scholarly journals Land and Water Systems: Looking to the future and a more resilient and sustainable society and environment

2021 ◽  
Author(s):  
Elisabetta Gotor ◽  
Swamikannu Nedumaran ◽  
Nicola Cenacchi ◽  
Nhuong Tran ◽  
Shahnila Dunston ◽  
...  

Food, land, and water systems are facing unprecedented change. The world’s population is projected to grow to approximately 10 billion people by 2050, while aging and declining in some regions. Global average incomes are expected to keep increasing at a slow but steady pace. With increasing incomes and the ability of consumers to purchase more and better food in combination with population growth, food demand is projected to grow substantially over the next three decades. Meanwhile, demographic changes and economic development also drive urbanization, migration, and structural transformation of rural communities. At the same time changes to precipitation and temperature as well as the occurrence of extreme events driven by climate change are becoming more prevalent and impacting society and the environment. Currently, humanity is approaching or exceeding planetary boundaries in some areas, with over-use of limited productive natural resources such as water and phosphate, net emissions of greenhouse gases, and decreases in biodiversityMuch is published about food and agriculture and the supporting/underpinning land and water systems, but no single source focuses regularly and systematically on the future of agriculture and food systems, particularly on the challenges and opportunities faced by developing countries. This working paper is part of an effort by the CGIAR foresight team to help fill that gap. The effort recognizes that there is much to learn from past experience, and there are clearly many urgent and immediate challenges, but given the pace and complexity of change we are currently experiencing, there is also an increasing need to look carefully into the future of food, land, and water systems to inform decision making today.

2019 ◽  
Vol 11 (1) ◽  
pp. 222 ◽  
Author(s):  
Ozgul Calicioglu ◽  
Alessandro Flammini ◽  
Stefania Bracco ◽  
Lorenzo Bellù ◽  
Ralph Sims

The availability, access, utilization and stability of food supply over time are the four pillars of food security which support nutrition outcomes. Addressing the issues raised globally around these pillars remains a challenge. The Food and Agriculture Organization of the United Nations (FAO) 2017 report “The future of food and agriculture: trends and challenges” outlined the challenges which will have to be addressed in order for sustainable agricultural services to cost-effectively meet the growing food demand of the world population. In this study, we systematically analyzed the future challenges of the agriculture and food systems by focusing on (1) their root causes and trends; and (2) the interlinkages among the solutions proposed to address the challenges using social network analysis tools. It found that, if trends leading to extreme poverty are reversed, several other challenges will also be partially addressed and that climate change has the highest impact on the network of trends. Improving food security would have positive impacts on food access and utilization. The clear outline of the qualitative relationships among challenges presented and insights will help their prioritization by decision makers. However, additional in-depth quantitative analysis is necessary before measures identified to tackle the challenges could be effectively implemented.


2018 ◽  
Vol 285 (1891) ◽  
pp. 20181977 ◽  
Author(s):  
S. F. Ryan ◽  
N. L. Adamson ◽  
A. Aktipis ◽  
L. K. Andersen ◽  
R. Austin ◽  
...  

The power of citizen science to contribute to both science and society is gaining increased recognition, particularly in physics and biology. Although there is a long history of public engagement in agriculture and food science, the term ‘citizen science’ has rarely been applied to these efforts. Similarly, in the emerging field of citizen science, most new citizen science projects do not focus on food or agriculture. Here, we convened thought leaders from a broad range of fields related to citizen science, agriculture, and food science to highlight key opportunities for bridging these overlapping yet disconnected communities/fields and identify ways to leverage their respective strengths. Specifically, we show that (i) citizen science projects are addressing many grand challenges facing our food systems, as outlined by the United States National Institute of Food and Agriculture, as well as broader Sustainable Development Goals set by the United Nations Development Programme, (ii) there exist emerging opportunities and unique challenges for citizen science in agriculture/food research, and (iii) the greatest opportunities for the development of citizen science projects in agriculture and food science will be gained by using the existing infrastructure and tools of Extension programmes and through the engagement of urban communities. Further, we argue there is no better time to foster greater collaboration between these fields given the trend of shrinking Extension programmes, the increasing need to apply innovative solutions to address rising demands on agricultural systems, and the exponential growth of the field of citizen science.


2021 ◽  
Author(s):  
Gideon Kruseman ◽  
Ahmad Dermawan ◽  
Mandiaye Diagne ◽  
Dolapo Enahoro ◽  
Aymen Frija ◽  
...  

