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方格固沙对流动沙地防风固沙和生态恢复的影响。

Effect of Straw Checkerboards on Wind Proofing, Sand Fixation, and Ecological Restoration in Shifting Sandy Land.

机构信息

Yanchi Research Station, School of Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China.

Key Laboratory of State Forestry Administration on Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China.

出版信息

Int J Environ Res Public Health. 2018 Oct 6;15(10):2184. doi: 10.3390/ijerph15102184.

Abstract

Due to their simple layout and adaptability to various environments, straw checkerboards are widely used to control windblown sand in China. To fully understand the wind proofing and sand-fixing benefits of different board specifications, and to determine the restorative effects of straw checkerboard, we tested different sizes of checkerboard, determined their performance as a windbreak and in trapping shifting sand, and constructed models based on wind tunnel tests, enabling the wind speed flow field to be analysed. We also sampled the soil in areas where straw checkerboards had been established for several years and analysed the trends in soil physical and chemical properties over time. We found that all sizes of straw checkerboard effectively reduced the wind speed near the surface and formed a protected area, with the best protective effect achieved for a one-meter board. All sizes of straw checkerboard effectively intercepted windblown sand to form surface accumulation, with the one-meter board again showing the best performance. The use of a straw checkerboard also effectively improved the physical and chemical properties of soil and promoted ecological restoration. These results indicate that straw checkerboards are a low-cost engineering measure that could play an important role in desertification control and the ecological restoration of sandy land ecosystems.

摘要

由于其简单的布局和对各种环境的适应性,秸秆沙障在中国被广泛用于控制风沙。为了充分了解不同规格沙障的防风固沙效益,以及确定秸秆沙障的恢复效果,我们测试了不同尺寸的沙障,确定了它们作为防风林和固沙的性能,并基于风洞试验构建了模型,以分析风速流场。我们还在已建立多年的秸秆沙障地区采集土壤样本,并分析了土壤物理和化学性质随时间的变化趋势。我们发现,所有尺寸的秸秆沙障都能有效降低近地表风速,并形成一个保护区,其中一米板的保护效果最好。所有尺寸的秸秆沙障都能有效拦截风沙形成地表堆积,其中一米板的效果最好。使用秸秆沙障还能有效改善土壤的物理和化学性质,促进生态恢复。这些结果表明,秸秆沙障是一种低成本的工程措施,可以在荒漠化治理和沙质土地生态系统的生态恢复中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11d7/6211115/a7731ec99643/ijerph-15-02184-g001.jpg

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