Changes in the soil inorganic carbon dynamics in the tilled layer of a semi-arid Mediterranean soil due to irrigation and a change in crop. Uncertainties in the calculation of pedogenic carbonates

IF 5.4 1区 农林科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Catena Pub Date : 2024-09-07 DOI:10.1016/j.catena.2024.108362
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Abstract

Soil inorganic carbon (SIC) accounts for more than one-third of the total soil carbon pool, but the effect of agricultural management on carbonates dynamics in Mediterranean semi-arid calcareous soils has largely been ignored and remains unclear. However, SIC plays a key role in physical, chemical and, biological properties of soils, which in turn can affect plant growth and productivity. Based on a 7-year field experiment in a paired irrigated and non-irrigated trial, with two different crops (maize and wheat), we investigated the effects of the land use change (from non-irrigated wheat to irrigated maize) on the SIC dynamics in the topsoil (0–30 cm) of a carbonate-rich soil in Navarre, northern Spain. The results obtained using the accepted equation for determining carbonate type showed that during the 7-year study period, irrigation application and the crop change modified the carbonate typology (lithogenic and pedogenic) in a very short period, without affecting the total SIC content. The main drivers of pedogenic carbonate formation in this case appear to be the water volume and the type of organic matter entering the soil (from C3 plants or C4 plants). However, the equation seems to be strongly dependent on the type of soil organic carbon, which can introduce uncertainties when used to determine the proportion of pedogenic carbonates in soils experiencing a crop change from C3 to C4 plants.

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灌溉和作物变化引起的半干旱地中海土壤耕作层土壤无机碳动态变化。成土碳酸盐计算中的不确定性
土壤无机碳(SIC)占土壤总碳库的三分之一以上,但农业管理对地中海半干旱石灰性土壤碳酸盐动态的影响在很大程度上被忽视,目前仍不清楚。然而,SIC 对土壤的物理、化学和生物特性起着关键作用,进而影响植物的生长和生产力。在为期 7 年的田间试验中,我们对灌溉和非灌溉两种不同作物(玉米和小麦)进行了配对试验,研究了土地用途变化(从非灌溉小麦到灌溉玉米)对西班牙北部纳瓦拉富含碳酸盐土壤表土(0-30 厘米)中 SIC 动态的影响。使用公认的碳酸盐类型测定公式得出的结果表明,在 7 年的研究期内,灌溉应用和作物变化在很短的时间内改变了碳酸盐类型(成岩型和成泥型),但并未影响 SIC 的总含量。在这种情况下,成泥碳酸盐形成的主要驱动因素似乎是水量和进入土壤的有机物类型(来自 C3 植物或 C4 植物)。不过,该方程似乎在很大程度上取决于土壤有机碳的类型,因此在用于确定作物从 C3 植物转变为 C4 植物的土壤中的成泥碳酸盐比例时,可能会带来不确定性。
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来源期刊
Catena
Catena 环境科学-地球科学综合
CiteScore
10.50
自引率
9.70%
发文量
816
审稿时长
54 days
期刊介绍: Catena publishes papers describing original field and laboratory investigations and reviews on geoecology and landscape evolution with emphasis on interdisciplinary aspects of soil science, hydrology and geomorphology. It aims to disseminate new knowledge and foster better understanding of the physical environment, of evolutionary sequences that have resulted in past and current landscapes, and of the natural processes that are likely to determine the fate of our terrestrial environment. Papers within any one of the above topics are welcome provided they are of sufficiently wide interest and relevance.
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