Pengaruh tiga jenis formula teknologi Sucrosin terhadap pertumbuhan dan produktivitas tebu (Saccharum officinarum L.)

Muhammad Abdul Aziz, Ciptadi Ahmad Yusup, Siswanto Siswanto, Djoko Santoso, Priyono Priyono, Happy Widiastuti
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Abstract

Sucrosin technology, have been tested in ​​more than 10,000 ha of sugarcane planting area, resulted in highly variable increases in productivity. However, fulfilling standard operational procedures when implemented on a wide scale is complicated, so it needs to be simplified regarding product formulation and application techniques. This study aimed to evaluate the three different formulas of Sucrosin technology in increasing sugarcane growth and productivity. The study was conducted on PC sugarcane at RNI Plantation, Majalengka, West Java, using the Bululawang 1303 variety. The research design was a completely randomized design with four treatments consisting of Sucrosin technology existing (Se), formula 1 (S1), and formula 2 (S2) and control. The application of formula 2 Sucrosin technology (S2) could significantly increase the height and diameter of sugarcane stalks at 6 and 9 MAP. Sugarcane production in Se, S1, and S2 treatments increased by 22.49% (112.71 ton ha-1), 20.47% (110.85 ton ha-1), and 16.45% (107.15 ton ha-1) compared to controls (92.02 ton ha-1), respectively. These results show that Sucrosin Se technology produces the highest production. Nevertheless, from a technical perspective for implementation in the field, the most straightforward Sucrosin technology is S2. However, further research needs to be conducted in the broader area across different agro-ecologies to confirm the current findings.
Sucrosin技术公式对甘蔗生长和生产力的三种影响(Saccharum officinarum L)。
蔗糖素技术已经在超过1万公顷的甘蔗种植面积上进行了测试,结果是生产力的提高变化很大。然而,在大范围实施时,实现标准的操作程序是复杂的,因此需要在产品配方和应用技术上进行简化。本研究旨在评价三种不同配方的蔗糖素技术对甘蔗生长和生产力的促进作用。本研究在西爪哇Majalengka RNI种植园进行,选用Bululawang 1303品种。研究设计为完全随机设计,采用现有Sucrosin技术(Se)、公式1 (S1)、公式2 (S2)和对照4个处理。施用2式蔗糖素技术(S2)可显著提高6、9 MAP甘蔗茎秆的高度和直径。与对照(92.02 t ha-1)相比,Se、S1和S2处理的甘蔗产量分别增加22.49% (112.71 t ha-1)、20.47% (110.85 t ha-1)和16.45% (107.15 t ha-1)。结果表明,蔗糖素硒技术的产量最高。然而,从技术角度来看,在现场实施,最直接的Sucrosin技术是S2。然而,进一步的研究需要在更广泛的领域进行,跨越不同的农业生态学,以证实目前的发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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