Fussy Andre, Papenbrock Jutta
Institute of Botany, Leibniz University Hannover, Herrenhäuserstr. 2, D-30419 Hannover, Germany.
Plants (Basel). 2022 Apr 24;11(9):1153. doi: 10.3390/plants11091153.
Resources such as fertile soil and clean water are already limited in many parts of the world. Additionally, the conventional use of arable land is becoming increasingly difficult, which is further exacerbated by climate change. Soilless cultivation systems do not only offer the opportunity to save water and cultivate without soil but also the chance to open up urban areas such as residential rooftops for food production in close proximity to consumers. In this review, applications of soilless farming systems are identified and compared to conventional agriculture. Furthermore, aspects of economic viability, sustainability and current developments are investigated. An insight into the most important soilless farming systems-hydroponics, aquaponics and vertical farming-is provided. The systems are then differentiated from each other and, as far as possible, evaluated in terms of their environmental impact and compared with conventional cultivation methods. Comparing published data analyzing the yield of hydroponic cultivation systems in comparison to soil-based cultivation methods enables a basic overview of the profitability of both methods and, thus, lays the foundation for future research and practical applications. The most important inert substrates for hydroponic applications are presented, and their degree of sustainability is compared in order to emphasize environmental impacts and affect substrate selections of future projects. Based on an assessment of the most important soilless cultivation systems, the challenges and developments of current techniques are highlighted and discussed.
在世界许多地区,肥沃土壤和清洁水源等资源已经很有限。此外,传统的耕地利用方式正变得越来越困难,而气候变化使其进一步恶化。无土栽培系统不仅提供了节水和无土种植的机会,还为在靠近消费者的城市地区(如住宅屋顶)开展粮食生产创造了条件。在这篇综述中,我们识别了无土耕作系统的应用,并将其与传统农业进行比较。此外,还研究了经济可行性、可持续性及当前发展等方面。介绍了最重要的无土耕作系统——水培、鱼菜共生和垂直种植。然后对这些系统进行区分,并尽可能从环境影响方面进行评估,同时与传统种植方法进行比较。通过比较已发表的分析水培种植系统与土壤种植方法产量的数据,可以对两种方法的盈利能力有一个基本的了解,从而为未来的研究和实际应用奠定基础。介绍了水培应用中最重要的惰性基质,并比较了它们的可持续程度,以强调环境影响并影响未来项目的基质选择。基于对最重要的无土栽培系统的评估,突出并讨论了当前技术面临的挑战和发展。