Combinatory effects of pineapple peel liquid organic fertilizer and rice husk charcoal on melon (Cucumis melo L.) growth and yield

Moh. Hamdan Hidayat, Wiharyanti Nur Lailiyah, Setyo Budi
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Abstract

The intensive use of synthetic fertilizers in melon cultivation can reduce soil organic matter and fertility, ultimately decreasing productivity. This situation necessitates the improvement of growing media to achieve production targets through the use of rice husk charcoal and liquid organic fertilizer (LOF) from pineapple peel. This study aims to determine the combinatory effects of pineapple peel LOF and rice husk charcoal media on the growth and yield of melon plants. The research employed a factorial randomized block design (RBD) with 6 treatment levels, and data were analyzed using ANOVA followed by an HSD test at the 5% significance level. The results showed an interaction between pineapple peel POC and rice husk charcoal media on the number of leaves variable. The P0M1 treatment (NPK 16:16:16 at 3 g and 50% rice husk charcoal & 50% soil) at 52 days after planting (DAP) produced the highest number of leaves, totaling 26.12. However, this increase in leaf number was not accompanied by an increase in fruit weight or brix levels. These findings open opportunities for further research to understand why the increase in leaf number did not translate to higher fruit weight or Brix levels, and to identify treatment combinations that can enhance both growth and yield.
菠萝皮液体有机肥和稻壳炭对甜瓜(Cucumis melo L.)生长和产量的协同效应
甜瓜种植过程中大量使用合成肥料会减少土壤有机质和肥力,最终降低生产力。在这种情况下,有必要通过使用稻壳炭和菠萝皮液体有机肥(LOF)来改良种植介质,以实现生产目标。本研究旨在确定菠萝皮液体有机肥和稻壳炭培养基对甜瓜植株生长和产量的综合影响。研究采用了有 6 个处理水平的因子随机区组设计(RBD),并使用方差分析和 5%显著性水平下的 HSD 检验对数据进行了分析。结果表明,菠萝皮 POC 和稻壳炭培养基对叶片数变量有交互作用。在种植后 52 天(DAP),P0M1 处理(氮磷钾 16:16:16 浓度为 3 克,50% 稻壳炭和 50% 土壤)产生的叶片数最多,共计 26.12 片。然而,叶片数的增加并没有伴随着果实重量或糖度的增加。这些发现为进一步研究提供了机会,以了解叶片数的增加为何没有转化为更高的果重或 Brix 含量,并确定可提高生长和产量的处理组合。
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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