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Dynamics of mineral nitrogen, water-soluble carbon and potential nitrification in band-steamed arable soil

机译:带状蒸耕土壤中矿质氮,水溶性碳和潜在硝化的动力学

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Steaming of narrow soil bands prior to sowing is a new technique that reduces the need for intra-row weeding in herbicide-free row crops. However, the steam treatment may eliminate both weed seeds and non-target soil organisms, thereby affecting the nutrient cycling in the soil. This study tested the effect of band-steaming on N and C dynamics in a sandy loam soil that was steamed in situ to maximal temperatures of 70-90A degrees C using a prototype band-steamer. Soil samples (0-5 cm depth) were collected during 90 days from band-steamed soil, undisturbed control soil, and control soil treated just mechanically with the band-steamer. In the steamed soil, ammonium concentrations increased from 1.1 to 20.3 mu g NH (4) (+) -N g(-1) dry weight during 28 days. This coincided with an immediate and persistent inhibition of potential nitrification (33-61% inhibition during 90 days). Assays of the temperature response of potential nitrification confirmed the temperature sensitivity and showed an optimum temperature of 27.1A degrees C and a temperature coefficient (Q (10)) of 1.9. The effects of band-steaming on concentrations of nitrate and water-soluble carbon were divergent and stimulatory, respectively, but generally not statistically significant. Mechanical effects of band-steaming were negligible. The observed ammonium surplus could be of agronomic benefit and should be evaluated in integrated studies of the effects of band-steaming on crop growth and plant N uptake.
机译:播种前先将狭窄的土壤带蒸腾是一种新技术,可减少无草剂大田作物行内除草的需要。但是,蒸汽处理可能会消除杂草种子和非目标土壤生物,从而影响土壤中的养分循环。这项研究测试了带状蒸煮对砂壤土中氮和碳动力学的影响,该土壤使用原型带状蒸煮器原位蒸煮至最高温度为70-90A摄氏度。在90天内,从乐队蒸煮的土壤,未扰动的对照土壤和仅使用乐队蒸煮器机械处理过的对照土壤中收集了土壤样品(深度为0-5 cm)。在蒸腾的土壤中,铵盐浓度在28天内从1.1克干重增加到20.3克NH(4)(+)-N g(-1)干重。这与潜在硝化的立即和持续抑制相吻合(90天抑制率为33-61%)。潜在硝化反应的温度响应分析证实了温度敏感性,并显示27.1A摄氏度的最佳温度和1.9的温度系数(Q(10))。带汽处理对硝酸盐和水溶性碳浓度的影响分别是发散性和刺激性的,但通常没有统计学意义。带蒸的机械作用可以忽略不计。观察到的铵剩余量可能具有农艺优势,应在带状蒸煮对作物生长和植物氮吸收的影响的综合研究中进行评估。

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