日本地球惑星科学連合2025年大会

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[E] 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-GE34] 地質媒体における流体移動、物質移行及び環境評価

2025年5月30日(金) 17:15 〜 19:15 ポスター会場 (幕張メッセ国際展示場 7・8ホール)

コンビーナ:濱本 昌一郎(北海道大学大学院農学研究院)、小島 悠揮(岐阜大学工学部)、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)

17:15 〜 19:15

[AGE34-P11] Assessment of Natural Latex Application Methods for Soil Infiltration and Erosion Control: A Preliminary Study

*宗村 広昭1、熊本 航己1森 也寸志1、狩野 旬1 (1.岡山大学大学院環境生命自然科学研究科)

キーワード:小規模実験、タイ農地土壌、石垣島農地土壌、環境保全

Thailand is the world's largest producer of natural latex, which is widely used in the automobile industry. However, the effective utilization of surplus latex remains a challenge, leading to economic instability for local farmers. Given its high film-forming ability and elasticity, natural latex has the potential to aggregate soil particles, which may contribute to mitigating soil erosion, particularly in agricultural fields. In our previous study, small-scale rainfall simulator experiments demonstrated that latex enhances water infiltration by promoting soil particle aggregation, suggesting its potential for soil erosion control. However, those experiments were conducted under a fully mixed latex-soil condition, which does not directly reflect real agricultural applications. To explore more practical application methods, this study evaluated two alternative settings: (1) a spray application, simulating latex distribution using watering tractors or sprinklers, and (2) a surface-layer application, where latex-mixed soil forms a thin protective layer on the surface. The experiments were conducted under controlled conditions, including a rainfall intensity of 20 mm/hour, a latex-soil mixture ratio of 0.1% by volume, and a 5-degree slope. The results showed that, at this experimental scale, neither application method significantly improved water infiltration or reduced soil erosion compared to the fully mixed condition. While natural latex has potential for erosion control in agricultural fields, further investigations are necessary. Future studies should explore optimized application techniques and assess long-term effects under more varied and realistic field conditions to fully understand the potential of natural latex in agricultural soil management.