Author Archives: gaussling

About gaussling

Gaussling is a senior scientist in the chemical business. He occasionally breaks glassware, spreads confusion and has been known to generate new forms of hazardous waste. Gaussling also digs aerospace, geology, and community theatre.

Mineral deposits on other worlds

As one begins to understand the manner in which mineralization and elemental concentration occurs as a result of terrestrial geology, it is only natural to wonder how this would occur on other worlds. On earth, the concentration of the elements in the form of mineral deposits is a partitioning phenomenon that benefits greatly from fractional crystallization, metamorphic modifications, and from a variety of transport mechanisms.

Fractional crystallization of magmas provides a condition whereby a mixture of simple and complex ions may associate to form mineral compositions that partition from the molten phase by virtue of high solidification temperature. In this way, solid, higher melting compositions precipitate from a melt sequentially, leading to the selective partition of certain combinations of elements into a new solid phase. The molten phase may be enriched in certain combinations of other elements by default- many of which may be relatively volatile.

The composition and cooling rate of the magma will determine the nature of the solid rock that is formed after cooling.  Over time, rock may be lifted toward the surface and subjected to modification by hydrothermal action or by erosion and redeposition by gravity. Cooled igneous rock may be subjected to crystalline modification by exposure to heat further down the timeline.

Hydrothermal water, superheated under high pressure, is a major force in the formation of mineral deposits. The sulfides (and hydrosulfides) of transition metals (i.e., Au) are thought to be transported from source rock through cracks, faults, and porous formations to be deposited in locations where transport can no longer be sustained. The accumulation of economic quantities of uranium are thought to be the result of hydrothermal or aqueous transport as well.

So here is the point of this essay–  If preconcentration of elements to viable deposits is critical for the success of value extraction on earth, what about mining on the moon or Mars? To what extent are we dependent on these mechanisms to make viable the mining and extraction of useful materials?  If lunar geology has not been quietly concentrating minerals in the manner to which we earthlings have been accustomed, how will we come to grips with using native materials on the moon for self-sustaining habitation?

It is one thing to find x ppm of oxygen or y ppm of titanium in the lunar regolith. It is quite another to enable extraction of critical elements from low-value (dilute) material. The chemical energy inputs for processing will be severely limited owing to the scarcity of reducing materials on the moon or Mars. Reducing materials are really just reservoirs of inexpensive and useful electrons. Reducing materials would include carbon or electropositive metals for the reductive winning of other metals. 

In the absence of an inexpensive supply of electrons, all phases of extraterrestrial mining and processing will be subject to large cost multipliers. Cheap electrons are required to energize machinery, move materials, or conduct refining. All of these familiar activities are energy intensive on earth and there is no reason to think it will be different on another world. On earth, cheap electrons come in the form of diesel and coal. On the moon and Mars, it seems likely that solar and nuclear will energize most work for those who try to set up camp there.

Beryllium Mining

The aerial view above shows the location of the Brush Wellman beryllium mine near Spor Mountain, Utah. It is reportedly the only major beryllium mining operation in the USA and one of the very few economic beryllium ore locations in the world. The host materal is called “tuff”- a compacted and cemented volcanic ash composition. Coincident with this Be deposit is low grade uranium and fluorspar. Occurances of Cu, Au, and other base metals can be found in the area.

The concentration of Be in the ore body is thought to be due to the mineralization action of meteoric and hydrothermal fluids. The region is marked by the presence of 3 Oligocene-era calderas, with the Spor mountain Be mineralization found along the ring structure of the Thomas caldera.

The action of hot, saturated aqueous flows transporting solublized components from distant host bodies is one of the chief mechanisms for the appearance of “ore bodies” near the surface of the earth. Very often, such deposits are found in regions of faults and fractures of various kinds of rock formations. Mineral laden water follows the fracture system and, as it moves toward the surface, begins to cool and deposits the burden of now insoluble compounds. Deposition can occur due to simple solubility properties, redox from exposure to atmospheric oxygen, or via ion exchange with available chemical species to form high Ksp compositions.

This is nothing new to geologists who have been aware of these mechanisms for generations. But for a non-geochemical chemist like myself, the matter of how elements like beryllium come to be concentrated is less than familiar. Indeed, the question of how any element comes to be concentrated in rock formations is a question of increasing interest to Th’ Gaussling. I hope to spend a lot of time in the future exploring this matter.

