Micro-bubbles enhanced breakage warning for hollow fiber membrane integrity with a low-cost real-time monitoring device

2018 ◽  
Vol 25 (25) ◽  
pp. 24639-24652 ◽  
Author(s):  
Jie Wang ◽  
Changchun Xin ◽  
Jinzhao Li ◽  
Lianfa Song ◽  
Hui Jia
2020 ◽  
Vol 2020 ◽  
pp. 1-6
Author(s):  
David M. Rubin ◽  
Neil T. Stacey ◽  
Tonderayi Matambo ◽  
Claudia Do Vale ◽  
Martin J. Sussman ◽  
...  

The COVID-19 pandemic has highlighted resource constraints in respiratory support. The oxygen transfer characteristics of a specific hollow fiber membrane dialyser was investigated with a view to repurposing the device as a low-cost, readily available blood oxygenator. Oxygen transfer in a low-flux hollow fiber dialyser with a polysulfone membrane was studied by passing first water and then blood through the dialyser in countercurrent to high-purity oxygen. Oxygen transfer rates of about 15% of the nominal 250 ml (STP)/min of a typical adult oxygen consumption rate were achieved for blood flow rates of 500 ml/min. Using two such dialysis devices in parallel could provide up to 30% of the nominal oxygen consumption. Specific hollow fiber dialysis devices operating with suitable pumps in a veno-venous access configuration could provide a cost-effective and readily available supplementation of respiratory support in the face of severe resource constraints.


2006 ◽  
Vol 35 (10) ◽  
pp. 1156-1157 ◽  
Author(s):  
Hongzhi Wang ◽  
Jie Wei ◽  
Muhuo Yu ◽  
Yaogang Li ◽  
Junfen Sun ◽  
...  

2018 ◽  
Vol 54 (68) ◽  
pp. 9454-9457 ◽  
Author(s):  
Mahdi Fathizadeh ◽  
Konstantin Khivantsev ◽  
Travis J. Pyrzynski ◽  
Naomi B. Klinghoffer ◽  
Abolfazl (Nabi) Shakouri ◽  
...  

A low-cost poly(ethyleneimine)–cobalt (PEI–Co) complex solution with high O2 absorption capacity (as high as 1.5 L O2 (STP)/L solution) was developed and used in a bio-mimetic system to produce high-purity O2 from air.


Desalination ◽  
2005 ◽  
Vol 180 (1-3) ◽  
pp. 5-14 ◽  
Author(s):  
Amy E. Childress ◽  
Pierre Le-Clech ◽  
Joanne L. Daugherty ◽  
Caifeng Chen ◽  
Greg L. Leslie

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