Es mostren els missatges amb l'etiqueta de comentaris coltan. Mostrar tots els missatges
Es mostren els missatges amb l'etiqueta de comentaris coltan. Mostrar tots els missatges
19 de març 2026
14 de nov. 2016
Cómo evitar comprar móviles con 'minerales de sangre'?
http://www.eldiario.es/desalambre/evitar-comprar-moviles-minerales-sangre_0_580242122.html
Cómo evitar comprar móviles con 'minerales de sangre'?
A pesar de la explotación y abusos escondidos en el coltán procedente del Congo, el mercado mundial de los componentes para móviles apenas se está empezando a regular y sin consistencia
Europa consume un 25% mundial de los llamados 'minerales de sangre' y 880.00 empresas europeas los usan para sus bienes de consumo
La falta de regulación provoca que, como consumidor, no hay manera de estar seguros de que nuestros teléfonos no lleven 'minerales de sangre'
Imagen de archivo: Vista del stand de la compañia china ZTE en el Mobile World Congress. EFE
Entre las modelos, las luces y una montaña rusa virtual, saco las piedras de coltán que nos regalaron el año pasado en una mina congoleña (una más). Entre los stands del Congreso Mundial del Móvil (WMC) están todas las grandes marcas. Es la gran cita anual de la telefonía móvil. Estamos a finales de febrero, en la entrada chilla el eslogan “el móvil lo es todo” y Europa aún no ha regulado el mercado de los minerales de sangre que alimentan este “todo”.
Las fuentes de Montjuïc deleitan con colores a los acreditados internacionales en una “Barcelona, capital del móvil”, mientras la ausencia de los dos grandes protagonistas, el coltán y Congo, dibuja la paradójica desconexión de la sociedad hiperconectada.
Tras diez años cubriendo la guerra más mortífera del planeta, en República Democrática del Congo y siguiendo el comercio de minerales sacados de miles de minas artesanales, me encuentro en mi ciudad natal investigando el otro lado de la cadena: los compradores. En la zona donde se libra el conflicto, en Congo, es donde se concentran las reservas más grandes del mundo de coltán (tántalo).
“El tántalo (que se extrae del coltán) tiene unas propiedades únicas”. Eva Vidal, ingeniera de la UPC, abre cuidadosamente un teléfono y levanta con las pinzas una pequeña pieza dorada. “Sin él, los smartphones no funcionarían y actualmente no hay alternativa para reemplazarlo”.
Trabajo de los mineros que extraen coltan del la mina de Senator Edouard Mwangachuchu en North Kivu (RDC). / Foto: Lucas Oleniuk (Efe)
Sin control
Es el metal más valioso de nuestra era, insustituible por ahora, y, a pesar de que el boom del coltán estalla en los años 2000, el mercado mundial de los componentes para móviles apenas se está empezando a regular, y sin consistencia. El pionero fue Estados Unidos, que aprobó la primera ley en 2010. Se insta a las empresas a presentar un informe anual a la Comisión de Bolsa y Valores explicando de dónde salen sus componentes. Pero los resultados del primer examen reflejan el fracaso.
Amnistía Internacional concluye que, en la primera entrega de resultados, en 2014, el 80% de las empresas no controla o no revela la procedencia de sus componentes, a pesar de la regulación. Entre las empresas estudiadas están Apple, Honda, Google, Boeing, Tiffany, Microsoft o Walt Disney.
Imagen de archivo: Asistentes a la presentación de Samsung portan gafas VR en Barcelona EFE
En Bruselas es un taxista ruandés –guiños de la vida– el que me recoge en el aeropuerto y me lleva hasta el Parlamento Europeo. Es junio de 2015, la europarlamentaria Marie Arena, que ha luchado junto a otros diputados para que la ley sobre minerales de sangre en Europa tire adelante, ha convocado a una sesión para contar cuál es la situación en Congo.
Hablo de los empresarios congoleños, los que, lejos de Europa, se dedican a la compra-venta de coltán. La desinformación sobre Congo es sorprendente y, desde las elegantes instalaciones del Parlamento, superpobladas de cámaras y periodistas, me acuerdo de Sadok, el presidente de los comerciantes de Kivu Norte (la provincia congoleña más rica en coltán): “Tenemos que bailar al ritmo del mercado internacional. Nuestras voces no cuentan”. A pesar de ser los principales suministradores de este mercado, la decisión se toma en otra parte.
