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Complexity versus simplicity in water energy food nexus (WEF) assessment tools 全文
2019
Dargin, Jennifer | Daher, Bassel | Mohtar, R. H.
Approaching water, energy, and food, as interconnected system of systems, as an alternative to traditional silo-based resources planning and management approaches continues to fall short of expectations of its research-backed benefits. The lack of nexus applications in policy and decision making can be related to numerous factors, with the main barrier being the complex nature of “nexus” systems combined with the disarray of tools attempting to model its interconnections. The paper aims to provide a method for comparing the perceived complexity of nexus tools identified by international organizations as well as primary literature sources. Eight separate criteria are introduced and discussed as measures of a tool “complexity index” and used to score the relative simplicity, or complexity, of a given tool. The result of this process is used to identify trends within existing nexus-assessment tools while guiding potential users towards appropriate tool(s) best-suited for their case study needs and objectives. The main objectives of this paper are to: 1) categorize nexus assessment tools according to a criteria-set which allows for suitable tool selection; 2) identify a method for rapid evaluation of the trade-offs for choosing different tools (simple-complex spectrum). The results of the comparative analysis of the selected nexus assessment tools concur with literature citing a growing gap between nexus research and applications in actual policy and decision-making settings. Furthermore, results suggest that tools receiving higher complexity scores, while being able to capture details to specific resource interactions, are unable to cover a larger number of interactions and system components simultaneously, as compared to lower complexity score tools. Lastly, the outcome of the analysis point towards the need for integrating more preliminary assessment capabilities, i.e. diagnostics, guidelines, and capacity building, into existing tools that improve the communication and translation of model outputs into policy and decision-making.
显示更多 [+] 显示较少 [-]An index for enabling socially inclusive digital innovation processes in food, land, and water systems
2023
Opola, Felix Ouko | Langan, Simon J. | Singaraju, N. | Arulingam, Indika | Schumann, C. | Jacobs-Mata, Inga | Nortje, Karen
Currently metrics for assessing digital inclusivity focus on evaluating the outcomes of digital innovation rather than the process of developing such innovations. Digital inclusivity has five different dimensions, spanning both technical and social aspects, and therefore requires a holistic approach to attain. We propose a digital inclusivity index as a holistic and standard guideline for enabling digital inclusivity in food land and water systems. Since formal research and development is skewed towards the Global North, such an index may embody the perspectives and interests of organisations based in the Global North, and will therefore require testing, validation and co-development with stakeholders based in the Global South.
显示更多 [+] 显示较少 [-]The development of vegetarian omega-3 oil in water nanoemulsions suitable for integration into functional food products 全文
2016
Lane, Katie E. | Li, Weili | Smith, Chris J. | Derbyshire, Emma J.
Global trends show that habitual omega-3 intakes are short of recommended guidelines, particularly among vegetarians and vegans. The potential health implications of low long chain omega-3 polyunsaturated fatty acid (LCω3PUFA) intakes coupled with concerns about sustainability of fish stocks call for innovative approaches to provide food based solutions to this problem. Nanoemulsions are systems with extremely small droplet sizes that could provide a solution while improving the bioavailability of LCω3PUFA. Oil in water nanoemulsion systems were successfully created using ultrasound with oil loads of up to 50% (w/w) using vegetarian LCω3PUFA oils (flaxseed and algae). Nanoemulsions of 50% (w/w) with mean droplet size measurements of 192 (flaxseed) and 182 nm (algae) using combinations of the emulsifiers Tween 40 and lecithin were prepared.This technique could be applied to create vegetarian LCω3PUFA nanoemulsions suitable for integration into enriched functional food products with the potential to increase LCω3PUFA intake and bioavailability.
