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Sunday, September 6, 2015

MedicalConspiracies- Another mass die-off took its toll on an already endangered species as 60,000 animals mysteriously died


http://news.discovery.com/animals/what-killed-60000-antelope-in-4-days-150904.htm

Another mass die-off took its toll on an already endangered species as 60,000 animals mysteriously died earlier this summer. And we still don't know why, according to a recent article in Live Science.

Shutterstock

Saigas, a type of antelope known for their prominently shaped noses, have been dying at alarming rates this year. Though other species occasionally experience massive die-offs, this one is particularly worrisome, because there are only a few saiga herds left in the world: several in Kazakhstan, one in Russia and one in Mongolia.

Live Science recently interviewed geoecologist Steffen Zuther, who was in Kazakhstan studying a herd of 60,000 saigas, when the incident occurred. In just four days, the entire herd was gone.

Bacteria played a role in the recent saiga deaths, according to Live Science, but the exact cause is still unknown.

Massive die-offs have struck saigas before, such as one that took the lives of 12,000 last year, but this one was unprecedented.

"The extent of this die-off, and the speed it had, by spreading throughout the whole calving herd and killing all the animals, this has not been observed for any other species," Zuther told Live Science.

For now, there are still thousands of healthy saigas in the world, but they are still an endangered species — thankfully, scientists will continue to investigate the specific cause of saiga deaths. Hopefully, they'll find the answer soon.

Read the full Live Science article here.


MedicalConspiracies- Daniel C. Williams shoots baby cubs while cubs mother watched her babies being killed!

UPDATE: The Jefferson County District Attorney's Office filed charges against Daniel C. Williams on Thursday, including two felony counts and six misdemeanor counts. He could face up to 4.5 years in prison and significant fines.

A mother black bear thought she was taking her young cubs out to find some food. Instead, she watched them die.

Early Tuesday morning, the young bear family found some unsecured trash cans in Evergreen, Colorado, and began to rummage through them. They were spotted by the homeowner, Daniel C. Williams. Instead of leaving the bears alone or calling officials, Williams decided to scare them off.

He first fired two rounds of rubber buckshot at them, both of which missed. When his dog slipped outside, he fired a round of live ammunition at the cubs, hitting both of them at once and a neighbor's window.

One of the young cubs died instantly as his mother watched. The other was severely injured and had to be euthanized.

The frightened mother bear ran across the street and into a nearby tree. Traumatized by watching her cubs die, she clung to its branches for 15 hours as officials cordoned off the area to keep her safe and waited for her to come down.

Although the district attorney hasn't yet taken action, Williams is facing a number of charges including felony illegal discharge of a weapon, harassing wildlife with a dog and unlawful hunting.

Jefferson County Sheriff's Office

But while charges won't bring the little cubs back, the tragedy stands as a harsh reminder of the responsibilities humans need to take on when living near animals.

Surprisingly, unsecured trash cans are one of the biggest human risks to black bears. Once bears realize humans hand out food, they lose the desire to forage for themselves and spend more time around developed areas.

Of course, most homeowners don't shoot at bears who enter their property. But the more time bears spend around humans, the more likely it is that incidents like this will happen — or that wildlife officials will put a bear down as a "nuisance" animal.

It appears this homeowner didn't take the precaution of using bear-proof trash cans, which would have stopped the animals from lingering on his property, making the incident all the more senseless.

And while it might not seem like it, this mother bear actually lucked out — Colorado Parks and Wildlife and the local sheriff's department teamed up to ensure that she left the area safely. Many wildlife departments aren't so kind, especially when bears are in human neighborhoods.

Late last month, a black bear moseyed up a tree in a Washington state neighborhood. Instead of waiting for her to leave, officials decided it would take too long and shot four rounds into her, killing her.

While that bear's killing was condoned by local government, this mother and her two young cubs could still get justice. Tell the Jefferson County District Attorney's office to press charges against Williams.

__________________________________________________________________________________

This man needs more than a slap in the hand, and then to get a suspended sentence.
Tell the District Attorney what you think about Daniel C. Williams, demand Justice!   

http://jeffco.us/district-attorney/contact-da/

MedicalConspiracies- Monsanto Ordered to Pay $93 Million to Small Town for Poisoning Citizens | Minds

Champak Anand Thank you for your post!!!


