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Scott X. Chang

university of alberta

93H指数
659论文数
3.3W被引数
收录论文 357
发表时间
Microbial inoculations enhance soil aggregation and carbon stabilization via root exudate-mediated microbial association networks微生物接种通过根系分泌物介导的微生物关联网络增强土壤团聚和碳稳定化
err2026-05-17
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PREAI
errChong Li; Michelle E. Afkhami; Bo Zhang; Xin Liu; Xinli Chen; Yingdan Yuan; Lu Zhai; Lina Shi; Jiang Jiang; Jie Lin; Scott X. Chang; Jinchi Zhang
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Meta-analysis reveals positive effects of microbial inoculants on soil aggregationMeta-analysis揭示了微生物接种剂对土壤团聚的积极作用
err2026-04-30
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errOAAI
errChong Li; Michelle E. Afkhami; Xinli Chen; Xin Liu; Bo Zhang; Scott X. Chang; Jinchi Zhang
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Canopy and understory nitrogen additions differentially regulate soil organic carbon fractions via litter-microbe-mineral interactions
err2026-04-01
err2
errOAAI
errChen, Youchao; Liu, Qinxi; Chen, Xinli; Chen, Ji; Zhu, Biao; Fu, Shenglei; Chang, Scott X.; Cai, Yanjiang
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Building soil organic matter differing in physical fractions for fertilizer nitrogen retention构建具有不同物理组分的土壤有机质以促进肥料氮的保持
err2026-03-03
err0
PREAI
errQuan Tang; Qingde Li; Xiaozhi Wang; Yuanyuan Huang; Tim J. Daniell; Enxuan Wu; Jing Wang; Feiyi Zhang; Zhenwang Li; Scott X. Chang; Zucong Cai; Yves Uwiragiye; Nyumah Fallah; Minggang Xu; Christoph Müller; Yi Cheng
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The rhizosphere is not always the expected hotspot for nitrous oxide emissions in tea-planted soils茶树种植土壤中,根际并非氮氧化物排放的预期热点区域。
err2025-12-18
err0
PREAI
errMiaomiao Cao; Yuxuan Zhang; Debang Yu; Yong Li; Nyumah Fallah; Yves Uwiragiye; Jing Wang; Yinfei Qian; Yuanyuan Huang; Zucong Cai; Minggang Xu; Scott X. Chang; Christoph Müller; Yi Cheng
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Long-Term Elevated CO2 Improves Soil Health and Rice Yields in Paddy Fields长期升高的CO2改善了稻田土壤健康和水稻产量
err2025-12-01
err0
errOAAI
errJiang, Fan; Du, Wenchao; van Groenigen, Kees Jan; Penuelas, Josep; Chang, Scott X.; Song, Lian; Cai, Chuang; Wang, Yu; Deng, Lin; Hu, Zhengkun; Shen, Weishou; Wu, Qicong; Yu, Haiyang; Yin, Ying; Ai, Fuxun; Zhou, Wei; Wang, Dongming; Sun, Jianqiang; Yan, Xiaoyuan; Shen, Renfang; Zhang, Jiabao; Guo, Hongyan; Zhu, Chunwu
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Long-term climate warming substantially reduces global soil microbial richness长期气候变暖显著降低了全球土壤微生物多样性
errOne Earth
IF15.3
err2025-10-30
err0
PREAI
errPengfei Dang; Scott X. Chang; Ji Chen; Manuel Delgado-Baquerizo; Mohammad Bahram; Nico Eisenhauer; Chunhong Xu; Xin’e Li; Shiguang Wang; Vladimir Mikryukov; Xiaoru Zhao; Xu Wang; Jiquan Xue; Xiaoliang Qin; Gerard H. Ros; Leho Tedersoo
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Both biotic and abiotic soil N₂O productions are lower under organic N than inorganic N deposition in a Moso bamboo forest在毛竹林中,生物和非生物土壤N₂O产生量在有机氮沉积下低于无机氮沉积。
err2025-08-16
err0
PREAI
errWenting Jiang; Yan Wang; Yongxin Lin; Hiroko Akiyama; Yunying Fang; Tony Vancov; Shenglei Fu; Hojeong Kang; Xinli Chen; Zhengqin Xiong; Zhijie Li; Shuijin Hu; Yongfu Li; Bing Yu; Scott X. Chang; Yanjiang Cai
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