Department of Civil and Environmental Engineering, College of Engineering, University of South Florida, 4202 E Fowler Avenue, ENG 030, Tampa, FL 33620, United States of America.
Patel College of Global Sustainability, University of South Florida, 4202 E Fowler Avenue, CGS 238, Tampa, FL 33612, United States of America.
Sci Total Environ. 2021 Oct 15;791:148254. doi: 10.1016/j.scitotenv.2021.148254. Epub 2021 Jun 6.
Multifunctional crops can simultaneously contribute to multiple societal objectives. As a result, they represent an attractive means for improving rural livelihoods. Moringa oleifera is an example of a multifunctional crop that produces nutritious leaves with uses as food, fodder, and a biostimulant to enhance crop growth. It yields seeds containing a water purifying coagulant and oil with cosmetic uses and possible biofuel feedstock. Despite Moringa oleifera's (and other multifunctional crops') various Food-Energy-Water uses, optimizing the benefits of its multiple uses and livelihood improvements remains challenging. There is a need for holistic approaches capable of assessing the multifunctionality of agriculture and livelihood impacts. Therefore, this paper critically evaluates Moringa oleifera's Food-Energy-Water-Livelihood nexus applications to gain insight into the tradeoffs and synergies among its various applications using a systems thinking approach. A systems approach is proposed as a holistic thinking framework that can help navigate the complexity of a crop's multifunctionality. The "Success to the Successful" systems archetype was adopted to capture the competition between the need for leaf yields and seed yields. In areas where there is energy and water insecurity, Moringa oleifera seed production is recommended for its potential to coproduce oil, the water purifying coagulant, and a residue that can be applied as a fertilizer. In areas where food insecurity is an issue, focusing on leaf production would be beneficial due to its significance in augmenting food for human consumption, animal feed, and its use as a biostimulant to increase crop yields. A causal loop diagram was found to effectively map the interconnections among the various uses of Moringa oleifera and associated livelihood improvements. This framework provides stakeholders with a conceptual decision-making tool that can help maximize positive livelihood outcomes. This approach can also be applied for improved management of other multifunctional crops.
多功能作物可以同时为多个社会目标做出贡献。因此,它们是改善农村生计的一种有吸引力的手段。辣木就是一个多功能作物的例子,它生产营养丰富的叶子,可以作为食物、饲料和生物刺激素来促进作物生长。它还生产种子,种子中含有净水凝结剂和可用于化妆品和潜在生物燃料原料的油。尽管辣木(和其他多功能作物)具有各种食品-能源-水的用途,但优化其多种用途和改善生计的效益仍然具有挑战性。需要采用能够评估农业多功能性和生计影响的整体方法。因此,本文批判性地评估了辣木的食品-能源-水-生计关系应用,以深入了解其各种应用之间的权衡和协同作用,采用系统思维方法。提出了一种系统方法作为一种整体思维框架,可以帮助应对作物多功能性的复杂性。采用“成功到成功”系统原型来捕捉叶产量和种子产量之间的竞争。在能源和水不安全的地区,建议生产辣木种子,因为它有可能联产油、净水凝结剂和一种可以用作肥料的残渣。在粮食不安全问题突出的地区,专注于叶生产将是有益的,因为它可以增加人类食用的粮食、动物饲料的供应,并作为生物刺激素提高作物产量。因果关系图被发现可以有效地映射辣木各种用途及其相关生计改善之间的相互联系。该框架为利益相关者提供了一个概念性的决策工具,可以帮助最大限度地提高积极的生计成果。这种方法也可以应用于其他多功能作物的改进管理。