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Water & Ecology | 第2卷第1期正式全网上线(附全文获取链接)

  由中国科学院主管,中国科学院生态环境研究中心和中国长江三峡集团有限公司联合主办,中国城市科学研究会水环境与水生态分会协办的中国科技期刊卓越行动计划高起点新刊Water & EcologyW&E,CN 10-2044/X1,E-ISSN 3050 4724,P-ISSN: 2097-7077)第2卷第1期全网上线。欢迎您扫描单篇文章二维码或访问官网页面(www.water-ecology.cn)获取相关信息。

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Water & Ecology 2026年第2卷第1期封面

  01. Review

  利用多组学技术推进水环境有机微污染物生物修复

  Prospects for Using Multi-omics to Advance the Bioremediation of Organic Micropollutants in Aquatic Environments: A Review

通信作者 翟羽佳 副教授

北京师范大学环境学院

  Highlights

  1.多组学技术在水环境有机微污染物生物修复研究中的应用日益广泛。

  Multi-omics are increasingly applied to aquatic OMPs bioremediation studies.

  2.多组学结合稳定同位素示踪技术揭示有机微污染物的生物修复过程。

  Multi-omics combined with stable isotope tracing uncovers bioremediation processes of OMPs.

  3.有机微污染物生物降解数据库提升降解产物的可预测性。

  Database of OMPs biodegradation enhances the predictability of degradation products.

  4.多组学结合人工智能促进微生物性能的建模与优化。

  Multi-omics combined with AI promote modelling and optimizing microbial performances.

ScienceDirect链接(扫码进入)

  官网链接

  https://www.sciengine.com/WE/doi/10.1016/j.wateco.2026.100036

  Citation: Xun Wang, Yujia Zhai, Xuhan Deng, et al. Prospects for Using Multi-omics to Advance the Bioremediation of Organic Micropollutants in Aquatic Environments: A Review. Water & Ecology 2026, 2(1): 100036. DOI:10.1016/j.wateco.2026.100036.

  CSTR: 32398.14.j.wateco.2026.100005.

  

  02. Research Article

  保护区优质水资源的精准核算与定向配置:基于"源-流-用"框架的海南热带雨林国家公园的应用研究

  Precision Accounting and Targeted Allocation of High-Quality Water in Protected Areas: A Source–flow–use Framework Applied to Hainan Tropical Rainforest National Park

通信作者 刘耕源 教授

北京师范大学环境学院

  Highlights

  1.构建了面向优质水资源的空间显式"源-流-用"分析框架。

  Developed a spatially explicit source-flow-use framework for high-quality water (HQW).

  2.量化了保护区对优质水资源生成及下游分配的贡献。

  Quantified protected area contributions to HQW generation and downstream allocation.

  3.揭示了低价值产业消耗优质水资源的错配问题。

  Revealed HQW misapplication where low-value sectors consume premium water.

  4.提出了基于贡献率的生态补偿与差别化定价机制。

  Proposed contribution ratio–based mechanisms for ecological compensation and pricing differentiation.

  5.衔接了优质水资源核算与流域治理及政策实施。

  Linked HQW accounting with basin governance and policy implementation.

ScienceDirect链接(扫码进入)

  官网链接

  https://www.sciengine.com/WE/doi/10.1016/j.wateco.2025.100024

  Citation: Ke Dong, Gengyuan Liu, Qing Yang, et al. Precision Accounting and Targeted Allocation of High-Quality Water in Protected Areas: A Source–flow–use Framework Applied to Hainan Tropical Rainforest National Park. Water & Ecology 2026, 2(1): 100024. DOI:10.1016/j.wateco.2025.100024.

  CSTR: 32398.14.j.wateco.2026.100001.

  

  03. Research Article

  2015–2022年黄河流域"三水"统筹与可持续发展目标的协同演进

  Three Waters Synthesis and Evolution with Sustainable Development Goals in the Yellow River Basin from 2015–2022

通信作者 龚醚醚 讲师

北京师范大学卫星应用前沿交叉研究院

  Highlights

  1.构建"可持续水立方空间",整合53项可持续发展目标指标及其相互作用,形成2015年与2022年的复杂稳定网络。

  Develop“Sustainable Water³ Space”, a complex and stable network integrating 53 SDG indicators and their interactions for 2015 and 2022.

  2.对比协同路径,识别2015年至2022年演进过程中的关键"桥梁"指标。

  Compare the synergy pathways and identify the evolving key“bridge”indicators between 2015 and 2022.

  3.揭示黄河流域2015年至2022年从孤立增长向经济-环境协同演变的转变。

  Demonstrate a shift from isolated growth to economy–environment coevolution in the Yellow River Basin from 2015 to 2022.

