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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Synergic effects of biochar and polyacrylamide amendments on the mechanical properties of silt loam soil under coastal reclamation in China
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Synergic effects of biochar and polyacrylamide amendments on the mechanical properties of silt loam soil under coastal reclamation in China

机译:生物炭和聚丙烯酰胺修正对中国沿海垦区淤泥壤土土壤力学性能的协同作用

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摘要

Recent surveys have reported severe erosion and slope collapse caused by a combination of the poor structure of silt loam and heavy rainfall in reclaimed areas of China. Biochar and polyacrylamide (PAM) have been widely used as amendments to protect soil from degradation and enhance plant growth. However, few studies have focused on their synergic effects on soil mechanical properties. In this study, biochar and PAM were incorporated into silt loam at rates of 0%, 2%, and 5% and 0 parts per thousand, 0.4 parts per thousand, and 1 parts per thousand, respectively, to investigate the extent to which biochar and PAM additions affect soil consistency limits and shear strength and to evaluate the slope reliability under natural conditions. The results show that the plastic limit (PL) and liquid limit (LL) were significantly enhanced by amendments of 5% biochar and 1 parts per thousand PAM. Soil consistency limits were significantly correlated with the soil 3D fractal dimension (FD), mu-CT porosity and electrical conductivity (EC). Amendment of coastal silt loam soil with biochar resulted in decreased cohesion. The application of PAM reduced the negative effect of biochar on cohesion and considerably increased the cohesion value of the silt loam. The results of the slope stability analysis were closely related to the shear strength parameters. Biochar-amended silt loam soil in the coastal area exhibited a much lower factor of safety (FS) compared with the control soil, irrespective of the level of the water and the slope angle within the slope system. A PAM amendment in coastal silt loam soil increased the FS significantly (P 0.05) and minimized the negative effects on the FS that was caused by the biochar amendment. Therefore, biochar and PAM could be applied to silt loam soil together to improve soil quality to enhance the slope stability under coastal reclamation in China.
机译:最近的调查报告了通过淤泥壤土的结构差和中国的暴雨的差的组合而引起的严重侵蚀和斜坡崩溃。生物炭和聚丙烯酰胺(PAM)已被广泛用作保护土壤免于降解和提高植物生长的修正。然而,很少有研究专注于它们对土壤机械性能的协同作用。在本研究中,生物炭和PAM分别以0%,2%和5%和0份每千元,0.4份/每千份,0.4份,每千份,每千分别纳入淤泥壤土,以研究生物炭的程度PAM添加影响土壤一致性限制和剪切强度,并在自然条件下评估坡度可靠性。结果表明,通过5%Biochar的修正和每千匹帕姆的1份,塑料极限(PL)和液体限制(LL)明显增强。土壤稠度限制与土壤3D分形尺寸(FD),MU-CT孔隙率和电导率(EC)明显相关。用生物炭修正沿海淤泥壤土土壤导致凝聚力下降。 PAM的应用降低了生物炭对凝聚力的负面影响,大大增加了淤泥壤土的内聚力。边坡稳定性分析的结果与剪切强度参数密切相关。与对照土壤相比,沿海地区的生物炭修正淤泥泥土土壤与控制土壤相比,安全(FS)的较低因素,而不管坡度系统内的水平和坡度角度。沿海淤泥壤土土壤中的PAM修正案显着增加了FS(P <0.05),并最大限度地减少了对生物炭修正案引起的FS的负面影响。因此,生物炭和帕姆可以应用于淤泥壤土土壤,以提高土壤质量,以提高中国沿海垦区下的边坡稳定性。

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