Dealing with the game-changing technologies of Agriculture 4.0: How do we manage diversity and responsibility in food system transition pathways?

Global Food Security - Tập 24 - Trang 100347 - 2020
Laurens Klerkx1, David Christian Rose2
1Knowledge, Technology and Innovation Group, Wageningen University, The Netherlands.
2School of Agriculture, Policy and Development, University of Reading, United Kingdom

Tóm tắt

Từ khóa


Tài liệu tham khảo

Addicott, 2019

Anseeuw, 2017, 321

Armanda, 2019, The second green revolution: Innovative urban agriculture’s contribution to food security and sustainability – A review, Glob. Food Secur., 22, 13, 10.1016/j.gfs.2019.08.002

Barnes, 2019, Influencing factors and incentives on the intention to adopt precision agricultural technologies within arable farming systems, Environ. Sci. Policy, 93, 66, 10.1016/j.envsci.2018.12.014

Bear, 2019, Beyond resistance: geographies of divergent more-than- human conduct in robotic milking, Geoforum, 10.1016/j.geoforum.2019.04.030

Bellon-Maurel, 2017, Putting agricultural equipment and digital technologies at the cutting edge of agroecology, OCL - Oilseeds and fats, Crops and Lipids, 24

Borrello, 2017, Consumers' perspective on circular economy strategy for reducing food waste, Sustainability, 9, 10.3390/su9010141

Brandt, 2019, Applications of CRISPR technologies across the food supply chain, Ann. Rev. Food Sci. Technol., 10, 133, 10.1146/annurev-food-032818-121204

Bronson, 2018, Smart farming: including rights holders for responsible agricultural innovation, Technol. Innov. Manag. Rev., 8, 10.22215/timreview/1135

Bronson, 2019, Looking through a responsible innovation lens at uneven engagements with digital farming, NJAS - Wageningen J. Life Sci., 90–91, 100294, 10.1016/j.njas.2019.03.001

Bronson, 2019, The digital divide and how it matters for Canadian food system equity, Can. J. Commun., 44, 63, 10.22230/cjc.2019v44n2a3489

Brunori, 2019, Favilli. Promoting adaptive capacity in the digitisation process of rural areas: the DESIRA methodology, 6

Burton, 2019, The potential impact of synthetic animal protein on livestock production: the new “war against agriculture”?, J. Rural Stud., 68, 33, 10.1016/j.jrurstud.2019.03.002

Carolan, 2018, 195

Carolan, 2019, Automated agrifood futures: robotics, labor and the distributive politics of digital agriculture, J. Peasant Stud.

Chilvers, 2016, Remaking participation: science, environment and emergent publics. Abingdon

Clapp, 2014, Financialization, distance and global food politics, J. Peasant Stud., 41, 797, 10.1080/03066150.2013.875536

Creamer, 2002, Milk and dairy products in the 21st century, J. Agric. Food Chem., 50, 7187, 10.1021/jf020711b

De Clercq, 2018

De Wilde, 2016

Eastwood, 2017, Dynamics and distribution of public and private research and extension roles for technological innovation and diffusion: case studies of the implementation and adaptation of precision farming technologies, J. Rural Stud., 49, 1, 10.1016/j.jrurstud.2016.11.008

Eastwood, 2019, Managing socio-ethical challenges in the development of smart farming: from a fragmented to a comprehensive approach for responsible research and innovation, J. Agric. Environ. Ethics, 741, 10.1007/s10806-017-9704-5

Eddens, 2019, White science and indigenous maize: the racial logics of the Green Revolution, J. Peasant Stud., 46, 653, 10.1080/03066150.2017.1395857

Ekboir, 2003, Research and technology policies in innovation systems: zero tillage in Brazil, Res. Policy, 32, 573, 10.1016/S0048-7333(02)00058-6

El Bilali, 2018

Elzen, 2012, Stimulating transitions towards sustainable farming systems, 431

Elzen, 2019, The RIO approach: Design and anchoring of sustainable animal husbandry systems, Technol. Forecast. Soc. Chang., 145, 121, 10.1016/j.techfore.2016.05.023

Ezeomah, 2019, The role of digital platforms in disrupting agricultural value chains in developing countries, IFIP Adv. Inf. Commun. Technol., 231, 10.1007/978-3-030-18400-1_19

Fanzo, 2015, Ethical issues for human nutrition in the context of global food security and sustainable development, Glob. Food Secur., 7, 15, 10.1016/j.gfs.2015.11.001

Feola, 2019, Capitalism in sustainability transitions research: Time for a critical turn?, Environ. Innovat. Societal Transit., 10.1016/j.eist.2019.02.005

