Congratulations to Hongru Shen as she earned her Masters (M.S.) in Environmental Health Science. She signs and dates her non-alcoholic "champagne" cork area on the ceiling tile in celebration.
Tuesday, May 12, 2015
Wednesday, April 8, 2015
Colorado Snow Study April 2015
In early April, Prof. Andrew Ault, Dr. Jessica Axson, and graduate
student Hongru Shen from the Ault lab along with
Dr. Jessie Creamean from NOAA, Boulder set out to Silverton Colorado for a short field
study to collect snow and aerosol samples from a remote
site in the San Juan Mountains of Colorado to examine dust deposition in the area.
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| Google Map showing Silverton, CO and the Swamp Angel Sampling Site in the San Juan Mountains. |
April 2nd: After
arriving in Silverton the night before, the four of us set to out meet with
Chris Landry and Jay Wlez from the Center for Snow & Avalanche Studies
(CSAS; http://www.snowstudies.org) to trek out to the Swamp Angel Study Plot. To get to the site, we had to use snow shoes and carry
in the instrument and supplies. The stunning location was
surrounded by mountain ridges, including Red Mountain and Trico Peak.
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| Prof. Ault and Hongru Shen starting their trek to the sampling site for set up. |
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| Dr. Creamean, Jay Welz, and Chris Landry at the Swamp Angel Site |
To collect aerosols, we used a 3 stage impactor with three different size cuts at <700 nm, 700 nm – 2.5 mm, and 2.5 mm<. The impactor was run on battery power to avoid
aerosol production and was kept safe from weather in an metal enclosure.
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| For each night sampling, the instrument was strapped to the platform for stability (Show in picture are Prof. Ault, Dr. Axson and Hongru Shen). |
April 3rd : To sample during the day and night, we changed samples every morning around 9:00-10:00 and again at 16:00-16:30. Andy
and Jessie head off to the airport, with Hongru and I remaining to collect 2
more days of sampling. We believe over Thursday night that we may have had a
small dust event, evident by the loading on our top stage (2 um<) the
following morning.
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| Sampling stage 1 (2.5 um<) after dust event. |
April 4th: For the next two days of sampling, there was
no visible loading on the top stage, but very small and still visible loading on the
bottom two stages. Snow samples were collected all three days for offline analysis using IC and NTA.
April 5th: After packaging and shipping all of our
equipment, Dr. Axson and Hongru Shen traveled back to Ann Arbor. We both
enjoyed the beautiful mountain views from the flight from Durango to Denver.
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| Image of the Rocky Mountains on flight from Durango to Denver Colorado. |
Tuesday, April 7, 2015
MGU Symposium
Several members of the Ault Lab participated in the Michigan Geophysical Union (MGU) Symposium hosted by the Atmospheric, Oceanic, and Space Sciences and Earth and Environmental Sciences Departments at the University of Michigan on Wednesday, April 1.
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| Undergraduate Sydney Niles and third year graduate student Amy Bondy presented their work on the characterization of aerosol particles collected during the SOAS Field Campaign. |
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| First year rotation student Rachel Kirpes presented her work characterization of aerosol particles collected in Barrow, AK. |
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| First year rotation student Garrett Welshofer presented his work on developing glassware to study heterogeneous reactions on aerosol particle surfaces. |
Tuesday, March 10, 2015
New method for sizing insoluble residues in precipitation
In December of 2014, the first
Ault Group publication came out in Aerosol Science and Technology (abstract).
First author Dr. Jessica Axson worked in collaboration with Dr. Jessie Creamean of the
Cooperative Institute for Research in Environmental Sciences (CIRES) at the University
of Colorado, Boulder on the paper entitled “An in situ method for sizing
insoluble residues in precipitation and other aqueous samples” (Aerosol Science And Technology 49(1): 24-34). The work
examines the size distribution and number concentration of insoluble residues
with in snow collected at Yosemite National Park, CA and rainwater collected in
Ann Arbor, MI using a new a novel technique for environmental analysis known as
Nanoparticle Tracking Analysis (NTA). This technique uses Brownian motion of
particles in a liquid to determine their hydrodynamic size. This technique has
great potential for studying the role that insoluble residues play in critical
atmospheric processes, such as droplet/crystal nucleation, cloud processing,
dry deposition, scavenging, and more.
