scholarly journals Long-term Stability Assessment of Dimethyl Sulfide Primary Reference Gas Mixtures in Varying Aluminum Cylinder Treatments (at nmol mol-1 Levels)

2021 ◽  
Vol 37 (2) ◽  
pp. 263-275
Author(s):  
Ji Hwan Kang ◽  
Young Doo Kim ◽  
Jinhong Lee ◽  
Sangil Lee
2020 ◽  
Vol 1498 ◽  
pp. 012037 ◽  
Author(s):  
S Chatterjee ◽  
S Roy ◽  
A Sen ◽  
S Chakraborty ◽  
S Biswas ◽  
...  

2018 ◽  
Author(s):  
Nicholas D. C. Allen ◽  
David R. Worton ◽  
Paul J. Brewer ◽  
Céline Pascale ◽  
Bernhard Niederhauser

Abstract. Monoterpenes play an important role in atmospheric chemistry due to their large anthropogenic and biogenic emission sources and high chemical reactivity. As a consequence, measurements are required to assess how changes in emissions of monoterpenes impact air quality. Accurate and comparable measurements of monoterpenes in indoor and outdoor environments require gaseous primary reference materials (PRMs) that are traceable to the international system of units (SI). PRMs of monoterpenes are challenging to produce due to the high chemical reactivity and low vapour pressures of monoterpenes and also their propensity to convert into other compounds, including other terpenes. In this paper, the long-term stability of gravimetrically prepared static monoterpene PRMs produced in differently passivated cylinders, including sampling canisters, was assessed. We demonstrate that static PRMs of multiple monoterpenes can be prepared and used as a suitable long-term standard. For the first time the effect of cylinder pressure and decanting from one cylinder to another on the chemical composition and amount fraction of monoterpenes was also studied. Gravimetrically prepared PRMs of limonene in high pressure cylinders were compared to a novel portable dynamic reference gas generator based on dilution of pure limonene vapour emitted from a permeation tube.


AIP Advances ◽  
2015 ◽  
Vol 5 (9) ◽  
pp. 097102 ◽  
Author(s):  
Nathaniel Rohrbaugh ◽  
Isaac Bryan ◽  
Zachary Bryan ◽  
Ramon Collazo ◽  
Albena Ivanisevic

2020 ◽  
pp. JOP.19.00813 ◽  
Author(s):  
Masahide Fukudo ◽  
Ryota Ishikawa ◽  
Kazuto Mishima ◽  
Takashi Ono ◽  
Seiji Matsumoto ◽  
...  

PURPOSE: Nivolumab dosage was initially selected on the basis of body weight, often resulting in leftover drug after sterile compounding. This study sought to investigate the real-world wastage of nivolumab and assess the long-term stability of leftover nivolumab within vials to facilitate drug vial optimization (DVO). METHODS: We collected all discarded vials after preparation from 17 regional hospitals in Japan over a 6-month period preceding the adoption of a fixed dose of 240 mg per administration. The actual amount of waste was measured for each preparation. Stability assessment was performed under different storage conditions. RESULTS: A total of 2,789 100-mg vials and 4,069 20-mg vials were collected. Overall, the drug cost associated with the expenditure of nivolumab alone was $12.1 million, whereas the total cost due to drug wastage was $0.735 million (rate of wastage, 6.1%). Furthermore, the immunoglobulin G concentrations of nivolumab remaining within vials, as well as binding activity to programmed death-1 protein, did not change significantly over 4 weeks of storage at either 4°C or room temperature. CONCLUSION: Significant drug wastage occurs during sterile preparation of nivolumab according to body weight–based dosing. Although nivolumab dosing has been changed to a fixed dose in Japan, body weight–based dosing is still applied in some other countries, as well as in combination therapy with ipilimumab. Our findings regarding the long-term stability of leftover nivolumab within the vials should motivate hospitals to implement DVO for cost savings.


2018 ◽  
Vol 11 (12) ◽  
pp. 6429-6438 ◽  
Author(s):  
Nicholas D. C. Allen ◽  
David R. Worton ◽  
Paul J. Brewer ◽  
Celine Pascale ◽  
Bernhard Niederhauser

Abstract. Monoterpenes play an important role in atmospheric chemistry due to their large anthropogenic and biogenic emission sources and high chemical reactivity. As a consequence, measurements are required to assess how changes in emissions of monoterpenes impact air quality. Accurate and comparable measurements of monoterpenes in indoor and outdoor environments require gaseous primary reference materials (PRMs) that are traceable to the international system of units (SI). PRMs of monoterpenes are challenging to produce due to the high chemical reactivity and low vapour pressures of monoterpenes and also their propensity to convert into other compounds, including other terpenes. In this paper, the long-term stability of gravimetrically prepared static monoterpene PRMs produced in differently passivated cylinders, including sampling canisters, was assessed. We demonstrate that static PRMs of multiple monoterpenes can be prepared and used as a suitable long-term standard. For the first time the effect of cylinder pressure and decanting from one cylinder to another on the chemical composition and amount fraction of monoterpenes was also studied. Gravimetrically prepared PRMs of limonene in high pressure cylinders were compared to a novel portable dynamic reference gas generator based on dilution of pure limonene vapour emitted from a permeation tube.


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