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International Journal of Environmental Science and Technology · 2026 · Vol. 23 · Issue 9 · Springer
Based on daily rainfall data from 252 national meteorological stations in the Haihe River Basin of China during 1961–2023, rainstorm events were divided, and four characteristic variables representing the hazard index of rainstorms were statistically analyzed, including total number of rainstorm days ( I day ), cumulative rainfall ( I pre ), average daily rainfall ( I 24pre ), and maximum duration days ( I dur ). Combined with...
Global Change Biology · 2026 · Vol. 32 · Issue 8 · Wiley
Human activities emit nitrogen oxides (NO x ≡ NO + NO 2 ; with source emissions approximated as nitric oxide (NO)), potent air pollutants and short‐lived climate forcers, through direct and indirect pathways. Unlike direct releases, however, indirect NO x emissions remain poorly understood and inadequately quantified. Here, by synthesizing available observations across global terrestrial ecosystems, we show that soil moisture...
Science Bulletin · 2026 · Vol. 71 · Issue 11 · Elsevier
M. Ablikim; M.N. Achasov; P. Adlarson; X.C. Ai; R. Aliberti; A. Amoroso; Q. An; Y. Bai; O. Bakina; Y. Ban; H.-R. Bao; V. Batozskaya; K. Begzsuren; N. Berger; M. Berlowski; M.B. Bertani; D. Bettoni; F. Bianchi; E. Bianco; A. Bortone; I. Boyko; R.A. Briere; A. Brueggemann; H. Cai; M.H. Cai; X. Cai; A. Calcaterra; G.F. Cao; N. Cao; S.A. Cetin; X.Y. Chai; J.F. Chang; T.T. Chang; G.R. Che; Y.Z. Che; C.H. Chen; Chao Chen; G. Chen; H.S. Chen; H.Y. Chen; M.L. Chen; S.J. Chen; S.M. Chen; T. Chen; X.R. Chen; X.T. Chen; X.Y. Chen; Y.B. Chen; Y.Q. Chen; Z.K. Chen; J.C. Cheng; L.N. Cheng; S.K. Choi; X. Chu; G. Cibinetto; F. Cossio; J. Cottee-Meldrum; H.L. Dai; J.P. Dai; X.C. Dai; A. Dbeyssi; R.E. de Boer; D. Dedovich; C.Q. Deng; Z.Y. Deng; A. Denig; I. Denisenko; M. Destefanis; F.De Mori; X.X. Ding; Y. Ding; Y.X. Ding; J. Dong; L.Y. Dong; M.Y. Dong; X. Dong; M.C. Du; S.X. Du; S.X. Du; X.L. Du; Y.Y. Duan; Z.H. Duan; P. Egorov; G.F. Fan; J.J. Fan; Y.H. Fan; J. Fang; J. Fang; S.S. Fang; W.X. Fang; Y.Q. Fang; L. Fava; F. Feldbauer; G. Felici; C.Q. Feng; J.H. Feng; L. Feng; Q.X. Feng; Y.T. Feng; M. Fritsch; C.D. Fu; J.L. Fu; Y.W. Fu; H. Gao; Y. Gao; Y.N. Gao; Y.N. Gao; Y.Y. Gao; Z. Gao; S. Garbolino; I. Garzia; L. Ge; P.T. Ge; Z.W. Ge; C. Geng; E.M. Gersabeck; A. Gilman; K. Goetzen; J.D. Gong; L. Gong; W.X. Gong; W. Gradl; S. Gramigna; M. Greco; M.D. Gu; M.H. Gu; C.Y. Guan; A.Q. Guo; J.N. Guo; L.B. Guo; M.J. Guo; R.P. Guo; X. Guo; Y.P. Guo; A. Guskov; J. Gutierrez; T.T. Han; F. Hanisch; K.D. Hao; X.Q. Hao; F.A. Harris; C.Z. He; K.L. He; F.H. Heinsius; C.H. Heinz; Y.K. Heng; C. Herold; P.C. Hong; G.Y. Hou; X.T. Hou; Y.R. Hou; Z.L. Hou; H.M. Hu; J.F. Hu; Q.P. Hu; S.L. Hu; T. Hu; Y. Hu; Z.M. Hu; G.S. Huang; K.X. Huang; L.Q. Huang; P. Huang; X.T. Huang; Y.P. Huang; Y.S. Huang; T. Hussain; N. Hüsken; N. in