POTENSI PERTUMBUHAN PURWOCENG DENGAN TEKNIK IRIGASI TETES, NUTRIENT FILM TECHNIQUE (NFT) DAN PENANAMAN DI LAHAN TERBUKA

E. Sumarni, Loekas Soesanto, Noor Farid, H. N. Baroroh
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Abstract

The low yield and quality of purwoceng on conventional planting in open land can be overcome by the application of hydroponic technology in the greenhouse. Hydroponic technology in greenhouses allows controlled control of plants, more planned harvests and reduces pests and diseases. The results of a hydroponic purwoceng production study using drip and NFT irrigation techniques have been carried out separately. The results of the purwoceng production study using the hydroponic nutrient film technique (NFT) show that purwoceng is sensitive to circulating water. Withered purwoceng plants in the NFT system reach 40%. further studies are needed on the hydroponic technique of drip irrigation, NFT and in open land on the growth and development of purwoceng plants. The purpose of the research was to get the effect of drip irrigation, NFT and open land on the growth of plant height and the number of branches of purwoceng plants in the dry season. Experiment using a completely randomized design (CRD) with 3 replications. The micro-climate inside and outside the greenhouse observed includes air temperature and air humidity. Growth data were analyzed by F test and continued with DMRT test at 5% level. The growth variables observed included plant height and number of branches. Purwoceng production using drip irrigation systems, NFT systems and open land has different effects on purwoceng growth. Drip irrigation in the greenhouse produces the highest plant height and number of branches compared to the NFT technique and in open land. Purwoceng planting with drip irrigation shows the highest yield, which is 14 branches. The number of branches of purwoceng plants in open land reaches an average of 6.9. The NFT technique produces the lowest (3,9 branches).
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灌肠技术、营养膜技术和露天种植的潜力
水培技术在温室的应用,可以克服传统露天栽培蒲草产量低、质量差的问题。温室水培技术可以控制植物,更有计划地收获,减少病虫害。采用滴灌和NFT灌溉技术分别进行了水培生产棉浆的研究结果。利用水培营养膜技术(NFT)对蒲菇菇的生产进行了研究,结果表明蒲菇菇对循环水非常敏感。在NFT系统中,茎生植物的干枯率达到40%。滴灌水培技术、NFT技术和露地水培技术对水培植物生长发育的影响有待进一步研究。本研究旨在了解旱季滴灌、NFT和开阔地对蒲草属植物株高和枝数生长的影响。试验采用完全随机设计(CRD), 3个重复。观测的温室内外小气候包括空气温度和空气湿度。生长数据采用F检验,并在5%水平下继续进行DMRT检验。观察到的生长变量包括株高和分枝数。滴灌系统、NFT系统和露天土地对紫竹的生长有不同的影响。在温室和露天土地上,与NFT技术相比,滴灌产生的植株高度和枝数最高。滴灌种植普沃成产量最高,为14枝。在开阔地,蒲草属植物的枝数平均达到6.9个。NFT技术产生的分支最少(3,9个分支)。
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