Viability of Harvesting Salinity Gradient(Blue)Energy by Nanopore-Based Osmotic Power Generation

来源 :工程(英文) | 被引量 : 0次 | 上传用户:teddy18chen
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The development of novel materials with ion-selective nanochannels has introduced a new technology for harvesting salinity gradient(blue)energy,namely nanopore power generators(NPGs).In this study,we perform a comprehensive analysis of the practical performance of NPG in both coupon-size and module-scale operations.We show that although NPG membrane coupons can theoretically generate ultrahigh power density under ideal conditions,the resulting power density in practical operations at a coupon scale can hardly reach 10 Wm-2 due to concentration polarization effects.For module-scale NPG operation,we estimate both the power density and specific extractable energy(i.e.,extractable energy normalized by the total volume of the working solutions),and elucidate the impact of operating conditions on these two metrics based on the interplay between concentration polarization and extent of mixing of the high-and low-concentration solutions.Further,we develop a modeling framework to assess the viability of an NPG system.Our results demonstrate that,for NPG systems working with seawater and river water,the gross specific extractable energy by the NPG system is very low(~0.1 kW·h·m-3)and is further compromised by the parasitic energy consumptions in the system(notably,pumping of the seawater and river water solutions and their pretreatment).Overall,NPG systems produce very low net specific extractable energy(<0.025 kW·h·m-3)and net power density(<0.1 W·m-2).Our study highlights the significant practical limitations in NPG operations,casting doubt on the viability of NPG as a technology for blue energy harvesting.
其他文献
在过去30多年间,辽宁兴城市得益于地理位置优势,泳装产业不断壮大,逐渐发展成为该地区的第三大支柱产业.而这座前景广阔的旅游城市,也成为了外乡人的淘金之地.rn兴城市盈佳针织辅料有限公司总经理邹莹来到兴城已经21个年头了,和许多外地人一样,逐渐溶入这座城市,成为这座城市建设中一颗不可或缺的螺丝钉,勤奋、认真是他们身上最闪光的特质.多年的市场打拼,无论是合伙办厂,还是自己开公司,邹莹的公司产品始终围绕泳装辅料领域不断深耕,用他的话说做企业就要专一、专注.
期刊
1.Entropy and its implications in human disease and agingrnEntropy,which is a thermodynamic property or an interpreta-tion of the second law of thermodynamics,was first defined in 1865 by the German physicist Rudolph Clausius[1].It eventually evolved into
Since 2018,Turntide Technologies\'highly efficient electric motors-based on an updated version of an early 19th century design-have turned cooling fans in dairy barns across the United States;in addition,more than a dozen companies,including BMW and Ama
Objective:To investigate the effect and the mechanism of Astragalus membranaceus(Huangqi in Chinese,HQ)extract on the intestinal absorption of six alkaloids of Aconitum carmichaelii(Fuzi in Chinese,FZ)in rats with spleen deficiency and provide novel insig
1.IntroductionrnThe combination of traditional Chinese medicine(TCM)and Western medicine has advantages in the treatment of chronic and complex diseases,for example,the introduction and applica-tion of TCM during the coronavirus disease 2019(COVID-19)epi-
Biomedical engineering is a relatively new and exciting branch of life sciences that combines materials,devices,design,and prob-lem-solving engineering with medical and biological sciences in order to improve healthcare treatments,including diagnosis,impl
In September 2021,the world\'s largest industrial plant to pull carbon dioxide(CO2)directly out of the atmosphere officially became operational in Iceland.Designed and built by the Zurich,Switzerland-based company Climeworks,its“Orca”facility-the compan
The presence of newly emerging pollutants in the aquatic environment poses great challenges for drink-ing water treatment plants.Due to their low concentrations and unknown characteristics,emerging pol-lutants cannot be efficiently removed by conventional
In June 2021,the Ontario,Canada-based company Li-Cycle announced plans to,by the end of 2021,begin construction of North America\'s largest lithium-ion battery(LIB)-recycling facility in Rochester,NY,USA.As automakers increasingly switch to elec-tric ve
In September 2021,the world\'s most powerful high-tempera-ture superconducting magnet passed its first test,generating a 20 T magnetic field during a 5 h trial[1].The 3 m tall,9000 kg device(Fig.1)is the centerpiece of an ambitious plan by the start-up