Think International Space Station dust is obviously free of bad chemicals? Wrong
(2023/08/11)
- Reference: 1691735347
- News link: https://www.theregister.co.uk/2023/08/11/dust_from_the_iss/
- Source link:
The International Space Station has perhaps a bit of a housekeeping issue on its hands. Analysis of dust samples from its air filters suggest astronauts are likely exposed to higher levels of dangerous chemicals than those of us stuck on Earth, on average.
In a [1]report published this week in the Environmental Science & Technology Letters journal, folks at the UK's University of Birmingham and NASA's Glenn Research Center said organic contaminant levels in ISS dust exceeded the median values reported in many US and western European homes.
Below is a table, taken from the above peer-reviewed paper, listing the concentrations of chemicals found in dust collected on the ISS, compared with what some of us experience on Earth. ("ns" means not significant.) The space dust is mostly above the median though typically within the household range.
Compound class
Chemical
Concentration in ISS dust (ng/g)
Median (range) concentration in US house dust (ng/g)
PBDEs
BDE-28
220
4.6 (<1–2300)
BDE-47
8400
420 (ns-130 000)
BDE-100
2700
89 (ns-69 000)
BDE-99
27 000
580 (ns-140 000)
BDE-154
1900
42 (ns-36 000)
BDE-153
3600
56 (ns-44 000)
BDE-183
230
15 (<2–1100)
BDE-209
18 000
910 (ns-990 000)
NBFRs
HBBz
530
4.7 (<1–1100)
EH-TBB
790
1200 (<5–130 000)
HBCDDs
α-HBCDD
2300
240 (ns-17 000)
β-HBCDD
1000
38 (ns-14 000)
γ-HBCDD
95 000
89 (ns-300 000)
OPEs
EHDPP
59
1100 (ns-42 000)
TCEP
13
530 (ns-32 000)
TDCIPP
15
3500 (ns-170 000)
TCIPP
15
5400 (ns-150 000)
TPhP
15 700
8100 (ns-110 000)
TnBP
160
200 (<30–1200)
PCBs
PCB-52
19
6.2 (1.7–28)
PCB-101
190
8.7 (1.9–29)
ΣPCBs
210
200 (47–620)
PFAS
PFOS
23
200 (<8.9–12 000)
PFOA
2,600
140 (<10–1960)
FOSA
3.7
PFHxS
3.7
46 (<13–36 000)
PFBS
3.5
0.9 (<LOQ-2.6)
EtFOSE
1.0
<LOQ (<LOQ-94)
MeFOSE
52
1.0 (<LOQ-9.9)
PFNA
50
3.9 (1.1–63)
PAH
acenaphthene
930
5.5 (1.3–25)
phenanthrene
830
95 (25–390)
anthracene
48
9.6 (2.0–73)
fluoroanthene
150
76 (12–360)
pyrene
1600
80 (20–300)
Examples of such compounds include polybrominated diphenyl ethers, or [2]PBDEs ; novel brominated flame retardant ( [3]NBFR ); and hexabromocyclododecane ( [4]HBCDD ), all flame retardants. Polycyclic aromatic hydrocarbons ( [5]PAHs ), released by combustion of hydrocarbon fuels, were also present in elevated levels.
Polychlorinated Biphenyls, or [6]PCBs , a widely used range of chemicals banned from production in America in 1979, were also found in ISS dust, in one case well in excess of the range found in US homes. Per- and polyfluoroalkyl substances, more commonly known as [7]PFAS , were also found in elevated levels, with the presence of stain-resisting chemical [8]PFOA particularly high.
Mostly harmless?
Just because the levels of harmful chemicals in ISS dust are elevated, it doesn't mean they immediately pose a threat to astronauts, University of Birmingham Professor of Environmental Chemistry Stuart Harrad, one of the paper's coauthors, told The Register .
"ISS astronauts are exposed to potential health risks from these compounds at a greater level than most Americans but their exposure is within the range experienced by the American public," Harrad noted.
[9]
"To put it bluntly, it is possible that you or I could be exposed at higher levels than the astronauts; though more likely that they are more exposed than us."
[10]
[11]
Prof Harrad said the compounds identified in the study are generally known to be harmful after cumulative exposure, and thus aren't an immediate threat to astronaut health. What's more, it might not even be the ISS' own equipment that's the issue.
[12]Experiment arrives at the ISS to see if astronauts can keep things cool
[13]NASA humanoid robot to be tested as remote oil rig attendant
[14]Scientists think they may have cracked life support for Martian occupation
[15]NASA names astronauts picked for next Artemis Moon test flight
"We think much of what we see on the ISS is due to off-the-shelf items brought on board by the astronauts that contain organic flame retardants used on Earth in electrical items," Harrad said.
Likewise, it's possible not all of the dust collected in the samples was airborne and could have been collected thanks to the cleaning habits of ISS residents.
"Occasionally the vacuum cleaner is used to clean up materials after an experiment is performed, resulting in higher concentrations of some materials not indicative of typical airborne material concentrations," the team noted in its study.
