0000000000925877

AUTHOR

Rodrigo Espinosa

0000-0003-1945-9666

showing 2 related works from this author

An Integrative Approach to Assess the Environmental Impacts of Gold Mining Contamination in the Amazon

2021

As the number of legal and illegal gold mining sites increases in the Andes–Amazonia region, integrative methods to evaluate the effects of mining pollution on freshwater ecosystems are of paramount importance. Here, we sampled water and sediments in 11 sites potentially affected by gold mining activities in the Napo province (Ecuador). The environmental impacts were evaluated using the following lines of evidence (LOEs): water physicochemical parameters, metal exposure concentrations, macroinvertebrate community response (AAMBI), and toxicity by conducting bioassays with Lactuca sativa and Daphnia magna. Dissolved oxygen and total suspended solids were under (130 mg/Ls) quality standards 6…

PollutionGold mining010504 meteorology & atmospheric sciencesHealth Toxicology and Mutagenesismedia_common.quotation_subjectDaphnia magnametalsmetals; environmental monitoring; bioassays; Amazon River; Amazonia; miningTP1-1185010501 environmental sciencesminingToxicology01 natural sciencesFreshwater ecosystemMiningArticleAmazoniaEnvironmental monitoringBioassays;bioassays0105 earth and related environmental sciencesenvironmental monitoringmedia_commonTotal suspended solidsChemical Health and Safetybiologybusiness.industryChemical technologyAmazon RiverSedimentEnvironmental monitoringQ Science (General)Contaminationbiology.organism_classificationatmospheric_scienceMetalsEnvironmental chemistryEnvironmental sciencebusinessToxics; Volume 9; Issue 7; Pages: 149
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Science Advances

2019

River ecosystems receive and process vast quantities of terrestrial organic carbon, the fate of which depends strongly on microbial activity. Variation in and controls of processing rates, however, are poorly characterized at the global scale. In response, we used a peer-sourced research network and a highly standardized carbon processing assay to conduct a global-scale field experiment in greater than 1000 river and riparian sites. We found that Earth’s biomes have distinct carbon processing signatures. Slow processing is evident across latitudes, whereas rapid rates are restricted to lower latitudes. Both the mean rate and variability decline with latitude, suggesting temperature constrai…

Aquatic Ecology and Water Quality Managementriparian zonesORGANIC-MATTER DECOMPOSITIONBiodiversité et EcologieOceanografi hydrologi och vattenresurser/dk/atira/pure/sustainabledevelopmentgoals/life_on_landCarbon CycleCARBONekosysteemitOceanography Hydrology and Water Resourcesbiomesbiomitddc:570carbon cycleHumansSTREAMSLife ScienceHuman ActivitiesRiparian zonesTEMPERATUREInstitut für Biochemie und BiologieEcosystemComputingMilieux_MISCELLANEOUSSDG 15 - Life on Landaquatic ecosystemsScience & TechnologyWIMEKhiilen kiertovesiekosysteemitAquatic EcologyAquatische Ecologie en WaterkwaliteitsbeheerriversMultidisciplinary Sciencesekosysteemit (ekologia)BiomonitoringarticlesScience & Technology - Other Topics[SDE.BE]Environmental Sciences/Biodiversity and EcologyecosystemsjoetEnvironmental Monitoring
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