der Wiesche; J. Jackson; Q. Ji; Q.P. Ji; W. Ji; X.B. Ji; X.L. Ji; X.Q. Jia; Z.K. Jia; D. Jiang; H.B. Jiang; P.C. Jiang; S.J. Jiang; X.S. Jiang; Y. Jiang; J.B. Jiao; J.K. Jiao; Z. Jiao; S. Jin; Y. Jin; M.Q. Jing; X.M. Jing; T. Johansson; S. Kabana; N. Kalantar-Nayestanaki; X.L. Kang; X.S. Kang; M. Kavatsyuk; B.C. Ke; V. Khachatryan; A. Khoukaz; O.B. Kolcu; B. Kopf; L. Kröger; M. Kuessner; X. Kui; N. Kumar; A. Kupsc; W. Kühn; Q. Lan; W.N. Lan; T.T. Lei; M. Lellmann; T. Lenz; C. Li; C. Li; C.H. Li; C.K. Li; D.M. Li; F. Li; G. Li; H.B. Li; H.J. Li; H.L. Li; H.N. Li; Hui Li; J.R. Li; J.S. Li; J.W. Li; K. Li; K.L. Li; L.J. Li; Lei Li; M.H. Li; M.R. Li; P.L. Li; P.R. Li; Q.M. Li; Q.X. Li; R. Li; S.X. Li; Shanshan Li; T. Li; T.Y. Li; W.D. Li; W.G. Li; X. Li; X.H. Li; X.K. Li; X.L. Li; X.Y. Li; X.Z. Li; Y. Li; Y.G. Li; Y.P. Li; Z.H. Li; Z.J. Li; Z.X. Li; Z.Y. Li; C. Liang; H. Liang; Y.F. Liang; Y.T. Liang; G.R. Liao; L.B. Liao; M.H. Liao; Y.P. Liao; J. Libby; A. Limphirat; D.X. Lin; L.Q. Lin; T. Lin; B.J. Liu; B.X. Liu; C.X. Liu; F. Liu; F.H. Liu; Feng Liu; G.M. Liu; H. Liu; H.B. Liu; H.M. Liu; Huihui Liu; J.B. Liu; J.J. Liu; K. Liu; K. Liu; K.Y. Liu; Ke Liu; L. Liu; L.C. Liu; Lu Liu; M.H. Liu; P.L. Liu; Q. Liu; S.B. Liu; W.M. Liu; W.T. Liu; X. Liu; X.K. Liu; X.L. Liu; X.Y. Liu; Y. Liu; Y. Liu; Y.B. Liu; Z.A. Liu; Z.D. Liu; Z.Q. Liu; Z.Y. Liu; X.C. Lou; H.J. Lu; J.G. Lu; X.L. Lu; Y. Lu; Y.H. Lu; Y.P. Lu; Z.H. Lu; C.L. Luo; J.R. Luo; J.S. Luo; M.X. Luo; T. Luo; X.L. Luo; Z.Y. Lv; X.R. Lyu; Y.F. Lyu; Y.H. Lyu; F.C. Ma; H.L. Ma; Heng Ma; J.L. Ma; L.L. Ma; L.R. Ma; Q.M. Ma; R.Q. Ma; R.Y. Ma; T. Ma; X.T. Ma; X.Y. Ma; Y.M. Ma; F.E. Maas; I. MacKay; M. Maggiora; S. Malde; Q.A. Malik; H.X. Mao; Y.J. Mao; Z.P. Mao; S. Marcello; A. Marshall; F.M. Melendi; Y.H. Meng; Z.X. Meng; G. Mezzadri; H. Miao; T.J. Min; R.E. Mitchell; X.H. Mo; B. Moses; N.Yu. Muchnoi; J. Muskalla; Y. Nefedov; F. Nerling; H. Neuwirth; Z. Ning; S. Nisar; Q.L. Niu; W.D. Niu; Y. Niu; C. Normand; S.L. Olsen; Q. Ouyang; S. Pacetti; X. Pan; Y. Pan; A. Pathak; Y.P. Pei; M. Pelizaeus; H.P. Peng; X.J. Peng; Y.Y. Peng; K. Peters; K. Petridis; J.L. Ping; R.G. Ping; S. Plura; V. Prasad; F.Z. Qi; H.R. Qi; M. Qi; S. Qian; W.B. Qian; C.F. Qiao; J.H. Qiao; J.J. Qin; J.L. Qin; L.Q. Qin; L.Y. Qin; P.B. Qin; X.P. Qin; X.S. Qin; Z.H. Qin; J.F. Qiu; Z.H. Qu; J. Rademacker; C.F. Redmer; A. Rivetti; M. Rolo; G. Rong; S.S. Rong; F. Rosini; Ch. Rosner; M.Q. Ruan; N. Salone; A. Sarantsev; Y. Schelhaas; K. Schoenning; M. Scodeggio; W. Shan; X.Y. Shan; Z.J. Shang; J.F. Shangguan; L.G. Shao; M. Shao; C.P. Shen; H.F. Shen; W.H. Shen; X.Y. Shen; B.A. Shi; H. Shi; J.L. Shi; J.Y. Shi; S.Y. Shi; X. Shi; H.L. Song; J.J. Song; M.H. Song; T.Z. Song; W.M. Song; Y.X. Song; Zirong Song; S. Sosio; S. Spataro; S. Stansilaus; F. Stieler; S.S Su; G.B. Sun; G.X. Sun; H. Sun; H.K. Sun; J.F. Sun; K. Sun; L. Sun; R. Sun; S.S. Sun; T. Sun; W.Y. Sun; Y.C. Sun; Y.H. Sun; Y.J. Sun; Y.Z. Sun; Z.Q. Sun; Z.T. Sun; C.J. Tang; G.Y. Tang; J. Tang; J.J. Tang; L.F. Tang; Y.A. Tang; L.Y. Tao; M. Tat; J.X. Teng; J.Y. Tian; W.H. Tian; Y. Tian; Z.F. Tian; I. Uman; B. Wang; B. Wang; Bo Wang; C. Wang; C. Wang; Cong Wang; D.Y. Wang; H.J. Wang; J. Wang; J.J. Wang; J.P. Wang; K. Wang; L.L. Wang; L.W. Wang; M. Wang; M. Wang; N.Y. Wang; S. Wang; Shun Wang; T. Wang; T.J. Wang; W. Wang; W.P. Wang; X. Wang; X.F. Wang; X.L. Wang; X.N. Wang; Xin Wang; Y. Wang; Y.D. Wang; Y.F. Wang; Y.H. Wang; Y.J. Wang; Y.L. Wang; Y.N. Wang; Y.N. Wang; Yaqian Wang; Yi Wang; Yuan Wang; Z. Wang; Z. Wang; Z.L. Wang; Z.Q. Wang; Z.Y. Wang; Ziyi Wang; D. Wei; D.H. Wei; H.R. Wei; F. Weidner; S.P. Wen; U. Wiedner; G. Wilkinson; M. Wolke; J.F. Wu; L.H. Wu; L.J. Wu; Lianjie Wu; S.G. Wu; S.M. Wu; X. Wu; Y.J. Wu; Z. Wu; L. Xia; B.H. Xiang; D. Xiao; G.Y. Xiao; H. Xiao; Y.L. Xiao; Z.J. Xiao; C. Xie; K.J. Xie; Y. Xie; Y.G. Xie; Y.H. Xie; Z.P. Xie; T.Y. Xing; C.J. Xu; G.F. Xu; H.Y. Xu; M. Xu; Q.J. Xu; Q.N. Xu; T.D. Xu; X.P. Xu; Y. Xu; Y.C. Xu; Z.S. Xu; F. Yan; L. Yan; W.B. Yan; W.C. Yan; W.H. Yan; W.P. Yan; X.Q. Yan; H.J. Yang; H.L. Yang; H.X. Yang; J.H. Yang; R.J. Yang; Y. Yang; Y.H. Yang; Y.Q. Yang; Y.Z. Yang; Z.P. Yao; M. Ye; M.H. Ye; Z.J. Ye; Junhao Yin; Z.Y. You; B.X. Yu; C.X. Yu; G. Yu; J.S. Yu; L.W. Yu; T. Yu; X.D. Yu; Y.C. Yu; Y.C. Yu; C.Z. Yuan; H. Yuan; J. Yuan; J. Yuan; L. Yuan; M.K. Yuan; S.H. Yuan; Y. Yuan; C.X. Yue; Ying Yue; A.A. Zafar; F.R. Zeng; S.H. Zeng; X. Zeng; Y.J. Zeng; Y.J. Zeng; Y.C. Zhai; Y.H. Zhan; S.N. Zhang; B.L. Zhang; B.X. Zhang; D.H. Zhang; G.Y. Zhang; G.Y. Zhang; H. Zhang; H. Zhang; H.C. Zhang; H.H. Zhang; H.Q. Zhang; H.R. Zhang; H.Y. Zhang; J. Zhang; J.J. Zhang; J.L. Zhang; J.Q. Zhang; J.S. Zhang; J.W. Zhang; J.X. Zhang; J.Y. Zhang; J.Z. Zhang; Jianyu Zhang; L.M. Zhang; Lei Zhang; N. Zhang; P. Zhang; Q. Zhang; Q.Y. Zhang; R.Y. Zhang; S.H. Zhang; Shulei