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Response of Salt-Tolerant Rice Varieties to Biocompost Application in Sodic Soil of Eastern Uttar Pradesh

机译:北方北方邦盐碱水稻品种对生物堆肥的响应

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Sodic soils have immense productivity potential, if managed through proper technology interventions. Biocompost is prepared by composting pressmud (a sugar industry byproduct) received from cane juice filtration and spent wash received from distilleries through microbial aerobic decomposition and can be used to reclaim sodic soils. Field experiments were conducted during the wet season of 2011 and 2012 to study the effect of incorporation of biocompost in sodic soil with four treatments: T1—Control, T2—Biocompost at 2 t ha-1, T3—Biocompost at 4 t ha-1 and T4—Biocompost at 6 t ha-1. The two promising salt tolerant rice varieties preferred by farmers, Narendra usar 3 and NDR 359 were used as test crops, which can produce yields ranging between 2-4 t ha-1 in soil having a pH range of 9.2 to 10.5. Among the different doses of biocompost tested, application of biocompost at 6 t ha-1 registered highest yields, enabled by a higher biomass, ear bearing tiller (EBT), and grain fertility in both varieties. Narendra usar 3 was more responsive to treatments even at lower doses of biocompost than NDR 359, but NDR 359 yielded slightly higher than Narendra usar 3 in all treatments. Soil health was also improved evidently on better fertility and low soil pH and EC at harvest. Thus, biocompost can be considered as a commercially viable, environmentally acceptable and practically enforceable option for improving the crop productivity and soil fertility status.
机译:如果通过适当的技术干预措施进行管理,那么苏打土壤具有巨大的生产力潜力。生物堆肥是通过对从甘蔗汁过滤中得到的pressmud(一种制糖工业的副产品)进行堆肥而制备的,并通过微生物需氧分解从酿酒厂得到的废洗液进行堆肥,可用于复垦苏打土壤。在2011年和2012年的雨季期间进行了田间试验,研究了四种处理方式在碱土中掺入生物堆肥的效果:T1-对照,T2-生物堆肥2 t ha-1,T3-生物堆肥4 t ha-1。和T4-Biocompost在6 t ha-1。农民首选的两个有前途的耐盐水稻品种,Narendra usar 3和NDR 359被用作试验作物,可以在pH值为9.2至10.5的土壤中产生2-4 t ha-1的产量。在所测试的不同剂量的生物堆肥中,在两个品种中以更高的生物量,带穗分till(EBT)和谷物肥力实现了在6 t ha-1的生物堆肥施用量最高。即使在较低的生物堆肥剂量下,Narendra usar 3对治疗的反应也比NDR 359更好,但在所有处理中,NDR 359的产量均比Narendra usar 3略高。肥力提高,收获时土壤pH和EC低,土壤健康也得到明显改善。因此,生物堆肥可以被认为是提高作物生产力和土壤肥力状况的商业可行,环境可接受和实践可执行的选择。

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