Adaptation technologies for climate-smart agriculture: a patent network analysis

IF 2.5 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Mitigation and Adaptation Strategies for Global Change Pub Date : 2024-02-23 DOI:10.1007/s11027-024-10111-x
Yeong Sheng Tey, Mark Brindal, Suryani Darham, Syahaneem Mohamad Zainalabidin
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Abstract

Global interest in innovative adaptation approaches in climate-smart agriculture is growing, and adaptation technologies are expanding. This study investigates technological developments in agricultural adaptation innovation through an analysis of specific technology classifications in a global patent database. Patent keyword co-occurrence network analyses show that greenhouse technologies have received increased R&D attention, while early composting processing technologies have evolved into organic fertilizer product innovation. Biotechnology has been another area of R&D, seeking desirable traits suited to the changing climatic conditions. Resource restoration innovations have recently emerged. Addressing climate challenges, these technologies broaden climate-smart agriculture policy options, from general to specific operations. They provide the means for integration with nature-based adaptation strategies, but their diffusion (and hence potential) may be limited by the path dependence of ownership. While commercialization will continue to drive innovation diffusion, international cooperation is desirable to better facilitate technology transfer. Future efforts are recommended to reduce the complexity of climate-smart agriculture. As technology becomes more available and integrated with nature-based solutions, it is our recommendation that policymakers and governments should consistently seek to reduce impediments to an exchange of knowledge.

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气候智能型农业的适应技术:专利网络分析
全球对气候智能型农业创新适应方法的兴趣与日俱增,适应技术也在不断扩展。本研究通过分析全球专利数据库中的具体技术分类,调查农业适应创新的技术发展。专利关键词共现网络分析显示,温室技术得到了越来越多的研发关注,而早期的堆肥处理技术已经发展成为有机肥产品创新。生物技术一直是研发的另一个领域,它寻求适合不断变化的气候条件的理想性状。最近出现了资源恢复创新技术。为了应对气候挑战,这些技术扩大了气候智能型农业政策的选择范围,从一般操作到具体操作。它们提供了与基于自然的适应战略相结合的手段,但其推广(以及潜力)可能会受到所有权路径依赖的限制。虽然商业化将继续推动创新的传播,但最好开展国际合作,以更好地促进技术转让。建议今后努力降低气候智能型农业的复杂性。随着技术越来越普及并与基于自然的解决方案相结合,我们建议决策者和政府应不断寻求减少知识交流的障碍。
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来源期刊
CiteScore
6.60
自引率
0.00%
发文量
50
审稿时长
3 months
期刊介绍: The Earth''s biosphere is being transformed by various anthropogenic activities. Mitigation and Adaptation Strategies for Global Change addresses a wide range of environment, economic and energy topics and timely issues including global climate change, stratospheric ozone depletion, acid deposition, eutrophication of terrestrial and aquatic ecosystems, species extinction and loss of biological diversity, deforestation and forest degradation, desertification, soil resource degradation, land-use change, sea level rise, destruction of coastal zones, depletion of fresh water and marine fisheries, loss of wetlands and riparian zones and hazardous waste management. Response options to mitigate these threats or to adapt to changing environs are needed to ensure a sustainable biosphere for all forms of life. To that end, Mitigation and Adaptation Strategies for Global Change provides a forum to encourage the conceptualization, critical examination and debate regarding response options. The aim of this journal is to provide a forum to review, analyze and stimulate the development, testing and implementation of mitigation and adaptation strategies at regional, national and global scales. One of the primary goals of this journal is to contribute to real-time policy analysis and development as national and international policies and agreements are discussed and promulgated.
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