  4.提出政策优先级的多维度评估框架,并针对不同发展水平县域提供差异化建议。

  Propose a multidimensional evaluation framework for policy prioritization and provide county-specific recommendations tailored to heterogeneous development levels.

ScienceDirect链接(扫码进入)

  官网链接

  https://www.sciengine.com/WE/doi/10.1016/j.wateco.2026.100033

       Citation: Mimi Gong, Qiang Huang, Maofang Ran, et al. Three Waters Synthesis and Evolution with Sustainable Development Goals in the Yellow River Basin from 2015–2022. Water & Ecology 2026, 2(1): 100033. DOI:10.1016/j.wateco.2026.100033.

  CSTR: 32398.14.j.wateco.2026.100002.

  

  04. Research Article

  污水处理厂升级改造对受纳河流氮循环微生物及DNA病毒影响的十年追踪研究

  A 10-year Investigation of the Impact of a Wastewater Treatment Plant Upgrade on Nitrogen-cycling Microorganisms and DNA Viruses in Receiving River

通信作者 柏耀辉 研究员

中国科学院生态环境研究中心

  Highlights

  1.考察了污水处理厂升级改造对受纳河流微生物群落的影响。

  Impact of a wastewater treatment plant upgrade on the receiving river’s microbiome was examined.

  2.开展了北京两条城市河流的十年追踪调查。

  A 10-year investigation into two urban rivers in Beijing was performed.

  3.升级改造促使氮循环向强化反硝化方向转变。

  The upgrade induced a shift in nitrogen cycling toward enhanced denitrification.

  4.病毒群落在升级改造后未表现出显著变化。

  Viral communities exhibited no significant changes following the upgrade.

ScienceDirect链接(扫码进入)

  官网链接

  https://www.sciengine.com/WE/doi/10.1016/j.wateco.2026.100035

  Citation: Linhao Zhang, Xijuan Wang, Jie Mao, et al. A10-year Investigation of the Impact of a Wastewater Treatment Plant Upgrade on Nitrogen-cycling Microorganisms and DNA Viruses in Receiving River. Water & Ecology 2026, 2(1): 100035. DOI:10.1016/j.wateco.2026.100035.

  CSTR: 32398.14.j.wateco.2026.100004.

  

  05. Research Article

  湿地中本土与功能植物的融合:农村污水自维持处理模式探索

  Integrating Native and Functional Plants in Constructed Wetlands: A Self-sustaining Approach to Rural Sewage Treatment

通信作者 郑天龙 副研究员

中国科学院生态环境研究中心

第一作者 李鹏宇 助理研究员

中国科学院生态环境研究中心

  Highlights

  1.在水平潜流人工湿地中将本土植物与功能植物相结合。

  Native plants were integrated with functional plants in a horizontal subsurface constructed wetland(CW).

  2.建立了无需人为干预的自维持共生系统。

  A self-sustaining symbiotic system without human intervention was established.

  3.本土植物提升了微生物多样性与稳定性。

  Native plants enhanced microbial diversity and stability.

  4.利用人工湿地中的共生关系增强生态与经济可持续性。

  Leveraging symbiosis in CWs enhanced ecological and economic sustainability.

ScienceDirect链接(扫码进入)

  官网链接

  https://www.sciengine.com/doi/10.1016/j.wateco.2026.100037

  Citation: Pengyu Li, Pengfei Cao, Shangbin Ma, et al. Integrating Native and Functional Plants in Constructed Wetlands: A Self-sustaining Approach to Rural Sewage Treatment. Water & Ecology 2026, 2(1): 100037. DOI:10.1016/j.wateco.2026.100037.

  CSTR: 32398.14.j.wateco.2026.100003.

  

  关于我们

  《水与生态(英文)》(Water & Ecology,W&E)于2024年5月正式创刊。W&E由中国科学院主管,中国科学院生态环境研究中心和中国长江三峡集团有限公司共同主办,中国城市科学研究会水环境与水生态分会协办。W&E为双月刊,由科爱公司负责出版发行,采用开放获取出版模式。

  W&E共同创刊主编为中国科学院生态环境研究中心曲久辉院士与美国密歇根州立大学Joan Rose院士。执行主编由中国科学院生态环境研究中心胡承志研究员和刘刚研究员,清华大学刘会娟教授,美国杜兰大学Tiong Gim Aw担任。首届编委会由40位全球水与生态研究领域的顶级专家学者构成。

  (转载自WE水与生态)

编辑:林梓

发布时间:2026年03月11日