Ferguson, 2014, Permaculture for agroecology: design, movement, practice, and worldview. A review, Agron. Sustain. Dev., 34, 251, 10.1007/s13593-013-0181-6

Fielke, 2019, Conceptualising the DAIS: implications of the ‘Digitalisation of agricultural innovation systems’ on technology and policy at multiple levels, NJAS - Wageningen J. Life Sci., 90–91, 100296, 10.1016/j.njas.2019.04.002

Firbank, 2018, Grand challenges in ustainable intensification and ecosystem services, Front. Sustain. Food Syst., 2, 7, 10.3389/fsufs.2018.00007

Fraser, 2019, The digital revolution, data curation, and the new dynamics of food sovereignty construction, J. Peasant Stud., 1

Fraser, 2019, Agriculture 5.0: reconciling production with planetary health, One Earth, 1, 278, 10.1016/j.oneear.2019.10.022

Fuglie, 2016, The growing role of the private sector in agricultural research and development world-wide, Glob. Food Sec., 10, 29, 10.1016/j.gfs.2016.07.005

Gaitán-Cremaschi, 2019, Characterizing diversity of food systems in view of sustainability transitions. A review, Agron. Sustain. Dev., 39, 10.1007/s13593-018-0550-2

Gallardo-López, 2018, Development of the concept of agroecology in Europe: a review, Sustainability, 10, 10.3390/su10041210

Garibaldi, 2017, Farming approaches for greater biodiversity, livelihoods, and food security, Trends Ecol. Evol., 32, 68, 10.1016/j.tree.2016.10.001

Garrett, 2017, Social and ecological analysis of commercial integrated crop livestock systems: current knowledge and remaining uncertainty, Agric. Syst., 155, 136, 10.1016/j.agsy.2017.05.003

Geels, 2007, Typology of sociotechnical transition pathways, Res. Policy, 36, 399, 10.1016/j.respol.2007.01.003

Gengenbach, 2018, Limits of the new green revolution for Africa: reconceptualising gendered agricultural value chains, Geogr. J., 184, 208, 10.1111/geoj.12233

Glover, 2019, Rethinking technological change in smallholder agriculture, Outlook Agric., 48, 169, 10.1177/0030727019864978

Glover, 2017, On the Movement of Agricultural Technologies: Packaging, Unpacking and Situated Reconfiguration, 14

Gómez-Luciano, 2019, Consumers' willingness to purchase three alternatives to meat proteins in the United Kingdom, Spain, Brazil and the Dominican Republic, Food Qual. Prefer., 78, 10.1016/j.foodqual.2019.103732

Grieve, 2019, The challenges posed by global broadacre crops in delivering smart agri-robotic solutions: a fundamental rethink is required, Glob. Food Sec., 23, 116, 10.1016/j.gfs.2019.04.011

Griffin, 2017, Farm's sequence of adoption of information- intensive precision agricultural technology, Appl. Eng. Agric., 33, 521, 10.13031/aea.12228

Hartswood, 2016, SmartSociety: collaboration between humans and machines, promises and perils, IFIP Adv. Inf. Commun. Technol., 30, 10.1007/978-3-319-41763-9_3

Hermans, 2018, The potential contribution of transition theory to the analysis of bioclusters and their role in the transition to a bioeconomy, Biofuels, Bioproducts and Biorefining, 12, 265, 10.1002/bbb.1861

Herrero Acosta, 2019

Hickey, 2019, Breeding crops to feed 10 million, Nat. Biotechnol., 37, 744, 10.1038/s41587-019-0152-9

Horlings, 2011, Towards the real green revolution? Exploring the conceptual dimensions of a new ecological modernisation of agriculture that could ‘feed the world’, Glob. Environ. Chang., 21, 441, 10.1016/j.gloenvcha.2011.01.004

Jouanjean, 2019

Junge, 2017, Strategic points in aquaponics, Water, 9, 182, 10.3390/w9030182

Kanger, 2018, Deep transitions: theorizing the long-term patterns of socio-technical change

Kash, 2002, Emerging patterns of complex technological innovation, Technol. Forecast. Soc. Chang., 69, 581, 10.1016/S0040-1625(01)00171-8

Kernecker, 2019, Experience versus expectation: farmers' perceptions of smart farming technologies for cropping systems across Europe, Precis. Agric.

