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在可控环境下用于有机生菜生产的水培系统评估

Evaluation of hydroponic systems for organic lettuce production in controlled environment.

作者信息

Chowdhury Milon, Samarakoon Uttara C, Altland James E

机构信息

Agricultural Technical Institute, The Ohio State University, Wooster, OH, United States.

Application Technology Research Unit, United States Department of Agriculture (USDA) Agricultural Research Service, Wooster, OH, United States.

出版信息

Front Plant Sci. 2024 Aug 6;15:1401089. doi: 10.3389/fpls.2024.1401089. eCollection 2024.

Abstract

Organic farming methods, including the use of organic substrates, fertilizers, pesticides, and biological control, are gaining popularity in controlled environment agriculture (CEA) due to economic benefits and environmental sustainability. However, despite several studies focusing on the preparation and evaluation of liquid organic fertilizers, none have explored the compatibility of these fertilizers with different hydroponic systems. Therefore, the objective of this study was to evaluate lettuce production using a liquid organic fertilizer under different hydroponic systems. Four distinct hydroponic methods were selected: nutrient film technique (NFT), deep water culture (DWC) (liquid culture systems), and Dutch bucket (DB), regular plastic container (RPC) (substrate-based systems). 'Green Butter' lettuce was grown using a liquid organic fertilizer (Espartan) for four weeks. Shoot growth parameters (e.g., shoot width, number of leaves, leaf area, foliar chlorophyll content, fresh weight, and dry weight) and root growth parameters (e.g., root length, fresh weight, and dry weight) were measured. The growth difference of lettuce under the DB and RPC systems was negligible, but the growth in RPC was 29% to 60% and 15% to 44% higher than the NFT and DWC systems, respectively, for shoot width, number of leaves, leaf area, shoot fresh weight and dry weight. Root parameters were nearly identical for the NFT and DWC systems but significantly lower (21% to 94%) than the substrate-based DB and RPC systems. Although lettuce grown in the NFT system showed the least growth, its mineral content in the leaf tissue was comparable or sometimes higher than that of substrate-based hydroponic systems. In conclusion, the tested liquid organic fertilizer is suitable for substrate-based hydroponic systems; however, further evaluation of different liquid organic fertilizers, and crop species is required.

摘要

有机种植方法,包括使用有机基质、肥料、农药和生物防治,由于经济效益和环境可持续性,在可控环境农业(CEA)中越来越受欢迎。然而,尽管有几项研究聚焦于液体有机肥料的制备和评估,但尚未有人探究这些肥料与不同水培系统的兼容性。因此,本研究的目的是评估在不同水培系统下使用液体有机肥料种植生菜的情况。选择了四种不同的水培方法:营养膜技术(NFT)、深水培(DWC)(液体培养系统),以及荷兰桶(DB)、常规塑料容器(RPC)(基于基质的系统)。使用液体有机肥料(Espartan)种植“绿黄油”生菜四周。测量地上部生长参数(如地上部宽度、叶片数量、叶面积、叶片叶绿素含量、鲜重和干重)和根部生长参数(如根长、鲜重和干重)。DB和RPC系统下生菜的生长差异可忽略不计,但对于地上部宽度、叶片数量、叶面积、地上部鲜重和干重而言,RPC中的生长分别比NFT和DWC系统高29%至60%和15%至44%。NFT和DWC系统的根部参数几乎相同,但明显低于基于基质的DB和RPC系统(低21%至94%)。尽管在NFT系统中种植的生菜生长最少,但其叶片组织中的矿物质含量与基于基质的水培系统相当,有时甚至更高。总之,所测试的液体有机肥料适用于基于基质的水培系统;然而,需要对不同的液体有机肥料和作物品种进行进一步评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f30a/11333259/6e9703b2786d/fpls-15-1401089-g001.jpg

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