The work was presented at the AGU
Fall Meeting in December 2014 in San Francisco, CA. Summer students from the first ever UM
Detroit Research Internship Summer Experience (D-RISE) Partnership with Cass
Technical High School in Detroit, Desmond Madu and Jackelyn Rodriguez, were
able to participate in the project by assisting with rain sample collection and
analysis.
Figure: a) NanoSight™ LM10, b) schematic of the
laser illumination device (courtesy of Malvern, Inc.), c) Brownian motion (red
lines) of individual nanoparticles (green spheres), and d) number size
distributions.
Tuesday, March 3, 2015
Volunteering with FEMMES
On February 26th two graduate students Amy Bondy and Becky Craig, went to Howe Montessori School in Dearborn, MI with the FEMMES volunteer program. FEMMES (Females Excelling More in Math, Engineering, and Science) is dedicated to empowering girls and young women as students and practitioners in STEM fields. Working specifically in diverse, underserved communities, FEMMES creates collaborative teaching and learning environments to promote leadership development, technical skills and self-confidence in women of all ages. Engaging, hands-on activities in all FEMMES programs allow girls to learn in a fun, supportive environment and explore their potential in the STEM fields. FEMMES seeks to build our participants’ curiosity about a variety of areas related to science, math, and engineering and encourage them to increase their participation in those fields.
At this after-school activity, Becky and Amy worked with groups of 4th-6th grade girls to explore various scientific concepts through hands-on activities. The girls explored electricity and circuits using conductive Play-Doh, batteries, light bulbs and buzzers (see image above), they investigated the properties of magnets and built an electromagnet using wire and a battery (see image below), they learned about catalytic reactions by creating "elephant's toothpaste" which involved the decomposition of hydrogen peroxide into oxygen and water, and finally built edible DNA structures using marshmallows, toothpicks, and Twizzlers.
Monday, March 2, 2015
Congratulations to Hongru
Hongru Shen a second year masters of science student in the Ault Lab received a Rackham International
Student Fellowship in the amount of $10,000 for 2014-2015. She was first
nominated by the Department of Environmental Health Sciences this October and this week chosen as one of only twenty-five International Student Fellowship awards campus-wide for
2014-15 at the University of Michigan. She says, "I feel honored to be awarded as a master
student since this fellowship not only supports part of my next semester’s
tuition but it reflects the Rackham Graduate School’s very positive assessment
of my future success." Congratulations Hongru!
Friday, December 5, 2014
AAAR Annual Conference
Last
month, October 20-24, second-year master student Hongru Shen (me) and Prof.
Andrew Ault traveled to Orlando, FL to attend the 33rd Annual
Conference of the American Association for Aerosol Research (AAAR). Prof. Ault presented
the latest research findings of single particle diversity and its impact on
heterogeneous reactivity during the SOAS field, which was really exciting.
I
presented a poster of my work, elemental and individual particle analysis of
atmospheric aerosols from New Delhi, India. Few
particulate matter studies conducted in New Delhi have focused on individual
atmospheric particles, with most studies confined to bulk particles analysis. The
lack of such studies in New Delhi has motivated this work investigating the
particle sources and processing in the atmosphere. Both natural and
anthropogenic sources were determined. During
this analysis process, I discovered an unexpectedly large number of lead-rich
particles in New Delhi – even though lead has been phased out of gasoline since
1998. By further examining the chemical composition, size distribution, and
morphological characteristics of these lead-rich particles, all of properties
indicate that a poor regulation of lead-acid battery recycling is likely the
major source. This is further confirmed by the spatial variability of the lead
concentrations.
Presenting these results were
extremely rewarding. I was able to show experts in the aerosol field, including
our great collaborators, the findings I discovered. I was also very
excited to talk with someone from India, during which I further confirmed the
two sources of salt particles.
I
also served as the student assistance of the AAAR, which is a unique way to
interact with these excellent researchers. Meeting several people whose names
always appear on papers makes reading a new experience in the future as I can
match faces with their names on the page. Overall, AAAR was a fascinating time,
which confirmed my determination to work in the aerosol field. And I will be
very excited if I can return in the future.
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