Amrein Pascal, Rinner Stefan, Pittorino Tindaro, Espel Joan, Schmidmayr David
NTB Interstate University of Applied Science, Buchs, Switzerland.
Ai Fame GmbH, Neckertal, Switzerland.
Med Cannabis Cannabinoids. 2020 Sep 16;3(2):103-110. doi: 10.1159/000510146. eCollection 2020 Dec.
In recent years, more attention has been paid to cannabis from both medical and political points of view. This study investigates the influence of 5 different light spectra on the active substance content in THC-poor hemp of the Alessia chemotype II variety. The focus is on comparing conventional growing under metal halide lamps with growing under high-pressure sodium (HPS) vapor lamps with regard to different spectra of LED lighting modules. Growing was carried out in 10 growing boxes under controlled and mostly identical conditions for all boxes. The photoperiod during the vegetative phase was 18 h light and photosynthetic photon flux density ∼520 μmol⋅m s. The flowering phase was 12 h light and ∼540 μmol⋅m s. During the experiment, CO, temperature, and humidity were measured and logged. Additionally, weekly measurements of chlorophyll, electric conductivity of the fertilizer, activity measurement (salt content) of the soil, and pH value of the soil were checked. The content of cannabinoids was measured by high-performance liquid chromatography (HPLC). Plant height and growth were monitored during the whole experiment by cameras taking pictures every 30 min and loading them onto a cloud storage platform. Cannabinoid content was measured using HPLC. Plant wet weight was determined at the end of the experiment and showed that plants under the high pressure lamp treatment had less flower weight than those under the LED treatment. In conclusion, it could be shown that certain LED spectra can considerably increase the amount of cannabinoids with respect to conventional illumination (HPS).
近年来,大麻在医学和政治层面都受到了更多关注。本研究调查了5种不同光谱对阿莱西亚型II品种低四氢大麻酚(THC)含量大麻活性物质含量的影响。重点是比较在金属卤化物灯下的传统种植与在高压钠(HPS)蒸汽灯下的种植,以及不同光谱的发光二极管(LED)照明模块。种植在10个种植箱中进行,所有种植箱的条件均受到控制且基本相同。营养生长期的光周期为18小时光照,光合光子通量密度约为520 μmol·m²·s⁻¹。开花期为12小时光照,约为540 μmol·m²·s⁻¹。在实验过程中,对二氧化碳、温度和湿度进行了测量并记录。此外,每周还对叶绿素、肥料电导率、土壤活性测量(盐分含量)和土壤pH值进行检查。大麻素含量通过高效液相色谱法(HPLC)测定。在整个实验过程中,通过每隔30分钟拍照并上传到云存储平台的摄像头监测株高和生长情况。使用HPLC测量大麻素含量。在实验结束时测定了植物湿重,结果表明高压灯处理下的植物花重低于LED处理下的植物。总之,可以证明某些LED光谱相对于传统照明(HPS)能够显著增加大麻素的含量。