Rock-Soil Transition In Weathering Of A Porphyritic Biotite Granite

Warta Geologi Pub Date : 2022-04-28 DOI:10.7186/wg481202201
John Kuna Raj
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Abstract

Concentric layers of weathered materials around core-stones show the porphyritic biotite granite to experience sequential, but gradational, changes in visible features, textures and mineralogy as it transforms from ‘rock’ into ‘soil’. The changes start with the opening-up of grain boundaries and micro-cracks (stage 1) followed by their dark brown staining (stage 2) and the subsequent alteration (to sericite and clay minerals) of groundmass plagioclase feldspar grains (stage 3). Biotite flakes are then bleached and altered (to chlorite and clay minerals) (stage 4) before there starts alteration (to sericite and clay minerals) of groundmass alkali feldspar grains (stage 5) and finally alteration (to sericite and clay minerals) of the alkali feldspar phenocrysts (stage 6). Quartz grains are not altered during these stages of weathering, but disaggregate and reduce in size due to continual opening-up of grain boundaries and micro-cracks. Increasing stages of weathering are marked by decreasing dry unit weights, dry densities and uniaxial compressive strengths, but increasing apparent porosities. The transition between ‘rock’ and ‘soil’ occurs during stage 6 when all plagioclase, and most alkali feldspar, groundmass grains have been altered as are some alkali feldspar phenocrysts. Stage 6 is marked by large apparent porosities (>18%) but low values of dry unit weight (<20.81 kN/m3), dry density (<2,122 kg/m3) and uniaxial compressive strength (<1.8 MPa).
斑岩型黑云母花岗岩风化过程中的岩石-土壤过渡
岩心周围的风化物质同心层表明,斑岩黑云母花岗岩在从“岩石”转变为“土壤”的过程中,在可见特征、纹理和矿物学上经历了连续的、分层的变化。变化开始于晶界和微裂缝的开放(第1阶段),随后是它们的深棕色染色(第2阶段),随后是地面斜长石颗粒的蚀变(向绢云母和粘土矿物转变)(第3阶段)。黑云母薄片随后被漂白和蚀变(向绿泥石和粘土矿物转变)(第4阶段),然后是地面碱长石颗粒的蚀变(向绢云母和粘土矿物转变)(第5阶段),最后蚀变(向绢云母和粘土矿物转变)。碱长石斑晶(第6阶段)。石英颗粒在这些风化阶段没有发生蚀变,而是由于晶界和微裂纹的不断开放而破碎变小。随着风化阶段的增加,干重、干密度和单轴抗压强度逐渐减小,表观孔隙率逐渐增大。“岩石”和“土壤”之间的转变发生在第6阶段,此时所有斜长石、大多数碱长石、大地颗粒都发生了蚀变,一些碱长石斑晶也是如此。第6阶段孔隙率较大(>18%),但干重(<20.81 kN/m3)、干密度(< 2122 kg/m3)和单轴抗压强度(<1.8 MPa)值较低。
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