MENINGKATKAN PERTUMBUHAN TANAMAN MENTIMUN (Cucumis sarivus L.) DI TANAH SALIN DENGAN PELINDIAN TANAH DAN PENAMBAHAN AMELIORAN

Rafii Adhimas Tri Putra, Cahyoadi Bowo
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Abstract

This study aimed to assess the impact of combinations of varying soil amendments and water amounts on the leaching water requirement for cucumber growth and production. Saline soil was collected from Banongan, Situbondo, with soil electrical conductivity (EC) of 4-6 dS m-1. A 10 kg soil sifted with a diameter of 2 mm was placed in each mini lysimeter. Leaching was carried out until the soil EC reached below 2 dS m-1. The results showed that soil leaching reduced soil EC from 5 dS m-1 to 1.6-1.8 dS m-1; meanwhile, EC in leachate ranged from 2-2.3 dS m-1. Biochar treatment caused an increase in leaching water requirements. In addition, applying biochar combined with 40 mm day-1 of water produced the highest fruit number. The combination treatment of cow manure 100 g pot-1 (equivalent to 20 t ha-1) and biochar 30 g pot-1 (equivalent to 6 t ha-1) and adding 40 mm day-1 of water during each water application produced the most prominent fruit volume. Furthermore, utilizing 40 mm day-1 of leaching water produced the best number of leaves, fruit weight, length, and fruit circumference.
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通过土壤保护和添加阿米兰提高黄瓜(Cucumis sarivus L. )在盐碱土中的生长速度
本研究旨在评估不同土壤改良剂和水量组合对黄瓜生长和生产所需沥滤水的影响。盐碱土采集自西图邦多的巴农甘,土壤导电率(EC)为 4-6 dS m-1。在每个小型溶液池中放入 10 千克筛过的直径为 2 毫米的土壤。沥滤一直进行到土壤导电率低于 2 dS m-1 为止。结果表明,土壤沥滤使土壤导电率从 5 dS m-1 降至 1.6-1.8 dS m-1;同时,沥滤液中的导电率范围为 2-2.3 dS m-1。生物炭处理导致浸出需水量增加。此外,施用生物炭与 40 毫米/天-1 的水相结合,结出的果实数量最多。牛粪 100 克/盆-1(相当于 20 吨/公顷)和生物炭 30 克/盆-1(相当于 6 吨/公顷)的组合处理,以及在每次施水时添加 40 毫米/天-1 的水,产生的果实数量最多。此外,利用 40 毫米/天-1 的沥滤水产生的叶片数、果实重量、长度和果实周长最佳。
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