Challenges related to poverty, hunger, nutrition, health, and the environment are widespread and urgent. One way to stress the urgency of making the right decisions about the future of the global food systems now is to better understand and more clearly articulate the alternative scenarios that food systems face. Developing, synthesizing, and presenting such alternatives to decision makers in a clear way is the ultimate goal of e CGIAR Foresight team.No single source of information focuses regularly and systematically on the future of food and agriculture, and challenges facing developing countries. Our work aims to fill that gap with a focus on agricultural income and employment.group systematically collects information about past, on-going and planned foresight activities across CGIAR centers and their partners, spanning the global agricultural research for development arenaWe present a comprehensive overview and synthesis of the results of relevant foresight research, which through the tagging with metadata allows for customized investigations in greater detail. The cross-cutting nature of this work allows for a more comprehensive picture and assessments of possible complementarities/trade-offs.Potential users of this report and associated activities include CGIAR science leaders and scientists as well as the broader research community, national and international development partners, national governments and research organizations, funders, and the private sector.The approach developed by the CGIAR foresight group is used to make foresight study results accessible across organizations and domains in order to aid policy and decision makers for strategic planning. The approach allows visualization of both the available information across multiple entry points as well as the identification of critical knowledge gaps.


Author(s):  
Juha Helenius ◽  
Alexander Wezel ◽  
Charles A. Francis

Agroecology can be defined as scientific research on ecological sustainability of food systems. In addressing food production and consumption systems in their entirety, the focus of agroecology is on interactions and processes that are relevant for transitioning and maintaining ecological, economic, political, and social-cultural sustainability. As a field of sustainability science, agroecology explores agriculture and food with explicit linkages to two other widespread interpretations of the concept of agroecology: environmentally sound farming practices and social movements for food security and food sovereignty. In the study of agroecology as science, both farming practices and social movements emerge as integrated components of agroecological research and development. In the context of agroecology, the concept of ecology refers not only to the science of ecology as biological research but also to environmental and social sciences with research on social systems as integrated social and ecological systems. In agroecological theory, all these three are merged so that agroecology can broadly be defined as “human food ecology” or “the ecology of food systems.” Since the last decades of the 20th century many developments have led to an increased emphasis on agroecology in universities, nonprofit organizations, movements, government programs, and the United Nations. All of these have raised a growing attention to ecological, environmental, and social dimensions of farming and food, and to the question of how to make the transition to sustainable farming and food systems. One part of the foundation of agroecology was built during the 1960s when ecologically oriented environmental research on agriculture emerged as the era of optimism about component research began to erode. Largely, this took place as a reaction to unexpected and unwanted ecological and social consequences of the Green Revolution, a post–World War II scaling-up, chemicalization, and mechanization of agriculture. Another part of the foundation was a nongovernmental movement among thoughtful farmers wanting to develop sustainable and more ecological/organic ways of production and the demand by consumers for such food products. Finally, a greater societal acceptance, demand for research and education, and public funding for not only environmental ecology but also for wider sustainability in food and agriculture was ignited by an almost sudden high-level political awakening to the need for sustainable development by the end of 1980s. Agroecology as science evolved from early studies on agricultural ecosystems, from research agendas for environmentally sound farming practices, and from concerns about addressing wider sustainability; all these shared several forms of systems thinking. In universities and research institutions, agroecologists most often work in faculties of food and agriculture. They share resources and projects among scientists having disciplinary backgrounds in genetics (breeding of plants and animals), physiology (crop science, animal husbandry, human nutrition), microbiology or entomology (crop protection), chemistry and physics (soil science, agricultural and food chemistry, agricultural and food technology), economics (of agriculture and food systems), marketing, behavioral sciences (consumer studies), and policy research (agricultural and food policy). While agroecologists clearly have a mandate to address ecology of farmland, its biodiversity, and ecosystem services, one of the greatest added values from agroecology in research communities comes from its wider systems approach. Agroecologists complement reductionist research programs where scientists seek more detailed understanding of detail and mechanisms and put these into context by developing a broader appreciation of the whole. Those in agroecology integrate results from disciplinary research and increase relevance and adoption by introducing transdisciplinarity, co-creation of information and practices, together with other actors in the system. Agroecology is the field in sustainability science that is devoted to food system transformation and resilience. Agroecology uses the concept of “agroecosystem” in broad ecological and social terms and uses these at multiple scales, from fields to farms to farming landscapes and regions. Food systems depend on functioning agroecosystems as one of their subsystems, and all the subsystems of a food system interact through positive and negative feedbacks, in their complex biophysical, sociocultural, and economic dimensions. In embracing wholeness and connectivity, proponents of agroecology focus on the uniqueness of each place and food system, as well as solutions appropriate to their resources and constraints.