Occasionally the vacuum cleaner is used to clean up materials after an experiment is performed
Additionally, regular vacuuming of surfaces and air intakes likely pulls loose bits of protective coatings, like flame retardants, off of wall panels and insulation, the authors – Mohamed Abou-Elwafa Abdallah, Daniel Drage, and Marit Meyer as well as Harrad – observed.
Still, the presence of higher-than-average levels of harmful compounds on the ISS should have design implications for future space missions, the researchers concluded.
[16]
"On future missions to, for example, Mars of ~9 month duration one way, it is clearly a good idea to minimise concentrations of the sorts of contaminants we measured to minimise any long-term effects on astronaut health," Prof Harrad said.
He told us that he believed NASA is already using less harmful inorganic flame retardants in fabric on the ISS, and said he expects NASA would already be actively looking into safer alternatives for PFAS compounds as they face more [17]bans over health and environmental concerns. ®
Get our [18]Tech Resources
[1] https://pubs.acs.org/doi/10.1021/acs.estlett.3c00448
[2] https://www.epa.gov/assessing-and-managing-chemicals-under-tsca/polybrominated-diphenyl-ethers-pbdes
[3] https://pubmed.ncbi.nlm.nih.gov/30530183/
[4] https://pubchem.ncbi.nlm.nih.gov/compound/1_2_5_6_9_10-Hexabromocyclododecane
[5] https://www.cdc.gov/biomonitoring/PAHs_FactSheet.html
[6] https://www.epa.gov/pcbs/learn-about-polychlorinated-biphenyls
[7] https://www.epa.gov/pfas/pfas-explained
[8] https://www.cdc.gov/biomonitoring/PFOA_FactSheet.html
[9] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=2&c=2ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D2%26raptor%3Dcondor%26pos%3Dtop%26test%3D0
[10] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[11] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=3&c=33ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D3%26raptor%3Deagle%26pos%3Dmid%26test%3D0
[12] https://www.theregister.com/2023/08/05/iss_boiling_experiment/
[13] https://www.theregister.com/2023/07/10/nasa_to_test_humanoid_robot/
[14] https://www.theregister.com/2023/06/07/photoelectrochemical_life_support_mars/
[15] https://www.theregister.com/2023/04/03/nasa_artemis_ii_crew/
[16] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[17] https://www.washingtonpost.com/politics/2023/06/05/forever-chemicals-state-bans-pfas/
[18] https://whitepapers.theregister.com/
In a [1]report published this week in the Environmental Science & Technology Letters journal, folks at the UK's University of Birmingham and NASA's Glenn Research Center said organic contaminant levels in ISS dust exceeded the median values reported in many US and western European homes.
Below is a table, taken from the above peer-reviewed paper, listing the concentrations of chemicals found in dust collected on the ISS, compared with what some of us experience on Earth. ("ns" means not significant.) The space dust is mostly above the median though typically within the household range.
Compound class
Chemical
Concentration in ISS dust (ng/g)
Median (range) concentration in US house dust (ng/g)
PBDEs
BDE-28
220
4.6 (<1–2300)
BDE-47
8400
420 (ns-130 000)
BDE-100
2700
89 (ns-69 000)
BDE-99
27 000
580 (ns-140 000)
BDE-154
1900
42 (ns-36 000)
BDE-153
3600
56 (ns-44 000)
BDE-183
230
15 (<2–1100)
BDE-209
18 000
910 (ns-990 000)
NBFRs
HBBz
530
4.7 (<1–1100)
EH-TBB
790
1200 (<5–130 000)
HBCDDs
α-HBCDD
2300
240 (ns-17 000)
β-HBCDD
1000
38 (ns-14 000)
γ-HBCDD
95 000
89 (ns-300 000)
OPEs
EHDPP
59
1100 (ns-42 000)
TCEP
13
530 (ns-32 000)
TDCIPP
15
3500 (ns-170 000)
TCIPP
15
5400 (ns-150 000)
TPhP
15 700
8100 (ns-110 000)
TnBP
160
200 (<30–1200)
PCBs
PCB-52
19
6.2 (1.7–28)
PCB-101
190
8.7 (1.9–29)
ΣPCBs
210
200 (47–620)
PFAS
PFOS
23
200 (<8.9–12 000)
PFOA
2,600
140 (<10–1960)
FOSA
3.7
PFHxS
3.7
46 (<13–36 000)
PFBS
3.5
0.9 (<LOQ-2.6)
EtFOSE
1.0
<LOQ (<LOQ-94)
MeFOSE
52
1.0 (<LOQ-9.9)
PFNA
50
3.9 (1.1–63)
PAH
acenaphthene
930
5.5 (1.3–25)
phenanthrene
830
95 (25–390)
anthracene
48
9.6 (2.0–73)
fluoroanthene
150
76 (12–360)
pyrene
1600
80 (20–300)
Examples of such compounds include polybrominated diphenyl ethers, or [2]PBDEs ; novel brominated flame retardant ( [3]NBFR ); and hexabromocyclododecane ( [4]HBCDD ), all flame retardants. Polycyclic aromatic hydrocarbons ( [5]PAHs ), released by combustion of hydrocarbon fuels, were also present in elevated levels.
