Issue |
J Extra Corpor Technol
Volume 45, Number 2, June 2013
|
|
---|---|---|
Page(s) | 143 - 145 | |
DOI | https://doi.org/10.1051/ject/201345143 | |
Published online | 15 June 2013 |
Technique Articles
Improved Environmental Impact with Diversion of Perfusion Bypass Circuit to Municipal Solid Waste
Address correspondence to: William DeBois, MBA, CCP, Director, New York Presbyterian Hospital–Weill Cornell Medical Center, 525 East 68th Street G3153, New York, NY 10021. E-mail: wdebois@yahoo.com
Received:
21
March
2013
Accepted:
29
May
2013
The project goal was to reduce waste disposal volume, costs and minimize the negative impact that regulated waste treatment and disposal has on the environment. This was accomplished by diverting bypass circuits from the traditional regulated medical waste (RMW) to clear bag waste, or municipal solid waste (MSW). To qualify circuits to be disposed of through MSW stream, the circuits needed to be void of any free-flowing blood and be “responsibly clear.” Traditionally the perfusion bypass circuit was emptied through the cardioplegia pump starting shortly after decannulation and heparin reversal. Up to 2000 mL of additional prime solution was added until the bypass circuit was rinsed clear. Three hundred sixty of 400 procedures (90%) had a complete circuit rinse and successful diversion to MSW. An additional 240 mL of processed cell salvage blood was available for transfusion. No additional time was spent in the operating room as a result of this procedure. Based on our procedure case volume and circuit weight of 15 pounds, almost 15,000 pounds (7.5 tons) of trash will be diverted from RMW. This technique represents another way for perfusionists to participate in sustainability efforts. Diverting the bypass circuit to clear bag waste results in a reduced environmental impact and annual cost savings. The treatment of RMW is associated with various environmental implications. MSW, or clear bag waste, on the other hand can now be disposed of in waste-to-energy facilities. This process not only releases a significantly less amount of carbon dioxide into the environment, but also helps generate renewable energy. Therefore, the bypass circuit diversion pilot project effectively demonstrates decreases in the carbon footprint of our organization and overall operating costs.
Key words: cardiopulmonary bypass / cardiac surgery / blood management / alternative perfusion techniques / total quality management / best evidence-based practices / safety
© 2013 AMSECT
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