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Influence of inorganic fertilizers and organics on inorganic P, organic P and their fractions in calcareous soil of Bihar under rice-wheat cropping system

机译:稻麦种植条件下无机肥料和有机物对比哈尔邦石灰质土无机磷、有机磷及其组分的影响

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摘要

A field experiment was conducted at Pusa, Samastipur (Bihar) for assessing the impact of long term application of various organic sources along with different doses of inorganic fertilizers on P inorganic and organic P contents as well as their organic and inorganic P fractions. Under inorganic P fraction, the impact of various sources was assessed on saloid-P, Al-P, Fe-P, Ca-P, dissolved organic-P, humic matter-P, microbial-biomass-P and inorganic-P. The present investigation was undertaken from a long-term experiment in the calcareous soil in split plot design. Based on the experimental data obtained during the investigation, it was noticed that there was increase in yield due to the conjoint application of organics and inorganics can be shown as: compost + crop residues>compost> crop residues> no manure. The application of compost @ 20 t ha~(-1)+ crop residues (@ 100% could save approximately 50% of the recommended dose of NPK. The inorganic P was the dominant fraction of total soil P (up to 88.2%) whereas; organic P fraction was very less (up to 19.7%). The contribution of different inorganic P fractions viz., saloid-P Al-P, Fe-P, and Ca-P towards total P were recorded as 0.46-1.06%, 0.58-2.47%, 0.54-2.40% and 50.2-70.0%, respectively. The different organic pools of P e.g. organic, humic matter-P dissolved organic-P microbial biomass-P were significantly influenced by the application of organic sources.
机译:天进行了现场试验,Samastipur(比哈尔邦)评估的影响长期应用各种有机来源随着不同的无机剂量无机和有机肥料在P P的内容以及他们的有机和无机P分数。saloid-P各种来源的评估,Ca-P Al-P,磷,速效磷溶解,腐殖质matter-P, microbial-biomass-P为主的。目前的调查进行的石灰土的长期实验裂区设计。在调查过程中,注意到产量的增加是由于有机物和无机物的联合应用可以显示为:堆肥+作物残留物>堆肥>作物秸秆>没有肥料。堆肥@ 20 t哈~(1)+作物残留物(@ 100%可以节省大约50%的推荐吗剂量的氮磷钾复合肥。土壤P总额的比例(88.2%)而;有机P分数很低(19.7%)。不同无机磷的贡献分数即,saloid-P Al-P、磷和Ca-P对总P被记录为0.46 -1.06%,0.58 - -2.47% 0.54 - -2.40%和50.2 -70.0%,分别。如有机、腐殖质matter-P溶解有机磷微生物biomass-P有显著影响由应用程序的有机资源。

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