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首页> 外文期刊>Journal of materials in civil engineering >Influence of Biochar Particle Size Fractions on Thermal and Mechanical Properties of Biochar-Amended Soil
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Influence of Biochar Particle Size Fractions on Thermal and Mechanical Properties of Biochar-Amended Soil

机译:生物淀粉粒度分数对生物炭修正土的热和力学性能的影响

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摘要

Thermal backfill is essential for projects such as underground crude oil pipelines and crude oil storage tanks to control the heat migration from the source. The properties of locally available soil may not be adequate as thermal backfill and hence need suitable amendment. Biochar is a low thermal conductive material and may contribute to an increase in soil strength. There are no such studies that deal with the thermal properties of biochar-based backfill. Further, the influence of biochar particle size fractions on soil thermal properties has not been reported until now. Therefore, the possibility of biochar as a soil amendment for modifying thermal backfill characteristics is explored in this study. Two types of soils (highly plastic silt and clayey sand) are amended with three biochar content amounts (5%, 10%, and 15%), and three different particle size fractions [coarse (4.7-2 mm), medium (2-0.425 mm), and fine (0.425-0.075 mm)], and their compaction characteristics as well as thermal and mechanical properties are investigated. It was observed that the amendment of biochar in soil reduced the thermal and mechanical properties of the soil. Further, the reduction in soil thermal conductivity and volumetric heat capacity with biochar amendment was more in coarser biochar fraction than finer and medium fractions. In comparison, reduction in unconfined compressive strength (UCS) was more in finer biochar fraction. Additionally, the thermal properties reduction was higher in clayey sand than highly plastic silt. An inverse linear correlation of thermal conductivity with pH and electrical conductivity were observed for both soil biochar mixes. The relationship between the thermal properties and UCS indicates that the medium fraction biochar provides the optimized value for reducing thermal properties and UCS of biochar amended soil (BAS). This proves the efficacy of BAS as thermal backfill.
机译:热回填对于诸如地下原油管道和原油储罐等项目的项目是必不可少的,以控制来自源的热迁移。本地可用土壤的性质可能不充分作为热回填,因此需要适当的修正。 BioChar是一种低导热材料,可能有助于降低土壤强度。没有这样的研究可以处理基于生物炭的回填的热性能。此外,迄今为止,尚未报道生物淀粉粒度分数对土壤热性能的影响。因此,本研究探讨了生物炭作为改变热回填特性的土壤修正的可能性。用三种生物丙烯含量(5%,10%和15%)和三种不同的粒度分数(粗(4.7-2mm),培养基(2-研究了0.425毫米),并进行精细(0.425-0.075 mm)]及其压实特性以及热和机械性能。人们认为,土壤中生物炭修正降低了土壤的热和力学性能。此外,在较粗糙的生物炭馏分比细粒和中级分中,具有生物炭修正的土壤导热率和体积热容量的降低更加粗糙。相比之下,在更精细的生物炭馏分中更加狭窄的抗压强度(UCS)。另外,粘土沙子的热性能高于高度塑料淤泥。对于两种土壤生物炭混合,观察到具有pH和电导率的导热率的逆线性相关性。热性质和UC之间的关系表明介质馏分BioChach提供了减少生物炭修正土壤(BAS)的热性能和UC的优化值。这证明了基因作为热回填的功效。

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