Aplikasi Lubang Resapan Biopori Berkompos terhadap Peningkatan Fosfor pada Agroekosistem Kebun Kopi Robusta

S. Soemarno, Yusuf Mahardika Nurin, D. Yunita, Atiqah Aulia Hanuf
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Abstract

Sloping topography, clay textures and improper fertilizer application create a high risk of surface runoff and nutrient loss. Phosphorus occurs as an important nutrient in coffee beans. The objective of this research is to analyze the effects of biopore infiltration hole with compost (BIHC) on the total and available phosphorus in robusta coffee in Bangelan plantation, Malang. A complete randomized block design with 4 replications was applied and the treatments consisted of control and BIHC. The BIHC process involved biopore hole depth of 30 and 60 cm for the goat manure and coffee pulp compost, respectively. Several parameters were also observed, including pH, total and available phosphorus as well as soil organic carbon (SOC) between 0-20, 20-40 and 40-60 cm in soil depth. Subsequently, the analysis of variance (ANOVA) and Duncan's Multiple Range Test (DMRT) were used to comprehend the data. The results showed the ability of BIHC to significantly increase the pH, SOC and total-P, compared to the control with less available-P. These total-P improvements up to 103.27, 108.73 and 132.09% were reported at soil depths between 0-20, 20-40 and 40-60 cm, respectively, while available-P were possibly enhanced up to 77.59, 28.27 and 151.99% at corresponding depth ranges.
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生物孔吸收应用于在罗布斯塔咖啡花园增加磷
倾斜的地形、粘土质地和不适当的施肥造成了地表径流和养分流失的高风险。磷在咖啡豆中是一种重要的营养物质。本研究旨在分析堆肥生物孔入渗对马郎班格兰咖啡种植园罗布斯塔咖啡总磷和速效磷的影响。采用完全随机区组设计,4个重复,处理分为对照和BIHC。BIHC过程涉及的生物孔深度分别为30 cm和60 cm,用于山羊粪便和咖啡浆堆肥。在0 ~ 20cm、20 ~ 40cm和40 ~ 60cm土壤深度范围内,测定了土壤pH、全磷和速效磷以及土壤有机碳(SOC)等参数。随后,采用方差分析(ANOVA)和邓肯多元极差检验(DMRT)来理解数据。结果表明,与有效磷较少的对照相比,BIHC能显著提高土壤pH、有机碳和总磷。在0 ~ 20、20 ~ 40和40 ~ 60 cm土壤深度,总磷分别提高103.27%、108.73%和132.09%,有效磷在相应深度可能提高77.59%、28.27%和151.99%。
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