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Variations in color and reflectance on the surface of asteroid (101955) Bennu 期刊论文
Science, 2020
作者:  D. N. DellaGiustina;  K. N. Burke;  K. J. Walsh;  P. H. Smith;  D. R. Golish;  E. B. Bierhaus;  R.-L. Ballouz;  T. L. Becker;  H. Campins;  E. Tatsumi;  K. Yumoto;  S. Sugita;  J. D. Prasanna Deshapriya;  E. A. Cloutis;  B. E. Clark;  A. R. Hendrix;  A. Sen;  M. M. Al Asad;  M. G. Daly;  D. M. Applin;  C. Avdellidou;  M. A. Barucci;  K. J. Becker;  C. A. Bennett;  W. F. Bottke;  J. I. Brodbeck;  H. C. Connolly;  M. Delbo;  J. de Leon;  C. Y. Drouet d’Aubigny;  K. L. Edmundson;  S. Fornasier;  V. E. Hamilton;  P. H. Hasselmann;  C. W. Hergenrother;  E. S. Howell;  E. R. Jawin;  H. H. Kaplan;  L. Le Corre;  L. F. Lim;  J. Y. Li;  P. Michel;  J. L. Molaro;  M. C. Nolan;  J. Nolau;  M. Pajola;  A. Parkinson;  M. Popescu;  N. A. Porter;  B. Rizk;  J. L. Rizos;  A. J. Ryan;  B. Rozitis;  N. K. Shultz;  A. A. Simon;  D. Trang;  R. B. Van Auken;  C. W. V. Wolner;  D. S. Lauretta
收藏  |  浏览/下载:11/0  |  提交时间:2020/11/09
Bright carbonate veins on asteroid (101955) Bennu: Implications for aqueous alteration history 期刊论文
Science, 2020
作者:  H. H. Kaplan;  D. S. Lauretta;  A. A. Simon;  V. E. Hamilton;  D. N. DellaGiustina;  D. R. Golish;  D. C. Reuter;  C. A. Bennett;  K. N. Burke;  H. Campins;  H. C. Connolly;  J. P. Dworkin;  J. P. Emery;  D. P. Glavin;  T. D. Glotch;  R. Hanna;  K. Ishimaru;  E. R. Jawin;  T. J. McCoy;  N. Porter;  S. A. Sandford;  S. Ferrone;  B. E. Clark;  J.-Y. Li;  X.-D. Zou;  M. G. Daly;  O. S. Barnouin;  J. A. Seabrook;  H. L. Enos
收藏  |  浏览/下载:9/0  |  提交时间:2020/11/09
Global food system emissions could preclude achieving the 1.5° and 2°C climate change targets 期刊论文
Science, 2020
作者:  Michael A. Clark;  Nina G. G. Domingo;  Kimberly Colgan;  Sumil K. Thakrar;  David Tilman;  John Lynch;  Inês L. Azevedo;  Jason D. Hill
收藏  |  浏览/下载:15/0  |  提交时间:2020/11/09
Evaluating Domestic Well Vulnerability to Contamination From Unconventional Oil and Gas Development Sites 期刊论文
Water Resources Research, 2020
作者:  M. A. Soriano;  H. G. Siegel;  K. M. Gutchess;  C. J. Clark;  Y. Li;  B. Xiong;  D. L. Plata;  N. C. Deziel;  J. E. Saiers
收藏  |  浏览/下载:5/0  |  提交时间:2020/09/22
Recent declines in salmon body size impact ecosystems and fisheries 期刊论文
Nature Communications, 2020
作者:  K. B. Oke;  C. J. Cunningham;  P. A. H. Westley;  M. L. Baskett;  S. M. Carlson;  J. Clark;  A. P. Hendry;  V. A. Karatayev;  N. W. Kendall;  J. Kibele;  H. K. Kindsvater;  K. M. Kobayashi;  B. Lewis;  S. Munch;  J. D. Reynolds;  G. K. Vick;  E. P. Palkovacs
收藏  |  浏览/下载:11/0  |  提交时间:2020/08/25
Increasing picocyanobacteria success in shelf waters contributes to long‐term food web degradation 期刊论文
Global Change Biology, 2020
作者:  Katrin Schmidt;  Antony J. Birchill;  Angus Atkinson;  Robert J. W. Brewin;  James R. Clark;  Anna E. Hickman;  David G. Johns;  Maeve C. Lohan;  Angela Milne;  Silvia Pardo;  Luca Polimene;  Tim J. Smyth;  Glen A. Tarran;  Claire E. Widdicombe;  E. Malcolm S. Woodward;  Simon J. Ussher
收藏  |  浏览/下载:17/0  |  提交时间:2020/06/09
Pervasive shifts in forest dynamics in a changing world 期刊论文
Science, 2020
作者:  Nate G. McDowell;  Craig D. Allen;  Kristina Anderson-Teixeira;  Brian H. Aukema;  Ben Bond-Lamberty;  Louise Chini;  James S. Clark;  Michael Dietze;  Charlotte Grossiord;  Adam Hanbury-Brown;  George C. Hurtt;  Robert B. Jackson;  Daniel J. Johnson;  Lara Kueppers;  Jeremy W. Lichstein;  Kiona Ogle;  Benjamin Poulter;  Thomas A. M. Pugh;  Rupert Seidl;  Monica G. Turner;  Maria Uriarte;  Anthony P. Walker;  Chonggang Xu
