Long-term survival of human faecal microorganisms on the Antarctic Peninsula
Human faecal waste has been discarded at inland Antarctic sites for over 100 years, but little is known about the long-term survival of faecal microorganisms in the Antarctic terrestrial environment or the environmental impact. This study identified viable faecal microorganisms in 30–40 year old hum...
| Published in: | Antarctic Science |
|---|---|
| Main Authors: | , |
| Format: | Article in Journal/Newspaper |
| Language: | English |
| Published: |
Cambridge University Press (CUP)
2004
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| Subjects: | |
| Online Access: | https://doi.org/10.1017/s095410200400210x https://www.cambridge.org/core/services/aop-cambridge-core/content/view/S095410200400210X |
| _version_ | 1868619606176825344 |
|---|---|
| author | HUGHES, KEVIN A. NOBBS, SIMON J. |
| author_facet | HUGHES, KEVIN A. NOBBS, SIMON J. |
| author_sort | HUGHES, KEVIN A. |
| collection | Unknown |
| container_issue | 3 |
| container_start_page | 293 |
| container_title | Antarctic Science |
| container_volume | 16 |
| description | Human faecal waste has been discarded at inland Antarctic sites for over 100 years, but little is known about the long-term survival of faecal microorganisms in the Antarctic terrestrial environment or the environmental impact. This study identified viable faecal microorganisms in 30–40 year old human faeces sampled from the waste dump at Fossil Bluff Field Station, Alexander Island, Antarctic Peninsula. Viable aerobic and anaerobic bacteria were predominantly spore-forming varieties ( Bacillus and Clostridium spp.). Faecal coliform bacteria were not detected, indicating that they are less able to survive Antarctic environmental conditions than spore-forming bacteria. In recent years, regional warming around the Antarctic Peninsula has caused a decrease in permanent snow cover around nunataks and coastal regions. As a result, previously buried toilet pits, depots and food dumps are now melting out and Antarctic Treaty Parties face the legacy of waste dumped in the Antarctic terrestrial environment by earlier expeditions. Previous faecal waste disposal on land may now start to produce detectable environmental pollution as well as potential health and scientific problems. |
| format | Article in Journal/Newspaper |
| genre | Alexander Island Antarc* Antarctic Antarctic Peninsula Antarctic Science |
| genre_facet | Alexander Island Antarc* Antarctic Antarctic Peninsula Antarctic Science |
| geographic | Alexander Island Antarctic Antarctic Peninsula Fossil Bluff The Antarctic |
| geographic_facet | Alexander Island Antarctic Antarctic Peninsula Fossil Bluff The Antarctic |
| id | crcambridgeupr:10.1017/s095410200400210x |
| institution | Open Polar |
| language | English |
| long_lat | ENVELOPE(-69.895,-69.895,-71.287,-71.287) ENVELOPE(-68.274,-68.274,-71.332,-71.332) |
| op_collection_id | crcambridgeupr |
| op_container_end_page | 297 |
| op_doi | https://doi.org/10.1017/s095410200400210x |
| op_rights | https://www.cambridge.org/core/terms |
| op_source | Antarctic Science volume 16, issue 3, page 293-297 ISSN 0954-1020 1365-2079 |
| publishDate | 2004 |
| publisher | Cambridge University Press (CUP) |
| record_format | openpolar |
| spelling | crcambridgeupr:10.1017/s095410200400210x 2026-06-21T13:32:55+00:00 Long-term survival of human faecal microorganisms on the Antarctic Peninsula HUGHES, KEVIN A. NOBBS, SIMON J. 2004 https://doi.org/10.1017/s095410200400210x https://www.cambridge.org/core/services/aop-cambridge-core/content/view/S095410200400210X en eng Cambridge University Press (CUP) https://www.cambridge.org/core/terms Antarctic Science volume 16, issue 3, page 293-297 ISSN 0954-1020 1365-2079 journal-article 2004 crcambridgeupr https://doi.org/10.1017/s095410200400210x 2026-06-03T14:17:04Z Human faecal waste has been discarded at inland Antarctic sites for over 100 years, but little is known about the long-term survival of faecal microorganisms in the Antarctic terrestrial environment or the environmental impact. This study identified viable faecal microorganisms in 30–40 year old human faeces sampled from the waste dump at Fossil Bluff Field Station, Alexander Island, Antarctic Peninsula. Viable aerobic and anaerobic bacteria were predominantly spore-forming varieties ( Bacillus and Clostridium spp.). Faecal coliform bacteria were not detected, indicating that they are less able to survive Antarctic environmental conditions than spore-forming bacteria. In recent years, regional warming around the Antarctic Peninsula has caused a decrease in permanent snow cover around nunataks and coastal regions. As a result, previously buried toilet pits, depots and food dumps are now melting out and Antarctic Treaty Parties face the legacy of waste dumped in the Antarctic terrestrial environment by earlier expeditions. Previous faecal waste disposal on land may now start to produce detectable environmental pollution as well as potential health and scientific problems. Article in Journal/Newspaper Alexander Island Antarc* Antarctic Antarctic Peninsula Antarctic Science Unknown Alexander Island ENVELOPE(-69.895,-69.895,-71.287,-71.287) Antarctic Antarctic Peninsula Fossil Bluff ENVELOPE(-68.274,-68.274,-71.332,-71.332) The Antarctic Antarctic Science 16 3 293 297 |
| spellingShingle | HUGHES, KEVIN A. NOBBS, SIMON J. Long-term survival of human faecal microorganisms on the Antarctic Peninsula |
| title | Long-term survival of human faecal microorganisms on the Antarctic Peninsula |
| title_full | Long-term survival of human faecal microorganisms on the Antarctic Peninsula |
| title_fullStr | Long-term survival of human faecal microorganisms on the Antarctic Peninsula |
| title_full_unstemmed | Long-term survival of human faecal microorganisms on the Antarctic Peninsula |
| title_short | Long-term survival of human faecal microorganisms on the Antarctic Peninsula |
| title_sort | long-term survival of human faecal microorganisms on the antarctic peninsula |
| url | https://doi.org/10.1017/s095410200400210x https://www.cambridge.org/core/services/aop-cambridge-core/content/view/S095410200400210X |