Libertarians and Epidemics

If the USA were more substantially libertarian in construction and demeanor, how would we respond to the arrival of an epidemic or pandemic of some nasty pathogen like swine flu? If the USA were decentralized into quanta of individual market units, each responsible for his/her own well being, how could the spread of contagion be averted?

Would a libertarian republic be philosophically opposed to collectivist activity like combining resources to marshal a defense against a virus. Or, would the Austrian-school economists brush off the event as nothing more than a Malthusian disturbance in the direction of a much needed equilibrium between resources and population? If you cannot afford to protect yourself, then you are lazy or sadly unlucky. In any case, you’re on your own.

Would a Libertarian system first act to protect property and guns? Would libertarian economists issue a statement condemning collectivism and promoting the rights of individuals to buy as much Lysol, duct tape, plastic drop cloths, and surgical masks as the market will allow? Perhaps a Libertarian President (whatever that means) would put a team of economists on a pandemic, or better yet, the lowest bidding epidemiologists available from Craigs list?

Libertarians make a good deal of noise about the horrors of taxation and their unflinching admiration for the genius of the marketplace, property, and the right to stockpile guns and ammo.  I agree, we’re paying too much in taxes. Government is way too big. And the dynamics of the market do provide lots of cool stuff for better living. True enough.

But the market is like a stomach (I had a better analogy, but it was rather unwholesome). It only knows that it is hungry. The stomach has no brain. The stomach only wants more. The stomach did not invent antibiotics, polyethylene, Buicks, antacid, jet engines, or bikinis. But the stomach did facilitate the invention of each of these items. We need a market mentality, but we also need an overarching sense of direction. We need a market that can sense and avoid driving off a Malthusian cliff.

Civilization is about infrastructure. And part of the infrastructure that the country as a whole can provide is biotechnology.  Biotechnology was not developed by Warren Buffett or Ronald Reagan or the legions of celebrated MBA’s. It was slowly developed by publically financed university institutions over many years of apparently irrelevant research projects. University educated scientists were hired by private and public corporations who began to find ways of marketing biomedical technology.  It evolved into molecular biology and medicine and eventually commercialized as a result of front funding by millions of skeptical and myopic taxpayers over several generations. Yes, the market has a big part in this in terms of the rational distribution of goods.

As a result of all of the initial “collectivism” through publically funded science, we have a first class infrastructure (the CDC) that is capable of monitoring the onset and progress of contagious diseases. This system funded originally by the public is able to mobilize vaccines and small molecule medicines to prevent suffering and the spread of disease.  It is able to coordinate efforts and resources to benefit even the chronically irritable Libertarians.

CNN and Fox Stimulate LIV Wing of GOP

How can it be that people like CNN’s Glenn Beck and Fox brainwave Sean Hannity can land high paying spots on cable television? It obviously not because they are scholars. These professional 8th graders may have a grasp on something, but it’s sure not high level thinking. Aren’t they embarrassed? I’ll bet their mothers are. Obama a socialist? WTF?? Fascist?? WTF?? Have they bothered to look up the definition of these words?

Fascist: a political philosophy, movement, or regime (as that of the Fascisti) that exalts nation and often race above the individual and that stands for a centralized autocratic government headed by a dictatorial leader, severe economic and social regimentation, and forcible suppression of opposition2: a tendency toward or actual exercise of strong autocratic or dictatorial control <early instances of army fascism and brutality (from Merriam Webster).

Socialism:  1: any of various economic and political theories advocating collective or governmental ownership and administration of the means of production and distribution of goods2 a: a system of society or group living in which there is no private property b: a system or condition of society in which the means of production are owned and controlled by the state3: a stage of society in Marxist theory transitional between capitalism and communism and distinguished by unequal distribution of goods and pay according to work done (from Merriam Webster).

The very notion that Obama is a fascist or a socialist is barking mad. If anybody was a fascist, it was Dick Cheney and his band of goons. Nobody has the political power to convert this nation of unruly curs into a socialist country. The notion that anybody, even the most irate left wingers, could undo centuries of private property ownership in favor of socialist wetdreams is absurd on its face. The 20th century’s big socialism experiment failed. Who wants to try that again.  Obama is no socialist.