收藏  |  浏览/下载:16/0  |  提交时间:2020/06/01
Design and Rationale of the HAPIN Study: A Multicountry Randomized Controlled Trial to Assess the Effect of Liquefied Petroleum Gas Stove and Continuous Fuel Distribution 期刊论文
Environmental Health Perspectives, 2020
作者:  Thomas Clasen;  William Checkley;  Jennifer L. Peel;  Kalpana Balakrishnan;  John P. McCracken;  Ghislaine Rosa;  Lisa M. Thompson;  Dana Boyd Barr;  Maggie L. Clark;  Michael A. Johnson;  Lance A. Waller;  Lindsay M. Jaacks;  Kyle Steenland;  J. Jaime Miranda;  Howard H. Chang;  Dong-Yun Kim;  Eric D. McCollum;  Victor G. Davila-Roman;  Aris Papageorghiou;  Joshua P. Rosenthal;  HAPIN Investigators
收藏  |  浏览/下载:12/0  |  提交时间:2020/05/13
Asynchronous carbon sink saturation in African and Amazonian tropical forests 期刊论文
NATURE, 2020, 579 (7797) : 80-+
作者:  Wannes Hubau;  Simon L. Lewis;  Oliver L. Phillips;  Kofi Affum-Baffoe;  Hans Beeckman;  Aida Cuní;  -Sanchez;  Armandu K. Daniels;  Corneille E. N. Ewango;  Sophie Fauset;  Jacques M. Mukinzi;  Douglas Sheil;  Bonaventure Sonké;  Martin J. P. Sullivan;  Terry C. H. Sunderland;  Hermann Taedoumg;  Sean C. Thomas;  Lee J. T. White;  Katharine A. Abernethy;  Stephen Adu-Bredu;  Christian A. Amani;  Timothy R. Baker;  Lindsay F. Banin;  Fidè;  le Baya;  Serge K. Begne;  Amy C. Bennett;  Fabrice Benedet;  Robert Bitariho;  Yannick E. Bocko;  Pascal Boeckx;  Patrick Boundja;  Roel J. W. Brienen;  Terry Brncic;  Eric Chezeaux;  George B. Chuyong;  Connie J. Clark;  Murray Collins;  James A. Comiskey;  David A. Coomes;  Greta C. Dargie;  Thales de Haulleville;  Marie Noel Djuikouo Kamdem;  Jean-Louis Doucet;  Adriane Esquivel-Muelbert;  Ted R. Feldpausch;  Alusine Fofanah;  Ernest G. Foli;  Martin Gilpin;  Emanuel Gloor;  Christelle Gonmadje;  Sylvie Gourlet-Fleury;  Jefferson S. Hall;  Alan C. Hamilton;  David J. Harris;  Terese B. Hart;  Mireille B. N. Hockemba;  Annette Hladik;  Suspense A. Ifo;  Kathryn J. Jeffery;  Tommaso Jucker;  Emmanuel Kasongo Yakusu;  Elizabeth Kearsley;  David Kenfack;  Alexander Koch;  Miguel E. Leal;  Aurora Levesley;  Jeremy A. Lindsell;  Janvier Lisingo;  Gabriela Lopez-Gonzalez;  Jon C. Lovett;  Jean-Remy Makana;  Yadvinder Malhi;  Andrew R. Marshall;  Jim Martin;  Emanuel H. Martin;  Faustin M. Mbayu;  Vincent P. Medjibe;  Vianet Mihindou;  Edward T. A. Mitchard;  Sam Moore;  Pantaleo K. T. Munishi;  Natacha Nssi Bengone;  Lucas Ojo;  Fidè;  le Evouna Ondo;  Kelvin S.-H. Peh;  Georgia C. Pickavance;  Axel Dalberg Poulsen;  John R. Poulsen;  Lan Qie;  Jan Reitsma;  Francesco Rovero;  Michael D. Swaine;  Joey Talbot;  James Taplin;  David M. Taylor;  Duncan W. Thomas;  Benjamin Toirambe;  John Tshibamba Mukendi;  Darlington Tuagben;  Peter M. Umunay;  Geertje M. F. van der Heijden;  Hans Verbeeck;  Jason Vleminckx;  Simon Willcock;  Hannsjö;  rg Wö;  ll;  John T. Woods;  Lise Zemagho
收藏  |  浏览/下载:23/0  |  提交时间:2020/05/13

