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P retention and cation exchange as affected by nanoparticle of volcanic ash and application of phosphate solubilizing bacteria on Andisol Ciater, West Java, Indonesia

机译:p保留和阳离子交换受火山灰纳米粒子的影响,以及磷酸盐溶解细菌在Andisol Cialter,West Java,印度尼西亚的应用

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Andisols is a soil with high retention of phosphate and cannot be absorbed by plants. Some of soil bacteria have the ability to solubilize P and make it available to growing plants are known phosphate solubilizing bacteria (PSB). The research aims to study the effect of nanoparticle volcanic ash and phosphate solubilising bacteria (PSB) on P retention and cation exchangeable (CEC) in Andisol Ciater, West Java. This research was conducted from October 2016 to March 2017. The design of the analysis used was a complete randomized factorial design with two factors. The first factor was nanoparticle volcanic ash (a) consists of four dosages based on weight percentage (0%, 2.5%, 5.0% and 7.5%) and the second factor was PSB (h) consists of two dosages (without biofertilizer and with biofertilizer 1 g/Kg soil). The combination treatments replicated three times were incubated for 4 months. Soil samples were analyzed at first month and fourth month after incubation. The results showed that all dosages of nanoparticle volcanic ash and application of PSB decreased P retention by 75-77% at the first month after incubation. Nanoparticle volcanic ash dosage decreased to 7.5% the P retention reaches 90.36% in the fourth month after incubation. The nanoparticle of volcanic ash dosage 7.5% increased with CEC (24.787 cmol.kg~(-1) and 16.555 cmol.kg~(-1)) at the first and fourth months after incubation. The application of PSB increased the CEC (28.606 cmol.kg~(-1)) in the first month after incubation.
机译:Andisols是用磷酸的高保持土壤,并且不能被植物吸收。一些土壤细菌有溶解磷,使其可用于生长的植物是众所周知的解磷细菌(PSB)的能力。该研究旨在研究纳米粒子火山灰和增溶磷细菌(PSB)对Andisol Ciater,西爪哇磷截留和阳离子交换(CEC)的影响。这项研究是2016年十月到2017年三月进行使用分析的设计是完全随机析因设计有两个因素。第一个因素是纳米颗粒火山灰(a)由基于重量百分比(0%,2.5%,5.0%和7.5%)和第二因子4个剂量被PSB(H)由两个剂量的(无生物肥料和用生物肥料为1g /千克土壤)。重复3次联合治疗的培养4个月。土壤样品在第一个月和第四个月培养后进行分析。结果表明,纳米颗粒火山灰和PSB的所有应用剂量的75-77%,在第一个月孵育后下降磷截留。纳米颗粒火山灰剂量孵育后在第四个月减少至7.5%的磷截留达到90.36%。火山灰剂量的纳米颗粒7.5%与温育后的第一和第四个月CEC(24.787 cmol.kg〜(-1)和16.555 cmol.kg〜(-1))增加。 PSB的应用程序在第一个月孵育后增加了CEC(28.606 cmol.kg〜(-1))。

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