{"id":8945,"date":"2020-09-14T15:00:00","date_gmt":"2020-09-14T15:00:00","guid":{"rendered":"https:\/\/aviancetechnologies.com\/blog\/venus-might-host-life-new-discovery-suggests\/"},"modified":"2020-09-14T15:00:00","modified_gmt":"2020-09-14T15:00:00","slug":"venus-might-host-life-new-discovery-suggests","status":"publish","type":"post","link":"https:\/\/aviancetechnologies.com\/blog\/venus-might-host-life-new-discovery-suggests\/","title":{"rendered":"Venus Might Host Life, New Discovery Suggests"},"content":{"rendered":"<p>\u00a0\u00a0 <\/p>\n<p>[responsivevoice_button rate=&#8221;1\u2033 pitch=&#8221;1.2\u2033 volume=&#8221;0.8\u2033 voice=&#8221;US English Female&#8221; buttontext=&#8221;Story in Audio&#8221;]<\/p>\n<h2>Venus Might Host Life, New Discovery Suggests<\/h2>\n<p><img decoding=\"async\" src=\"https:\/\/static.scientificamerican.com\/sciam\/cache\/file\/F7E0BB0E-3F76-4AF5-92AC0951C2976728_source.jpg\" \/><\/p>\n<div>\n<p>There is something funky going on in the clouds of Venus. Telescopes have detected unusually high concentrations of the molecule phosphine\u2014a stinky, flammable chemical typically associated with feces, farts and rotting microbial activity\u2014in an atmospheric layer far above the planet\u2019s scorching surface.<\/p>\n<p>The finding is curious because here on Earth, phosphine is essentially always associated with living creatures, either as a by-product of metabolic processes or of human technology such as industrial fumigants and methamphetamine labs. Although toxic to many organisms, the molecule has been singled out as a potentially unambiguous signature of life because it is so difficult to make through ordinary geological or atmospheric action.<\/p>\n<p>Swathed in sulfuric acid clouds and possessing oppressive surface pressures and temperatures hot enough to melt lead, Venus is a hellish world. But the particular cloud layer where the phosphine is present happens to be relatively balmy, with ample sunlight and Earth-like atmospheric pressure and temperature. The results will have to be carefully vetted by the scientific community. Yet they seem likely to spark renewed interest in exploring our sister planet next door.<\/p>\n<h2>A Molecular Mystery<\/h2>\n<p>\u201cIt\u2019s a really puzzling discovery because phosphine doesn\u2019t fit in our conception of what kinds of chemicals should be in Venus\u2019s atmosphere,\u201d says Michael Wong, an astrobiologist at the University of Washington. Planetary scientist Sanjay Limaye of the University of Wisconsin\u2013Madison agrees. \u201cThe bottom line is we don\u2019t know what\u2019s going on,\u201d he says. (Neither Wong nor Sanjay were involved in the work.)<\/p>\n<p><span style=\"text-autospace:none\">After the sun and moon, Venus is the brightest object visible to the naked eye in Earth\u2019s sky. For thousands of years, people told stories about the glittering jewel that appeared around sunrise and sunset. Venus\u2019s brilliance is what made it attractive to Jane Greaves, a radio astronomer at Cardiff University in England. She typically focuses her attention on distant newborn planetary systems but wanted to test her molecular identification abilities on worlds within our cosmic backyard.<\/span><\/p>\n<p>In 2017 Greaves observed Venus with the James Clerk Maxwell Telescope (JCMT) on Mauna Kea in Hawaii, searching for bar code\u2013like patterns of lines in the planet\u2019s spectrum that would indicate the presence of different chemicals. While doing so, she noticed a line associated with phosphine. The data suggested the molecule was present at around 20 parts per billion in the planet\u2019s atmosphere, a concentration between 1,000 and a million times greater than that in Earth\u2019s atmosphere. \u201cI was stunned,\u201d Greaves says.<\/p>\n<p>Phosphine is a relatively simple molecule containing one phosphorus atom and three hydrogen atoms. It is known to reek of garlic or rotting fish, though by the time it reaches concentrations where humans can smell it, it is likely to cause lung damage. In the pilot episode of the series <em>Breaking Bad,<\/em> the character Walter White prepares phosphine gas to knock out two assailants who are threatening him.