Arena fue optimista. Se acababa de llegar a un acuerdo y Europa iba a empezar a regular. Pero la ley europea es aún más laxa que la norteamericana. Solo exige certificar a las empresas que importan el mineral en bruto, lo que exime a la mayoría, que importan los componentes con el mineral ya transformado.
“Queremos regulación y certificación en toda la cadena. Que cualquier pieza que entre a Europa esté certificada. Desde el agujero donde sale el coltán, hasta el lugar donde, transformado, llega a Europa”, afirma el europarlamentario Javier Nart (Ciudadanos): “Si no circulamos a 120 por las calles de Madrid es porque hay sanción. Las cosas si no se regulan, no funcionan. Y a los grandes empresarios con las manos exquisitamente limpias, yo les llevaría a ver lo que está pasando en Congo”.
Sin información
“Congo es un conflicto conocido, pero su vínculo con la producción de nueva tecnología se desconocía por la mayoría de parlamentarios europeos”, señala Ernest Urtasun, europarlamentario de ICV. Lleva de nuevo la gran paradoja. En la Unión Europea hay 880.00 empresas que usan el tántalo, el estaño, el tungsteno y el oro en la producción de bienes de consumo.
“En Europa vamos muy atrasados en regular esto. No éramos conscientes de cuál era el coste humano de este tipo de metales y qué efectos tenían en un conflicto. Es fruto de la movilización de la sociedad civil y con el desarrollo de las nuevas tecnologías la cuestión se pone encima de la mesa”, explica Urtasun.
Urtasun reconoce así la fuerza de la ciudadanía, de un centenar de entidades, ONG, activistas y periodistas que llevan años trabajando para que Europa asuma responsabilidades. En España es el caso de Alboan, Redes o Justicia i Pau, o de las campañas informativas de #ConflictMinerals o #ConnectCongo.
Pero es esta misma red la que critica y rechaza el primer paso tomado por Europa, no solo por ser demasiado débil. También por no contar con las voces locales.
“Quienes lo bloquean son los gobiernos”, asegura Urtasun. “El argumento (que usan) es que pedir evaluaciones demasiado exhaustivas puede tener un efecto negativo sobre la actividad de las pequeñas y mediana empresas, tener un coste económico muy elevado, y dejaría de hacerlas competitivas”. Y concluye: “La industria está jugando un papel de presión fuerte”.
Un negocio millonario, en muy pocas manos y mala información. Con el condensador de tántalo en la mano, Eva Vidal, ingeniera, dice que ellos tampoco tienen forma de saber de dónde procede el mineral. El mercado es opaco y la poca información que trasciende sobre el conflicto es sobre el sufrimiento de las víctimas, no sobre sus vínculos con Europa, importador del 25% de los llamados minerales de sangre.
El único intento: Fairphone
Como consumidores, actualmente, no hay manera de estar seguros que nuestros teléfonos no llevan minerales de sangre. En un espacio alternativo al Congreso Mundial del Móvil, se habla de cómo cambair la industria. La representante de Fairphone, Daria Koreniushkina, cuenta esta alternativa: “Estamos construyendo un smartphone con el objetivo de resolver los problemas sociales y ambientales que genera la cadena de suministro que hay detrás la fabricación de los teléfonos. Desde las minas, pasando por el diseño o la producción en las fábricas y hasta al final, en el momento del reciclaje, para evitar los residuos electrónicos”.
“El aspecto más urgente son los cuatro minerales de sangre. Hemos logrado acceder a estaño y tántalo libres de conflicto procedentes de Congo y en el Fairphone II hemos introducido oro certificado. Es la primera vez que se lanza un proyecto así en la industria de la electrónica de consumo.”
El de Fairphone es un objetivo que se topa con la gigantesca industria. “Sabemos que en algún momento un mineral limpio de conflicto se puede fundir con otras fuentes”. Así que mantener el móvil limpio “es casi imposible”.
Aún así, Koreniushkina es optimista. “Hay 90.000 persones en Europa que han optado por comprar un Fairphone, y eso resulta inspirador. Porque es gente que ha demostrado que quiere marcar una diferencia, que quiere productos más éticos. Y creemos que eso puede motivar a toda la industria a actuar de forma más responsable".
Etiquetes de comentaris:
coltan,
conflict minerals,
conflict resource,
Congo,
tantalum
15 d’abr. 2016
7 d’abr. 2016
6 d’abr. 2016
Tantalum is the most important element you've never heard of
You have likely never paid much attention to tantalum when you've gazed at the periodic table. It sits there, in the middle of a sea of transition metals, kind of out of the way and in the corner.