Zhang; X.M. Zhang; X.Y. Zhang; Y. Zhang; Y. Zhang; Y.T. Zhang; Y.H. Zhang; Y.P. Zhang; Z.D. Zhang; Z.H. Zhang; Z.L. Zhang; Z.L. Zhang; Z.X. Zhang; Z.Y. Zhang; Z.Y. Zhang; Z.Z. Zhang; Zh.Zh. Zhang; G. Zhao; J.Y. Zhao; J.Z. Zhao; L. Zhao; L. Zhao; M.G. Zhao; S.J. Zhao; Y.B. Zhao; Y.L. Zhao; Y.X. Zhao; Z.G. Zhao; A. Zhemchugov; B. Zheng; B.M. Zheng; J.P. Zheng; W.J. Zheng; X.R. Zheng; Y.H. Zheng; B. Zhong; C. Zhong; H. Zhou; J.Q. Zhou; S. Zhou; X. Zhou; X.K. Zhou; X.R. Zhou; X.Y. Zhou; Y.X. Zhou; Y.Z. Zhou; A.N. Zhu; J. Zhu; K. Zhu; K.J. Zhu; K.S. Zhu; L. Zhu; L.X. Zhu; S.H. Zhu; T.J. Zhu; W.D. Zhu; W.J. Zhu; W.Z. Zhu; Y.C. Zhu; Z.A. Zhu; X.Y. Zhuang; J.H. Zou; J. Zu
Global Change Biology · 2026 · Vol. 32 · Issue 3 · Wiley
Carbon efflux (C efflux ) makes up 20% of total greenhouse gases emitted globally. Accurate global C efflux is critical for projecting and responding to future global warming. However, current C efflux estimates remain incomplete due to the omission of C efflux released from the dissolution of inorganic carbon in calcareous soils (C efflux‐calcareous ) and dissolution of lime in acidic soils (C efflux‐acidic ). Here, we presen...
Science Bulletin · 2025 · Vol. 70 · Issue 24 · Elsevier
Zhen Cao; F. Aharonian; Y.X. Bai; Y.W. Bao; D. Bastieri; X.J. Bi; Y.J. Bi; W. Bian; A.V. Bukevich; C.M. Cai; W.Y. Cao; Zhe Cao; J. Chang; J.F. Chang; A.M. Chen; E.S. Chen; G.H. Chen; H.X. Chen; Liang Chen; Long Chen; M.J. Chen; M.L. Chen; Q.H. Chen; S. Chen; S.H. Chen; S.Z. Chen; T.L. Chen; X.B. Chen; X.J. Chen; Y. Chen; N. Cheng; Y.D. Cheng; M.C. Chu; M.Y. Cui; S.W. Cui; X.H. Cui; Y.D. Cui; B.Z. Dai; H.L. Dai; Z.G. Dai; Danzengluobu; Y.X. Diao; X.Q. Dong; K.K. Duan; J.H. Fan; Y.Z. Fan; J. Fang; J.H. Fang; K. Fang; C.F. Feng; H. Feng; L. Feng; S.H. Feng; X.T. Feng; Y. Feng; Y.L. Feng; S. Gabici; B. Gao; C.D. Gao; Q. Gao; W. Gao; W.K. Gao; M.M. Ge; T.T. Ge; L.S. Geng; G. Giacinti; G.H. Gong; Q.B. Gou; M.H. Gu; F.L. Guo; J. Guo; X.L. Guo; Y.Q. Guo; Y.Y. Guo; Y.A. Han; O.A. Hannuksela; M. Hasan; H.H. He; H.N. He; J.Y. He; X.Y. He; Y. He; S. Hernández-Cadena; B.W. Hou; C. Hou; X. Hou; H.B. Hu; S.C. Hu; C. Huang; D.H. Huang; J.J. Huang; T.Q. Huang; W.J. Huang; X.T. Huang; X.Y. Huang; Y. Huang; Y.Y. Huang; X.L. Ji; H.Y. Jia; K. Jia; H.B. Jiang; K. Jiang; X.W. Jiang; Z.J. Jiang; M. Jin; S. Kaci; M.M. Kang; I. Karpikov; D. Khangulyan; D. Kuleshov; K. Kurinov; B.B. Li; Cheng Li; Cong Li; D. Li; F. Li; H.B. Li; H.C. Li; Jian Li; Jie Li; K. Li; L. Li; R.L. Li; S.D. Li; T.Y. Li; W.L. Li; X.R. Li; Xin Li; Y. Li; Y.Z. Li; Zhe Li; Zhuo