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首页> 外文期刊>Journal of Crop Improvement >Crop response to biochar under differing irrigation levels in the southeastern USA
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Crop response to biochar under differing irrigation levels in the southeastern USA

机译:美国东南部灌溉水平下的生物炭作物反应

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Application of biochar to soils is hypothesized to increase crop yield. Crop productivity impacts of biochar application in southeastern cropping systems consisting of peanut (Arachis hypo-gaea L), corn (Zea mays L), and cotton {Gossypium hirsutum L.)produced under varying rates of irrigation have not been addressed. This research incorporated biochar at two different rates into a long-term irrigation and cropping systems study to compare yield and quality response of peanut, corn, and cotton. Biochar was incorporated into soil once at the beginning of the 4-year project at rates of 22.4 and 44.8 Mg ha-1. Peanut, corn, and cotton were produced under three sprinkler irrigation levels (100%, 66%, and 33%), shallow surface drip irrigation (100%), anda nonirrigated control. Crop input management followed best management practices. Sprinkler irrigation was scheduled by Irrigator Pro for Peanuts, Corn, and Cotton at the 100% level and the 66% and 33% levels were applied at the same time as the 100% level. Significant year, irrigation, and year x irrigation effects for corn, cotton, and peanut yield resulted (p < 0.001). No differences resulted for biochar in corn (p = 0.930) or cotton (p = 0.678). Peanut yield showed a significant response to biocharcomparing the 44.8 Mg ha"1 rate to the untreated control in nonirrigated production at the p = 0.05 level and in the 33% irrigated treatment at the p = 0.10 level. No negative effects resulted from biochar opening opportunities for biochar application insoutheastern U.S. cropping systems for purposes related to carbon sequestration without compromising productivity of producers and related agricultural sectors.
机译:Biochar在土壤中的应用是假设的,以增加作物产量。 Biochar应用在东南部种植系统中的作物生产率影响由花生(Arachis Hepo-Gaea L),玉米(Zea mays L)和棉花{Gossypium hirsutum L.)尚未得到解决。该研究在两种不同的速率下加入了生物炭,进入了长期灌溉和种植系统的研究,以比较花生,玉米和棉花的产量和质量响应。在4年项目开始时,生物炭纳入土壤,率为22.4和44.8 mg HA-1。花生,玉米和棉花在三个喷水灌水水平下产生(100%,66%和33%),浅表面滴灌(100%),ANDA。作物投入管理遵循最佳管理实践。喷水灭火灌溉计划由灌溉包装,玉米,棉花,100%水平,66%和33%的水平与100%水平同时施用。玉米,棉花和花生产量的大量年,灌溉和年X灌溉作用导致(P <0.001)。玉米中的生物炭没有差异(p = 0.930)或棉花(p = 0.678)。花生产量显示对生物丙烯酸的44.8mg HA“1速率的显着反应,以在P = 0.05水平的情况下在不静脉的生产中进行未处理的对照,并在P = 0.10水平的33%灌溉治疗中。生物炭开放机会没有负面影响对于BioChar应用insoutheadern美国种植系统,用于与碳封存相关的目的,而不会影响生产者的生产率和相关的农业部门。

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