Kivimaa, 2016, Creative destruction or mere niche support? Innovation policy mixes for sustainability transitions, Res. Policy, 45, 205, 10.1016/j.respol.2015.09.008

Kivimaa, 2019, Towards a typology of intermediaries in sustainability transitions: a systematic review and a research agenda, Res. Policy, 48, 1062, 10.1016/j.respol.2018.10.006

Klerkx, 2010, Adaptive management in agricultural innovation systems: the interactions between innovation networks and their environment, Agric. Syst., 103, 390, 10.1016/j.agsy.2010.03.012

Klerkx, 2019, A review of social science on digital agriculture, smart farming and agriculture 4.0: new contributions and a future research agenda, NJAS - Wageningen J. Life Sci., 90–91, 100315, 10.1016/j.njas.2019.100315

Llewellyn, 2018, Does global agriculture need another green revolution?, Engineering, 4, 449, 10.1016/j.eng.2018.07.017

Loorbach, 2017, Sustainability transitions research: transforming science and practice for societal change, Annu. Rev. Environ. Resour., 42, 599, 10.1146/annurev-environ-102014-021340

Lowry, 2019, Opportunities and challenges for nanotechnology in the agri-tech revolution, Nat. Nanotechnol., 14, 517, 10.1038/s41565-019-0461-7

Mann, 2018, Left to other peoples' devices? A political economy perspective on the big data revolution in development, Dev. Change, 49, 3, 10.1111/dech.12347

Martin-Guay, 2018, The new Green Revolution: sustainable intensification of agriculture by intercropping, Sci. Total Environ., 615, 767, 10.1016/j.scitotenv.2017.10.024

Marvin, 2018, The second green revolution will bring agri-tech breakthroughs to growers, Ind. Biotechnol., 14, 120, 10.1089/ind.2018.29129.drm

2019, Agriculture, nature and food: valuable and connected The Netherlands as a leader in circular agriculture

Nally, 2016, Against food security: on forms of care and fields of violence, Glob. Soc., 30, 558, 10.1080/13600826.2016.1158700

NASA

NFU

Nuthall, 2017, Will future land based food and fibre production be in family or corporate hands? An analysis of farm land ownership and governance considering farmer characteristics as choice drivers. The New Zealand case, Land Use Policy, 63, 98, 10.1016/j.landusepol.2017.01.018

Pavitt, 1984, Sectoral patterns of technical change: towards a taxonomy and a theory, Res. Policy, 13, 343, 10.1016/0048-7333(84)90018-0

Phillips, 2019, Configuring the new digital landscape in western Canadian agriculture, NJAS - Wageningen J. Life Sci., 90–91, 100295, 10.1016/j.njas.2019.04.001

Pigford, 2018, Beyond agricultural innovation systems? Exploring an agricultural innovation ecosystems approach for niche design and development in sustainability transitions, Agric. Syst., 164, 116, 10.1016/j.agsy.2018.04.007

Pingali, 2012, Green revolution: impacts, limits, andthe path ahead, Proc. Natl. Acad. Sci. U. S. A, 109, 12302, 10.1073/pnas.0912953109

Pinstrup-Andersen, 2018, Is it time to take vertical indoor farming seriously?, Glob. Food Sec., 17, 233, 10.1016/j.gfs.2017.09.002

Planko, 2019, Coping with coopetition—facing dilemmas in cooperation for sustainable development: the case of the Dutch smart grid industry, Bus. Strateg. Environ., 28, 665, 10.1002/bse.2271

Plumecocq, 2018, The plurality of values in sustainable agriculture models: diverse lock-in and coevolution patterns, Ecol. Soc., 23, 10.5751/ES-09881-230121

Poole, 2013, Commercialisation: a meta-approach for agricultural development among smallholder farmers in Africa?, Food Policy, 41, 155, 10.1016/j.foodpol.2013.05.010

Pradhan, 2019, Soilless farming - the next generation green revolution, Curr. Sci., 116, 728, 10.18520/cs/v116/i5/728-732

Pyett, 2019

Regan, 2019, ‘Smart farming’ in Ireland: a risk perception study with key governance actors, NJAS - Wageningen J. Life Sci., 90–91, 100292, 10.1016/j.njas.2019.02.003

Rose, 2018, Exploring the spatialities of technological and user re-scripting: the case of decision support tools in UK agriculture, Geoforum, 89, 11, 10.1016/j.geoforum.2017.12.006

Rose, 2019, Integrated farm management for sustainable agriculture: lessons for knowledge exchange and policy, Land Use Policy, 81, 834, 10.1016/j.landusepol.2018.11.001

Rotz, 2019, Automated pastures and the digital divide: how agricultural technologies are shaping labour and rural communities, J. Rural Stud., 68, 112, 10.1016/j.jrurstud.2019.01.023

Royal Society, 2009

Rose, 2018, Agriculture 4.0: broadening responsible innovation in an Era of smart farming, Front. Sustain. Food Syst., 2, 10.3389/fsufs.2018.00087

Rose, 2016, Decision support tools for agriculture: Towards effective design and delivery, Agric. Syst., 149, 165, 10.1016/j.agsy.2016.09.009

Rotz, 2019, The politics of digital agricultural technologies: a preliminary review, Sociol. Rural., 59, 203, 10.1111/soru.12233

RSA, 2019

Schiller, 2019, Nicaragua’s agroecological transition: transformation or reconfiguration of the agri-food regime?, Agroecol. Sustain. Food Syst.