And yet, tantalum is increasingly important in the 21st Century, because it plays a large role in making personal electronic devices smaller, and it naturally fights corrosion. Along with the increased demand for tantalum comes a human price, as tantalum resources funded portions of the Second Congo War, the bloodiest conflict since World War II.
Corrosion-proof
Tantalum has the atomic number 73, snuggling the element between hafnium, niobium, and tungsten in the transition metal section of the periodic table. Discovered in the 19th Century, tantalum is named for Tantalus, a figure from Greek Mythology, who found himself doomed to spend eternity in a Saw-like torture scheme after death. An unknown force required Tantalus to stand in knee deep water, with delicious fruit handing overhead and just out of reach. The name refers to tantalum's own ability to be submerged in substances without being quenched.
In fact, tantalum's unusual characteristics led to its increased use in the late 20th and 21st Century. The element is extremely stable at temperatures lower than 150 degrees Celsius, and needs exposure to hydrofluoric acid, one of the nastier acids out there, to cause corrosion. This protection from corrosion is due to a natural protective layer created by oxides of tantalum on the surface of the the metal; making the element a perfect match for use in structures exposed to the the elements, like bridges and water tanks.
21st Century uses
Tantalum's primary 21st Century use comes in the creation of capacitors. Tantalum capacitors have an extremely high capacitance packed in a small volume — perfect for shrinking our electronic devices, or making additional room in them for larger processors or speakers. Tantalum is found in cell phones, dvd players, laptops, hard drives, and the PS3 — essentially almost any piece of home or industrial electronic equipment.
Tantalum's primary 21st Century use comes in the creation of capacitors. Tantalum capacitors have an extremely high capacitance packed in a small volume — perfect for shrinking our electronic devices, or making additional room in them for larger processors or speakers. Tantalum is found in cell phones, dvd players, laptops, hard drives, and the PS3 — essentially almost any piece of home or industrial electronic equipment.
Tantalum is also used to create surface acoustic wave filters, devices used in cell phones and televisions to improve audio quality. The average cell phone has about 40 milligrams of tantalum inside — not a considerable amount, but one that adds up quickly thanks to the millions and millions of cell phones in use.
Tantalum capacitors experience an extremely low failure rate, making them perfect for use in medical equipment, including hearing aids and devices that you don't want to randomly fail, like pacemakers. Tantalum is not harmed by bodily fluids, and does not irritate the flesh of the implantee, making it a perfect metal from which to create hip, knee, and other orthopedic implants.
How to Mine It
Tantalum is rarely found in its elemental form — the element is often found with niobium and the radioactive elements thorium and uranium, and industrial processes are required to extract pure tantalum. South American and Australia account for over two-thirds of the world's tantalum production, with a single mine in Brazil accounting for 20% of the world's annual supply.
Tantalum is rarely found in its elemental form — the element is often found with niobium and the radioactive elements thorium and uranium, and industrial processes are required to extract pure tantalum. South American and Australia account for over two-thirds of the world's tantalum production, with a single mine in Brazil accounting for 20% of the world's annual supply.
Increased use of tantalum in electronic devices has increased the cost of capacitor-grade tantalum over the past decade, with the refined form currently hovering around $300 a pound, while lower grade forms routinely sell for $100+ a pound.
Funding a civil war
"Coltan" is another name for columbite-tantalite, an ore containing a mix of niobium and tantalum. As we discussed yesterday, the Democratic Republic of the Congo (formerly Zaire) is extremely rich in coltan reserves, with rebels mining and then selling coltan to finance the civil war, with the majority of illegally mined coltan sold to China. The Second Congo War has claimed over 5.4 million lives, the bloodiest single conflict since World War II.
"Coltan" is another name for columbite-tantalite, an ore containing a mix of niobium and tantalum. As we discussed yesterday, the Democratic Republic of the Congo (formerly Zaire) is extremely rich in coltan reserves, with rebels mining and then selling coltan to finance the civil war, with the majority of illegally mined coltan sold to China. The Second Congo War has claimed over 5.4 million lives, the bloodiest single conflict since World War II.
The Kahuzi-Biega National Park and the Okapi Wildlife Reserve are extremely fertile sources of coltan, with mining activities driving out endangered gorillas in these protected areas. Mining coltan in the Congo also brings along another problem — due to the distance from home or camps, miners often kill and eat gorillas they come across in order to survive, further endangering the animals.
Locals also seek out coltan, well aware of the financial gains lying in the surrounding area as they sift for the rock in riverbeds and remove leftover pieces from abandoned mines. One-third of children in the Congo quit school to mine for coltan, which has a negative impact on the region for generations.
