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首页> 外文期刊>Journal of Degraded and Mining Lands Management >Improvement of soil available water capacity using biopore infiltration hole with compost in a coffee plantation
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Improvement of soil available water capacity using biopore infiltration hole with compost in a coffee plantation

机译:咖啡园中堆肥的生物渗透孔改善土壤可用水能

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摘要

Coffee plantation management has an important role in soil quality in order to increase coffee production. Biopore Infiltration Hole with Compost (BIHC) can increase soil available water capacity. In this study, the goal was to improve soil available water capacity in a coffee plantation with the implementation of the BIHC. This study was conducted at PTPN XII Bangelan, Malang, on March - August 2020. A randomized block design with seven treatments and four replications was used. The BIHC consisted of two-hole depths (30 cm and 60 cm) and two types of compost (goat manure and coffee pulp compost). The soil characteristics observed were water retention (pF) and C-organic at soil depths of 0-20, 20-40, and 40-60 cm. The coffee tree observed were number of leaves and chlorophyll content. Data obtained were subjected to analysis of variance (ANOVA) by the F test and Duncan's Multiple Distance Rate? Test (DMRT) at 5% probability, using SPSS program. Results of the study showed that BIHC was able to increase the content of soil C-organic and the available water capacity significantly compared with control treatment. The BIHC implementation could increase soil available water capacity up to 65% at a soil depth of 0-20 cm, up to 60% at a soil depth of 20-40 cm, and up to 51% at a soil depth of 40-60 cm more than the control treatment. The soil available water capacity suggested a significant positive correlation (p≤0.05) with the leaves number of coffee tree and chlorophyll content of leaves.
机译:咖啡种植园管理在土壤质量方面具有重要作用,以提高咖啡生产。具有堆肥(BIHC)的生物植物渗透孔可以增加土壤可用水容量。在这项研究中,目标是通过实施BIHC,改善咖啡种植园中的土壤可用水力容量。本研究于2020年3月 - 8月在Ptpn XII Bangelan进行了PTPN XII Bangelan,使用了具有七种治疗和四种复制的随机块设计。 BIHC由双孔深度(30厘米和60厘米)和两种堆肥(山羊粪和咖啡纸浆堆肥)组成。观察到的土壤特性是水保留(PF)和在土壤深度为0-20,20-40和40-60厘米的C-有机物。观察到的咖啡树是叶子和叶绿素含量的数量。通过F试验和Duncan的多距离速率对所获得的数据进行分析(ANOVA)?测试(DMRT)以5%的概率,使用SPSS程序。研究结果表明,与对照治疗相比,BIHC能够增加土壤C-有机的含量和可用水力容量。 BIHC实施可以将土壤可用水容量增加到65%,在土壤深度为0-20厘米,土壤深度为20-40厘米,在土壤深度为40-60的土壤深度高达60% cm比控制治疗更多。土壤可用水容量表明具有显着的阳性相关性(P≤0.05),叶片的咖啡树数和叶片的叶绿素含量。

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