Polychlorinated Biphenyls, or [6]PCBs , a widely used range of chemicals banned from production in America in 1979, were also found in ISS dust, in one case well in excess of the range found in US homes. Per- and polyfluoroalkyl substances, more commonly known as [7]PFAS , were also found in elevated levels, with the presence of stain-resisting chemical [8]PFOA particularly high.
Mostly harmless?
Just because the levels of harmful chemicals in ISS dust are elevated, it doesn't mean they immediately pose a threat to astronauts, University of Birmingham Professor of Environmental Chemistry Stuart Harrad, one of the paper's coauthors, told The Register .
"ISS astronauts are exposed to potential health risks from these compounds at a greater level than most Americans but their exposure is within the range experienced by the American public," Harrad noted.
[9]
"To put it bluntly, it is possible that you or I could be exposed at higher levels than the astronauts; though more likely that they are more exposed than us."
[10]
[11]
Prof Harrad said the compounds identified in the study are generally known to be harmful after cumulative exposure, and thus aren't an immediate threat to astronaut health. What's more, it might not even be the ISS' own equipment that's the issue.
[12]Experiment arrives at the ISS to see if astronauts can keep things cool
[13]NASA humanoid robot to be tested as remote oil rig attendant
[14]Scientists think they may have cracked life support for Martian occupation
[15]NASA names astronauts picked for next Artemis Moon test flight
"We think much of what we see on the ISS is due to off-the-shelf items brought on board by the astronauts that contain organic flame retardants used on Earth in electrical items," Harrad said.
Likewise, it's possible not all of the dust collected in the samples was airborne and could have been collected thanks to the cleaning habits of ISS residents.
"Occasionally the vacuum cleaner is used to clean up materials after an experiment is performed, resulting in higher concentrations of some materials not indicative of typical airborne material concentrations," the team noted in its study.
Occasionally the vacuum cleaner is used to clean up materials after an experiment is performed
Additionally, regular vacuuming of surfaces and air intakes likely pulls loose bits of protective coatings, like flame retardants, off of wall panels and insulation, the authors – Mohamed Abou-Elwafa Abdallah, Daniel Drage, and Marit Meyer as well as Harrad – observed.
Still, the presence of higher-than-average levels of harmful compounds on the ISS should have design implications for future space missions, the researchers concluded.
[16]
"On future missions to, for example, Mars of ~9 month duration one way, it is clearly a good idea to minimise concentrations of the sorts of contaminants we measured to minimise any long-term effects on astronaut health," Prof Harrad said.
He told us that he believed NASA is already using less harmful inorganic flame retardants in fabric on the ISS, and said he expects NASA would already be actively looking into safer alternatives for PFAS compounds as they face more [17]bans over health and environmental concerns. ®
Get our [18]Tech Resources
[1] https://pubs.acs.org/doi/10.1021/acs.estlett.3c00448
[2] https://www.epa.gov/assessing-and-managing-chemicals-under-tsca/polybrominated-diphenyl-ethers-pbdes
[3] https://pubmed.ncbi.nlm.nih.gov/30530183/
[4] https://pubchem.ncbi.nlm.nih.gov/compound/1_2_5_6_9_10-Hexabromocyclododecane
[5] https://www.cdc.gov/biomonitoring/PAHs_FactSheet.html
[6] https://www.epa.gov/pcbs/learn-about-polychlorinated-biphenyls
[7] https://www.epa.gov/pfas/pfas-explained
[8] https://www.cdc.gov/biomonitoring/PFOA_FactSheet.html
[9] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=2&c=2ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D2%26raptor%3Dcondor%26pos%3Dtop%26test%3D0
[10] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[11] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=3&c=33ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D3%26raptor%3Deagle%26pos%3Dmid%26test%3D0
[12] https://www.theregister.com/2023/08/05/iss_boiling_experiment/
[13] https://www.theregister.com/2023/07/10/nasa_to_test_humanoid_robot/
[14] https://www.theregister.com/2023/06/07/photoelectrochemical_life_support_mars/
[15] https://www.theregister.com/2023/04/03/nasa_artemis_ii_crew/
[16] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZNYGx28kPOtZripRgqoQ3AAAAgk&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[17] https://www.washingtonpost.com/politics/2023/06/05/forever-chemicals-state-bans-pfas/
[18] https://whitepapers.theregister.com/
Re: Another good point for having built the ISS
Tim99
Perhaps because of the closed nature of many scientific publications, and that older information is not easily found by a simple internet search, some of the things that we knew have been forgotten. In 1985 we carried out a large number of experiments to determine what chemicals were emitted from surface coating and electrical/electronic materials. We were approached, via our mass spectrometer’s manufacturer, by the European Space Agency who published similar findings…
Zack Mollusc
It is to avoid this kind of problem that everything is chrome in the future.
Another good point for having built the ISS
Yes, it cost a fortune, but we are learning new things all the time, and not just concerning space.