首页> 外文期刊>International Journal Of Recycling of Organic Waste in Agriculture >Improving soil silicon and selected fertility status for rice production through rice-mill waste application in lowland sawah rice field of southeastern Nigeria
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Improving soil silicon and selected fertility status for rice production through rice-mill waste application in lowland sawah rice field of southeastern Nigeria

机译:通过水稻磨削稻田稻田稻田稻田生产水稻生产土壤硅及选择生育状态

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Abstract PurposeRice-mill wastes are generated in large amounts in Ishiagu, Ebonyi State, Nigeria. These wastes can potentially be utilized for rice production and in improving soil attributes. This study evaluated the effects of rice-mill wastes on soil chemical properties and rice yield in sawah rice management.MethodsA sawah rice field in an inland valley of southeastern Nigeria was used in 2014 and 2015 cropping seasons for the study. Sawah refers to an Indo-Malaysian term for rice paddy. It involves the manipulation of some soil physical properties in form of ecological engineering works, by bunding, puddling and leveling of lowland rice field for water control and management. Two rice-mill wastes [rice husk ash (RHA) and rice husk dust (RHD) applied at 0, 2.5, 5, 7.5, 10 and 12.5?t hasup?1/sup] and the control were built into a split-plot in a randomized complete block design with three replications.ResultsBio-waste application had significant ( p ?0.05) improved effects on the soil organic carbon, available P, soil available Si and total N compared with the unamended (control) treatment. There was significant ( p ?0.05) increase in rice grain yield from 5.05 to 5.80?t hasup?1/sup (for RHA) and 6.17–6.96?t/ha (for RHD) compared with 2.35–2.8?t hasup?1/sup (control treatment) in both cropping seasons.ConclusionRHD and RHA treatments had significantly higher rice grain yield compared with the control treatment. Overall, rice grain yield was higher under RHD treatment compared with RHA treatment. This result demonstrated that RHA and RHD are potential agricultural resource for rice production in the study area.
机译:摘要的Purposerice-Mill废物是在尼日利亚伊斯兰省的大量的大量生成。这些废物可能潜在地用于水稻生产和改善土壤属性。该研究评估了水稻磨削废弃物对Sawah稻米管理中的土壤化学性质和水稻产量的影响。2014年和2015年裁剪季节使用了尼日利亚东南部的内陆谷的草原稻田。 Sawah是指稻米的印度 - 马来西亚术语。它涉及以生态工程方式的形式操纵生态工程的形式,通过划线,水平稻田进行水控制和管理。两种稻米浪费[稻壳灰(rha)和稻壳粉尘(rhd)施加在0,2.5,5,7.5,10和12.5?t ha ?1 ]和控制中进入随机完整块设计中的分裂图,具有三种复制。诸如博物馆废物施用具有显着的(P <0.05)对土壤有机碳,可用的P,土壤可用Si和总N的改善效果,与未衰脱(控制) 治疗。大米籽粒产量增加(p <0.05)从5.05升至5.80?t ha β1(for rha)和6.17-6.96?t / ha(for RHD)与2.35 - 2.8?T ha (对照治疗)在种植季节。与对照治疗相比,CONCLUSIONRHD和RHA治疗具有显着提高的水稻产量。总体而言,与RHA治疗相比,RHD治疗的水稻产量较高。这一结果表明,RHA和RHD是研究区中水稻生产的潜在农业资源。

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