Friday, September 9, 2011

Mushroom Hunting


The Perennial Plate Episode 69: Mountain Morels from Daniel Klein on Vimeo.

While I'm not much of a mushroom hunter, I sure would like to be.  Being the desert is about the worst possible place for mushroom hunting I'm sort of out of luck.  Arizona's higher elevations do offer some decent mushroom hunting.  Outside of the desert though, mushroom hunting is an excellent way to get outside and learn about all kinds of things in the outdoors.  Anyone can do it just make sure you have the right field guides for identifying mushrooms and go along with someone that is experienced.  You can learn all sorts of ecological secrets in the process of mushroom foraging.  Of course, never eat something that you aren't absolutely sure of what it is.  For most of North America Morel season is months behind us but for more northern and mountainous regions they can be found in abundance as seen in this video.  This is episode 69 of the Perennial Plate and is filled with interesting ecological facts about Morels as well as great mountain views.  The Perennial Plate also has a great website with weekly videos and blog entries.

Tuesday, September 6, 2011

Sonoran Desert Soil Distributions

Dry mountain canyon wash looking out on the desert below.  Canyons such as this one are the gateways for nearly all soils in the Basin and Range.
When most people think of desert soils they think of rolling sand dunes.  The problem is that sand dunes are not soil at all, rather they are blowing, shifting piles of sediment.  And sand dunes are relatively rare in the Sonoran Desert anyway.  Instead of blowing sediments, the life of Sonoran Desert soils begins as rock in the scattered small mountain ranges common to the region.  A process called weathering breaks down this rock into smaller and smaller particles.  These particles then wash out of the mountain due to heavy rainfall causing erosion, debris flows, or flash floods.  Odd as it might sound, nearly all desert soils are built by these types of water movements through the landscape.  Contrary to intuition, the very rock and dirt fabric of the desert is carved out and formed by water.

Knowing the above process is essential to understanding soil distributions in the Sonoran Desert.  And knowing where soils are located is key to understanding the Sonoran Desert landscape.  Both hydrology and plant communities are strongly defined by the desert soil.  In a previous post on soil mapping we discussed generally how to locate soils in the landscape.  In this post we will discuss specifically how to locate soils in the Sonoran Desert.  Believe it or not, desert soils are complex in structure but relatively easy to map.  The general rules that we discussed before apply in a rather neat fashion.

The alluvial fan is circled in white in the below image.  The canyon through which all the sediments came from for the alluvial fan is lined with blue.
Sediments washed off a mountain are deposited in landforms called alluvial fans.  Deriving their name "alluvial" due to being water deposits, and "fan" from the fact that they are often fan shaped.  These fans are created through flash floods or debris flows which cascade sediments through mountain canyon washes to basins below.  Typically, once these flow reach the wash outlet, sediments are deposited radiating out from the outlet in a fan like shape.  Over long periods of time these fans can become quite large, often merging with other fans being deposited from other canyon washes nearby.  Then, from this first alluvial fan, sediments can be eroded off and deposited below forming a second alluvial fan.  This process of erosion and deposition can repeat itself several times and several alluvial fans can be deposited in succession away from the mountain range.  Each of these successive fans will produce a unique soil.  Erosion and deposition will often destroy the fan-like shape initially present when first deposited.
This diagram shows generally how alluvial fans, or soils, are arranged in a bajada.  Each soil  developed from an alluvial fan.  Each fan was deposited in succession outward from the mountain.  The oldest fan, or soil, being where it is labeled soil 1.  The youngest fan, or soil, is labeled soil 4.  Soil 1 and 2 are the oldest and in the Sonoran Desert are generally very similar with red soil, an argillic, and caliche horizons.  Soils 3 and 4 are also similar to each other and generally lack argillic and caliche horizons, also lacking red coloration.
The resulting succession of different alluvial fans radiating out from a mountain side is known as a bajada.  Each section of the bajada is a different alluvial fan with a different soil type.  These individual fans, or sections of the bajada, can be identified by basic soil mapping principals.  Each fan soil will have a particular soil color, horizons, a general rock type cover, slope, plant community, and landscape position.  Soils, or fans, closer to the mountain, higher up the bajada are much older.  Soils, or fans, further away from the mountain and lower on the bajada are much younger, in-fact they may have just recently been deposited.  The older a soil is the redder it will be (previous post on soil color), therefore upper bajada soils are red in coloration while younger lower bajada soils lack red coloration.  The red coloration indicates the presence of caliche and argillic soil horizons in most cases (previous post on desert soil horizons).  Upper bajadas will also have steeper slopes while lower bajadas will nearly be flat.  Upper bajadas will also generally have rockier soils and fewer rocks will be present lower in the bajada.

