冷却高温营养液以提高热带地区水培红莴苣(Lactuca sativa L Var Red rapids)的生长、产量和水分生产率

S. Triyono, Andini Prima, Oktafri Rahman, M. Telaumbanua, Agus Haryanto, Ahmad Tusi
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摘要

红莴苣因其营养、维生素和抗氧化剂含量高而备受青睐。众所周知,水耕栽培能成功提高红莴苣的质量和产量。但提高水培红莴苣产量的努力面临着热带地区高温的限制。本研究旨在通过使用受保护的营养液容器控制营养液的温度,比较红莴苣在三种水培系统(即灯芯系统、浮筏系统和干式系统)中的生长、产量和水分生产率。实验设计为随机完全区组分割小区,营养液容器为主小区,包括三个层次:冷藏容器、泡沫塑料隔热容器和裸桶容器,其中营养液通过三个分开的水沟输送给植物,作为栽培床,然后再循环回相应的营养液容器。次要地块为水培系统,包括灯芯、浮筏和干式系统三种系统。区块是根据营养液的流动方向,即每条水沟的上游、中游和下游来排列植物。每个实验单元由 3 株植物代表。数据集通过方差分析进行分析,然后在 5%的水平上进行 LSD 多重比较。结果表明,由三个容器控制的营养液温度对所有观察到的植物参数都有显著影响。同时,水培系统和砌块没有显著影响。冷藏容器在提高红莴苣的生长、产量和水分生产率方面表现最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooling the high temperature nutrition solution to improve growth, yield and water productivity of hydroponic red lettuce (Lactuca sativa L Var Red rapids) in a tropical location
Red lettuce is preferred because of its high nutritional, vitamin, and antioxidant contents. Hydroponic cultivation has been known to successfully improve the quality and productivity of red lettuce. But the efforts to increase the productivity of hydroponic red lettuce face constraints of high temperatures in the tropics. The aim of this study was to compare the growth, yield, and water productivity of red lettuce in three hydroponic systems namely wick, floating raft, and dry systems by controlling the temperature of the nutrient solutions using protected nutrient containers. The experimental design of randomized complete block split plots with the main plots of the nutrient containers which consisted of three levels: Refrigerated container, styrofoam-insulated container, and bare bucket container in which the nutrient solution was delivered to plants in three separated gutters as the cultivation beds, then recirculated back to the corresponding nutrient container. The secondary plot is hydroponic systems including three systems namely wick, floating raft, and dry systems. The blocks were the arrangement of plants according to the flow direction of the nutrient solution, namely upstream, middle and downstream in each gutter. Each experimental unit was represented by 3 plants. Data sets were analyzed by using analysis of variance and followed by LSD multiple comparisons at the 5% level. The results showed that the temperature of the nutrient solution controlled by the three containers had a significant effect on all observed plant parameters. Meanwhile, the hydroponic systems and the blocks had no significant effect. The use of Refrigerated container showed the best performance in improving the growth, yield, and water productivity of the red lettuce.
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