An empirical aggregate throughput model for dense WLANs

软件部署 骨料(复合) 无线局域网 吞吐量 计算机科学 人气 计算机网络 业务 电信 无线 操作系统 心理学 社会心理学 复合材料 材料科学
作者
Ali Özyagci,Ki Won Sung,Jens Zander
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (12): 9112-9122 被引量:1
标识
DOI:10.1021/acs.est.2c01535
摘要

Under climate change scenarios, the contribution of macroalgae to carbon sequestration has attracted wide attention. As primary producers, macroalgae can release substantial amounts of dissolved organic carbon (DOC) in seawater. However, little is known about the molecular composition and chemical properties of DOC derived from macroalgae and which of them are recalcitrant DOC (RDOC) that can be sequestered for a long time in the ocean. In the most intensive seaweed (kelp) farming area (Sanggou Bay) in China, we found that kelp mariculture not only significantly increased DOC concentration, but also introduced a variety of new DOC molecular species, many of which were sulfur-containing molecules. A long-term DOC degradation experiment revealed that those DOC with strong resistance to microbial degradation, i.e., RDOC, account for approximately 58% of the DOC extracted from kelp mariculture area. About 85% (3587 out of 4224 with different chemical features) of the RDOC molecular species were steadily present throughout the long-term degradation process. 15% (637 out of 4224 with different chemical features) of the RDOC molecular species were likely newly generated by microorganisms after metabolizing macroalgae-derived labile DOC. All these stable RDOC should be included in the blue carbon budgets of seaweed.
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