cocaine and chlorophyll a

cocaine has been researched along with chlorophyll a in 17 studies

Research

Studies (17)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's3 (17.65)29.6817
2010's13 (76.47)24.3611
2020's1 (5.88)2.80

Authors

AuthorsStudies
Catalá, M; García-Cambero, JP; García-Cortés, H; Valcárcel, Y1
Han, JI; Kim, J; Ryu, BG; Yang, JW1
Green, TG; Pannewitz, S; Sancho, LG; Schlensog, M; Schroeter, B1
Fasullo, JT; Goes, JI; Gomes, Hdo R; Thoppil, PG1
Bjerke, JW1
Karsten, U; Leya, T; Lütz, C; Remias, D1
Arcagni, M; Arribére, M; Campbell, L; Cárdenas, CS; Diéguez, Mdel C; Queimaliños, C; Rapacioli, R; Reissig, M; Ribeiro Guevara, S1
Autio, R; Enberg, S; Majaneva, M; Piiparinen, J; Rintala, JM; Sommaruga, R; Vähätalo, AV1
Beckers, JF; Casey, JA; Flores, H; Haas, C; Hatam, I; Lange, BA; Meisterhans, G; Michel, C; Niemi, A1
Yin, BF; Zhang, YM1
Cui, H; Jia, L; Li, J; Qiu, L; Wang, B; Wei, Z; Wu, J; Zhao, Y1
Beckers, JF; Bublitz, A; Casey, JA; Castellani, G; Flores, H; Haas, C; Hatam, I; Lange, BA; Michel, C; Reppchen, A; Rudolph, SA1
Anesio, AM; Cook, J; Fagan, D; Holland, A; Poniecka, E; Tedstone, A; Tranter, M; Williamson, CJ; Yallop, ML1
Ling, YC; Mandal, BK; Mathiyalagan, S; Sinha, M1
Culka, A; Jehlička, J; Kaftan, D; Nedbalová, L; Němečková, K; Osterrothová, K; Procházková, L1
Ilomets, M; Küttim, L; Küttim, M; Laine, AM; Robroek, BJM1
Gamon, JA; Springer, KR; Wang, R1

Other Studies

17 other study(ies) available for cocaine and chlorophyll a

ArticleYear
Environmental concentrations of the cocaine metabolite benzoylecgonine induced sublethal toxicity in the development of plants but not in a zebrafish embryo-larval model.
    Journal of hazardous materials, 2015, Dec-30, Volume: 300

    Topics: Animals; Chlorophyll; Cocaine; DNA, Plant; Embryo, Nonmammalian; Embryonic Development; Ferns; Larva; Mitochondria; Plants; Water Pollutants, Chemical; Zebrafish

2015
Feasibility of using a microalgal-bacterial consortium for treatment of toxic coke wastewater with concomitant production of microbial lipids.
    Bioresource technology, 2017, Volume: 225

    Topics: Ammonium Compounds; Bacteria; Biodegradation, Environmental; Biological Oxygen Demand Analysis; Biomass; Chlorophyll; Chlorophyll A; Coke; Esters; Fatty Acids; Feasibility Studies; Lipids; Microalgae; Nitrogen; Phenol; Sewage; Solubility; Volatilization; Wastewater; Water Purification

2017
Are lichens active under snow in continental Antarctica?
    Oecologia, 2003, Volume: 135, Issue:1

    Topics: Adaptation, Physiological; Antarctic Regions; Chlorophyll; Chlorophyll A; Environmental Monitoring; Fiber Optic Technology; Fluorescence; Humidity; Lichens; Photosynthesis; Snow

2003
Warming of the Eurasian landmass is making the Arabian Sea more productive.
    Science (New York, N.Y.), 2005, Apr-22, Volume: 308, Issue:5721

    Topics: Asia; Atmospheric Pressure; Biomass; Chlorophyll; Chlorophyll A; Europe; Oceans and Seas; Phytoplankton; Seasons; Seawater; Snow; Temperature; Wind

2005
Ice encapsulation protects rather than disturbs the freezing lichen.
    Plant biology (Stuttgart, Germany), 2009, Volume: 11, Issue:2

    Topics: Adaptation, Physiological; Carotenoids; Chlorophyll; Cold Temperature; Fluorescence; Freezing; Ice; Lichens; Photosynthesis; Snow; Stress, Physiological

2009
Physiological and morphological processes in the Alpine snow alga Chloromonas nivalis (Chlorophyceae) during cyst formation.
    Protoplasma, 2010, Volume: 243, Issue:1-4

