Aerosol Climate Feedbacks Flashcards

1
Q

What is the CLAW hypothesis?

A

-increase of DMS emission in a warmer climate raises atmospheric DMS concs
-this means more sulfate aerosols
-this increases CCN, making clouds brighter, reflecting more sunlight back to space and cooling earth

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
2
Q

Where does phytoplankton growth occur the most?

A

Where both the light and nutrient concentration in sufficient

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
3
Q

How can phytoplankton biomass be measured?

A

By using chlorophyll concentration in the euphoric zone

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
4
Q

Where is the euphotic zone?

A

Layer closest to the surface that receives enough light for photosynthesis to occur

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
5
Q

How is DMS synthesised?

A

Phytoplankton make DMSP which can be broken into DMS by algal and bacterial enzymes

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
6
Q

What are plankton?

A

A combination of microscopic plants (phytoplankton) and animals (zooplankton)

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
7
Q

What happens to atmospheric DMS?

A

It is oxidised to sulphate aerosol precursor compounds e.g. sulfur dioxide and then to sulfuric acid
These can then condense onto existing particles or nucleate to non-sea salt sulphate particles

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
8
Q

Is the claw hypothesis positive or negative feedback?

A

Negative

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
9
Q

Why is the CLAW hypothesis negative feedback?

A

Increased DMS emission in warmer climate -> more sulfate aerosols -> clouds brighter -> less sunlight -> cools earth -> less phytoplankton and DMS

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
10
Q

What is the anti claw hypothesis?

A

Increasing temps -> increased ocean stratification -> decreased amount of nutrients available in euphotic zone -> less phytoplankton growth -> less DMS -> fewer CCN -> decreased albedo -> warmer oceans

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
11
Q

Is the claw hypothesis proven?

A

No

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
12
Q

What are some challenges in the assessment of the CLAW hypothesis?

A

-obtaining detailed understanding of the relative strength of different marine aerosol sources
-obtaining detailed understanding of the processes that lead to DMS production as degradation in the ocean and DMS emission to atmosphere during changing climate conditions

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
13
Q

What is the climate feedback from forests?

A

-increased CO2 -> increased temp and vegetation productivity -> increase biological volatile organic compounds (BVOCs) -> enhance natural aerosol formation and growth -> increase CCN -> increase albedo and decrease temp -> increase diffuse radiation which has positive influence on photosynthesis

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
14
Q

Is climate feedback from forests positive or negative?

A

Negative on temp

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
15
Q

Is the feedback mechanism for forests proven?

A

Not really but strong evidence

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
16
Q

Why would reducing anthropogenic emissions in warmer regions not have as bit of an effect?

A

Natural aerosol concs increase with temp so reducing anthropogenic aerosols won’t change much

17
Q

Why is quantifying the contribution of terrestrial ecosystems to secondary organic aerosols hard?

A

Anthropogenic emissions can mask natural sources

18
Q

How much have arctic temperatures warmer compared to the rest of the earth?

A

A factor of 2 or 3

19
Q

Is sea ice a positive or negative feedback?

A

Positive

20
Q

Describe the feedback of reduced sea ice

A

Reduced sea ice -> increased aerosol emissions from oceans and ships -> more CCN or ice nuclei -> impact micro physical properties of Arctic clouds -> either increase non-precipitating Arctic stratus OR increase precipitating Arctic stratus -> increase temp -> decrease ice

21
Q

How could sea salt counteract reduced sea ice?

A

Increased SSA -> more clouds -> higher albedo -> cooler temps

22
Q

What is the GLOMAP response to melted sea ice?

A

-weak response to CCN due to efficient scavenging of aerosols by extensive drizzing from stratocumulus clouds
-NPF cannot compensate for wet scavenging
-Nucleation suppressed from large condensation sink

23
Q

How have reduced European emissions impacted Arctic climate?

A

-less sulfate being transported to Arctic
-fewer CCN
-but unclear impact

24
Q

What are three Arctic feedbacks?

A
  1. Marine aerosols from DMS
  2. Biogenic secondary organic aerosols
  3. Sea ice retreat
25
Q

Why are feedback systems difficult to model in ESMs?

A

-need for development of complex chains of models even for single feedbacks
-complex coupling between different processes