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The Groundwater‒Energy‒Food Nexus in Iran’s Agricultural Sector: Implications for Water Security النص الكامل
2019
Mirzaei, Atena | Saghafian, Bahram | Mirchi, Ali | Madani, Kaveh
The Groundwater‒Energy‒Food Nexus in Iran’s Agricultural Sector: Implications for Water Security النص الكامل
2019
Mirzaei, Atena | Saghafian, Bahram | Mirchi, Ali | Madani, Kaveh
This paper presents the first groundwater‒energy‒food (GEF) nexus study of Iran’s agronomic crops based on national and provincial datasets and firsthand estimates of agricultural groundwater withdrawal. We use agronomic crop production, water withdrawal, and energy consumption data to estimate groundwater withdrawal from electric-powered irrigation wells and examine agronomic productivity in Iran’s 31 provinces through the lens of GEF nexus. The ex-post GEF analysis sheds light on some of the root causes of the nation’s worsening water shortage problems. Access to highly subsidized water (surface water and groundwater) and energy has been the backbone of agricultural expansion policies in Iran, supporting employment in agrarian communities. Consequently, water use for agronomic crop production has greatly overshot the renewable water supply capacity of the country, making water bankruptcy a serious national security threat. Significant groundwater table decline across the country and increasing energy consumption underscore dysfunctional feedback relations between agricultural water and energy price and groundwater withdrawal in an inefficient agronomic sector. Thus, it is essential to implement holistic policy reforms aimed at reducing agricultural water consumption to alleviate the looming water bankruptcy threats, which can lead to the loss of numerous agricultural jobs in the years to come.
اظهر المزيد [+] اقل [-]The Groundwater‒Energy‒Food Nexus in Iran’s Agricultural Sector: Implications for Water Security النص الكامل
2019
Atena Mirzaei | Bahram Saghafian | Ali Mirchi | Kaveh Madani
This paper presents the first groundwater‒energy‒food (GEF) nexus study of Iran&rsquo:s agronomic crops based on national and provincial datasets and firsthand estimates of agricultural groundwater withdrawal. We use agronomic crop production, water withdrawal, and energy consumption data to estimate groundwater withdrawal from electric-powered irrigation wells and examine agronomic productivity in Iran&rsquo:s 31 provinces through the lens of GEF nexus. The ex-post GEF analysis sheds light on some of the root causes of the nation&rsquo:s worsening water shortage problems. Access to highly subsidized water (surface water and groundwater) and energy has been the backbone of agricultural expansion policies in Iran, supporting employment in agrarian communities. Consequently, water use for agronomic crop production has greatly overshot the renewable water supply capacity of the country, making water bankruptcy a serious national security threat. Significant groundwater table decline across the country and increasing energy consumption underscore dysfunctional feedback relations between agricultural water and energy price and groundwater withdrawal in an inefficient agronomic sector. Thus, it is essential to implement holistic policy reforms aimed at reducing agricultural water consumption to alleviate the looming water bankruptcy threats, which can lead to the loss of numerous agricultural jobs in the years to come.
اظهر المزيد [+] اقل [-]The Groundwater‒Energy‒Food Nexus in Iran’s Agricultural Sector: Implications for Water Security النص الكامل
2019
Atena Mirzaei | Bahram Saghafian | Ali Mirchi | Kaveh Madani
This paper presents the first groundwater‒energy‒food (GEF) nexus study of Iran’s agronomic crops based on national and provincial datasets and firsthand estimates of agricultural groundwater withdrawal. We use agronomic crop production, water withdrawal, and energy consumption data to estimate groundwater withdrawal from electric-powered irrigation wells and examine agronomic productivity in Iran’s 31 provinces through the lens of GEF nexus. The ex-post GEF analysis sheds light on some of the root causes of the nation’s worsening water shortage problems. Access to highly subsidized water (surface water and groundwater) and energy has been the backbone of agricultural expansion policies in Iran, supporting employment in agrarian communities. Consequently, water use for agronomic crop production has greatly overshot the renewable water supply capacity of the country, making water bankruptcy a serious national security threat. Significant groundwater table decline across the country and increasing energy consumption underscore dysfunctional feedback relations between agricultural water and energy price and groundwater withdrawal in an inefficient agronomic sector. Thus, it is essential to implement holistic policy reforms aimed at reducing agricultural water consumption to alleviate the looming water bankruptcy threats, which can lead to the loss of numerous agricultural jobs in the years to come.
اظهر المزيد [+] اقل [-]Food Safety on the Farm: Good Agricultural Practices and Good Handling Practices – Water النص الكامل
2019
Jaysankar De | Christopher R Pabst | Jessica Lepper | Renee M. Goodrich Schneider | Keith R. Schneider
Good agricultural practices (GAPs) and good handling practices (GHPs) encompass the general procedures growers, packers, and processors of fresh fruits and vegetables should follow to ensure the safety of their product. GAPs usually address preharvest practices (i.e., in the field), while GHPs cover postharvest practices, including packing and shipping. This 7-page fact sheet covers GAPs and GHPs relating to water use. This major revision is a part of the Food Safety on the Farm series and was written by Jaysankar De, Christopher R. Pabst, Jessica Lepper, Renée Goodrich-Schneider, and Keith R. Schneider and published by the UF/IFAS Food Science and Human Nutrition Department. http://edis.ifas.ufl.edu/fs136
اظهر المزيد [+] اقل [-]Nexus Assessment of Water, Food and Health in the 19th District of Tehran النص الكامل
2019
Mohammad Reza Jangjoo | Seyed Ali Jozi | Mojgan Zaeimdar | Hedayat Fahmi | Reza Marandi
One of the most important processes in today's industrial world, the Nexus Interaction, is known as Water, Soil and Wastewater (WSW). The purpose of this research is to provide a network model that can be used to determine the state of the hazards caused by Irrigation of land with untreated municipal wastewater. Methods of this study include the stages: knowledge of the study area, quantitative and qualitative assessment of surface water of the ministry of the earth, determination of stability indicators and interlinkeges matrices, evaluation of interveners, comparison of interventions and management solutions. According to the measurements, the water quality index for groundwater was 71% It has a relatively bad pollution and 29% is relatively bad. Also, the amount of metals in the house has only four parameters of barium, lead and vanadium in some places higher than the standard, and in vegetables, the amount of lead and cadmium is more than the limit. According to the Nexus radar chart, the highest The pressure from pollution in the first stage is on agricultural products and then on the health and environment of the community
اظهر المزيد [+] اقل [-]Managing water for food and agricultural transformation in Africa: key issues and priorities النص الكامل
2019
Williams, Timothy O.
