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基于废元素硫和有机材料的肥料使用的环境与生产方面

Environmental and Production Aspects of Using Fertilizers Based on Waste Elemental Sulfur and Organic Materials.

作者信息

Lisowska Aneta, Filipek-Mazur Barbara, Komorowska Monika, Niemiec Marcin, Bar-Michalczyk Dominika, Kuboń Maciej, Tabor Sylwester, Gródek-Szostak Zofia, Szeląg-Sikora Anna, Sikora Jakub, Kocira Sławomir, Wasąg Zbigniew

机构信息

Institute of Technology and Life Sciences, National Research Institute, Falenty, 3 Hrabska Av., 05-090 Raszyn, Poland.

Department of Agricultural and Environmental Chemistry, University of Agriculture in Krakow, 21 Mickiewicza Av., 31-120 Krakow, Poland.

出版信息

Materials (Basel). 2022 May 9;15(9):3387. doi: 10.3390/ma15093387.

Abstract

Crop fertilization with sulfur is an important part of agricultural practices, as is the systematic increase in soil organic matter content. Materials of waste origin constitute a source of plant-available sulfur, as well as soil organic matter. The study was to verify the hypothesis assuming that combining waste sulfur pulp and its mixtures with organic materials enables simultaneous soil enrichment with readily available sulfur and organic matter. A 240-day incubation experiment was conducted, on two soils: very light and heavy; with two sulfur doses applied to each soil (20 and 40 mg S/kg d.m. for very light soil, and 30 and 60 mg S/kg d.m. for heavy soil). The sulfate sulfur content in the incubated soil material, treated with the addition of sulfur pulp and its mixtures with organic materials, increased significantly up to day 60 and then decreased. The application of these materials significantly increased the content of available sulfur and decreased the pH value of the incubated material. The effect of the introduced materials on dehydrogenase activity depended on soil granulometric composition (the impact of the applied materials on the activity of these enzymes in very light soil was small, and in heavy soil, their activity was usually limited by the presence of introduced materials). Application of the studied materials had little effect on the total organic carbon content in the incubated soil material (a significant change in the value of this parameter, in relation to the control soil, was recorded in some treatments of heavy soil).

摘要

用硫对作物施肥是农业实践的重要组成部分,土壤有机质含量的系统性增加也是如此。源自废弃物的材料构成了植物可利用硫以及土壤有机质的一个来源。本研究旨在验证一个假设,即把废硫磺纸浆及其与有机材料的混合物相结合能够使土壤同时富含速效硫和有机质。进行了一项为期240天的培养实验,使用了两种土壤:轻质土和重质土;每种土壤施加两种硫剂量(轻质土为20和40毫克硫/千克干物质,重质土为30和60毫克硫/千克干物质)。添加了硫磺纸浆及其与有机材料混合物的培养土壤材料中的硫酸根硫含量在第60天前显著增加,然后下降。这些材料的施用显著增加了速效硫含量并降低了培养材料的pH值。引入材料对脱氢酶活性的影响取决于土壤颗粒组成(所施用材料对轻质土中这些酶活性的影响较小,而在重质土中,它们的活性通常受到引入材料的限制)。所研究材料的施用对培养土壤材料中的总有机碳含量影响较小(在重质土的一些处理中,相对于对照土壤,该参数值有显著变化)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c61/9102313/bb38b2d5436b/materials-15-03387-g001.jpg

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