谭亲平
PNAS 2篇;Nature communications 13篇;Nature Geosciences 2篇
2022-5-21 22:02
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PNAS 2篇;Nature communications 13篇;Nature Geosciences 2

意得辑365天免费多轮英文润色——9折优惠代码GEOHOME,使用教程

优质润色-多轮润色(365天内)无论怎样修改稿件,都无惧畏惧质量问题

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LETTER

EARTH, ATMOSPHERIC, AND PLANETARY SCIENCES

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Estimates of economic and environmental damages from tipping points cannot be reconciled with the scientific literature

对临界点造成的经济和环境损害的估计与科学文献报道不一致

May 19, 2022

https://doi.org/10.1073/pnas.2117308119

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REPLY

EARTH, ATMOSPHERIC, AND PLANETARY SCIENCES

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Reply to Keen et al.: Dietz et al. modeling of climate tipping points is informative even if estimates are a probable lower bound

回复Keen等人:Dietz等人建立的气候临界点模型具有丰富的信息,即使估计结果可能是一个下限

May 19, 2022

https://doi.org/10.1073/pnas.2201191119

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Article

Open Access

Published: 20 May 2022

Inflated pyroclasts in proximal fallout deposits reveal abrupt transitions in eruption behaviour

膨胀的火山碎屑在近端沉降物沉积显示了喷发行为的突然转变

Nature Communications

https://www.nature.com/articles/s41467-022-30501-6

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Article

Open Access

Published: 20 May 2022

Holocene melting of the West Antarctic Ice Sheet driven by tropical Pacific warming

全新世,热带太平洋变暖导致南极西部冰盖融化

Nature Communications

https://www.nature.com/articles/s41467-022-30076-2

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Matters Arising

Open Access

Published: 20 May 2022

Reply to “Marine abundance and its prehistoric past in the Baltic”

“波罗的海丰富的海洋及其史前历史”的回复

Nature Communications

https://www.nature.com/articles/s41467-022-30151-8

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Matters Arising

Open Access

Published: 20 May 2022

Marine abundance and its prehistoric past in the Baltic

波罗的海丰富的海洋和它的史前历史

Nature Communications

https://www.nature.com/articles/s41467-022-30150-9

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Article

Open Access

Published: 19 May 2022

Structural transition and re-emergence of iron's total electron spin in (Mg,Fe)O at ultrahigh pressure

超高压下(Mg,Fe)O中铁总电子自旋的结构转变和重新出现研究

Nature Communications

https://www.nature.com/articles/s41467-022-30100-5

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Article

Open Access

Published: 19 May 2022

Reactive halogens increase the global methane lifetime and radiative forcing in the 21st century

活性卤素增加了21世纪全球甲烷的寿命和辐射强迫

Nature Communications

https://www.nature.com/articles/s41467-022-30456-8

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Article

Open Access

Published: 19 May 2022

Plant beta-diversity across biomes captured by imaging spectroscopy

通过成像光谱捕捉生物群系的植物多样性

Nature Communications

https://www.nature.com/articles/s41467-022-30369-6

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Article

Open Access

Published: 19 May 2022

Kilometer-scale structure on the core–mantle boundary near Hawaii

夏威夷附近地核-地幔边界上的千米尺度结构研究

Nature Communications

https://www.nature.com/articles/s41467-022-30502-5

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Article

Open Access

Published: 18 May 2022

Global diversity dynamics in the fossil record are regionally heterogeneous

化石记录的全球多样性动态具有区域不均一性

Nature Communications

https://www.nature.com/articles/s41467-022-30507-0

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Article

Open Access

Published: 17 May 2022

Drought assessment has been outpaced by climate change: empirical arguments for a paradigm shift

干旱评估已经被气候变化所超越:范式转变的经验论据研究

Nature Communications

https://www.nature.com/articles/s41467-022-30316-5

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Article

Open Access

Published: 17 May 2022

Human-ignited fires result in more extreme fire behavior and ecosystem impacts

人类引发的火灾导致更极端的火灾行为和生态系统的影响

Nature Communications

https://www.nature.com/articles/s41467-022-30030-2

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Article

Open Access

Published: 17 May 2022

Mineralogical control on methylotrophic methanogenesis and implications for cryptic methane cycling in marine surface sediment

海洋表层沉积物中甲基营养甲烷生成的矿物学控制及其对甲烷循环的意义

Nature Communications volume 

https://www.nature.com/articles/s41467-022-30422-4

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Article

Open Access

Published: 16 May 2022

Earth’s geodynamic evolution constrained by 182W in Archean seawater

太古代海水182W约束下的地球动力学演化

Nature Communications volume 

https://www.nature.com/articles/s41467-022-30423-3

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Article

Open Access

Published: 16 May 2022

Global cycling and climate effects of aeolian dust controlled by biological soil crusts

由生物土壤结皮控制的风沙的全球循环和气候效应研究

Nature Geoscience (2022)

https://www.nature.com/articles/s41561-022-00942-1

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Research Briefing

Published: 16 May 2022

Biological soil crusts play a key role in current and future global dust cycling

生物结皮在当前和未来的全球粉尘循环中发挥着重要作用

Nature Geoscience (2022)

https://www.nature.com/articles/s41561-022-00943-0

 

 

 


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