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Influence of the mineralogy of fines on sediment slurrying and slurry behaviors
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作者 SHI Guie XU Zemin +4 位作者 WEN Yixi SU Xiao LI Bin YE Ziming meng jingkai 《Journal of Mountain Science》 2025年第1期31-47,共17页
Fine debris is an important component of natural debris flows.Previous studies focused primarily on the clay minerals found in the fines,and non-clay minerals were often neglected.The effects of mineralogy of fines on... Fine debris is an important component of natural debris flows.Previous studies focused primarily on the clay minerals found in the fines,and non-clay minerals were often neglected.The effects of mineralogy of fines on debris-mass slurrying and flow behaviors of the resultant slurries are examined herein.The fines(≤0.04 mm)in the<5 mm fraction of the Dongyuege Creek debris-flow deposit is replaced with five other mineral powders with the same maximum particle size.Four types of separate and sequential experiments related to debris slurrying and slurry behaviors are carried out with the prepared clastic materials.The obtained slurrying index ranging from 0.08 to 0.18 shows that non-clay minerals also can function as the fine fractions of debris-flow materials,so long as the requirement of grain size distribution is met.Equidimensional,non-clay minerals making up fines of debris flows can increase the upper solid concentration limits of slurrying(with a maximum of 0.692)and peak values of relative excess water pressure(measured maximum mean peak value is 0.99),leading to higher momentum and higher competence,and thereby more destructive catastrophe.The sediments with platy non-clay mineral-dominated fines have potential for mobilizing into small-to medium-size debris flows with a relatively small competence.Clay minerals in the fines may indeed enhance the liquefaction potential of debris masses by expanding the difference between upper and lower solid concentration limits of slurrying(0.413 and 0.238,respectively,for pure kaolinite),but they significantly suppress the momentum,competence,and destructive power of potential debris flows by lowering upper solid concentration limit of slurrying of debris masses.Alpine catchments rich in non-clay minerals,notably those releasing dolomite into loose sediments,may be more prone to threatening and destructive debris flows.The basin producing clay minerals should be more susceptible to lowmagnitude/high-frequency debris flows with less devastating consequences. 展开更多
关键词 Debris flow Fine debris MINERALOGY Clay mineral Non-clay mineral
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河北省畜禽养殖规模化程度与污染物排放量关系的实证研究 被引量:2
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作者 孟靖凯 赵暹 +2 位作者 李容榛 高家通 谢建治 《林业与生态科学》 2019年第3期291-296,共6页
为解决环境保护与农户畜禽规模化养殖间的协调发展问题,基于EKC理论对河北省畜禽养殖规模化程度与污染物排放量之间的关系进行了实证研究。结果表明:河北省畜禽养殖规模化程度与污染物排放量之间的关系呈“倒U型”;将此模型中的因变量y... 为解决环境保护与农户畜禽规模化养殖间的协调发展问题,基于EKC理论对河北省畜禽养殖规模化程度与污染物排放量之间的关系进行了实证研究。结果表明:河北省畜禽养殖规模化程度与污染物排放量之间的关系呈“倒U型”;将此模型中的因变量y(畜禽养殖污染排放量)与其他变量进行相关性检验,y与χ(规模化程度)、χ^2和χ^3 的Pearson相关性分别为0.744^**、0.563^**、0.415^**,均呈显著正相关关系,回归方程可以通过F检验,且常数项和各自变量均通过T检验;通过对模型方程求导并计算,得出河北省畜禽养殖场最适规模为2.2万头猪当量以上,属大型规模。目前,造成河北省畜禽养殖污染物排放的主要来源为占比 78.8%的中、小型规模畜禽养殖场。因此,在制定相关政策时,亟需加强对中、小规模养殖场的监管与补贴,促使中、小规模养殖场对养殖污染物进行处理。 展开更多
关键词 畜禽养殖规模 污染物排放量 EKC曲线 河北省
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