<\/p>\n<p>Yet making the substance is not as easy as seen on TV. Phosphorus and hydrogen \u201chate each other,\u201d says Clara Sousa-Silva, a molecular astrophysicist at the Massachusetts Institute of Technology and a co-author of a study reporting the phosphine finding. \u201cHydrogen has much better stuff to do, and phosphorus would rather bond with oxygen. But if you throw enough energy at them, they can come together and be stable in some environments.\u201d<\/p>\n<p>The gas giants Jupiter and Saturn contain phosphine because they have hot interiors where it can be energetically favorable to produce the molecule. Venus\u2019s runaway greenhouse atmosphere, by contrast, is full of oxygen-containing chemicals such as carbon dioxide that would normally soak up phosphine\u2019s phosphorus. For the molecule to be present at any level, let alone the amounts Greaves was seeing, was a genuine head-scratcher.<\/p>\n<p>Meanwhile, Sousa-Silva has built her career around studying phosphine\u2014she goes by the handle @DrPhosphine on Twitter\u2014predicting how it might appear in the atmosphere of a distant alien exoplanet. \u201cI was considering these exotic worlds light-years away\u2014super-Earths, tropical planets, sewage planets,\u201d she says. \u201cAnd the whole time, it was just here next door.\u201d<\/p>\n<p><span style=\"text-autospace:none\">The researchers and their colleagues made follow-up observations of Venus with the more powerful Atacama Large Millimeter\/submillimeter Array (ALMA) in Chile last year, again detecting the atmospheric signature of phosphine. They then tried to come up with every possible reason for the strange molecule\u2019s existence, including volcanic activity, lightning strikes and even meteorites breaking up in the planet\u2019s atmosphere. \u201cI think the best routes we could find fell short by a factor of about 10,000,\u201d Greaves says.<\/span><\/p>\n<p>Of course, there might be additional pathways to making phosphine the team has not yet considered. But after exhausting their imaginations seeking out abiotic explanations, the researchers felt forced to acknowledge one other possibility in their paper, which appeared today in <em>Nature Astronomy:<\/em> the molecule could be made by life on Venus, just as life is the main way it manifests on Earth.<\/p>\n<h2>Life in the Clouds<\/h2>\n<p>Astrobiologists have long been enamored with Mars, a dry, rocky planet with conditions not all that dissimilar to those of Earth. More recently, they have become moonstruck by icy, potentially habitable worlds in the outer solar system, such as Saturn\u2019s geyser-spewing satellite Enceladus and Jupiter\u2019s oceanic moon Europa.<strong> <\/strong>But despite its drawbacks, Venus has not been entirely neglected by scientists speculating about life\u2019s extraterrestrial abodes.<\/p>\n<p>From 50 to 60 kilometers above the Venusian surface, there is an atmospheric layer with pressure equal to that of sea level on Earth and temperatures between zero and 50 degrees Celsius. If not for the sulfuric acid clouds, one might call this layer \u201chospitable.\u201d Even so, there are terrestrial organisms that will happily tolerate such extremely acidic conditions in hot springs or other environments. This relatively clement region is precisely the place where the phosphine has been found.<\/p>\n<p>Since the 1960s, astronomers have also noticed that Venus\u2019s clouds are not reflecting as much of the sun\u2019s ultraviolet light as they should be: an unknown <em>something<\/em> in the atmosphere seems to be preferentially absorbing that light instead. This observation led the late astrobiologists Harold Morowitz and Carl Sagan<strong> <\/strong>to propose that energy-hungry photosynthetic organisms might be the culprit. Meanwhile, other researchers have never stopped searching for alternative abiotic explanations. Recent evidence suggests that the planet is still geologically active. And a model released earlier this year showed that Venus might have had an ocean for nearly three billion years\u2014one that only disappeared a few hundred million years ago. Conceivably, life could have arisen on Venus when our sister world was much more Earth-like, only becoming airborne as the runaway greenhouse effect rendered the planet\u2019s surface uninhabitable.