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Carbon Sequestration in Restored Soils by Applying Organic Amendments

机译:应用有机修正剂修复土壤中的碳固存

摘要

The study of different natural carbon sinks has become especially important because of climate change effects. The restoration of contaminated areas can be an ideal strategy for carbon sequestration. The studied area was affected by toxic Aznalcollar mine spill in 1998. Restoration process of the contaminated area was based, mainly, on the use of two organic amendments: leonardite (LE) and biosolid compost (BC). The objective of this study was to verify whether the application of these amendments promotes the long-term carbon sequestration in this soil. Five treatments were established: untreated control, biosolid compost (doses 4 and 2) and leonardite (doses 4 and 2). The addition of amendments implied an improvement in soil quality that was directly related to the amendment dose: decrease in bulk density, increase in pH, higher respiration rates and an improvement in the stratification ratio. Dose-dependent changes in the molecular composition of soil organic matter were shown by nuclear magnetic resonance analysis. Both amendments promoted carbon retention, although because of the low mineralization rates of soil organic matter in LE treatments, the carbon storage was higher. The dosage effect on the carbon balance was more important in LE treatments, whereas in the BC treatments, the balance was similar for both doses. Our findings suggest that LE4 significantly increased the total organic carbon and it was the most suitable treatment for long-term carbon storage, because of its molecular composition rich in relatively stable aromatic and lignin-derived compounds.
机译:由于气候变化的影响,对不同天然碳汇的研究变得尤为重要。恢复受污染的地区可以成为固碳的理想策略。所研究的地区在1998年受到有毒的Aznalcollar矿井溢漏的影响。受污染地区的恢复过程主要基于使用两种有机改良剂:人造石(LE)和生物固体堆肥(BC)。这项研究的目的是验证这些修正案的应用是否能促进土壤中的长期碳固存。建立了五种处理方法:未经处理的对照,生物固体堆肥(剂量4和2)和莱纳石(剂量4和2)。添加的改良剂意味着土壤质量的改善与改良剂的剂量直接相关:堆积密度的降低,pH值的增加,更高的呼吸速率以及分层率的提高。通过核磁共振分析显示了土壤有机质分子组成的剂量依赖性变化。尽管由于LE处理中土壤有机物的矿化率低,但两个修订都提高了碳保留能力,碳存储量更高。在LE处理中,剂量对碳平衡的影响更为重要,而在BC处理中,两种剂量的平衡相似。我们的发现表明,LE4的分子组成富含相对稳定的芳香族和木质素衍生化合物,因此显着增加了总有机碳,并且它是最适合长期碳存储的处理方法。

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