日本地球惑星科学連合2023年大会

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[E] オンラインポスター発表

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-GE27] 地質媒体における流体移動、物質移行及び環境評価

2023年5月26日(金) 10:45 〜 12:15 オンラインポスターZoom会場 (5) (オンラインポスター)

コンビーナ:加藤 千尋(弘前大学農学生命科学部)、西脇 淳子(東京農工大学)、濱本 昌一郎(東京大学大学院農学生命科学研究科)、小島 悠揮(岐阜大学工学部)

現地ポスター発表開催日時 (2023/5/25 17:15-18:45)

10:45 〜 12:15

[AGE27-P14] Effects of natural latex to the surface flow and infiltration amounts under different rainfall intensity conditions

*宗村 広昭1、熊本 航己1森 也寸志1、狩野 旬2、松島 守3、Junhasavasdikul Bnaja4 (1.岡山大学大学院環境生命科学研究科、2.岡山大学大学院自然科学研究科、3.上田ブレーキ(株)、4.Rubber division of the Polymer Society of Thailand)

キーワード:環境保全、小型降雨装置、小規模実験、タイ

Thailand is the world's largest producer of natural latex. Although the latex is widely used in the automobile industry, the effective utilization of surplus latex is a current issue leading to unstabilization of local farmer's livelihood. Considering features of the latex with high film forming ability and elasticity, it can be a material for aggregating the soil particles, which may lead to soil erosion mitigation from a land, especially from an agricultural field. In this study, we evaluated the function of the latex for it by using a small-scale rainfall simulator, two types of soils (sandy loam and red clay), and the latex sampled in Thailand. In the experiments, discharge volume of water from surface flow and infiltration were compared under conditions of different rainfall intensities and with- and without-latex in the two soil types. The experimental conditions were designed as: both soils were dried in air and sieved by 2 mm mesh size, rainfall intensity was 20 mm/hour and 50mm/hour with total 2 hours duration, 0.1% volume of latex was mixed with the soils under "with latex" condition, the experiments were repeated one time after 24 hours. In the case of sandy loam and 20mm/hour rainfall intensity, the latex enhanced infiltration and suppressed surface flow. However, in the case of 50mm/hour rainfall intensity, most of input amount of water discharged as surface flow, regardless of with- and without-latex mixture. In the case of red clay, surface flow was not observed both of rainfall intensities and with/without latex, though slight increment of infiltration was observed under with-latex condition in both of rainfall intensities. Although the natural latex can be used for reducing soil erosion with increment of infiltration in agricultural fields, further experiments are needed to improve the functions under high rainfall intensity.