Individuals receive around ten dollars for a pound of unprocessed coltan, a good deal of money for those looking for a way to feed their families. Not the healthiest or safest way to make a living — but one that will persist as long as demand for tantalum is high and the price of life is low.
30 de març 2016
Do companies care about designing with conflict free components?
Some sources of information:
http://www.enoughproject.org/files/CorporateRankings2012.pdf
Apple:
http://images.apple.com/supplier-responsibility/pdf/Apple_Progress_Report_2015.pdf
Intel:
Tantalum
Tantalum is rarely used in elemental form.
Tantalum nitride (TaN) is often used as a resistor material in thin-film
networks for microwave hybrids (on alumina) as well as MMICs (on GaAs), due to
its high resistivity and stability over time and temperature. Tantalum
pentoxide (and other oxides) have been used as capacitor dielectrics in
electrolytic capacitors.
______________________________________________________
Jun 18, 2015 ... Resesarchers believe that graphene
could replace tantalum nitride within two chip generations.
The tantalum-nitride sheathing that is currently
used on copper wires in chips serves two functions. One is to help conduct
electricity and the other is to isolate the copper from the silicon on the
chip. Unlike the outer sheathing used in household copper wires, where the
wrapping prevents the wires from electrocuting us, the tantalum nitride ensures
that copper atoms do not contaminate the silicon transistors.
60% percent
of tantalum used in the U.S. is used in
capacitors.
Tantalum: uses
The
following uses for tantalum are gathered from a
number of sources as well as from anecdotal comments. I'd be delighted to
receive corrections as well as additional referenced uses (please use the feedback
mechanism to add uses).
Tantalum
metal has a number of important uses. It is used to make steels with desirable
properties such as high melting point, high strength, good ductility. These
find use in aircraft and missile manufacture. It is very inert and so useful in
the chemical and nuclear industries to line reactors. Tantalum wires were those
used first for light bulbs (now tungsten is preferred). The metal is immune to
body liquids and the body tolerates the metal well. Therefore, tantalum has
widespread use for surgical use. For instance, it can be used in sutures and as
cranial repair plates. The metal is used in the electronics industry for
capacitors.
The oxide is used to make
special glass with a high index of refraction for camera lenses.
Tantalum
Tantalum is a shiny, silvery metal which is soft when is pure. It
is almost immune to chemical attack at temperatures below 150 C . Tantalum is virtually
resistant to corrosion due to an oxide film on its surface.
Applications
Tantalum finds use in four areas: high-temperature applications,
such as aircraft engines; electrical devices, such as capacitors; sirurgical
impants and handling corrosive chemicals. It is rarely used as an alloying
agent because it tends to make metals brittle. Tantalum resist corrosion and is
almost impervious to chemical attack, for this reason it has been employed in chemical
industry, e.g. for heat exchanger in boilers where strong acids are vaporized.
Tantalum in the environment
Because tantalum oxide is very insoluble, there is almost no
tantalum to be found in natural waters. Few attemps have been made to measure
its level in soils, revealing a range from 0.1 to 3 ppm. Only tiny amounts of
tantalum are taken by plants: the amount in vegetation rarely exceeds 5 ppb.
The chief tantalum ores are tantalite, which also contains iron,
manganese and niobium, and samarskite, which contains seven metals. Another ore
which contains tantalum and niobium is pyrochlore. The main mining areas are
Thailandia, Australia, Congo, Brazil, Portigal and Canada. The demand of
tantalum is about 2300 tonnes a year. No assessment of total reserves of
extractable metal have been reliably calculated.
The primary use of tantalum metal is in making capacitors. A
capacitor is an electrical device similar to a battery. It can be

Tantalum
alloys are used to make artificial joints, such as an artificial hip shaft
(left) and socket.
given an electrical charge, which it then stores
until needed. Capacitors are essential parts of nearly all electrical circuits. Semiconductor circuits, like those used in transistors, require
tiny capacitors the size of grains of rice. Tantalum is one of the best metals
for this purpose. Different kinds of capacitors are made for many different
applications. They are used in military weapons systems, aircraft, space
vehicles, communication systems, computers, and medical applications. For
example, the smallest hearing aids are likely to have a tantalum capacitor.
Tantalum is also used in many different alloys. An alloy is made
by melting and mixing two or more metals. The mixture has properties different
from those of the individual metals. Tantalum alloys are used in laboratory
equipment, weights for very precise balances, fountain and ball point pen
points, and tools that have to operate at high speeds and temperatures.
