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Journal of Zhejiang University SCIENCE A

ISSN 1673-565X(Print), 1862-1775(Online), Monthly

Microfluidic fuel cells integrating slanted groove micro-mixers to terminate growth of depletion boundary layer thickness

Abstract: Because of potential high energy densities, microfluidic fuel cells can serve as micro-scale power sources. Because microfluidic fuel cells typically operate in the co-laminar flow regime to enable a membrane-less design, they generally suffer from severe mass transfer limitations with respect to diffusion transport. To address this issue, a novel channel design that integrates slanted groove micro-mixers on the side walls of the channel is proposed. Numerical modeling on the design of groove micro-mixers and grooveless design demonstrates a mass transfer enhancement that has a 115% higher limiting current density and well-controlled convective mixing between the oxidant and the fuel streams with the use of slanted groove micro-mixers. Moreover, the growth of the thickness of the depletion boundary layer is found to be terminated within approximately 2 mm from the channel entrance, which is distinct from the constantly growing pattern in the grooveless design. In addition, a simplified mass transfer model capable of modeling the mass transfer prFocess with the presence of the transverse secondary flow is developed. Further, a dimensionless correlation is derived to analyze the effects of the design parameters on the limiting current density. The present theoretical study paves the way towards an optimal design of a microfluidic fuel cell integrating groove micro-mixers.

Key words: Microfluidic; Fuel cell; Membraneless; Slanted groove micro-mixer; Mass transfer; Depletion boundary layer

Chinese Summary  <14> 羊栖菜来源的褐藻多糖硫酸酯调控人胚肺二倍体成纤维细胞中新冠病毒受体分子AXL的表达

周叙强1,金维华3,江迪3,徐一鹏4,王三应2,吴辛娜5,常允闯6,苏慧丽2,朱田君2,徐小刚2,毛根祥1
1浙江中医药大学生命科学学院,中国杭州市,310053
2浙江医院,浙江省老年医学重点实验室和浙江省老年医学研究所,中国杭州市,310030
3浙江工业大学生物工程学院,中国杭州市,310014
4浙江省肿瘤医院,浙江省核酸适体与临床诊治重点实验室,中国科学院基础医学与肿瘤研究所,中国杭州市,310022
5浙江大学医学院,中国杭州市,310058
6浙江科技学院生物与化学工程学院,中国杭州市,310023
摘要:新冠病毒感染疫情严重威胁着世界各国人民的生命健康。目前,对病毒感染的防治研究主要集中在抑制病毒与分子受体的结合上。AXL作为新发现的严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)受体,在协助病毒感染人体呼吸系统中发挥着重要作用,是未来临床干预的潜在靶点。本研究对已发表的单细胞测序数据进行整理和分析,发现AXL在年轻人肺细胞中的表达水平明显高于老年人。人胚肺二倍体成纤维细胞(2BS)是衰老研究的公认细胞株。本文采用2BS细胞构建复制性细胞衰老模型,发现年轻细胞中AXL的蛋白水平明显高于衰老细胞,据此推测年轻人感染的风险可能更高,需要注意防护。我们发现一种羊栖菜褐藻多糖硫酸酯组分(SFW-3)可显著下调年轻2BS细胞中AXL的表达水平,表明SFW-3具有一定的抗SARS-CoV-2感染的研究价值,同时表明2BS细胞株也可作为潜在的SARS-CoV-2体外感染模型。

关键词组:新冠病毒;褐藻多糖硫酸酯;酪氨酸蛋白激酶受体;血管紧张素转化酶2;年龄


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DOI:

10.1631/jzus.A2300087

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On-line Access:

2023-10-18

Received:

2023-02-15

Revision Accepted:

2023-05-15

Crosschecked:

2023-10-19

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