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Subject: [Health_and_Healing] Monsanto Ordered to Pay $93 Million to Small Town for Poisoning Citizens | Minds
Date: Fri, 4 Sep 2015 23:17:26 -0700
From: Champak Anand swamichampak@gmail.com [Health_and_Healing] <Health_and_Healing@yahoogroups.com>
Reply-To: Health_and_Healing@yahoogroups.com





Monsanto Ordered to Pay $93 Million to Small Town for Poisoning Citizens



  • Public

July 25, 2014 • Page Views: 33,545+

Big wins can happen in small places. The West Virginia State Supreme Court finalized a big blow to the biotech giant Monsanto this month, finishing a settlement causing Monsanto to pay $93 million to the tiny town of Nitro, West Virginia for poisoning citizens with Agent Orange chemicals.

The settlement was approved last year, but details were worked out only weeks ago as to how the funds were to be spent.

The settlement will require Monsanto to do the following:

  • $9 million will be spent to clean dioxin contaminated dust from 4500 homes.
  • $21 million will be spent to test to see if people have been poisoned with dioxin.
  • Citizens will be monitored for such poisoning for 30 years, not just a few months.
  • An additional $63 million is to be allotted if additional tests for dioxin contamination testing is necessary.
  • Anyone who lived in the Nitro area between Jan. 1, 1948, and Sept. 3, 2010 will be tested for dioxin. Although they must show proof they lived in the area, they will be eligible for testing even if they no longer live in Nitro.
  • Former or present employees of Monsanto are not eligible for any of these benefits.
  • An office will be set up to organize testing for Nitro citizens. The registration of participants is to be overlooked by Charleston attorney Thomas Flaherty, who was appointed by the court.
  • Residents have a right to file individual suits against Monsanto if medical tests show they suffered physical harm due to dioxin exposure.

Monsanto Produced Toxic Chemicals in Nitro

Just how were Nitro citizens exposed to dioxin? Monsanto was producing the toxic herbicide Agent Orange in Nitro, and dioxin is a chemical byproduct of the substance. It is known to cause serious health conditions. The factory which produced Agent Orange was opened in Nitro in 1948 and remained in operation until 2004, even though usage of this herbicide in the past (in Vietnam and other Asian countries) was fatal to millions of citizens and the war veterans who were exposed to it.

"There is no doubt that during and after the war, many Vietnamese absorbed this very toxic material [dioxin]. It is our belief from toxicological research and epidemiologicalstudies from many countries that this dioxin probably resulted in significant health effects in Vietnam." – Arnold Schecter and John Constable

"It's been a real long haul," attorney Stuart Calwell told The Charleston Gazette. Calwell represented Nitro area residents in a class action suit that prompted Monsanto to make the settlement.

"The politics of dioxin has been bitterly debated since the Vietnam War, but … we know that there is a health issue there and hopefully people will get their houses cleaned and the risk will come to an end and those exposed in the past will have the benefit of keeping an eye on their health."

The people of Nitro still need to fill out a register to receive the benefits outlined in the settlement. Due to the pivotal nature of this landmark settlement, Nitro citizens need to participate as fully as possible to set a precedent for other class action suits that farmers and consumers of GMO foods around the world might wage against Monsanto in the future to finally take them down. If enough of us do it at once, then even their bloated coffers will finally be depleted, and we can enjoy a world without being poisoned to death.

While this case did not involve glyphosate, another deadly toxin used in Monsanto herbicides such as RoundUp, its time will come soon.



Original: http://naturalsociety.com/monsanto-ordered-pay-93-million-small-town-poisoned-herbicide/



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Tuesday, September 1, 2015

MedicalConspiracies- The 9 Deadliest Minerals We've Ever Mined


http://gizmodo.com/the-9-deadliest-minerals-weve-ever-mined-1638317799

The 9 Deadliest Minerals We've Ever Mined

121

Precious minerals make the modern world go 'round—they're used in everything from circuit boards to tableware. They're also some of the most toxic materials known to science, and excavating them has proved so dangerous over the years, some have been phased out of industrial production altogether.

Here are the nine most toxic minerals we've ever mined.


Cinnabar(HgS)

Image: JJ Harrison - Wiki

Mercury sulphide, more commonly known as Cinnabar, has been our primary source for elemental mercury since the earliest days of human civilization. Mercury has traditionally been used as a pigment for ceramics and tattoos, though in the modern age, it's been employed in a wide variety of scientific equipment like thermometers and barometers, as well as a number of heavy industrial applications like precious metal reclamation and chlorine production, not to mention the mercury switches that help modern electronics work.

