纸浆厂污泥作为降低农业矿物氮沥滤风险的解决方案

Sari Kinnula, Sanna Kanerva, H. Soinne, Marjaana Toivonen, J. Joona, Antti Tuulos, Tuure Parviainen, Ossi Kinnunen, Jukka Kivelä
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摘要

农业系统产生的氮(N)会通过沥滤作用导致水体富营养化。本研究通过一项为期两年的田间试验,测试了堆肥和石灰稳定的混合 PMS(CPMS 和 LPMS)在降低土壤中矿质氮浓度方面的潜力,从而降低了北方地区耕地中氮沥滤的风险。为了更好地了解持久性有机污染物对土壤中矿质氮浓度的影响机制,我们在实验室培养研究中调查了不同质量的持久性有机污染物对土壤中氮反应的影响。在田间试验中,施用 PMS 后的第一个秋季和第二年春季,硝酸盐-氮(NO3--N)的浓度低于矿物肥料和对照组。在第一个秋季,意大利黑麦草的下播降低了土壤中的 NO3-N 浓度。在培养实验中,与矿物肥料处理和有机肥料相比,PMS 在实验开始时降低了土壤铵-N(NH4+-N)浓度,在整个实验期间降低了土壤 NO3-N 浓度。经 PMS 处理的土壤呼吸作用增强,表明微生物活动增加,从而使土壤中的 NO3-N 和 NH4+-N 固定化。这些结果表明,PMS 有可能减少农业土壤中氮的沥滤。不过,在规划下列作物的养分需求时,必须考虑氮的固定化问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pulp mill sludges as a solution for reducing the risk of mineral nitrogen leaching from agriculture
Nitrogen (N) from agricultural systems contributes to the eutrophication of waterbodies through leaching. Incorporating organic material with a high carbon-to-nitrogen (C/N) ratio, such as mixed pulp mill sludges (PMSs), into the soil in autumn could reduce the amount of leachable N. This study tested the potential of composted and lime-stabilised mixed PMSs (CPMS and LPMS) in reducing the concentration of mineral N in the soil, and thus the risk of N leaching from arable land in the boreal region using a two-year field experiment. To better understand the mechanisms of the PMSs for influencing mineral N concentration in soil, the impact of PMSs with different quality on the reactions of N in the soil was investigated in a laboratory incubation study. In the field experiment, nitrate-N (NO3--N) concentration was lower with PMSs compared to mineral fertilisation and the control during the first autumn and the following spring after PMS application. The undersowing of Italian ryegrass reduced the NO3--N concentration in the soil during the first autumn. In the incubation experiment, PMSs reduced the soil ammonium-N (NH4+-N) concentration at the beginning of the experiment and the soil NO3--N concentration throughout the experiment compared to a mineral fertiliser treatment and an organic fertiliser. Increased soil respiration in PMS-treated soils indicated increase in microbial activity, and thus immobilisation of soil NO3--N and NH4+-N due to PMSs addition. These results suggest that PMSs have the potential to reduce N leaching from agricultural soils. However, the immobilisation of N must be considered when planning the nutrient requirements of the following crops.
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