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The Potential of Food Waste-Derived Organic Fertilizer Produced Using Biopore Technology on the Growth of Spinach (Amaranthus hybridus) Aulia Putri Ramadhani; I Nengah Kundera; Manap Trianto; Lilies Tangge; Yulia Windarsih; Amalia Buntu
Biology, Medicine, & Natural Product Chemistry Vol 15, No 1 (2026)
Publisher : Sunan Kalijaga State Islamic University & Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.14421/biomedich.2026.151.1345-1351

Abstract

Food-wasting behavior contributes significantly to the increasing volume of household organic waste, which has the potential to pollute the environment if not managed properly. This study aimed to describe the potential of food waste processed using the biopore technique as an organic fertilizer for the growth of spinach (Amaranthus hybridus) and to determine the optimal application concentration that promotes the best plant growth. This study employed an experimental method using a Completely Randomized Design (CRD). Five concentrations of biopore organic fertilizer were tested with four replications: P0 (control/no fertilizer), P1 (25 g), P2 (50 g), P3 (100 g), and P4 (150 g). The observed parameters included plant height (cm), number of leaves, and leaf area (cm2), which were measured periodically for four weeks after planting (WAP). The collected data were analyzed using Analysis of Variance (ANOVA), followed by the Least Significant Difference (LSD) test at a 5% significance level. The results showed that the application of biopore organic fertilizer derived from food waste had a significant effect on all growth parameters evaluated. Based on the post hoc analysis, treatment P4 (150 g/L concentration, equivalent to 15%) consistently produced the best growth performance. At the end of the observation period (4 WAP), P4 resulted in an average plant height of 13.23 cm, an average of 8 leaves per plant, and a leaf area of 6.10 cm2. These values were significantly higher than those of the control group (P0) and the other lower-concentration treatments. In conclusion, food waste decomposed through biopore holes has considerable potential to be utilized as an agronomically valuable organic fertilizer. A concentration of 15% (P4) is recommended as the most effective formulation for sustainably promoting the growth of Amaranthus hybridus L. plants.
The Effect of Liquid Organic Fertilizer Derived from Mustard Green Vegetable Waste on the Growth of Cayenne Pepper Plants (Capsicum frutescens) Firna Amanda; Manap Trianto; Lestari M.P Alibasyah; Aan Febriawan; Amalia Buntu; Ika Istadewi; Lilies Tangge
Biology, Medicine, & Natural Product Chemistry Vol 15, No 1 (2026)
Publisher : Sunan Kalijaga State Islamic University & Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.14421/biomedich.2026.151.1611-1620

Abstract

Organic fertilizer is a type of fertilizer produced from natural materials derived from living organisms. One form of organic fertilizer is liquid organic fertilizer, which has the advantage of providing nutrients that are more readily available and easily absorbed by plants. This study aimed to analyze the effect of different concentrations of liquid organic fertilizer derived from mustard green vegetable waste on the growth of cayenne pepper plants (Capsicum frutescens L.). The study employed a Completely Randomized Design (CRD) consisting of five treatment levels: P0 (control), P1 5% (10 mL), P2 10% (20 mL), P3 15% (30 mL), and P4 20% (40 mL). Each treatment was replicated three times, resulting in a total of 15 experimental units. The observed parameters included plant height, stem diameter, and number of leaves. Data were analyzed statistically using Analysis of Variance (ANOVA), followed by the Least Significant Difference (LSD) test when significant differences were detected. The results showed that the application of liquid organic fertilizer derived from mustard green vegetable waste had a significant effect on plant height, stem diameter, and leaf number of cayenne pepper plants. Treatment P2 with a concentration of 10% (20 mL) produced the best results across all observed parameters. This finding indicates that this concentration was able to provide sufficient and balanced nutrients to support vegetative plant growth, whereas increasing the concentration to 15% and 20% did not result in a significant improvement in growth. Therefore, liquid organic fertilizer derived from mustard green vegetable waste has the potential to be utilized as an alternative organic fertilizer for enhancing the growth of cayenne pepper plants, with an optimum concentration of 10% (20 mL).