Managing water for food and agricultural transformation in Africa: key issues and priorities النص الكامل
2019
Williams, Timothy O.
This chapter examines the links between water, food and society in Africa. Agricultural transformation to promote growth, eliminate poverty and hunger and sustain ecosystems is one of the central pillars of current development agenda in Africa. Achievement of this agenda will crucially depend on sustainable water management. However, agri-food systems and water resources are under greater pressure than ever before due to demographic, economic and climatic changes. The nature and scale of these changes suggest that only a holistic and integrated management of all shades of water resources, green, blue and grey, will allow Africa to eliminate hunger and poverty. Research-based technical solutions as well as institutional and policy measures are proposed that would allow available water resources to be sustainably used to promote climate-resilient farming systems, improve agricultural productivity and food security and spur the development of viable food value chains needed for agricultural and rural transformation.
اظهر المزيد [+] اقل [-]Managing water for food and agricultural transformation in Africa: key issues and priorities النص الكامل
2019
Williams, Timothy O.
Governance of the water-energy-food security nexus: A multi-level coordination challenge النص الكامل
2019
Pahl-Wostl, Claudia
The Water-Energy-Food (WEF) nexus is increasingly perceived as promising approach to overcome governance failures in dealing with complex and interconnected resource management challenges. Are such expectations warranted and what is required to mobilize the transformative potential inherent in this approach? The paper addresses these questions and argues in favour of developing a nexus paradigm which guides processes of purposeful design and of self-organization of nexus governance systems. Such a paradigm could be anchored in addressing water, energy and food security from a nexus perspective if such a security concept is appropriately defined and operationalized. To develop the argument, governance challenges arising from the different logics of the concepts of water, energy and food security are addressed with a definition for WEF security from a nexus perspective. An analytical framework using a network and ecosystem services perspective is introduced. The power of the approach introduced is illustrated for a typical case to identify coordination failures and persistent sustainability problems but as well leverage points for transformative change. The paper concludes by elaborating on the transformative potential of the SDGs and on the role of a WEF nexus approach in realizing such a potential.
اظهر المزيد [+] اقل [-]An optimal modelling approach for managing agricultural water-energy-food nexus under uncertainty النص الكامل
2019
Li, Mo | Fu, Qiang | Singh, V. P. (Vijay P.) | Jin, Yi | Liu, Dong | Zhang, Chenglong | Li, Tianxiao
Agriculture is the largest user of freshwater which is essential for food production. Water, energy and food are closely intertwined, as both water and energy are critical inputs for food production. Increasing pressure from shortages of resources and increasing demand for food reinforce the need for optimal management of the water, energy, and food nexus. Uncertainties caused by natural conditions and human activities complicate the optimal allocation. An integrated model, called AWEFSM, was developed for the sustainable management of limited water-energy-food resource in an agricultural system by incorporating multi-objective programming, nonlinear programming, and intuitionistic fuzzy numbers into a general framework. The AWEFSM model is capable of identifying the tradeoffs of water, energy and land resources among various subareas and crops, generating high-profile and environment-friendly strategies and policies, and addressing parameter uncertainties associated with the fluctuations of natural resources and variation of socioeconomic activities. The AWEFSM model was solved, considering nonlinear membership and non-membership functions with both optimistic and pessimistic views of decision makers, and was demonstrated for a real-world case study in northwest China. The interrelationships and trade-offs among system components, including water supply-demand, energy supply-demand, land demand, food production, as well as water and energy footprints, were quantitatively analyzed under different scenarios. The AWEFSM model is applicable for similar regions dominated by agriculture with limited resource supplies to determine water-energy-food strategies under uncertainty.
اظهر المزيد [+] اقل [-]Microcystin-RR: Occurrence, content in water and food and toxicological studies. A review النص الكامل
2019
Díez-Quijada, Leticia | Puerto, María | Gutiérrez-Praena, Daniel | Llana-Ruiz-Cabello, María | Jos, Angeles | Cameán, Ana M.
Microcystins (MCs) are hepatotoxins, produced by various species of cyanobacteria, whose occurrence is increasing worldwide owing to climate change and anthropogenic activities. More than 100 variants have been reported, and among them MC-LR is the most extensively studied, but there are other MC congeners that deserve to be investigated. The need for data to characterize the toxicological profile of MC variants other than MC-LR has been identified in order to improve risk assessment in humans and wildlife. Accordingly, the aim of this study was to evaluate the information available in the scientific literature dealing with MC-RR, as this congener is the second most common cyanotoxin in the environment. The review focuses on aspects such as occurrence in water and food, and toxicity studies both in vitro and in vivo. It reveals that, although MC-RR is a real hazard with a high exposure potential in some countries, little is known yet about its specific toxicological properties that differ from those of MC-LR, and important aspects such as genotoxicity and chronic effects have not yet been sufficiently addressed.
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