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Effects of climate change on key soil characteristics and strategy to enhance climate resilience of smallholder farming: an analysis of a pomegranate-field in a coastal Tunisian oasis

机译:气候变化对提高小农农业气候复原力的关键土壤特征及对策的影响 - 沿海突尼斯绿洲石榴 - 田地的分析

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Climate change may affect soil fertility because it can alter various soil physicochemical characteristics through different mechanisms. Currently, a better understanding of its effect on soil physicochemical characteristics is required for sustainable soil management. Therefore, the main purposes of this study were to assess the effect of climate change on key soil physicochemical characteristics (i.e., soil moisture, organic carbon content, and macro-nutrients) and to develop a suitable soil management strategy to enhance climate resilience of smallholder farming in a Tunisian oasis, called Gabes Oasis. An investigation methodology was developed based on future climate projection and simulation of climate change effects on key soil physicochemical characteristics from 2019 to 2050 using the HP1 model. The HP1 model was calibrated and validated based on intensive field measurements over four years (from January 2015 to December 2018) in a pomegranate-field in Gabes Oasis. The results showed that the HP1 model could simulate soil physicochemical characteristics under the baseline scenario. Compared to the no climate change scenario, significant effects of climate change (i.e., RCP8.5, RCP6.0, and RCP4.5 scenarios) on the investigated key soil characteristics were predicted by 2050. Among the investigated soil characteristics, it was predicted that soil organic carbon content was most critically affected. By 2050, it is expected that this content will decrease by 14% for RCP4.5 scenario, 16% for RCP6.0 scenario, and 23% for RCP8.5 scenario. Finally, it is recommended to apply the following cow manure amount to enhance soil characteristics resistance to future climate change: 3748 kg ha(-1) year(-1). However, more experiments on fields are necessary to investigate the sustainability of the proposed level of cow manure.
机译:气候变化可能会影响土壤肥力,因为它可以通过不同的机制改变各种土壤理化化学特征。目前,可持续土壤管理需要更好地了解其对土壤物理化学特性的影响。因此,本研究的主要目的是评估气候变化对关键土壤理疗特征(即土壤水分,有机碳含量和宏观营养)的影响,并开发合适的土壤管理战略,以提高小农的气候复原力在一个突尼斯绿洲种植,称为Gabes Oasis。基于未来的气候投影和仿真对2019年至2050的关键土壤理化特征的未来气候变化和模拟,制定了调查方法。基于四年(从2015年1月至2018年12月)在Gabes Oasis的石榴 - 领域,基于校准和验证的HP1模型。结果表明,HP1模型可以在基线场景下模拟土壤理化特征。与2050年,预测,预计,不得上调气候变化(即RCP8.5,RCP6.0和RCP4.5和RCP4.5方案)对调查的关键土壤特征的显着影响。在调查的土壤特征中,预计土壤有机碳含量最为严重影响。到2050年,预计RCP4.5场景的情况下,该内容将减少14%,RCP6.0场景为16%,rcp8.5场景为23%。最后,建议申请以下牛粪,以增强土壤特征对未来气候变化的抵抗力:3748千克(-1)年(-1)。然而,关于探讨牛粪水平的可持续性的更多关于田地的实验。

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