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首页> 外文期刊>Environments >Designer Biochars Impact on Corn Grain Yields, Biomass Production, and Fertility Properties of a Highly-Weathered Ultisol
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Designer Biochars Impact on Corn Grain Yields, Biomass Production, and Fertility Properties of a Highly-Weathered Ultisol

机译:设计生物炭对高度风化的Ultisol玉米籽粒产量,生物量生产和生育特性的影响

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There are mixed reports for biochars’ ability to increase corn grain and biomass yields. The objectives of this experiment were to conduct a three-year corn ( Zea mays L.) grain and biomass production evaluation to determine soil fertility characteristics after designer biochars were applied to a highly weathered Ultisol. The amendments, which consisted of biochars and compost, were produced from 100% pine chips (PC); 100% poultry litter (PL); PC:PL 2:1 blend; PC mixed 2:1 with raw switchgrass ( Panicum virgatum ; rSG) compost; and 100% rSG compost. All treatments were applied at 30,000 kg/ha to a Goldsboro loam sandy (Fine-loamy, siliceous, sub-active, thermic Aquic Paleudult). Annual topsoil samples were collected in 5-cm depth increments (0 to 15-cm deep) and pH was measured along with Mehlich 1 phosphorus (M1 P) and potassium (M1 K) contents. After three years of corn production, there was no significant improvement in the annual mean corn grain or biomass yields. Biochar, which was applied from PL and PC:PL 2:1 blend, significantly increased M1 P and M1 K concentrations down to 10-cm deep, while the other biochar and compost treatments showed mixed results when the soil pH was modified. Our results demonstrated that designer biochar additions did not accompany higher corn grain and biomass productivity.
机译:关于生物炭增加玉米籽粒和生物量产量的能力的报道好坏参半。该实验的目的是进行三年玉米(Zea mays L.)谷物和生物量生产评估,以确定将设计好的生物炭应用到高度风化的Ultisol后的土壤肥力特征。修正案由生物炭和堆肥组成,由100%松木片(PC)制成。 100%家禽垃圾(PL); PC:PL 2:1混合;将PC与原始柳枝((Panicum virgatum; rSG)堆肥2:1混合;和100%rSG堆肥。所有处理均以30,000 kg / ha的施用量用于Goldsboro壤土砂(细壤土,硅质,次活性,热Aquic Paleudult)。每年以5厘米深度(0至15厘米深)的深度收集表土样品,并与Mehlich 1磷(M1 P)和钾(M1 K)含量一起测量pH。玉米生产三年后,年平均玉米籽粒或生物量单产没有显着提高。从PL和PC:PL 2:1混合物中施用的生物炭可显着增加M1 P和M1 K的浓度,降低至10厘米深,而其他生物炭和堆肥处理在改变土壤pH值时表现出混合结果。我们的结果表明,设计者添加生物炭不会带来更高的玉米籽粒和生物量生产力。

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