2021 ◽  
pp. 144078332110096
Author(s):  
Kiah Smith ◽  
Geoffrey Lawrence

The future of food and agriculture in Australasia will be defined by multiple social, economic, political and environmental tensions – with climate change and social inequalities playing a central role in the re-imagining of food systems in crisis. This article argues that rural sociology will continue to be well-served by the sociological research into the farming and food industries undertaken by antipodean scholars – especially those from Australia and New Zealand where agri-food scholarship has flourished. Analyses of the future dynamics of rural social/economic change, natural resource management (including land, water and minerals), new relations of work, labour and identity, emerging agricultural technologies, Indigenous and post-colonial politics, and food system governance will benefit from agri-food studies’ insights into agrarian transformation and governance, social and environmental sustainability, health and wellbeing, and the growth of resistance and alternatives.


2009 ◽  
Vol 6 ◽  
pp. 1-14 ◽  
Author(s):  
Siddhartha Shrivastava ◽  
Debabrata Dash

Nanotechnology focuses on special properties of a material which emerge from nanometer size—is becoming one of the most promising scientific fields of research in decades. The realisation that the nano-scale has certain properties needed to solve important biomedical challenges and cater to unmet biomedical needs is driving nano-biosystem research. Proper nutrition and a clean environment promote human health. Nanotechnologies are only used to a limited extent at the moment for achieving these aims although it has the potential to revolutionize agriculture and food systems. We will see increasing uses of tools and techniques developed by nanotechnology to detect carcinogenic pathogens and biosensors for improved and contamination free food and agricultural products. This article will review some of the current nanotechnology research that is applicable to agriculture and food technology and project what the future will bring to the newly emerging field of Agrifood Nanotechnology.


2010 ◽  
Vol 2 (2) ◽  
Author(s):  
Roger Allbee

In this short essay, the author explores the importance of terroir, or the taste of place, for the future of food and agriculture in Vermont. Here, the taste of place is connected to increased engagement with local foods. However, Allbee claims that local can also mean foods that reflect a unique local character, that tell the story of a place, bringing the tastes, history, and culture of a region to the consumer.


Author(s):  
Tae-eun Kim ◽  
Amit Sharma ◽  
Morten Bustgaard ◽  
William C. Gyldensten ◽  
Ole Kristian Nymoen ◽  
...  

AbstractThe COVID-19 pandemic has brought unprecedented challenges to the maritime supply chain and called for accelerated adoption of digital technologies in various aspects of maritime operations, including the area of maritime education and training (MET). This paper aims to discuss the current maritime simulator-based training and educational practices that forms an integral part in seafarer training and competency development. The study provides a review of the existing simulators in use in MET, and discusses upon the technological and pedagogical advancement of maritime simulator-based training interventions with predictions regarding the future MET practices with use of virtual reality and cloud-based simulators. This study—by focusing on ship’s bridge operations—highlights the characteristics of various types of simulators and also discusses the role of instructors, challenges, and opportunities involving future simulator-based MET due to accelerated adoption of digital technologies and the need to comply with pandemic-related restrictions for MET institutes. The analysis generated in the paper may contribute to the ongoing discussion regarding the future of simulator-based MET and the fulfillment of the UN Sustainable Development Goal (SDG) 4 in the maritime sector.


2021 ◽  
Vol 13 (15) ◽  
pp. 8564
Author(s):  
Elizabeth Mkandawire ◽  
Melody Mentz-Coetzee ◽  
Margaret Najjingo Mangheni ◽  
Eleonora Barusi

Globally, gender inequalities constrain food security, with women often disproportionately affected. Women play a fundamental role in household food and nutrition security. The multiple roles women play in various areas of the food system are not always recognised. This oversight emerges from an overemphasis on one aspect of the food system, without considering how this area might affect or be affected by another aspect. This study aimed to draw on international commitments and treaties using content analysis to enhance the Global Panel on Agriculture and Food Security food systems framework by integrating a gender perspective. The study found that generally, there is a consensus on specific actions that can be taken to advance gender equality at specific stages of the food system. However, governance and social systems constraints that are not necessarily part of the food system, but have a significant bearing on men and women’s capacity to effectively participate in the food system, need to be addressed. While the proposed conceptual framework has some limitations, it offers a foundation on which researchers, policymakers and other stakeholders can begin conceptualising the interconnectedness of gender barriers in the food system.


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