Li; E.W. Liang; Y.F. Liang; S.J. Lin; P. Lipari; B. Liu; C. Liu; D. Liu; D.B. Liu; H. Liu; H.D. Liu; J. Liu; J.L. Liu; J.R. Liu; M.Y. Liu; R.Y. Liu; S.M. Liu; W. Liu; X. Liu; Y. Liu; Y. Liu; Y.N. Liu; Y.Q. Lou; Q. Luo; Y. Luo; H.K. Lv; B.Q. Ma; L.L. Ma; X.H. Ma; J.R. Mao; Z. Min; W. Mitthumsiri; G.B. Mou; H.J. Mu; A. Neronov; K.C.Y. Ng; M.Y. Ni; L. Nie; L.J. Ou; P. Pattarakijwanich; Z.Y. Pei; J.C. Qi; M.Y. Qi; J.J. Qin; A. Raza; C.Y. Ren; D. Ruffolo; A. Sáiz; D. Semikoz; L. Shao; O. Shchegolev; Y.Z. Shen; X.D. Sheng; Z.D. Shi; F.W. Shu; H.C. Song; V. Stepanov; Y. Su; D.X. Sun; H. Sun; Q.N. Sun; X.N. Sun; Z.B. Sun; N.H. Tabasam; J. Takata; P.H.T. Tam; H.B. Tan; Q.W. Tang; R. Tang; Z.B. Tang; W.W. Tian; C.N. Tong; L.H. Wan; C. Wang; G.W. Wang; H.G. Wang; J.C. Wang; K. Wang; Kai Wang; Kai Wang; L.P. Wang; L.Y. Wang; L.Y. Wang; R. Wang; W. Wang; X.G. Wang; X.J. Wang; X.Y. Wang; Y. Wang; Y.D. Wang; Z.H. Wang; Z.X. Wang; Zheng Wang; D.M. Wei; J.J. Wei; Y.J. Wei; T. Wen; S.S. Weng; C.Y. Wu; H.R. Wu; Q.W. Wu; S. Wu; X.F. Wu; Y.S. Wu; S.Q. Xi; J. Xia; J.J. Xia; G.M. Xiang; D.X. Xiao; G. Xiao; Y.L. Xin; Y. Xing; D.R. Xiong; Z. Xiong; D.L. Xu; R.F. Xu; R.X. Xu; W.L. Xu; L. Xue; D.H. Yan; T. Yan; C.W. Yang; C.Y. Yang; F.F. Yang; L.L. Yang; M.J. Yang; R.Z. Yang; W.X. Yang; Z.H. Yang; Z.G. Yao; X.A. Ye; L.Q. Yin; N. Yin; X.H. You; Z.Y. You; Q. Yuan; H. Yue; H.D. Zeng; T.X. Zeng; W. Zeng; X.T. Zeng; M. Zha; B.B. Zhang; B.T. Zhang; C. Zhang; F. Zhang; H. Zhang; H.M. Zhang; H.Y. Zhang; J.L. Zhang; Li Zhang; P.F. Zhang; P.P. Zhang; R. Zhang; S.R. Zhang; S.S. Zhang; W.Y. Zhang; X. Zhang; X.P. Zhang; Yi Zhang; Yong Zhang; Z.P. Zhang; J. Zhao; L. Zhao; L.Z. Zhao; S.P. Zhao; X.H. Zhao; Z.H. Zhao; F. Zheng; W.J. Zhong; B. Zhou; H. Zhou; J.N. Zhou; M. Zhou; P. Zhou; R. Zhou; X.X. Zhou; X.X. Zhou; B.Y. Zhu; C.G. Zhu; F.R. Zhu; H. Zhu; K.J. Zhu; Y.C. Zou; X. Zuo
GeroScience · 2025 · Vol. 48 · Issue 2 · Springer
Several widely used epigenetic clocks have been developed for mice and other species, but a persistent challenge remains: different mouse clocks often yield inconsistent results. To address this limitation in robustness, we present EnsembleAge, a suite of ensemble-based epigenetic clocks. Leveraging data from over 200 perturbation experiments across multiple tissues, EnsembleAge integrates predictions from multiple penalized m...
Global Change Biology · 2025 · Vol. 31 · Issue 6 · Wiley
Microorganisms are the main drivers of soil organic carbon (SOC) formation, especially through the accumulation of microbial necromass C. It is unclear, however, how microorganisms mediate the accumulation of necromass in soil because microbial communities are prohibitively diverse. To bridge this knowledge gap, biomarkers of microbial cell walls (amino sugars) were combined with high‐throughput sequencing, spanning a 900 km c...