Another application for tantalum alloys is in medical and dental
applications. The metal has no effect on body tissues. It is used in artificial
hips, knees, and other joints. Pins, screws, staples, and other devices used to
holds bones together are also made of tantalum alloys.
A few weeks ago I worked through the Altium
SMPS design course from FEDEVEL academy and that little project left me with an
unresolved question. Somehow I got the idea in the past few years that tantalum
capacitors are to be avoided, never really knowing why. Yet try to find a
330uF, 6.3V capacitor with ~4mOhm ESR and you’ll find that tantalum is
basically the only option. So I wanted to start a discussion about tantalum
caps with the main questions being:
- When and why to use tantalum capacitors?
- Why avoid using tantalum capacitors?
- Alternatives to tantalum capacitors with pros and cons.
I did some quick research already and here’s summary of what I’ve found so far
Why and when to use tantalum capacitors?
Tantalum is used to create small sized capacitors with ‘large’ capacitance. Compared to other materials the oxide layer can be quite thin. So for all applications where pcb space is limited (e.g. mobile phones) they are the to go to type of capacitor when ceramic doesn’t cut it anymore.
Also tantalum capacitors can be created with quite small ESR. This is why they are used a lot in (local) switched power supplies as bulk capacitor. Ceramics have even lower ESR, but in power supply regulators that might be too low for loop stability.
Why avoid using tantalum capacitors?
From what I can find these are the main reasons to avoid tantalum capacitors in your design:
Financial:
Tantalum capacitors are relatively expensive even when supply and demand are balanced. Not too long ago prices went sky high due to a shortage in raw materials.
Reliability:
There are numerous reports of tantalum capacitors spontaneously combusting. I haven’t read into this any further, but I take it some forum members can elaborate on this.
Moral:
Since some of the major tantalum ore (columbite-tantalite / coltan) mines are located in conflict zones (e.g. Democratic Republic of Congo) so one can argue that tantalum is a conflict mineral. I’m not sure though to what extent that still counts today as there are major mines elsewhere in the world too.
Tantalum is a heavy metal and as such toxic and not really well for the environment. I did find a paper by AVX that discussed ‘green’ tantalum technology though.
Alternatives to tantalum capacitors and pros and cons?
Niobium caps
Apart from being mentioned I haven’t been able to find useful information yet, apart from that there is more Niobium ore available which should make Niobium caps cheaper. On the other hand Coltan is also used for mining Niobium so maybe the conflict argument could apply here too?
(Wet) Aluminum Electrolytic caps (Elco)
Specific low-ESR Elcos can be used. Larger values, larger ripple current rating, larger voltage ratings are some benefits. I must admit though that I realized that I haven’t seen SMT Elcos a lot outside consumer gear. Did I miss something?
Polymer (Solid) Aluminum caps
Used as in- or output bypass caps in SMPSs. Larger values only available in small voltage ratings. I don’t know by how much these must be derated though. Please tune in if you know more about this kind of caps.
Monolytic Ceramic caps
Larger voltage ratings, smaller derating, and higher ripple current ratings are among its benefits compared to tantalum caps. Since the ESR is much lower a small external resistance may be needed for loop stability in SMPS designs.
Sources
Here is some of the info I found. There is a lot to be found, and you'd have sift to get the info you want too. I included the year of publishing when available, since a few years in our industry means lots of changes.
AVX. (n.d.). Comparison of Multilayer Ceramic and Tantalum Capacitors
AVX. (n.d.). “Green” Environmentally Friendly Technology For Tantalum And Niobium Oxide Capacitors
Digikey. (n.d.). Tantalum Alternative Solutions by Panasonic
EETimes. (2001). Tantalum capacitor options weighed
Kemet. (2008). Comparison of Ceramic and Tantalum Capacitors
NIC Components. (1999). Alternates to surface mount tantalum electrolytic capacitors
Wikipedia. (n.d.) Coltan
Related Threads on the EEVblog
Tantalum caps
why we tend to not use electrolytics for decoupling to gnd?
Output capacitor of a DC/DC converter
- When and why to use tantalum capacitors?
- Why avoid using tantalum capacitors?
- Alternatives to tantalum capacitors with pros and cons.
I did some quick research already and here’s summary of what I’ve found so far
Why and when to use tantalum capacitors?
Tantalum is used to create small sized capacitors with ‘large’ capacitance. Compared to other materials the oxide layer can be quite thin. So for all applications where pcb space is limited (e.g. mobile phones) they are the to go to type of capacitor when ceramic doesn’t cut it anymore.
