日本地球惑星科学連合2019年大会

講演情報

[E] Eveningポスター発表

セッション記号 A (大気水圏科学) » A-GE 地質環境・土壌環境

[A-GE28] 地質媒体における物質移動,物質循環と環境評価

2019年5月30日(木) 17:15 〜 18:30 ポスター会場 (幕張メッセ国際展示場 8ホール)

コンビーナ:小島 悠揮(岐阜大学工学部)、濱本 昌一郎(東京大学大学院農学生命科学研究科)、斎藤 広隆(東京農工大学大学院農学研究院)、森 也寸志(岡山大学大学院環境生命科学研究科)

[AGE28-P08] Transport of Colloidal Particles in Saturated Toyoura Sand: Effects of Flow Rate on Importance of Electrostatic Repulsion

*杉本 卓也1濱本 昌一郎1西村 拓1足立 泰久2小林 幹佳2 (1.東京大学大学院農学生命科学研究科、2.筑波大学生命環境系)

キーワード:コロイド粒子、輸送、多孔質媒体、イオン強度、流量

There are substantial colloidal particles such as clay minerals and metal oxides in soil environments. Such colloidal particles have been considered as a potential carrier of contaminants in vadose zone and aquifer, due to their surface charges and high specific surface area. Therefore, understanding the transport mechanisms of colloidal particles in soils is essential to predict the fate of the contaminants in the environments. In this study, we analyze deposition rate coefficients of polystyrene latex particles with a diameter of 1 μm in a column packed with Toyoura sand with an average diameter of 0.274 mm as a function of NaCl concentration at three different flow rates. The concentration of the colloids in the effluent was quantified using a spectrometer photometer. The experimental results showed that the deposition rate coefficients of the colloids increased with increasing NaCl concentrations and reached a plateau above a certain NaCl concentration, called the critical deposition concentration (CDC). The CDCs shifts to higher salt concentrations with increasing injected flow rates. We show that this experimental trend can be captured by a simplified model including physico-chemical interactions based on the DLVO theory.