协调促进措施和投资和运作这些经常衡量的措施所需的金融激励措施需要考虑。多演员,参与性方法,提高了意识和合作使得可以识别改进的关键因素 - 在所有行动者之间建立社会接受,并从一开始就传达问题和解决方案。

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  • 来源
    《The Science of the Total Environment》 |2021年第2期|142971.1-142971.15|共15页
  • 作者单位

    Vlaamse Instelling voor Technologisch Onderzoek Boeretang 200 Mol 2400 Belgium;

    Vlaamse Instelling voor Technologisch Onderzoek Boeretang 200 Mol 2400 Belgium Department of Bioscience Engineering University of Antwerp Groenenborgerlaan 171 B-2020 Antwerp Belgium;

    Universita Cattolica del Sacro Cuore European Observatory on Sustainable Agriculture DISTAS Via Emilia Parmense 84 29122 Piacenza PC Italy;

    Universita Cattolica del Sacro Cuore European Observatory on Sustainable Agriculture DISTAS Via Emilia Parmense 84 29122 Piacenza PC Italy;

    Universita Cattolica del Sacro Cuore European Observatory on Sustainable Agriculture DISTAS Via Emilia Parmense 84 29122 Piacenza PC Italy;

    Polish Geological Institute - National Research Institute 4 Rakowiecka Street 00-975 Warsaw Poland;

    European Water Stewardship Oostergoweg 9 8911 MA Leeuwarden the Netherlands;

    Institute of Technology and Life Sciences Falenty Al. Hrabska 3 05-090 Raszyn Poland;

    Eigen Vermogen van het Instituut voor Landbouw en Visserijonderzoek Burgemeester van Cansberghelaan 96 Merelbeke 9820 Belgium;

    Eigen Vermogen van het Instituut voor Landbouw en Visserijonderzoek Burgemeester van Cansberghelaan 96 Merelbeke 9820 Belgium;

    INAGRO Ieperseweg 87 Rumbeke Roselare 8800 Belgium;

    INAGRO Ieperseweg 87 Rumbeke Roselare 8800 Belgium;

    Crops Environment and Land Use Programme/Agricultural Catchments Programme Teagasc Johnstown Castle Environment Research Centre Wexford Co. Wexford Ireland;

    Crops Environment and Land Use Programme/Agricultural Catchments Programme Teagasc Johnstown Castle Environment Research Centre Wexford Co. Wexford Ireland;

    Crops Environment and Land Use Programme/Agricultural Catchments Programme Teagasc Johnstown Castle Environment Research Centre Wexford Co. Wexford Ireland;

    Crops Environment and Land Use Programme/Agricultural Catchments Programme Teagasc Johnstown Castle Environment Research Centre Wexford Co. Wexford Ireland;

    Asociatia Ecologic Baia Mare Florilor Str 8/36 Baia Mare 430273 Romania;

    CPABLLParc Agrari del Baix Llobregat Can Comas Cami de la Rivera s/n 08820 El Prat de Llobregat Spain;

    CSICWater Environmental and Food Chemistry Unit (ENFOCHEM) Department of Environmental Chemistry Institute of Environmental Assessment and Water Research (IDAEA-CSIC) Agencia Estatal Consejo Superior de Investigations Cientificas Jordi Girona 18 Barcelona 08034 Spain;

    CSICWater Environmental and Food Chemistry Unit (ENFOCHEM) Department of Environmental Chemistry Institute of Environmental Assessment and Water Research (IDAEA-CSIC) Agencia Estatal Consejo Superior de Investigations Cientificas Jordi Girona 18 Barcelona 08034 Spain;

    Kobenhavns Universitet Norregade 10 Kobenhavn 1165 Denmark;

    Geological Survey of Denmark and Greenland Oster Voldgade 10 Kobenhavn K1350 Denmark;

    Polish Geological Institute - National Research Institute Pomeranian Branch 20 Wieniawskiego St. 71-130 Szczecin Poland;

    Universita Cattolica del Sacro Cuore European Observatory on Sustainable Agriculture DISTAS Via Emilia Parmense 84 29122 Piacenza PC Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Best Management Practices; Mitigation measures; Nitrates; Plant protection products; Common Agricultural Policy; Water contamination;

    机译:最佳管理实践;缓解措施;硝酸盐;植物保护产品;常见的农业政策;水污染;

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