显示更多 [+] 显示较少 [-]Fresh produce and their soils accumulate cyanotoxins from irrigation water: Implications for public health and food security 全文
2017
Lee, Seungjun | Jiang, Xuewen | Manubolu, Manjunath | Riedl, Ken | Ludsin, Stuart A. | Martin, Jay F. | Lee, JiYoung
Microcystin (MC), a hepatotoxin that can adversely affect human health, has become more prevalent in freshwater ecosystems worldwide, owing to an increase in toxic cyanobacteria blooms. While consumption of water and fish are well-documented exposure pathways of MCs to humans, less is known about the potential transfer to humans through consumption of vegetables that have been irrigated with MC-contaminated water. Likewise, the impact of MC on the performance of food crops is understudied. To help fill these information gaps, we conducted a controlled laboratory experiment in which we exposed lettuce, carrots, and green beans to environmentally relevant concentrations of MC-LR (0, 1, 5, and 10μg/L) via two irrigation methods (drip and spray). We used ELISA and LC-MS/MS to quantify MC-LR concentrations and in different parts of the plant (edible vs. inedible fractions), measured plant performance (e.g., size, mass, edible leaves, color), and calculated human exposure risk based on accumulation patterns. MC-LR accumulation was positively dose-dependent, with it being greater in the plants (2.2–209.2μg/kg) than in soil (0–19.4μg/kg). MC-LR accumulation varied among vegetable types, between plant parts, and between irrigation methods. MC-LR accumulation led to reduced crop growth and quality, with MC-LR persisting in the soil after harvest. Observed toxin accumulation patterns in edible fractions of plants also led to estimates of daily MC-LR intake that exceeded both the chronic reference dose (0.003μg/kg of body weight) and total daily intake guidelines (0.04μg/kg of body weight). Because the use of MC-contaminated water is common in many parts of the world, our collective findings highlight the need for guidelines concerning the use of MC-contaminated water in irrigation, as well as consumption of these crops.
显示更多 [+] 显示较少 [-]Managing agricultural drought in Sweden using a novel spatially-explicit model from the perspective of water-food-energy nexus 全文
2018
Campana, P.E. | Zhang, J. | Yao, T. | Andersson, S. | Landelius, T. | Melton, F. | Yan, J.
Using a multi-disciplinary approach, this paper integrated spatial analysis with agricultural and energy system modelling to assess the impacts of drought on crop water demand, water availability, crop yield, and electricity requirements for irrigation. This was done by a novel spatially-explicit and integrated water-food-energy nexus model, using the spatial climatic data generated by the mesoscale MESAN and STRÅNG models. In this study, the model was applied to quantify the effects of drought on the Swedish irrigation sector in 2013, a typical drought year, for a specific crop. The results show that drought can severely affect the crop yield if irrigation is not applied, with a peak yield reduction of 18 t/ha, about 50 % loss as compared to the potential yield in irrigated conditions. Accordingly, the water and energy requirements for irrigation to halt the negative drought effects and maintain high yields are significant, with the peaks up to 350 mm and 700 kWh per hectare. The developed model can be used to provide near real-time guidelines for a comprehensive drought management system. The model also has significant potentials for applications in precision agriculture, especially using high-resolution satellite data.
显示更多 [+] 显示较少 [-]Why chlorate occurs in potable water and processed foods: a critical assessment and challenges faced by the food industry 全文
2016
Kettlitz, Beate | Kemendi, Gabriella | Thorgrimsson, Nigel | Cattoor, Nele | Verzegnassi, Ludovica | Le Bail-Collet, Yves | Maphosa, Farai | Perrichet, Aurélie | Christall, Birgit | Stadler, Richard H.
Recently, reports have been published on the occurrence of chlorate mainly in fruits and vegetables. Chlorate is a by-product of chlorinating agents used to disinfect water, and can be expected to be found in varying concentrations in drinking water. Data on potable water taken at 39 sampling points across Europe showed chlorate to range from < 0.003 to 0.803 mg l –¹ with a mean of 0.145 mg l –¹. Chlorate, however, can also be used as a pesticide, but authorisation was withdrawn in the European Union (EU), resulting in a default maximum residue limit (MRL) for foods of 0.01 mg kg –¹. This default MRL has now led to significant problems in the EU, where routinely disinfected water, used in the preparation of food products such as vegetables or fruits, leaves chlorate residues in excess of the default MRL, and in strict legal terms renders the food unmarketable. Due to the paucity of data on the chlorate content of prepared foods in general, we collated chlorate data on more than 3400 samples of mainly prepared foods, including dairy products, meats, fruits, vegetables and different food ingredients/additives. In total, 50.5% of the food samples contained chlorate above 0.01 mg kg –¹, albeit not due to the use of chlorate as a pesticide but mainly due to the occurrence of chlorate as an unavoidable disinfectant by-product. A further entry point of chlorate into foods may be via additives/ingredients that may contain chlorate as a by-product of the manufacturing process (e.g. electrolysis). Of the positive samples in this study, 22.4% revealed chlorate above 0.1 mg kg –¹. In the absence of EU levels for chlorate in water, any future EU regulations must consider the already available WHO guideline value of 0.7 mg l –¹ in potable water, and the continued importance of the usage of oxyhalides for disinfection purposes.