I’m sure these curs and mental halflings on cable clearly understand that they are spouting nonsense. It is all a put-on to get America’s legions of low information voters (LIV) out of the pews and into the community centers for some old fashioned swift-boating. Republicans know that if you hurl enough shit, some of it is bound to stick to something and the LIV’s will pick up on it.

What lit my fire this day? See the HuffPo article.

Liptonian Symbolism

Never one to allow reason to interfere with sentimentality, my blackened heart is softened somewhat by the recent shipment of Lipton Tea bags delivered to Th’ Gaussling from an online admirer via the US Postal Service. 

The tea in this gift shall be symbolically applied to the local waterway, but not before being used to formulate some refreshing iced beverage via aqueous extraction.  A vessel filled with aqueous goodness (OPE-Our Pure Essence) will be charged with the anthocyanin and alkaloid laden forest litter for extended exposure to solar radiation. Brownian motion will be relied upon to disperse the colloidal value away from the biomass.

Once so processed, the fortifying beverage will be passed through a pair of kidneys as a symbol of my dark contempt for the IRS. This nephro-raffinate will be discharged into the municipal fluid collection system for a kind of Nicene rectification that will provide further philosophical processing of the symbolic gesture. Finally, after the Liptonian fluids have been subjected to Libertarian aeration and Calvinist filtration, the clarified symbol will be discharged into the river for its turbulent hero’s journey to the drinking water inlets of New Orleans and beyond.

The Cresson Vug

The history of the Territory and State of Colorado is inextricably tied to base metals and precious metals. Gold and silver strikes were a big draw for the migration of population to Colorado from the 1859 Pikes Peak Gold Rush onward.  A map of the ore geology of Colorado reveals a few key districts or zones of enhanced mineral abundance. The Colorado Mineral Belt (CMB) is a band of ore deposits that are positioned diagonally across the middle of the mountainous part of the state, SW to NE, roughly from Durango to Boulder.

Other districts containing economically viable ore bodies exist outside of the CMB, notably the Thirtynine Mile Volcanic Field west of Colorado Springs. While rich deposits of gold were found near Central City and many other locations in the CMB, the relatively rare  gold/tellurium ore found near Cripple Creek and Victor on the periphery of the Thirtynine Mile Volcanic Field have provided approximately half of all the gold mined in Colorado. Gold has an affinity for tellurium and may be found combined with it in the form of the mineral calaverite.

In particular, the Cresson mine near Cripple Creek has been an especially rich producer of gold. In November of 1914, a 4 m x 8 m x 13 m cavity or “vug” at the 1200 ‘ level was found to be lined with gold telluride and other minerals.  Depending on which source you believe, it is reported that from 20,000 to 60,000 ounces of gold were removed from this small space.

The Cripple Creek volcanic complex is a highly altered, highly brecciated formation that has been described in detail elsewhere. The link provides a more detailed description and a bibliography.

Links updated 7/2/19.

Tuesday’s Select Linkography

Juan Enriquez talks about Homo evolutis. This is a TED video.

ARR Inc., is offering its Suparator (R) technology for separating an upper oil phase from water by means of a cleverly designed staged weir system. According to the product literature, the passive device collects, concentrates, and separates oil from flowing water. This widget uses Bernoulli effects to draw water from collection zones and top the upper phase over a final weir for isolation.

Admittedly, I have not kept up with the progress of wier technology, but to a non-engineer like myself, this seems pretty clever.

Suparator Diagram

Suparator Diagram

Energetic Materials Manufacture

Everyday in factories around the world, people manufacture energetic materials at the commercial scale. Yet we do not witness a continuous stream of reports describing industrial tragedies at these facilities. Plants for the manufacture of energetic compositions are often purpose built with many layers of protection (LOP) built-in. Such facilities may be constructed in remote locations and with assets separated by large distances.

What is telling about explosive chemical manufacturing is the extent to which the operators possess a deep level of knowledge of their materials and processes. The explosives industry has at its fingertips a wide variety of tests that assay certain manifestations of sensitivity.  There are many tests that assay for friction sensitivity and for shock sensitivity. Impact and electrostatic stimuli are also important dimensions not only for manufacture, but for use in the field.

For instance, a material with a high detonation velocity may have a large critical diameter, meaning that the packing density and bulk geometry must be sufficiently large for it to propagate a shock. Knowledge of impact sensitivity, shock sensitivity, or detonation velocity alone does not tell the whole story of the explosive.

