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利用微藻减少水培和土培中传统肥料的使用。

Using microalgae to reduce the use of conventional fertilizers in hydroponics and soil-based cultivation.

机构信息

Qingdao C1 Refinery Engineering Research Center, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences (CAS), Qingdao 266101, China.

Qingdao C1 Refinery Engineering Research Center, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences (CAS), Qingdao 266101, China; Shandong Energy Research Institute, Qingdao 266101, China; Qingdao New Energy Shandong Laboratory, Qingdao 266101, China.

出版信息

Sci Total Environ. 2024 Feb 20;912:169424. doi: 10.1016/j.scitotenv.2023.169424. Epub 2023 Dec 19.

Abstract

The intensive use of agrochemicals has led to nutrient loss, greenhouse gas emissions, and resource depletion, thus the development of sustainable agricultural solutions is required. Microalgal biomass has the potential to provide nutrients such as nitrogen, phosphorus, and potassium, along with various plant growth promoters, to enhance crop productivity and impart disease resistance. This study provides a comprehensive assessment of the potential applications of microalgal extracts and biomass in the contexts of seed germination, hydroponic systems, and soil-based crop cultivation. The results revealed that the extracts from Chlorella sp. and Anabaena sp. have no significant impact on the germination of wheat seeds. High concentrations of Chlorella sp. and Anabaena sp. cell extracts in hydroponics enhanced the length of cucumber seedling stems by 81.7 % and 58.3 %, respectively. Additionally, the use of microalgal cell extracts hindered root elongation while stimulating the growth of lateral and fibrous roots. Furthermore, the study compared the performance of 5 different fertilizers: 1) inorganic fertilizer (IF), 2) organic fertilizer (OF), 3) microalgae-based biofertilizer (MF), 4) inorganic fertilizer + microalgae-based biofertilizer (IM), 5) organic fertilizer + microalgae-based biofertilizer (OM). The findings indicate that the plant growth and soil physicochemical properties in the groups supplied with different fertilizers are comparable and significantly higher than those in the control group. The levels of protein, chlorophyll A, and chlorophyll B in the MF group increased significantly by 40 %, 29.2 %, and 33.5 %, respectively, compared to the control group. However, it remained notably lower compared to groups supplied with inorganic and organic fertilizers (p < 0.05). Combining microalgae with organic fertilizer can simultaneously enhance the yield and quality of Chinese cabbage, representing a promising source of crop nutrition. In conclusion, this study suggests that it is promising to use microalgae to reduce the use of conventional fertilizers in hydroponics and soil-based cultivation.

摘要

农用化学品的大量使用导致了养分流失、温室气体排放和资源枯竭,因此需要开发可持续的农业解决方案。微藻生物质有可能提供氮、磷和钾等营养物质,以及各种植物生长促进剂,从而提高作物生产力并赋予其抗病能力。本研究全面评估了微藻提取物和生物质在种子萌发、水培系统和基于土壤的作物种植中的潜在应用。结果表明,Chlorella sp. 和 Anabaena sp. 的提取物对小麦种子的萌发没有显著影响。高浓度的 Chlorella sp. 和 Anabaena sp. 细胞提取物在水培中分别将黄瓜幼苗茎的长度提高了 81.7%和 58.3%。此外,微藻细胞提取物的使用抑制了根的伸长,同时刺激了侧根和纤维根的生长。此外,本研究比较了 5 种不同肥料的性能:1)无机肥料(IF),2)有机肥料(OF),3)基于微藻的生物肥料(MF),4)无机肥料+基于微藻的生物肥料(IM),5)有机肥料+基于微藻的生物肥料(OM)。结果表明,不同肥料处理组的植物生长和土壤理化性质相当,且显著高于对照组。MF 组的蛋白质、叶绿素 A 和叶绿素 B 水平分别显著增加了 40%、29.2%和 33.5%,与对照组相比。然而,与施用无机和有机肥料的组相比,它仍然明显较低(p<0.05)。将微藻与有机肥结合使用可以同时提高白菜的产量和品质,是一种有前途的作物营养来源。总之,本研究表明,在水培和基于土壤的种植中使用微藻来减少常规肥料的使用是有前景的。

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