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生物炭粒径和用量对砂姜黑土强度的影响
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作者 石馨晔 霍静 +4 位作者 陈冲 商建英 刘桢 黄元仿 汤怀志 《农业工程学报》 北大核心 2025年第1期128-134,共7页
生物炭作为改良剂常被用来消减砂姜黑土黏重、易粘结成块、耕性差等障碍因子。先前的研究关注了生物炭用量和类型对砂姜黑土强度的改良效果,但不同粒径和用量生物炭对砂姜黑土强度的影响机理并不完全清楚。为明确不同粒径和用量生物炭... 生物炭作为改良剂常被用来消减砂姜黑土黏重、易粘结成块、耕性差等障碍因子。先前的研究关注了生物炭用量和类型对砂姜黑土强度的改良效果,但不同粒径和用量生物炭对砂姜黑土强度的影响机理并不完全清楚。为明确不同粒径和用量生物炭对砂姜黑土强度的影响。该研究选择两种典型砂姜黑土,通过室内模拟试验测定了两种粒径(1~2 mm和<0.15 mm)和3个不同用量(1%、3%和5%)生物炭处理下2种不同质地(粉质黏壤土和粉黏土)砂姜黑土的抗张强度、圆锥贯入深度和不排水抗剪切强度。结果表明:3%和5%粗颗粒生物炭(粒径1~2 mm)处理显著降低砂姜黑土的抗张强度(P<0.05),且对粉黏土抗张强度降低程度高于粉质黏壤土。细颗粒生物炭(粒径<0.15 mm)处理并没有降低砂姜黑土的抗张强度,且生物炭1%细颗粒生物炭处理的抗张强度比对照高16.0%和21.2%。生物炭处理增加了圆锥贯入深度与含水率回归方程的斜率,且对粉黏土的增加效果更显著。对于粗颗粒生物炭,3%和5%生物炭处理总体上降低了砂姜黑土圆锥贯入深度,增加了不排水抗剪切强度。对于细颗粒生物炭,生物炭施用对砂姜黑土圆锥贯入深度和不排水抗剪切强度的影响可能增加、降低或无影响。生物炭施用对砂姜黑土强度的影响与生物炭粒径和用量、土壤性质和含水率密切相关。该研究所得结果可以为生物炭对砂姜黑土结构和耕性改良提供数据支撑和理论依据。 展开更多
关键词 生物炭粒径 生物炭用量 强度 圆锥贯入深度 不排水抗剪切强度
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Low secondary compressibility and shear strength of Shanghai Clay 被引量:1
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作者 李青 吴宏伟 刘国彬 《Journal of Central South University》 SCIE EI CAS 2012年第8期2323-2332,共10页
In order to investigate the compressibility, particularly the secondary compression behaviour, soil structure and undrained shear strength of Shanghai Clay, a series of one-dimensional consolidation tests (some up to... In order to investigate the compressibility, particularly the secondary compression behaviour, soil structure and undrained shear strength of Shanghai Clay, a series of one-dimensional consolidation tests (some up to 70 d) and undrained triaxial tests on high-quality intact and reconstituted soil specimens were carried out. Shanghai Clay is a lightly overconsolidated soil (OCR=1.2-1.3) with true cohesion or bonding. Due to the influence of soil structures, the secondary compression index Ca varies significantly with consolidation stress and the maximum value of C~ occurs in the vicinity of preconsolidation stress. Measured coefficients of secondary compression generally fall in the range of 0.2%-0.8% based on which Shanghai Clay can be classified as a soil with low to medium secondary compressibility. The effect of soil structures on the compressibility of Shanghai Clay is found to reduce with an increase in depth. Soil structure has an important influence on initial soil stiffness, but does not appear to affect undrained shear strength significantly. Undrained shear strengths of intact Shanghai Clay from compression tests are approximately 20% higher than those from extension tests. 展开更多
关键词 Shanghai Clay block sampling secondary compressibility soil structure undrained shear strength
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