<\/p>\n<p>\u201cI\u2019ve always thought it\u2019s as plausible to have life in the clouds of Venus as to find it in the subsurface of Mars,\u201d says David Grinspoon, an astrobiologist at the Planetary Science Institute, who was not involved with the study. \u201cEach is an environment that could be habitable but isn\u2019t guaranteed to be.\u201d<\/p>\n<p>Yet an almost equally good case can be made for Venus\u2019s clouds being inimical to life as we know it. Microbes have been found floating around in Earth\u2019s atmosphere, but none are known to exclusively spend their entire life cycle there. All of them have to land eventually, and Venus\u2019s surface seems too inhospitable a place to make for a good reservoir.<\/p>\n<p>The Venusian area under consideration is also 50 times more arid than Chile\u2019s Atacama Desert, the driest place on our planet. And although it is true that living things have found good ways to thrive in aqueous environments tinged with traces of sulfuric acid, conditions on Earth\u2019s evil twin essentially reverse that formula: its cloud layer is mainly sulfuric acid with just a bit of water.<\/p>\n<h2>Venus Revisited<\/h2>\n<p>Venus remains an underexplored place. \u201cDespite it being literally the planet next door, there are many mysteries that still need to be solved,\u201d Wong says. In order to rule out all nonliving explanations for the creation of phosphine, researchers will have to learn a great deal more about the planet itself, including its chemistry, geology and atmospheric physics, he adds.<\/p>\n<p>Another issue might be the detection of phosphine itself. Noisy ripples that make resolving any particular line somewhat challenging are superimposed on Venus\u2019s spectrum in the team\u2019s data. These wavy structures could mimic a phosphine signature, says Bruno B\u00e9zard, a spectroscopist at the Paris Observatory. \u201cI don\u2019t see a strong argument to say it\u2019s not a ripple,\u201d he says.<\/p>\n<p>Greaves counters that the odds of finding the same signal using two separate facilities, JCMT and ALMA, is statistically small. Nevertheless, she and her colleagues are hoping to do additional observations at other wavelengths, such as infrared, to further test their initial results. Making higher-resolution maps of where the phosphine appears and seeing if it exhibits any kind of seasonal variation could also help tie it to biological processes.<\/p>\n<p>In many ways, the unexpected finding appears analogous to the 1996 announcement of potential microscopic life in an ancient Martian meteorite designated Allan Hills 84001. Along with structures that looked like fossil bacteria, the sample contained an unusual form of iron<strong> <\/strong>crystals that appeared identical to those produced by microbial creatures on Earth. It took many years before researchers were able to figure out an inorganic explanation for those crystals.<\/p>\n<p>Although life did not pan out as an explanation in that case, \u201cit got everybody thinking, \u2018Well, why not?\u2019\u201d Grinspoon says. \u201cEverything we know about Mars is consistent with that possibility. That led to a huge movement and catalyzed astrobiology as a field.\u201d<\/p>\n<p>The phosphine finding might play a similar role in getting planetary scientists to pay more attention to Venus. In recent years, there has already been a contingent of researchers clamoring for more missions to our sister planet. Russia has proposed sending its Venera-D mission, which would include an orbiter and lander, to Venus as early as 2026. The European Space Agency similarly has the EnVision spacecraft on its drawing board, and it could reach its target in the next decade.<\/p>\n<p>NASA is currently considering proposals for two different Venus missions for funding under its Discovery Program: the orbiting VERITAS and DAVINCI+. The latter would fly the first probe through Venus\u2019s atmosphere since the Soviet Vega balloons of 1984. A selection is expected sometime next year.<\/p>\n<p>Any of these efforts, along with additional observations using telescopes on Earth, could help bolster or weaken the case for phosphine on Venus. Until then, many in the field are likely to reserve their full judgment. \u201cIt\u2019s very speculative to say that there is life on Venus,\u201d Wong says. \u201cBut it\u2019s also speculative to say there definitely can\u2019t be life on Venus.