显示更多 [+] 显示较少 [-]Accumulation of contaminants of emerging concern in food crops—part 1: Edible strawberries and lettuce grown in reclaimed water 全文
2015
Hyland, Katherine C. | Blaine, Andrea C. | Dickenson, Eric R.V. | Higgins, Christopher P.
Contaminants of emerging concern present in domestic waste streams include a highly diverse group of potentially biologically active compounds that can be detected at trace levels in wastewater. Concerns about potential uptake into crops arise when reclaimed water is used in food crop production. The present study investigated how 9 contaminants of emerging concern in reclaimed water are taken up into edible portions of two food crops. Two flame retardant chemicals, tris(1‐chloro‐2‐propyl) phosphate (TCPP) and tris(2‐chloroethyl) phosphate (TCEP) and several polar pharmaceuticals (carbamazepine, diphenhydramine, sulfamethoxazole, and trimethoprim) accumulated in a linear, concentration‐dependent manner in lettuce (Lactuca sativa) irrigated with reclaimed water, suggesting passive uptake of both neutral and ionizable chemical contaminants in lettuce. Furthermore, concentration‐dependent accumulation of TCEP and TCPP from reclaimed water was also observed in strawberry fruits (Fragaria ananassa). Collectively, these data suggest that highly polar or charged contaminants can be taken up by crops from water bearing contaminants of emerging concern and can be accumulated in the edible portions. Using these data, however, estimates of human exposure to these contaminants from reclaimed water food crop accumulation suggest that exposure to the contaminants of emerging concern examined in the present study is likely substantially lower than current exposure guidelines. Environ Toxicol Chem 2015;34:2213–2221. © 2015 SETAC
显示更多 [+] 显示较少 [-]Effects of water impoundment and water-level manipulation on the bioaccumulation pattern, trophic transfer and health risk of heavy metals in the food web of Three Gorges Reservoir (China) 全文
2019
The Three Gorges Reservoir (TGR) of China, the largest hydropower project over the world, has attracted much attention to the water impoundment and water-level manipulation. In this study, we evaluated potential effects of water impoundment and seasonal water-level manipulation on the bioaccumulation, trophic transfer and health risk of HMs (Cu, Fe, Zn, Hg, Cd and Pb) in food web components (seston, aquatic invertebrate and fish) in TGR. Our results show that, after the impoundment for eight years (2003–2010), all of the six metal concentrations in aquatic biota fell within the criteria of safety quality guidelines. The concentrations of Cu, Fe, Zn and Hg in fish and aquatic invertebrates were higher than those before impoundment, whereas Cd and Pb were lower than those before impoundment. Nonetheless, Hg, Cd and Pb in aquatic consumers underwent an increasing trend during the entire impoundment, implying potential reservoir effect in the future. Only the concentrations of Hg, Cd and Pb in aquatic consumers exhibited a declining trend towards the dam, showing consistent with the background level at the three reaches. Seasonal variations in HM concentrations of fish and aquatic invertebrates were ascribed to the water-level manipulation associated with reservoir management. Our findings show that Hg or Cd biomagnified through aquatic food web during different hydrological periods, whereas Pb, Cu, Fe and Zn exhibited weak biomagnification power. Overall, Hg, Cd and Pb showed a higher risk than that of Cu, Fe and Zn.
显示更多 [+] 显示较少 [-]Sustainable energy, water and food nexus systems: A focused review of decision-making tools for efficient resource management and governance 全文
2019
Namany, Sarah | Al-Ansari, Tareq | Govindan, Rajesh
Rapid population growth and increased urbanisation have contributed towards increased pressures on global energy, water and food (EWF) resource systems. Therefore, there is an imperative need for resilient and effective resource management that considers societal, environmental and economic components of sustainable development. In this regard, adopting a EWF Nexus approach that considers the interactions between sectors is fundamental. However, it requires the additional mobilisation of particular decision-making tools in order to completely address the question of resource utilisation. In fact, well-studied decision-making methodologies are necessary to sustain resources, address multi-scale challenges and ensure robust governance of EWF Nexus systems. This study highlights the current literature regarding the modelling approaches used for dynamic decision-making within the EWF Nexus focusing on mathematical optimisation, agent-based modelling and game theory. These algorithmic frameworks serve as strategic guidelines for policy makers and encourage effective decision-making related to maximising targets and minimising environmental burdens. Outcomes of this study demonstrate the complementary relationships that exist between the decision-making models highlighted, and how together with a EWF Nexus approach can be used for integrated resource management.
显示更多 [+] 显示较少 [-]User manual for the projections software | Agricultural water use projections in the Nile basin to 2030: comparison with Food For Thought scenarios 全文
2011