Structurally intact tropical forests sequestered about half of the global terrestrial carbon uptake over the 1990s and early 2000s, removing about 15 per cent of anthropogenic carbon dioxide emissions(1-3). Climate-driven vegetation models typically predict that this tropical forest '  carbon sink'  will continue for decades(4,5). Here we assess trends in the carbon sink using 244 structurally intact African tropical forests spanning 11 countries, compare them with 321 published plots from Amazonia and investigate the underlying drivers of the trends. The carbon sink in live aboveground biomass in intact African tropical forests has been stable for the three decades to 2015, at 0.66 tonnes of carbon per hectare per year (95 per cent confidence interval 0.53-0.79), in contrast to the long-term decline in Amazonian forests(6). Therefore the carbon sink responses of Earth'  s two largest expanses of tropical forest have diverged. The difference is largely driven by carbon losses from tree mortality, with no detectable multi-decadal trend in Africa and a long-term increase in Amazonia. Both continents show increasing tree growth, consistent with the expected net effect of rising atmospheric carbon dioxide and air temperature(7-9). Despite the past stability of the African carbon sink, our most intensively monitored plots suggest a post-2010 increase in carbon losses, delayed compared to Amazonia, indicating asynchronous carbon sink saturation on the two continents. A statistical model including carbon dioxide, temperature, drought and forest dynamics accounts for the observed trends and indicates a long-term future decline in the African sink, whereas the Amazonian sink continues to weaken rapidly. Overall, the uptake of carbon into Earth'  s intact tropical forests peaked in the 1990s. Given that the global terrestrial carbon sink is increasing in size, independent observations indicating greater recent carbon uptake into the Northern Hemisphere landmass(10) reinforce our conclusion that the intact tropical forest carbon sink has already peaked. This saturation and ongoing decline of the tropical forest carbon sink has consequences for policies intended to stabilize Earth'  s climate.


  
Ocean acidification does not impair the behaviour of coral reef fishes 期刊论文
NATURE, 2020, 577 (7790) : 370-+
作者:  Clark, Timothy D.;  Raby, Graham D.;  Roche, Dominique G.;  Binning, Sandra A.;  Speers-Roesch, Ben;  Jutfelt, Fredrik;  Sundin, Josefin
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

The partial pressure of CO2 in the oceans has increased rapidly over the past century, driving ocean acidification and raising concern for the stability of marine ecosystems(1-3). Coral reef fishes are predicted to be especially susceptible to end-of-century ocean acidification on the basis of several high-profile papers(4,5) that have reported profound behavioural and sensory impairments-for example, complete attraction to the chemical cues of predators under conditions of ocean acidification. Here, we comprehensively and transparently show that-in contrast to previous studies-end-of-century ocean acidification levels have negligible effects on important behaviours of coral reef fishes, such as the avoidance of chemical cues from predators, fish activity levels and behavioural lateralization (left-right turning preference). Using data simulations, we additionally show that the large effect sizes and small within-group variances that have been reported in several previous studies are highly improbable. Together, our findings indicate that the reported effects of ocean acidification on the behaviour of coral reef fishes are not reproducible, suggesting that behavioural perturbations will not be a major consequence for coral reef fishes in high CO2 oceans.