Also tantalum capacitors can be created with quite small ESR. This is why they are used a lot in (local) switched power supplies as bulk capacitor. Ceramics have even lower ESR, but in power supply regulators that might be too low for loop stability.
Why avoid using tantalum capacitors?
From what I can find these are the main reasons to avoid tantalum capacitors in your design:
Financial:
Tantalum capacitors are relatively expensive even when supply and demand are balanced. Not too long ago prices went sky high due to a shortage in raw materials.
Reliability:
There are numerous reports of tantalum capacitors spontaneously combusting. I haven’t read into this any further, but I take it some forum members can elaborate on this.
Moral:
Since some of the major tantalum ore (columbite-tantalite / coltan) mines are located in conflict zones (e.g. Democratic Republic of Congo) so one can argue that tantalum is a conflict mineral. I’m not sure though to what extent that still counts today as there are major mines elsewhere in the world too.
Tantalum is a heavy metal and as such toxic and not really well for the environment. I did find a paper by AVX that discussed ‘green’ tantalum technology though.
Alternatives to tantalum capacitors and pros and cons?
Niobium caps
Apart from being mentioned I haven’t been able to find useful information yet, apart from that there is more Niobium ore available which should make Niobium caps cheaper. On the other hand Coltan is also used for mining Niobium so maybe the conflict argument could apply here too?
(Wet) Aluminum Electrolytic caps (Elco)
Specific low-ESR Elcos can be used. Larger values, larger ripple current rating, larger voltage ratings are some benefits. I must admit though that I realized that I haven’t seen SMT Elcos a lot outside consumer gear. Did I miss something?
Polymer (Solid) Aluminum caps
Used as in- or output bypass caps in SMPSs. Larger values only available in small voltage ratings. I don’t know by how much these must be derated though. Please tune in if you know more about this kind of caps.
Monolytic Ceramic caps
Larger voltage ratings, smaller derating, and higher ripple current ratings are among its benefits compared to tantalum caps. Since the ESR is much lower a small external resistance may be needed for loop stability in SMPS designs.
Sources
Here is some of the info I found. There is a lot to be found, and you'd have sift to get the info you want too. I included the year of publishing when available, since a few years in our industry means lots of changes.
AVX. (n.d.). Comparison of Multilayer Ceramic and Tantalum Capacitors
AVX. (n.d.). “Green” Environmentally Friendly Technology For Tantalum And Niobium Oxide Capacitors
Digikey. (n.d.). Tantalum Alternative Solutions by Panasonic
EETimes. (2001). Tantalum capacitor options weighed
Kemet. (2008). Comparison of Ceramic and Tantalum Capacitors
NIC Components. (1999). Alternates to surface mount tantalum electrolytic capacitors
Wikipedia. (n.d.) Coltan
Related Threads on the EEVblog
Tantalum caps
why we tend to not use electrolytics for decoupling to gnd?
Output capacitor of a DC/DC converter
Tantalum capacitor options weighed
29 de març 2016
Tantalum at Global Advances Metal
http://www.globaladvancedmetals.com/tantalum/applications.aspx
Applications
Capacitors
About half the tantalum consumed each year is used within the electronics industry, mainly as powder and wire for capacitors. As the market moves to greater miniaturization, the tantalum capacitor is favored in space-sensitive, high-end applications in telecommunications, data storage and implantable medical devices.
About half the tantalum consumed each year is used within the electronics industry, mainly as powder and wire for capacitors. As the market moves to greater miniaturization, the tantalum capacitor is favored in space-sensitive, high-end applications in telecommunications, data storage and implantable medical devices.
Semiconductors
Tantalum is a critical component in the manufacture of state-of-the art semiconductors. Using the physical vapor deposition (PVD) process, tantalum is "sputtered" onto semiconductor substrates to form a thin film diffusion barrier to protect the copper interconnects. Tantalum sputtering targets are used in a variety of other products, including magnetic storage media, inkjet printer heads and flat panel displays.
Tantalum is a critical component in the manufacture of state-of-the art semiconductors. Using the physical vapor deposition (PVD) process, tantalum is "sputtered" onto semiconductor substrates to form a thin film diffusion barrier to protect the copper interconnects. Tantalum sputtering targets are used in a variety of other products, including magnetic storage media, inkjet printer heads and flat panel displays.
Engine turbine blades
The metal's high melting point and resistance to corrosion makes it suitable for alloying applications. Tantalum is used in nickel based superalloys where the principal applications are turbine blades for aircraft engines and land based gas turbines.
