Drone monitoring of volcanic lakes in Costa Rica: a new approach

Author:

Sibaja-Brenes José P.1ORCID,Terada Akihiko2,Solís Rosa Alfaro1,Luna Mario Cambronero1,Castro Danilo Umaña1,Ramírez Daniel Porras1,Gutiérrez Rolando Sánchez3,Arroyo Mariela Martínez4,Godfrey Ian1,Cruz María Martínez5

Affiliation:

1. Atmospheric Chemistry Laboratory (LAQAT-UNA), School of Chemistry, Universidad Nacional, Heredia, Costa Rica

2. Volcanic Fluid Research Center, School of Science, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8551, Japan

3. Water Resources Management Laboratory (LAMRHI), School of Chemistry, Universidad Nacional, Heredia, Costa Rica

4. Instituto Nacional de Tecnología Agraria (INTA), Ministry of Agriculture, Cartago, Costa Rica

5. Costa Rican Volcanic and Seismic Observatory (OVSICORI-UNA), Universidad Nacional, Heredia, Costa Rica

Abstract

For the first time ever, samples were collected from volcanic lake waters in Costa Rica using an unmanned aerial vehicle (drone), which represents a major achievement in human–machine interaction and innovation in the technology sector. A Matrice 600 Pro drone was used for remote sampling in the hyperacid crater lake of the Poás volcano, the mildly acidic Lake Botos, and the nearly neutral Lake Hule. A bailer bottle of 250 mL and a HOBO temperature probe, mounted on the drone, were deployed using a specially designed delivery retrieval system. A comparison was carried out relating to the geochemistry of lake water collected by drone as opposed to the hand-collected samples. The SO4−2/Cl ratios of the two samples at Poás hyperacid crater lake were similar, (1.1 ± 0.2) on average, an indication of a lake with homogenous water composition. The Lake Hule showed a similar composition to that registered 20 years ago. The waters from Lake Botos showed some differences, which may be explained by the influence of springs at the bottom of the lake, but the Wilcoxon's signed-rank test showed a good exhibit of a satisfactory level of similarity. Autonomous navigation proves to be very useful for faster, more efficient, reliable, and less hazardous sampling of volcanic lakes.

Publisher

Canadian Science Publishing

Subject

Control and Optimization,Electrical and Electronic Engineering,Control and Systems Engineering,Automotive Engineering,Aerospace Engineering,Computer Science Applications

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