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The blue carbon of southern southwest Atlantic salt marshes and their biotic and abiotic drivers
西南大西洋南部盐沼的蓝碳及其生物和非生物驱动因素研究
Nat Commun-Earth
The potential of emerging bio-based products to reduce environmental impacts
新兴生物基产品减少环境影响的潜力
Nat Commun-Earth
Reply to: Sea-level rise may not uniformly accelerate cliff erosion rates
回复:海平面上升可能不会统一加速悬崖侵蚀速率
Nat Commun-Earth
Sea-level rise may not uniformly accelerate cliff erosion rates
海平面上升可能不会统一加速悬崖侵蚀速率
Nat Commun-Earth
Metallic micronutrients are associated with the structure and function of the soil microbiome
金属微量元素与土壤微生物群的结构和功能有关
Nat Commun-Earth
Solar cycle as a distinct line of evidence constraining Earth’s transient climate response
太阳周期作为限制地球瞬态气候反应的明显证据
Shoreface erosion counters blue carbon accumulation in transgressive barrier-island systems
在海侵障碍-岛屿系统中,岸面侵蚀对抗蓝碳积累
Nat Commun-Earth
Magmatic immiscibility and the origin of magnetite-(apatite) iron deposits
岩浆不混溶与磁铁矿(磷灰石)矿床的成因
Nat Commun-Earth
Author Correction: Plastic waste discharge to the global ocean constrained by seawater observations
作者更正:受海水观测约束的全球海洋塑料废物排放
Nat Commun-Earth
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后斯图亚特雪球海洋边缘被粘土矿物溶解的磷酸盐的瞬时肥化研究
Nat Commun-Earth
Author Correction: Submesoscale inverse energy cascade enhances Southern Ocean eddy heat transport
作者更正:亚中尺度逆能量级联增强了南大洋涡旋热输送
Nat Commun-Earth
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Author Correction: Frequent marine heatwaves hidden below the surface of the global ocean
作者更正:频繁的海洋热浪隐藏在全球海洋表面之下
Nature Geoscience
发布者更正:根据大气氧化能力的长期趋势制定的臭氧污染减缓战略
Nature Geoscience
Responses of soil organic carbon to climate extremes under warming across global biomes
变暖背景下全球生物群系土壤有机碳对极端气候的响应
Nature Climate Change
Soil organic carbon losses exacerbated by climate extremes
极端气候加剧了土壤有机碳损失
Nature Climate Change
MJO’s predictability on the rise
MJO的可预测性在上升
Nature Climate Change
Increase in MJO predictability under global warming
全球变暖下MJO可预测性的增加
Nature Climate Change
Shale gas revolution could paralyse the energy transition
页岩气革命可能使能源转型陷入瘫痪
Nature Climate Change
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JOURNAL ARTICLE ACCEPTED MANUSCRIPT
Deep-time mass extinction helps understand the current biotic crisis
深度大灭绝有助于理解当前的生物危机
National Science Review
https://doi.org/10.1093/nsr/nwad322
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JOURNAL ARTICLE ACCEPTED MANUSCRIPT
Late Ordovician Mass Extinction: Earth, fire and ice.
奥陶纪晚期大灭绝:地球、火与冰
National Science Review
https://doi.org/10.1093/nsr/nwad319
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