The metal's high melting point and resistance to corrosion makes it suitable for alloying applications. Tantalum is used in nickel based superalloys where the principal applications are turbine blades for aircraft engines and land based gas turbines.
Chemical processing equipment
Tantalum's high resistance to corrosion and high temperature makes the metal an ideal material of construction for liners in vessels, piping, valves and heat exchangers in the chemical and pharmaceutical industries.
Tantalum's high resistance to corrosion and high temperature makes the metal an ideal material of construction for liners in vessels, piping, valves and heat exchangers in the chemical and pharmaceutical industries.
Other applications
Tantalum is used in a range of other applications requiring strength, ductility, toughness, corrosion resistance, thermal conductivity and high melting point:
Tantalum is used in a range of other applications requiring strength, ductility, toughness, corrosion resistance, thermal conductivity and high melting point:
- Ballistics
- Surgical implants and closures
- Cemented carbides for cutting tools
- Tantalum compounds for optical applications and sonic acoustic wave filters
Amid legal uncertainty on conflict minerals, alternatives emerge
http://www.theguardian.com/sustainable-business/conflict-free-minerals-ruling-litigation-apple-intel
Wednesday 23 April 2014 23.27 BSTLast modified on Thursday 10 December 201522.07 GMTShare on Pinterest
Wednesday 23 April 2014 23.27 BSTLast modified on Thursday 10 December 201522.07 GMTShare on Pinterest
The illegal trade of tantalum, tungsten, tin and gold from the Democratic Republic of Congo (DRC) and surrounding countries is fueling conflict in central Africa. Sales of these conflict minerals help fund arms for militias, ultimately leading to human rights abuses. Meanwhile, US companies that use these metals are facing growing pressure to find sources that are conflict-free. An Securities and Exchange Commission rule, scheduled to take effect June 2, would require the vast majority of US companies to disclose whether they use conflict minerals from the region.
Now the SEC rule has come under fire: A US appeals court last week ruled that part of the regulation – a provision requiring companies to state whether their products use conflict minerals – is unconstitutional. Some lawmakers are urging the SEC to move forward with the rest of the disclosure rule, but it's unclear how the commission will proceed, and ongoing litigation adds to the uncertainty about exactly how the conflict minerals rule will take effect.
The good news for companies is that compliance with these new regulations just got easier. In January, the Conflict Free Sourcing Initiative (CFSI) announced the existence of certified conflict-free smelters for all four of the conflict minerals. A key step in the supply chain, smelters turn rocks into purified metals for use in electronics. Tungsten was the last of the minerals to gain a verified smelter, and more smelters are expected in the coming months. As of 3 April, there were nearly 80 conflict-free smelters.
Some big name companies are taking their efforts a step further. Apple has started publicizing which of its suppliers may be sourcing minerals from conflict zones. The first list showed 104 smelters that were not yet verified as safe. The company also has vowed to go completely conflict-free by the end of 2014, meaning that all of its minerals will come from verifiable sources. Intel also recently announced that all of its microprocessors released in 2014 will be conflict-free.
Conflict minerals 101
Tantalum

Tantalum is a crucial ingredient in electronics manufacturing. In fact, half of all mined tantalum goes into electronics, and it is found in almost all electronic equipment, including mobile phones, laptops and hard drives. It is also used on an industrial scale, in jet engines, ships and missiles.
Tantalum can hold the highest electrical charge of any metal, which makes it an ideal component for a device called a capacitor, which stores and releases an electric charge. An average mobile phone only contains about 40mg of tantalum – a relatively insignificant amount, until one considers the hundreds of millions of devices in use.
According to the SEC, central Africa accounts for 15-20% of the world's tantalum supply, although some reports put the figure closer to 50%. The richest deposits of coltan, the naturally-occurring ore that tantalum is extracted from, are found in eastern Congo, where mining is done by hand.
In 2012, tantalum became the first mineral to gain a conflict-free smelter. And, according to the CFSI database, there are currently 26 conflict-free tantalum smelters, located predominantly in China and the US.
For an electronics company looking to clean up its supply chain, tracing its tantalum is a good place to start. Apple, for instance, focused its initial supply chain cleanup efforts on tantalum, and announced in February 2014 that all of its tantalum smelters were validated as conflict-free.
"Tantalum is the one that has the biggest impact because it's in so many electronics," said Jess Kraus, chief executive of Source Intelligence, a company that helps businesses improve the transparency of their suppliers.
Tantalum is also the easiest to trace, because it is used in "very specific circumstances", Kraus said. By comparison, tin is "found in almost everything", from cellphones to toothpaste to pipes.
