首页> 外文会议>Annual International Meeting of the American Society of Agricultural and Biological Engineers >Soil and crop responses following application of biosolids-derived organomineral fertilisers to ryegrass (Lolium perenne L) grown in pots
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Soil and crop responses following application of biosolids-derived organomineral fertilisers to ryegrass (Lolium perenne L) grown in pots

机译:在将生物糖衍生的有机杆菌施用到Ryegrass(Lolium Perenne L)中,土壤和作物反应在盆中种植

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Biosolids-derived organomineral fertilisers (OMF) were produced using a novel technique reported in earlier studies. This technique enables addition of N and potash to biosolids granules to form a balanced NPK fertiliser. Two fertiliser products; OMF_(10) (10:4:4) and OMF_(15) (15:4:4), were formulated and tested in a glasshouse facility on pot-grown ryegrass in comparison with urea and biosolids granules at N application rates ranging from 0 to 300 kg ha~1. The aim of this research was to contributeto the understanding of nutrients management and dynamics in grass crops fertilised with OMF. The study focused upon dry matter yield (DMY) and crop responses to applied fertiliser, nitrogen use efficiency (NUE) and fertilisers' effect on soil fertility. Results indicated that ryegrass responds linearly to application of OMF increasing DMY by about 2% to 27% compared with biosolids but to a lesser extent than urea (range: 17% to 55%). NUE was related to the concentration of readily available N in the fertiliser; urea and OMF showed significantly greater (P<0.05) N recoveries than biosolids (26% to 75%, and 19% to 29%, respectively). Total nitrogen in soil and SOM increased (P<0.05) depending on the concentration of organic-N in the fertiliser applied.DMY was lower but more sustained overtime in biosolids-treated pots. OMF application did not result in significant changes in soil extractable-P levels whereas for urea, it decreased significantly while it showed a significant increase in biosolids-treated pots, where soil-P Index changed from 5 to 6. In OMF-treated soil, soil P Index remained close to constant overtime thereby supporting the purpose of the formulations tested.
机译:使用早期研究中报告的新技术生产生物溶胶衍生的有机苄啶肥料(OMF)。该技术能够向生物溶胶颗粒添加N和钾肥以形成平衡的NPK肥料。两种肥料产品; OMF_(10)(10:4:4)和OMF_(15)(15:4:4)在玻璃室设施中配制和测试,与尿素和生物糖苷颗粒相比,在N施加率范围内比较0到300千克HA〜1。该研究的目的是为用OMF受精的草作物中的营养管理和动态的理解。该研究重点是干物质产率(DMY)和作物反应对施用肥料,氮气利用效率(NUE)和肥料对土壤肥力的影响。结果表明,与生物溶胶相比,黑麦克与OMF将OMF增加至27%的响应约2%至27%,但在较小程度上比尿素(范围:17%至55%)。 nue与肥料中易用的浓度有关;尿素和OMF显着更大(P <0.05)升回收率,比生物糖(分别为26%至75%,分别为19%至29%)。土壤中的总氮和SOM增加(P <0.05),取决于施肥中的有机杆菌浓度的浓度.DMY在生物固体处理的罐中较低但更持续的加班。 OMF应用没有导致土壤可提取的P级别的显着变化,而对于尿素,它显着降低,同时它显示出生物杀死处理罐的显着增加,其中土壤-P指数从5到6.在OMF处理的土壤中发生变化,土壤P指数保持接近恒定加时,从而支持测试的配方的目的。

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