An upper bajada soil surface.  Cacti of several species, Palo Verde, Triangle-Leaf Bursage,  and some Creosote make up this upper bajada plant community.  These plants, except the Creosote, have generally shallow roots which are adapted to caliche and argillic soils common to upper bajadas such as this one.
Soils in the desert seem to have a particularly strong effect on plant life.  We will discuss this further in a future post but desert plants are a strong indicator of what lays below the surface.  Some plants prefer argillic and caliche horizons while others can stand them.  Generally shallow rooted plants such as Chollas, Prickly Pears, Saguaros, Triangle-leaf Bursage, and Foothills Palo Verde prefer caliche and argillic horizons in some circumstances.  Therefore shallow rooted plants prefer upper bajadas.  Creosote bush having deeper roots prefer the absence of caliche and argillics, therefore preferring lower bajadas.
A lower bajada soil surface.  This plant community is primarily Creosote.  There are a very few cacti also present though.  The deep roots of creosote prefer the absence of impeding caliche and argillic horizons upslope on the bajada.

Thursday, September 1, 2011

End of year Garden Economics Update

One of my gardens waiting for fall planting which will happen in the coming month.
Well, its been a hard summer for gardening.  July was hot, and usually we get at least some break from the heat during monsoon season, but not this year.  Monsoon season was a huge disappointment with less than one inch of rain.  The lack of rain resulted in an August where every single day was over 100 degrees and 12 of those days over 110 degrees.  Everything suffered as a result.  I really didn't put much effort into the garden  due to the heat.  But here are the results:

College garden
Tomatoes 16lbs. 15oz., $50.64 ($2.99/lbs.)
Green onions 1lbs. 15oz. $4.65 (0.59/lbs.)
Summer squash 4lbs. 2oz., $12.33 ($2.99/lbs.)
Eggplant 1lbs. 8oz., $2.99 ($1.99/lbs.)
Total hours: 5
Total calories burned: 1530
Calories produced: 2042
Net calories:  512
$ spent: $0.00
$ produced: $70.61
Net $: $70.61

Home Garden
Zucchini 3lbs. 8oz., $10.47 ($2.99/lbs.)

Chives 4oz., $2.99 ($1.99/2oz.)
Basil 12oz., $17.94 ($1.89/2oz bunch)
Tomatoes 7lbs. 3oz., $21.49 ($2.99/lbs.)
Cucumbers 3lbs. 1oz., $9.16 ($2.50/lbs.)
Eggplant 3lbs. 12oz., $7.46 ($1.99/lbs.)
Total hours: 5
Total calories burned: 1530
Calories produced: 1534
Net calories: 4
$ spent: $0.00
$ produced: $72.50
Net $:  $72.50

Totals since October 2010
College garden:  
$ Totals: $193.63+$70.61=$264.24
Total hours worked: 29.75
Calorie totals:8350+512=8862

Home
$ Totals: $221.12+$72.50=$293.62
Hours worked: 30.25
Calorie totals:5054+4=5058


As for rain in the near future... there seems to be no sign of it.  We really haven't had any good rainfall for a year and a half.  Also, I will be getting the garden ready for fall planting in the coming weeks so what you see here will be the year end totals.  Being this is the first year I tracked my produce I learned a lot.  I know of many ways I can increase my yield pretty easily for next year.  For one, I will be limiting my up front costs for planting as well as trying to plant a little earlier.  Both of these things will help a lot.  Between the two gardens I grew a total of $557.86 on about 150 square feet.  Not sure how this compares with other peoples gardens.  My gardens were bigger then 150 square feet but I learned that I only used that much space effectively.  I'll know better for next year.  Overall produce works out to be about $9.30 per hour of work, which is not too bad.  


I am already planning my fall garden and will be watching temperatures closely for planting.  I will give an update on my fall planting plans within the next month.