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Efficient Water Management in Sugarcane with Composted Coir Pith and Sugarcane Trash Under Tropical Indian Conditions

机译:热带印度条件下用堆肥的髓髓和甘蔗渣对甘蔗进行有效的水管理

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A field experiment on water management with composted coir pith and sugarcane trash under two irrigation levels (100 and 75% of recommended level of irrigation) with the aim of assessing performance of bud chip settling in 150x45 and 150x60cm spacing was conducted in split-plot design at ICAR-Sugarcane Breeding Institute, Coimbatore, Tamil Nadu, India, during 2013-2014, 2014-2015 and 2015-2016. The soil of the experimental site was sandy clay in texture, taxonomically classified as typic haplustalf, low in organic carbon, medium in available N and available P and fairly high in K, slightly alkaline in reaction with normal electrical conductivity. The prevailing climatic condition during experimentations represented tropical Indian conditions, wherein mean temperature ranged in between 21.24 and 33.10 degrees C with a mean relative humidity of 54.58-85.5%. As against the normal rainfall of 674.2mm, only 356, 537 and 679mm of rainfall was received during 2013-2014, 2014-2015 and 2015-2016 crop seasons indicating the erratic behaviour of rainfall. The results revealed that application of 10t/ha composted coir pith or 5t/ha of sugarcane trash in furrow at the time of planting and scheduling irrigation in sugarcane at 75% of recommended level of irrigation saved 387, 344 and 255mm irrigation water; in addition, it gave higher irrigation water use efficiency (0.82t/ha/cm), net returns (99,039Rs/ha) and benefit-cost ratio (1.79) over scheduling irrigation at 100% level. Further it was also observed that setts planting at 90cm recorded 15.47 and 25% higher cane yield than bud chip settling planting at 150x45 and 150x60cm, respectively. Amongst two soil moisture conservation measures, i.e. composted coir pith and trash, application tried in sugarcane conserved soil moisture efficiently and recorded higher soil moisture by 8.10 and 7.62% and cane yield 19.59 and 12.91%, respectively, over the control. Planting bud chip settling at 150x45cm spacing was found superior over bud chip settling planting at 150x60cm spacing. Hence for efficient water management in sugarcane under tropical Indian condition, use of composted coir pith @ 10 or 5t/ha of chopped trash with 75% of recommended level of irrigation in bud chip settling (150x45cm) planting is recommended.
机译:在分块设计中进行了两个堆肥水平(推荐灌溉水平的100%和75%)下堆肥的椰壳髓和甘蔗垃圾水管理的野外试验,旨在评估芽片沉降在150x45和150x60cm间距下的性能。 2013-2014年,2014-2015年和2015-2016年期间,在印度泰米尔纳德邦哥印拜陀的ICAR-甘蔗育种研究所就读。实验地点的土壤是质地为沙质的粘土,在分类上被分类为典型的hataltalf,有机碳含量低,有效氮和有效磷含量中等,钾含量很高,在正常电导率下呈碱性。实验期间的主要气候条件代表热带印度条件,其中平均温度在21.24至33.10摄氏度之间,平均相对湿度为54.58-85.5%。与674.2mm的正常降雨量相比,2013-2014年,2014-2015年和2015-2016年作物季节仅收到356、537和679mm的降雨,表明降雨行为不稳定。结果表明,在甘蔗种植和调度灌溉时,按推荐灌溉量的75%施用10t / ha的堆肥或5t / ha的甘蔗垃圾,可节省387、344和255mm的灌溉水。此外,与按计划灌溉100%的水平相比,它具有更高的灌溉用水效率(0.82t / ha / cm),净收益(99,039Rs / ha)和效益成本比(1.79)。此外,还观察到,与在150x45和150x60cm处种植的芽片沉降相比,在90cm处种植的牧草记录的甘蔗产量分别高出15.47和25%。在堆肥的杉木髓和垃圾堆肥这两种土壤水分保护措施中,尝试在甘蔗上施用可有效地保护土壤水分,并记录了较高的土壤水分,分别比对照高8.10%和7.62%和甘蔗收率19.59%和12.91%。发现以150x45cm的间距种植芽片沉降比以150x60cm的间距种植芽片沉降更好。因此,为了在印度洋热带条件下对甘蔗进行有效的水管理,建议在堆肥(150x45cm)种植中使用堆肥的椰心髓@ 10或5t / ha切碎的垃圾,并建议灌溉量的推荐水平为75%。

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