\u201d<\/p>\n<p>For her part, Sousa-Silva is hoping the rest of the scientific community will subject her and her colleagues\u2019 methods and conclusions in the study to rigorous scrutiny. \u201cI\u2019m confident our models and data reduction are good,<strong> <\/strong>but I\u2019m still skeptical,\u201d she says. \u201cI expect the world to come and point out the mistakes I\u2019ve made.\u201d<\/p>\n<p>Such debates are important for science because similar conundrums are going to unfold every time someone claims evidence for life on a planet in our solar system or beyond, Sousa-Silva says. \u201cI think it\u2019s very hard to prove something like this,\u201d she adds. \u201cWe have an innate desire to find life, and then we have our own rational minds that say, \u2018None of this is sufficient evidence.\u2019 We want to not be alone, but we also want to not be wrong. Sometimes those two things are hard to make coexist.\u201d<\/p>\n<\/div>\n<div class=\"post-item-metadata entry-meta\">\n<p class=\"has-background has-very-light-gray-background-color\">Disclaimer: Content may be edited for style and length.\u00a0<a class=\"newsium-categories category-color-1\" href=\"http:\/\/rss.sciam.com\/~r\/ScientificAmerican-News\/~3\/Jtfbu1jaOmM\/\" target=\"_blank\" rel=\"noopener noreferrer\">Story Source<\/a><\/p>\n<\/div>\n","protected":false},"excerpt":{"rendered":"<p>\u00a0\u00a0 [responsivevoice_button rate=&#8221;1\u2033 pitch=&#8221;1.2\u2033 volume=&#8221;0.8\u2033 voice=&#8221;US English Female&#8221; buttontext=&#8221;Story in Audio&#8221;] Venus Might Host Life, New Discovery Suggests There is something funky going on in the clouds of Venus. Telescopes have detected unusually high concentrations of the molecule phosphine\u2014a stinky, flammable chemical typically associated with feces, farts and rotting microbial activity\u2014in an atmospheric layer far &#8230; <a title=\"Venus Might Host Life, New Discovery Suggests\" class=\"read-more\" href=\"https:\/\/aviancetechnologies.com\/blog\/venus-might-host-life-new-discovery-suggests\/\" aria-label=\"Read more about Venus Might Host Life, New Discovery Suggests\">Read more<\/a><\/p>\n","protected":false},"author":1,"featured_media":8946,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[27],"tags":[],"class_list":["post-8945","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-science"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Venus Might Host Life, New Discovery Suggests - Aviance Technologies<\/title>\n<meta name=\"robots\" content=\"noindex, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Venus Might Host Life, New Discovery Suggests - Aviance Technologies\" \/>\n<meta property=\"og:description\" content=\"\u00a0\u00a0 [responsivevoice_button rate=&#8221;1\u2033 pitch=&#8221;1.2\u2033 volume=&#8221;0.8\u2033 voice=&#8221;US English Female&#8221; buttontext=&#8221;Story in Audio&#8221;] Venus Might Host Life, New Discovery Suggests There is something funky going on in the clouds of Venus. Telescopes have detected unusually high concentrations of the molecule phosphine\u2014a stinky, flammable chemical typically associated with feces, farts and rotting microbial activity\u2014in an atmospheric layer far ... 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Aviance Technologies","robots":{"index":"noindex","follow":"follow","max-snippet":"max-snippet:-1","max-image-preview":"max-image-preview:large","max-video-preview":"max-video-preview:-1"},"og_locale":"en_US","og_type":"article","og_title":"Venus Might Host Life, New Discovery Suggests - Aviance Technologies","og_description":"\u00a0\u00a0 [responsivevoice_button rate=&#8221;1\u2033 pitch=&#8221;1.2\u2033 volume=&#8221;0.8\u2033 voice=&#8221;US English Female&#8221; buttontext=&#8221;Story in Audio&#8221;] Venus Might Host Life, New Discovery Suggests There is something funky going on in the clouds of Venus. Telescopes have detected unusually high concentrations of the molecule phosphine\u2014a stinky, flammable chemical typically associated with feces, farts and rotting microbial activity\u2014in an atmospheric layer far ... 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