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土壤改良保水剂在造林和育苗中的应用研究
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作者 王学宏 《中文科技期刊数据库(全文版)自然科学》 2021年第9期180-180,182,共2页
近几年国家对绿化、造林和育苗工作的高度重视,让林业得以长期可持续发展。结合各地区大多数土壤的土质情况分析,缺水问题和土壤被破坏问题成为造林和育苗的困难点,只有保证水分改善土壤才能进一步推进造林和育苗工作的顺利发展。
关键词 土壤改良保水剂 造林 育苗 应用研究
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Evaluation of Infiltration Capacity and Water Retention Potential of Amended Soil Using Bamboo Charcoal and Humus for Urban Flood Prevention
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作者 Rei Itsukushima Kazufumi Ideta +2 位作者 Yuki Iwanaga Tatsuro Sato Yukihiro Shimatani 《Journal of Earth Science and Engineering》 2016年第3期150-163,共14页
In Japan, floods occur frequently in urban areas because non-infiltrating areas are seeing increased urbanization. To prevent floods, urban basins must improve the infiltration capacity and water retention of the whol... In Japan, floods occur frequently in urban areas because non-infiltrating areas are seeing increased urbanization. To prevent floods, urban basins must improve the infiltration capacity and water retention of the whole basin. There are several basic technologies for river basin management, such as infiltration trenches or rainwater storage. However, a method of soil amendment that prevents flood disasters has not been established. This study aims to evaluate the infiltration capacity of soil amendments using bamboo charcoal and humus. A constant-head infiltration test and rainfall simulation were conducted to evaluate the properties of the soil amendments. The constant-head infiltration test's results showed that soils mixed with 30% humus had the greatest potential for influencing initial and final infiltration rates, and the more the mixing rates of bamboo charcoal and humus were increased, the higher the water retention capacity. The results of the rainfall simulation showed that soils mixed with 30% humus had the highest final infiltration rates and lowest multiplication spillage. To reduce the runoff volume using soil amendment technology, it is important to delay overland flow, and the hydraulic properties of the soils mixed with bamboo charcoal and humus were as effective as those of granite soils. 展开更多
关键词 Soil amendment infiltration capacity urban flood prevention constant-head infiltration test watering experiment.
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