Schlaile, 2017, Innovation systems for transformations towards sustainability? Taking the normative dimension seriously, Sustainability, 9, 2253, 10.3390/su9122253

Scholz, 2018, Unintended side effects of the digital transition: European scientists' messages from a proposition-based expert round table, Sustainability, 10, 2001, 10.3390/su10062001

Schot, 2018, Deep transitions: emergence, acceleration, stabilization and directionality, Res. Policy, 47, 1045, 10.1016/j.respol.2018.03.009

Schot, 2018, Three frames for innovation policy: R&D, systems of innovation and transformative change, Res. Policy, 47, 1554, 10.1016/j.respol.2018.08.011

Schurman, 2018, Micro(soft) managing a ‘green revolution’ for Africa: the new donor culture and international agricultural development, World Dev., 112, 180, 10.1016/j.worlddev.2018.08.003

Sen, 1999

Shepherd, 2018, Priorities for science to overcome hurdles thwarting the full promise of the ‘digital agriculture’ revolution, J. Sci. Food Agric., 10.1002/jsfa.9346

Shew, 2018, CRISPR versus GMOs: Public acceptance and valuation, Glob. Food Secur., 19, 71, 10.1016/j.gfs.2018.10.005

Stephens, 2019, Making Sense of Making Meat: Key Moments in the First 20 Years of Tissue Engineering Muscle to Make Food, Front. Sustain. Food Syst., 3, 10.3389/fsufs.2019.00045

Stilgoe, 2013, Developing a framework for responsible innovation, Res. Policy, 42, 1568, 10.1016/j.respol.2013.05.008

Stirling, 2011, Pluralising progress: from integrative transitions to transformative diversity, Environ. Innov. Soc. Trans., 1, 82, 10.1016/j.eist.2011.03.005

Stuiver, 2006, 147

Tittonell, 2016, Ecological intensification: local innovation to address global challenges, 19, 1

Trendov, 2019

Tucker, 2017

Tziva, 2019, Understanding the protein transition: the rise of plant-based meat substitutes

UK-RAS, 2018

van der Burg, 2019, Ethics of smart farming: current questions and directions for responsible innovation towards the future, NJAS - Wageningen J. Life Sci., 90–91, 100289, 10.1016/j.njas.2019.01.001

Van Hulst, 2020, Using co-constructed mental models to understand stakeholder perspectives on agroecology, Int. J. Agric. Sustain., 10.1080/14735903.2020.1743553

van Lente, 2013, Comparing technological hype cycles: towards a theory, Technol. Forecast. Soc. Chang., 80, 1615, 10.1016/j.techfore.2012.12.004

Vanloqueren, 2009, How agricultural research systems shape a technological regime that develops genetic engineering but locks out agroecological innovations, Res. Policy, 38, 971, 10.1016/j.respol.2009.02.008

Wanzenböck, 2019, A framework for mission-oriented innovation policy: Alternative pathways through the problem-solution space, Work. Pap.

Watanabe, 2018, Digital solutions transform the forest-based bioeconomy into a digital platform industry - A suggestion for a disruptive business model in the digital economy, Technolgy Soc., 54, 168, 10.1016/j.techsoc.2018.05.002

Wezel, 2009, Agroecology as a science, a movement and a practice. A review, Agron. Sustain. Dev., 29, 503, 10.1051/agro/2009004

Wigboldus, 2016, Systemic perspectives on scaling agricultural innovations. A review, Agron. Sustain. Dev., 36, 1, 10.1007/s13593-016-0380-z

Wiseman, 2019, Farmers and their data: an examination of farmers' reluctance to share their data through the lens of the laws impacting smart farming, NJAS - Wageningen J. Life Sci., 90–91, 100301, 10.1016/j.njas.2019.04.007

Wolf, 1996, The political economy of precision farming, Am. J. Agric. Econ., 78, 1269, 10.2307/1243505

World Bank, 2019

Zambon, 2019, Revolution 4.0: industry vs. Agriculture in a future development for SMEs, Processes, 7, 36, 10.3390/pr7010036