class='kwd-title'>Method name: Respirometry clas'/> Methodology for soil respirometric assays: Step by step and guidelines to measure fluxes of trace gases using microcosms
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Methodology for soil respirometric assays: Step by step and guidelines to measure fluxes of trace gases using microcosms

机译:土壤呼吸测定的方法学:使用缩影逐步测量微量气体通量的指南

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摘要

class="kwd-title">Method name: Respirometry class="kwd-title">Keywords: Carbon dioxide, Methane, Mineralization, Nitrous oxide, Respiration class="head no_bottom_margin" id="abs0010title">AbstractThis methodology is proposed to measure the fluxes of trace gases among microcosms and the atmosphere. As microcosm respiration we include both aerobic and anaerobic respiration, which may results in CO2, CH4, NO, N2O, N2, H2S and H2 fluxes. Its applicability includes the assessment of products biodegradability and toxicity, the effect of treatments and products on greenhouse gases fluxes, and the mineralization of organic fertilizers. A step by step procedure; the complementary parameters and good practices that might be taken into account to perform a microcosm experiment; and the tools nowadays available that could be useful in this respirometric methodology are presented. We included a spreadsheet with calculus examples. Samples were taken at 1; 30; 60 and 90 min after closing the microcosms to determine the gases fluxes. The dilution effect was negligible, as we present. Besides CO2, we have successfully quantified the fluxes of CH4 and N2O from the microcosms in a broad range of concentrations. This method is useful in technical and scientific studies, for instances to test new products and improve the understanding of microbial processes, respectively. class="first-line-outdent" id="lis0005">
  • • Simple materials are required to set up the microcosm.
  • • Examples of (pre) treatments are given regarding water availability, fertilizer doses, pH adjustment and nutrients amendments.
  • • The method was suitable to directly measure multiple trace gases fluxes, either produced or consumed during microcosm respiration.
  • 机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>方法名称: Respirometry class =“ kwd-title”>关键字:二氧化碳,甲烷,矿化,一氧化二氮,呼吸作用 class =“ head no_bottom_margin” id =“ abs0010title”>摘要该方法旨在测量微观世界和大气中痕量气体的通量。作为微观呼吸,我们包括有氧呼吸和无氧呼吸,这可能导致CO2,CH4,NO,N2O,N2,H2S和H2通量。其适用性包括评估产品的生物降解性和毒性,处理和产品对温室气体通量的影响以及有机肥料的矿化。逐步程序;进行缩影实验可能要考虑的补充参数和良好做法;并介绍了当今在这种呼吸测定方法中可能有用的工具。我们包含了一个包含演算示例的电子表格。在1点取样; 30;关闭缩影后60和90分钟,以确定气体通量。如我们目前所述,稀释效果可以忽略不计。除二氧化碳外,我们还成功地从微观范围内定量确定了CH4和N2O的通量。此方法在技术和科学研究中很有用,例如分别用于测试新产品和增进对微生物过程的理解。 class =“ first-line-outdent” id =“ lis0005”> <!-列表行为= simple prefix-word = mark-type = none max-label-size = 9->
  • •需要简单的材料来设置缩影。
  • •给出了(预)处理的示例,这些示例涉及水的可利用性,肥料的剂量,pH值的调节和营养成分的补充。
  • •该方法适用于直接测量多种痕量气体通量,在微观呼吸过程中产生或消耗。
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