There are several causes for this depth of knowledge. Easiest to see is the history of US explosives manufacture.  There have been many spectacular industrial accidents going as far back as the revolutionary war. Much has been learned about manufacture and handling at a very high cost to lives and property. The explosives industry has had to learn to develop safe manufacturing practices to prevent the loss of life and business interruption.

Another motivating influence for explosives safety is perhaps less than obvious to outside observers. Over time, the US military has been revising and modifying its munitions designs and specifications.  It is highly desirable that explosives and propellants provide maximum energy density for performance requirements, but at the same time be sufficiently insensitive to inadvertant stimulus so as to provide maximum safety for those handling the munitions.

The properties of military explosives- a major market driver- are highly specified by military procurement. The current library of explosive compositions have been highly refined through many years of evaluation and field testing. The effect has been that the compositions presently in the field are quite well understood in terms of their operational boundaries.

In addition to being driven by material specifications, manufacturing facilities and quality control systems are also driven by a selection process that is quite stringent.  We see fewer explosive plant disasters today not only because the explosives are safer, but also because plants are managed better.

The lesson in this for fine chemical operators is that depth of knowledge of materials and reaction mixtures can be highly desirable and potentially very useful. In particular, an intimate understanding of the behavior and sensitivity of materials under process conditions as well as off-normal conditions can lead to safer plant operations.

Seems like a “No-Brainer”. But the fact is that the activity leading to such knowledge can be difficult, time consuming, and expensive to obtain. The push to get product out the door can be irresistable and the urge to cut corners can happen quietly and without fanfare. It is very easy for institutional knowledge to be lost in the struggle to maintain output and profitability.

Fine chemical manufacturers can be hobbled in their understanding in other ways. On the producers side or on the users side of fine chemicals, it is not unusual for chemists to specify methods of analysis that are familiar to them. NMR or GCMS or a variety of wet chemical methods set up on the benchtop are commonly used to set specifications and to validate certificates of analysis. 

However, familiar methods of analysis tend to give profiles of familiar properties. Unfamiliar properties or contaminants may be invisible to any given method of analysis. A compound with a low threshold to decomposition or one that will exotherm vigorously and shed mass aggressively may reveal this attribute only through happenstance to an alert chemist.

What is especially interesting about explosives testing is the extent to which compositions are subjected to challenge tests. Rather than looking for a spectral signature, materials are subjected to a variety of stimuli in a manner that provides an unambiguous outcome. The card gap test for instance looks at the sensitivity of a composition to a standard stimulus that has been attenuated through a variable gap (set of spacers) of polymethylmethacrylate or air. Does it produce a hole in the witness plate or not?

There are people who go to work in nitroglycerin factories everyday knowing that they are working with a shock sensitive high explosive. Others may work in a lead styphnate factory filling primer cartridges by hand.

There are also people who go to work everyday in plants that have banned the use of diethyl ether or require peer review of even the simplest reaction they run in their fume hoods. The range of what is considered acceptable risk varies greatly.

Today, there is a mandate for IM- Insensitive Munitions. Here is the scenario- a TNT filled projectile is impacted by a large caliber projectile or shrapnel. There is a good chance the stimulus provided by the impacting body will initiate the TNT and cause the charge to explode, causing death or harm to those in the area.  It is desirable to have high explosives that detonate or deflagrate only when properly initiated.

A major push is being made at government and industrial labs to produce explosive compositions that are insensitive to inadvertant stimulus, yet energetic enough to perform the task.  One desired end of this activity is to phase out TNT in military explosives. The lack of US manufacturers of TNT is nearly as important a motivating factor as the sensitivity issues are. From the industrial hygiene side, some workers reportedly become sensitized to TNT, so the elimination of this toxicological dimension is desirable as well.

Green munitions are also part of a phase change in the munitions field. At first blush it seems silly to make explosive devices more environmentally friendly. However, explosive chemicals and their decomposition products can be widely dispersed in the environment as the result of warfare and training. The reduction of toxic residues can be considered a reduction in collateral damage.

Morning Vegas

Wynn Resorts and Trump Tower

Wynn Resorts and Trump Tower

Mr Wynn admitted to Charlie Rose the other day that the only way to make money in a casino is to own one.

The white skinny tower right of center is Donnie Trumps building just off the Las Vegas Strip.

No booze and no gambling. Gaussling- the worlds dullest boy.

[Photo by Th’ Gaussling]