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首页> 外文期刊>Journal of the air & waste management association >Influence of biowaste compost amendment on soil organic carbon storage under arid climate
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Influence of biowaste compost amendment on soil organic carbon storage under arid climate

机译:Biowaste Concost修正对干旱气候下土壤有机碳储存的影响

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摘要

Organic matter amendments have been proposed as a means to enhance soil carbon stocks on degraded soils, particularly under arid climate. Soil organic carbon (SOC) plays a critical role in terrestrial carbon cycling and is central to preserving soil quality. The effects of biowaste compost (BWC) on soil carbon storage were investigated. In addition, changes in soil organic matter (SOM) and even soil organic carbon (SOC) in BWC-amended soils following different applications were studied. The added BWC quantities were as followed: BWC/soil (weight/weight (w/w) respectively: 1/8, 1/4, and 1/2). The different BWC-amended soils were assessed during 180days under arid ambient conditions and in comparison with control soil. Results showed a significant increase in SOM and SOC with relation to BWC quantities applied. This increase was relatively clear up to 120days, after which decrease in SOM and SOC levels were observed. Furthermore, results showed improved microbiological activities of the amended soils in comparison with the control soil. This was reflected by the increase of the amended soils' respirometric activities as cumulative carbon dioxide carbon (C-CO2) as function of incubation time and also in terms of specific respiration expressed as C-CO2/SOC ratios.Implications: Mediterranean soils under arid climate such as Tunisian soils are poor in organic matter content. Biowastes are potential source for soil fertilization. Composting process is the best method for the stabilization of organic matter of diverse origins. The biowaste compost amendment improves the soil organic carbon storage and enhances the soil microbial activity.
机译:已提出有机质修正案作为增强土壤碳储土的土壤碳储土的方法,特别是在干旱气候下。土壤有机碳(SoC)在陆地碳循环中起着关键作用,是保护土壤质量的核心。研究了Biowasty Concost(BWC)对土壤碳储存的影响。此外,研究了在不同应用之后的BWC修正的土壤中的土壤有机物质(SOM)甚至土壤有机碳(SoC)的变化。添加的BWC数量如下:BWC /土壤(重量/重量(w / w)分别:1/8,1 / 4和1/2)。在干旱的环境条件下,在180天内评估不同的BWC修正的土壤,并与对照土壤相比。结果表明,SOM和SOC有关施加的BWC数量显着增加。这一增长比较明显高达120天,之后观察到SOM和SOC水平降低。此外,结果表明,与对照土壤相比,修正的土壤的微生物活性改善了微生物活性。这被反映了作为累积二氧化碳(C-CO2)作为孵育时间的累积二氧化碳碳(C-CO2)的增加而反映了作为C-CO2 / SOC比率的特异性呼吸来反映。:A干旱下的地中海土壤突尼斯土壤如有机质含量差的气候。生物用品是土壤施肥的潜在来源。堆肥过程是稳定各种起源有机物的最佳方法。 BioWaste堆肥修正案改善了土壤有机碳储存,增强了土壤微生物活性。

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