Tungsten

Tungsten, which is largely derived from wolframite or scheelite, has the highest melting point of any pure metal. Its conductivity, meaning its ability to hold an electric charge, makes it attractive to electronics manufacturers. Along with gold, it is commonly used to make computer chips.
However, only very small amounts of tungsten are used in electronics, which may be the reason that it was the last mineral to acquire a conflict-free smelter. "Tungsten is not as widely used as tin or tantalum or even gold," said Sasha Lezhnev, a senior policy analyst at the Enough Project, a non-profit organization that monitors conflict around the world.
More than 80% of tungsten ore comes from China; by comparison, Africa produces only about 1% of the world's supply. And the DRC's share is even smaller: According to the US Geological Survey, it was only responsible for around 0.5% of the world's supply in 2009.
The first conflict-free tungsten smelter came about largely thanks to Intel, Lezhnev said. Facing an internal deadline to produce a fully conflict-free product by the end of 2013, the company pushed the tungsten industry to look at conflict-free sourcing programs. "It was a pretty heavy negotiation, but they successfully convinced them," Lezhnev said.
Due to anti-trust regulations, the CFSI website will not list a smelter or refiner unless there are at least three validated smelters for a mineral. CFSI has only validated one conflict-free tungsten smelter so far, an Asia-based factory owned by US company Global Tungsten and Powder Corp. As of 1 April, CFSI listed on its website 10 smelters that are either being audited or have agreed to be audited within the next two years. Observers expect at least some of these smelters to be certified within the next couple of months.
Tin

Tin is extracted from an ore called cassiterite, which is commonly found alongside coltan, the rock that produces tantalum. It is present in virtually all electronics, and roughly half of all tin mined today is used as a solder in circuit boards in products like mobile phones and laptops.
While the DRC is Africa's largest tin producer, it only accounts for some 2.5% of the world's tin supplies. Indonesia is the largest exporter, and the country's Bangka Island is considered the world's tin capital. But illegal mining hasdevastated the island, causing environmental damage and dangerous conditions for miners.
The explosion in demand for devices like smart phones has increased the demand for tin. In 2013, it was the best performing metal on the London Metal Exchange. Unfortunately, this popularity makes regulation difficult: Tin is probably the hardest mineral to trace in a company's supply chain because it is "so ubiquitous", Kraus said.
"It's hard to even tell what it's in," he said. "The average company wouldn't know it's there."
There are currently 11 certified tin smelters, located primarily in South America and Asia. Soon after the US passed legislation requiring companies to report whether they used metals from central Africa, the majority of companies pulled out of the Congo completely. The country's tin production dropped dramatically, from 12,000 tons in 2009 to 2900 tons in 2011.
Gold

Illicit profits from the 3T's (tantalum, tungsten and tin) have dropped by 65% since 2010, largely thanks to US legislation and pressure from technology companies. Rebel groups have since turned their attention to gold, which is now the most valuable mineral in the DRC, Lezhnev said. Thousands of unofficial mines operate throughout the country.
One of the main drivers of the illicit gold trade is the mineral's small size, which makes it is easy to smuggle across borders. Around $30,000 worth of gold can fit in a pocket and roughly $700,000 can be carried in a briefcase, according to a 2012 report from The Enough Project. By comparison, it would take 13 big trucks transporting 233 tons of tin ore to command the same value. According to the report, nearly four tons of gold were smuggled across the Congolese border to Uganda, Burundi and Tanzania in the first half of 2012. The illicit stocks were integrated in the local markets and then sold to international buyers.
A lot of the responsibility for gold now lies with the jewelry industry, which consumes about 50% of the world's gold, Lezhnev said. "It's really time for them to step up," he said.
According to Julie Schindall, director of communications and stakeholder engagement at the Electronic Industry Citizenship Coalition, which oversees the CFSI, convincing the jewelry industry to clean up its supply chain is a "long, ongoing conversation".
"We're all aware gold continues to be a problem. It's very much an area we continue to collaborate on," she said.
Lezhnev said that clamping down on the trade in conflict gold requires a two-pronged strategy: praising the companies leading the charge against illegal mining, and sanctioning illicit gold traders.
There are bright spots on the horizon. Of the 82 conflict-free smelters, 42 work with gold. And it's getting harder for unregulated gold producers to hide their wares. Professional services firm Ernst & Young recently discovered that a gold refiner in Dubai was hiding illegally mined gold from the Congo.
"The more that happens", Lezhnev said, "the better system we'll see getting put in place."
Subscriure's a:
Missatges (Atom)

