...
首页> 外文期刊>Journal of plant nutrition and soil science >Contribution of organic amendments to soil organic matter detected by thermogravimetry
【24h】

Contribution of organic amendments to soil organic matter detected by thermogravimetry

机译:有机修正对热重试剂检测到土壤有机质的贡献

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Sustainable soil management requires reliable and accurate monitoring of changes in soil organic matter (SOM). However, despite the development of improved analytical techniques during the last decades, there are still limits in the detection of small changes in soil organic carbon content and SOM composition. This study focused on the detection of such changes under laboratory conditions by adding different organic amendments to soils. The model experiments consisted of artificially mixing soil samples from non-fertilized plots of three German long-term agricultural experiments in Bad Lauchstadt (silty loam), Grossbeeren (silty sand), and Muncheberg (loamy sand) with straw, farmyard manure, sheep faeces, and charcoal in quantities from 3 to 180 t ha(-1) each. In these mixtures we determined the organic carbon contents by elemental analysis and by thermal mass losses (TML) determined by thermogravimetry. The results confirmed the higher reliability of elemental analysis compared to TML for organic carbon content determination. The sensitivity of both methods was not sufficient to detect the changes in organic carbon content caused by small quantities of organic amendments (3 t ha(-1) or 0.1-0.4 g C kg(-1) soil). In the case of elemental analysis, the detectability of changes in carbon content increased with quantities of added amendments, but the method could not distinguish different types of organic amendments. On the contrary, the based on analysis of degradation temperatures, the TML allowed this discrimination together with their quantitative analysis. For example, added charcoal was not visible in TML from 320 to 330 degrees C, which is used for carbon content determination. However, increasing quantities of charcoal were reflected in a higher TML around 520 degrees C. Furthermore, differences between measured (with TML110-550) and predicted mass loss on ignition using both organic carbon (with TML330) and clay contents (with TML140) were confirmed as a suitable indicator for detection of organic amendments in different types of soils. We conclude that thermogravimetry enables the sensitive detection of organic fertilizers and organic amendments in soils under arable land use.
机译:可持续土壤管理需要可靠,准确地监测土壤有机物(SOM)的变化。然而,尽管在过去几十年中发展了改进的分析技术,但在检测到土壤有机碳含量和SOM组成的小变化中仍有限制。本研究专注于通过向土壤中添加不同的有机修正来检测实验室条件下的这种变化。模型实验由人工混合的土壤样品,来自德国德国长期农业实验的非施肥地区,Grossbeeren(粉状砂),麦克奈贝格(遗传沙子)与稻草,养牛器,绵羊粪便并且数量为3至180 t ha(-1)的木炭。在这些混合物中,我们通过元素分析和通过热重G测定法测定的热质量损失(TML)来确定有机碳含量。结果证实了与用于有机碳含量测定的TML相比,元素分析的可靠性较高。两种方法的敏感性不足以检测由少量有机修改引起的有机碳含量的变化(3 t ha(-1)或0.1-0.4g c kg(-1)土壤)。在元素分析的情况下,碳含量变化的可检测性随着添加的修正案的数量而增加,但该方法不能区分不同类型的有机修改。相反,基于降解温度分析,TML允许这种歧视与它们的定量分析一起。例如,在320至330摄氏度的TML中不可见添加木炭,其用于碳含量测定。然而,增加数量的木炭在520℃的较高TML中反映。此外,使用有机碳(用TML330)和粘土内容(用TML140)测量(用TML110-550)和点火上的预测质量损失之间的差异确认为用于检测不同类型土壤的有机修正的合适指标。我们得出结论,热重试剂能够在耕地使用下的土壤中的有机肥料和有机修正的敏感性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号