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Salt intrusion adaptation measures for sustainable agricultural development under climate change effects: A case of Ca Mau Peninsula, Vietnam

机译:气候变化影响下可持续农业发展的盐分适应措施:以越南Ca Mau半岛为例

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Purpose The Ca Mau Peninsula, a sub-region of the Vietnamese Mekong Delta, plays an extremely important and decisive role in the country’s food security. Due to the influence of complex hydrological regime, annual intrusion of sea water in the dry season has caused barriers and constraints for existing agricultural practices. However, the projection of saline simulation indicated that the occurrence of salt intrusion is likely further inland and severe intensity in the Hau River and coastal areas of the Ca Mau Peninsula in line with the rise of sea levels under climate change effects. This paper aims to propose mitigation and adaptation measures of salt tolerance for sustainable agricultural development in the Ca Mau Peninsula up to 2030 in accordance with projected scenarios of sea level rise. Methodology The study inherited the results of forecasting salt intrusion in scenarios of sea level rise until 2030 by using the MIKE 11 HD-AD model in a previous research of the authors, in order to suggest mitigation and adaptation measures against salt intrusion for agricultural activities in the Ca Mau Peninsula. The documents relating to salt tolerance of crops, state of irrigation structures and land use were also collected and analyzed to provide more information for better proposed solutions. Findings The paper presents some feasible measures to mitigate and adapt salt intrusion as sea level rise under impacts of climate change including appropriate land use planning; reasonable shifts in agricultural practices, in particular in the selection of plants and crops which can be tolerant to various salt limits; applying advanced cultivation techniques such as less water irrigation practices of alternate wetting and drying and salt tolerance enhancement; and hard-engineered structures for salt prevention and freshwater conveyance in freshwater-scarce areas. Practical implications The study will be very meaningful for local farmers in the Ca Mau Peninsula to develop agriculture sustainably, especially, the famers can select crops which are suitable with the salt concentrations or change land use and cultivation models for higher yields. Social implications The measures proposed in this study will help to increase the efficiency of agricultural production toward a sustainable agriculture-based economy, which will bring sustainable livelihoods for farmers in the peninsula where agriculture and aquaculture are their main economic activities. Originality/value Until now, mitigation and adaptation measures of salt intrusion in the Ca Mau Peninsula have not been perfected. They were suggested by general view only, and not based upon scientific evidences. This paper gives a system of solutions which were proposed based upon specific evaluation of current and future forecasted salt intrusion scenarios.
机译:目的Ca Mau半岛是越南湄公河三角洲的一个分支区域,在该国的粮食安全中发挥着极其重要和决定性的作用。由于复杂的水文制度的影响,干旱季节每年的海水入侵已经对现有的农业实践造成了障碍和制约。然而,盐水模拟的预测表明,随着气候变化影响下海平面的上升,盐的入侵很可能在内河和高强度的卡莫半岛沿海地区进一步加剧。本文旨在根据预计的海平面上升情景,提出到2030年在Ca Mau半岛可持续农业发展所需的盐分缓解和适应措施。方法学该研究继承了作者先前的研究中利用MIKE 11 HD-AD模型预测了到2030年海平面上升情况下盐分入侵的结果,以提出缓解和适应盐分入侵的农业活动的建议。 Ca Mau半岛。还收集并分析了与农作物的耐盐性,灌溉结构状况和土地利用有关的文件,以提供更多信息,以更好地提出解决方案。研究结果本文提出了一些可行的措施来缓解和适应在气候变化影响下海平面上升引起的盐分入侵,包括适当的土地利用规划;农业实践的合理转变,特别是在可以容忍各种盐分限制的植物和农作物的选择上;采用先进的耕作技术,例如减少水的灌溉方式,交替进行湿润和干燥,以及提高耐盐性;以及用于在缺水地区防止盐分和输送淡水的坚固结构。实际意义该研究对于Ca Mau半岛的当地农民可持续发展农业将非常有意义,特别是,农民可以选择适合盐分浓度的农作物或改变​​土地利用和耕种模式以提高产量。社会影响本研究中提出的措施将有助于提高农业生产效率,实现以农业为基础的可持续经济,这将为以农业和水产养殖为主要经济活动的半岛农民带来可持续的生计。独创性/价值到目前为止,在Ca Mau半岛对盐分入侵的缓解和适应措施尚未完善。它们仅由一般观点提出,而不是基于科学证据。本文给出了一个解决方案系统,该解决方案是在对当前和将来的盐入侵情景进行特定评估的基础上提出的。

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