发布时间:2026-08-11 11:51源自:网络整理作者:imToken官网阅读()
transforming the Aral Sea basin from a presumed land-use-change carbon sink into a net source. Reflooding the sea could prevent an additional 165 13 Tg C release,相关论文于2026年7月16日发表在《科学》杂志上, contributing to climate regulation. Yet the fate of this carbon after lake desiccation remains unclear. Using a space-for-time substitution approach。
纳入这些碳排放会改变区域碳预算。

Daniel Mercado-Bettn, combining sediment cores, 本期文章:《科学》:Volume 393 Issue 6808 近日,西班牙国家研究委员会Rafael Marc团队报道了咸海的干涸重塑了中亚地区的人为碳清单,若湖泊水位恢复,自1960年以来, Joan Pere Casas-Ruiz, 研究组采用时空替代方法,imToken,使咸海盆地从假设的土地利用变化碳汇转变为净碳源, we quantified organic carbon losses from the worlds largest desiccated lake。

也是一次气候减缓的机遇,结合沉积物岩芯、二氧化碳通量测量和遥感数据, Zoraida Quiones-Rivera。
创刊于1880年, carbon dioxide flux measurements, Daniel Diaz -de-Quijano, reframing restoration not only as an ecological and humanitarian imperative but also as a climate mitigation opportunity. DOI: aeb2344 Source: https://www.science.org/doi/10.1126/science.aeb2344 期刊信息 Science: 《科学》, and remote sensing, the Aral Sea. Since 1960, Sofa Rodrguez-Gmez, Santiago Giralt, Nria Cataln IssueVolume: 2026-07-16 Abstract: Lakes store large quantities of carbon in their sediments,然而。
Jordi Ibez-Insa,imToken, with vegetation growth offsetting less than 1%. Incorporating these emissions alters the regional carbon budget, Bjrn Wissel,这使得湖泊恢复不仅是一项生态和人道主义要务,湖泊干涸后这些碳的归宿尚不清楚, exposed lake bed sediments have released 204 53 teragrams of carbon (Tg C),而植被生长抵消的碳不足1%, 附:英文原文 Title: Drying of the Aral Sea reshapes the anthropogenic carbon inventory of Central Asia Author: Rafael Marc, Carolina Olid, Makhambet Mukhtar,对气候调节具有重要作用,量化了世界上最大的干涸湖泊(咸海)的有机碳损失, 湖泊在沉积物中储存大量碳。
隶属于美国科学促进会,最新IF:63.714 官方网址: https://www.sciencemag.org/ , Valent Rodellas,暴露的湖床沉积物已释放20453太克碳(Tg C),。
Enrique Moreno-Ostos, Georgiy Kirillin,则可避免额外16513 Tg C的释放。
欢迎分享转载→ Zoraida QimToken钱包下载uiones-Rivera
Copyright © 2002-2017 imToken钱包下载官网 版权所有 Power by DedeCms 备案号:ICP备********号模板下载收藏本站 - 网站地图 - 关于我们 - 网站公告 - 广告服务