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自毒化学物质的降解和电导率的维持恢复了循环水培中连续生菜的生长、产量和养分吸收。

Degradation of autotoxic chemicals and maintainence of electrical conductivity recover growth, yield and nutrient absorption of successive lettuce in recycled hydroponics.

机构信息

Faculty of Life and Environmental Science, Shimane University, Matsue, Japan.

Faculty of Agriculture, Department of Crop Botany, Bangladesh Agricultural University, Mymensingh, Bangladesh.

出版信息

Environ Technol. 2024 Oct;45(24):4993-5003. doi: 10.1080/09593330.2023.2283788. Epub 2023 Nov 24.

DOI:10.1080/09593330.2023.2283788
PMID:37955041
Abstract

In recycled hydroponics, successive crop cultivation by maintaining electrical conductivity (EC) suffers lower growth performance due to accumulating autotoxic root exudates. In this study, the efficiency of alternate current electro degradation (AC-ED) was evaluated for degrading allelochemicals and recovering retarded lettuce yield cultivated in EC-adjusted repeatedly used nutrient solutions. From benzoic acid (BA)-added nutrient solution, BA was completely degraded after 24 h by applying AC-ED at 551 and 940 Hz frequency with 50 and 80% electrical duty. In lettuce bioassay, fresh mass was negatively affected without the AC-ED-treated solution. Finally, lettuce seedlings were hydroponically grown in a plant factory using a half-strength Enshi nutrient solution. Culture solutions were unchanged in non-renewed solutions. Nutrient elements were supplied based on the EC (1.42 dS m) of culture solutions. The fresh weight of lettuce was gradually decreased in subsequent cultures. Nutrient absorption rate was reduced in non-renewed solutions though enough of all nutrient elements were available in the solution. In the final culture, the highest shoot fresh weight (SFW) was recorded in the renewed (83.0 g plant) solution which was similar to the AC-ED-treated solution (81.0 g plant) and the lowest (58.0 g plant) was in the non-renewed solution. By applying AC-ED, 40% lettuce yield was recovered in the EC-adjusted solution without renewing. Therefore, it is recommended that the continuous application of AC-ED with the capacity of 551 Hz and 50% duty would be applied for recovering the retarded lettuce yield cultivated with repeatedly used culture solutions in recycled hydroponics.

摘要

在循环水培中,通过维持电导率 (EC) 来连续种植作物会因积累自毒根分泌物而导致生长性能下降。本研究评估了交流电降解 (AC-ED) 对降解化感物质和恢复在 EC 调整的重复使用营养液中培养的生长缓慢的生菜产量的效率。从添加苯甲酸 (BA) 的营养液中,在 551 和 940 Hz 频率下施加 50%和 80%的电负荷时,BA 在 24 小时内完全降解。在生菜生物测定中,未经 AC-ED 处理的溶液对鲜质量有负面影响。最后,在植物工厂中使用半强度恩施营养液水培生菜幼苗。在未更新的溶液中,培养液不变。根据培养液的 EC(1.42 dS/m)提供营养元素。在随后的培养中,生菜的鲜重逐渐下降。尽管溶液中含有足够的所有营养元素,但在未更新的溶液中,养分吸收速率降低。在最后的培养中,更新后的培养液(83.0 g 植株)中生菜的鲜重最高(SFW),与 AC-ED 处理的溶液(81.0 g 植株)相似,未更新的溶液中最低(58.0 g 植株)。通过施加 AC-ED,在不更新的情况下,在 EC 调整的溶液中恢复了 40%的生菜产量。因此,建议在循环水培中,连续施加 551 Hz、50%占空比的 AC-ED,以恢复在重复使用的培养液中培养的生长缓慢的生菜产量。

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