    Topics: Austria; Cell Respiration; Chlorophyll; Chlorophyta; Cold Temperature; Ecosystem; Light; Oxygen; Photosynthesis; Phylogeny; Seasons; Snow

2010
Influence of precipitation, landscape and hydrogeomorphic lake features on pelagic allochthonous indicators in two connected ultraoligotrophic lakes of North Patagonia.
    The Science of the total environment, 2012, Jun-15, Volume: 427-428

    Topics: Animals; Argentina; Carbon Isotopes; Chlorophyll; Chlorophyll A; Environment; Food Chain; Lakes; Organic Chemicals; Rain; Seasons; Snow; Zooplankton

2012
The contribution of mycosporine-like amino acids, chromophoric dissolved organic matter and particles to the UV protection of sea-ice organisms in the Baltic Sea.
    Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2015, Volume: 14, Issue:5

    Topics: Amino Acids; Chlorophyll; Chlorophyll A; Chromatography, High Pressure Liquid; Cyclohexanols; Cyclohexanones; Cyclohexylamines; Diatoms; Dinoflagellida; Finland; Glycine; Ice; Oceans and Seas; Photochemical Processes; Snow; Spectrum Analysis; Temperature; Ultraviolet Rays

2015
Comparing springtime ice-algal chlorophyll a and physical properties of multi-year and first-year sea ice from the Lincoln Sea.
    PloS one, 2015, Volume: 10, Issue:4

    Topics: Arctic Regions; Canada; Chlorophyll; Chlorophyll A; Cyanobacteria; Eukaryota; Ice Cover; Seasons; Seawater; Snow

2015
Physiological regulation of Syntrichia caninervis Mitt. in different microhabitats during periods of snow in the Gurbantünggüt Desert, northwestern China.
    Journal of plant physiology, 2016, May-01, Volume: 194

    Topics: Adaptation, Physiological; Antioxidants; Biomass; Bryopsida; Carbohydrate Metabolism; China; Chlorophyll; Desert Climate; Ecosystem; Fluorescence; Proline; Snow; Soil; Water

2016
Snowmelt-driven changes in dissolved organic matter and bacterioplankton communities in the Heilongjiang watershed of China.
    The Science of the total environment, 2016, Jun-15, Volume: 556

    Topics: Aquatic Organisms; Bacteria; Carbon; China; Chlorophyll; Chlorophyll A; Environmental Monitoring; Fresh Water; Nitrogen; Plankton; Seasons; Snow; Water Microbiology

2016
Pan-Arctic sea ice-algal chl a biomass and suitable habitat are largely underestimated for multiyear ice.
    Global change biology, 2017, Volume: 23, Issue:11

    Topics: Arctic Regions; Biomass; Chlorophyll; Chlorophyll A; Ecosystem; Ice Cover; Light; Phytoplankton; Seasons; Snow

2017
Ice algal bloom development on the surface of the Greenland Ice Sheet.
    FEMS microbiology ecology, 2018, 03-01, Volume: 94, Issue:3

    Topics: Autotrophic Processes; Biomass; Carbon; Carbon Cycle; Chlorophyll; Eutrophication; Greenland; Ice Cover; Seasons; Snow; Streptophyta

2018
Synthesis of different metallochlorophyllins and quantification in food samples by reversed phase - high performance liquid chromatography.
    Natural product research, 2019, Volume: 33, Issue:21

    Topics: Candy; Chlorophyll; Chlorophyllides; Chromatography, High Pressure Liquid; Chromatography, Reverse-Phase; Food Analysis; Food Coloring Agents; Mass Spectrometry; Metals; Spectrophotometry, Ultraviolet; Spectroscopy, Fourier Transform Infrared

2019
Analyzing carotenoids of snow algae by Raman microspectroscopy and high-performance liquid chromatography.
    Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 2019, Apr-05, Volume: 212

    Topics: Carotenoids; Chlorophyll; Chlorophyll A; Chromatography, High Pressure Liquid; Europe; Geography; Microalgae; Microspectrophotometry; Snow; Spectrum Analysis, Raman

2019
Winter climate change increases physiological stress in calcareous fen bryophytes.
    The Science of the total environment, 2019, Dec-10, Volume: 695

    Topics: Bryophyta; Chlorophyll; Climate Change; Ecosystem; Freezing; Plants; Seasons; Snow; Stress, Physiological; Temperature

2019
Confounding effects of snow cover on remotely sensed vegetation indices of evergreen and deciduous trees: An experimental study.
    Global change biology, 2023, Volume: 29, Issue:21

    Topics: Alberta; Carotenoids; Chlorophyll; Climate; Ecosystem; Forests; Snow; Trees

2023