However, when oxidized, this element will produce methyl mercury and dimethyl mercury, two toxic compounds that cause irreparable harm to the nervous systems of children. It is deadly in small concentrations and can be absorbed through the respiratory tract, intestines, or skin. Because of this, nearly all of the industries cited above have either already phased out its use or are in the process of doing so.


Pyrite (FeS2)

2

Image: CarlesMillan - Wiki

Both sulphur and sulphuric acid are both used extensively throughout industry. Sulphur can be found in everything from matches and tires to fungicides and fumigants while sulphuric acid is a vital component of many industrial processes from pigments to explosives. And at one time, Pyrite, a compound mineral formed from iron and sulphur, was the only place to get them.

This lead to extensive pyrite mining efforts, which in turn lead to devastating environmental damage as the sulphide mine tailings acidified groundwater and nearby streams. Plus, pyrite has a nasty habit of spontaneously combusting when it's mixed into coal seams and exposed to air, releasing highly toxic metals like Arsenic into the atmosphere as it oxidizes. This is why many coal mines will spray limestone powder onto newly excavated coal seams—it slows the ore's exothermic oxidation reaction enough to prevent it from exploding.

Pyrite is no longer commercially mined—the realization that sulphur can easily be collected as a byproduct of natural gas and oil processing put an end to that. Today it is rarely excavated other than as specimen pieces.


Fluorite (CaF2)

Image: CarlesMillan - Wiki

This gorgeous green gemstone is called Fluorite. Composed of calcium fluoride, it's commonly found in veins of other ores like iron, coal, and copper. The stone can be used as a smelting flux, though it's more often seen in jewelry and the lenses of telescopes. And when mixed with sulphuric acid, fluorite produces hydrogen fluoride, an important industrial chemical precursor.

However, fluorite can be quite dangerous to both those who handle it regularly and those who simply happen to live near a flourite mine. Fluorite contains fluorine, a soluble mineral that readily leaches into groundwater supplies and can be absorbed by the lungs if ground into dust or burned in a coal-fired stove.

Once fluorine is in the body, it causes skeletal fluorosis—a painful disease that weakens bones and damages joints. Many rural communities throughout India, China and the rest of Southeast Asia have been beset by outbreaks of the disease due to people drinking contaminated water, as is the case in India, or inhaling the mineral as a fine particulate, as is the case in China. An estimated 10 million people are thought to be afflicted by it in China's Guizhou province alone.


Quartz (SiO2)

3

Image: JJ Harrison - Wiki

From optics and electronics to abrasives and fire starters, quartz is both the second most common mineral in the Earth's crust and the first most widely used mineral by humanity. In fact, its value as a firestarter (quartz produces a long-lived spark when struck against iron) is thought to be the impetus for mankind's earliest mining activity. Today, piezoelectric quartz crystals are a ubiquitous component in radios and electronic watches.

Just don't grind it up and inhale it—that is unless you want a case of silicosis. This respiratory disease is characterized by swollen lungs and lymph nodes which makes breathing difficult. Normally, this only occurs after about 20 years or so of exposure, however a subset of those afflicted may see symptoms in as little as 5 to 15 years. And if you grab a big handful of quartz dust and go all Scarface on that pile, you can cause acute silicosis whereupon your lungs will fill with fluid and you will drown in your own juices.

It may also very well just give you lung cancer. Since this disease is closely associated with specific industries like mining, abrasives, and glass manufacturing, OSHA has implemented strict guidelines dictating that workers wear fumigators to limit their silica intake.


Galena (PbS)

Image: Rob Lavinsky - iRocks.com

Galena is where we get our lead. The Romans loved lead—they used it in everything from pipes and flux to paints and tablewares—and we still rely on it today: lead is often found in batteries and bullets, high energy shielding (such as X-ray blankets and nuclear reactor enclosures), formerly as an additive to paints and gasoline, and as a storage solution for corrosive chemicals. But, come on, it's lead.

It's not as bad as mercury, which will kill you immediately outright, but lead doesn't get flushed out of your system. It accumulates over the years, eventually reaching toxic levels. Once that happens both you and your kids pay the price, as lead toxicity is carcinogenic to you and is teratogenic (causing severe birth defects) to your offspring.


Phenacite(BeSiO4)

Image: Rob Lavinsky - iRocks.com

Phenacite is mined both as a gemstone and for its valuable beryllium content. Beryllium was once a precursor for many ceramic materials, until people figured out that inhaling Beryllium dust caused berylliosis—aka chronic beryllium disease. It's like silicosis but much more severe and also chronic.

You don't recover from CBD simply by minimizing your berrylium exposure. Once you have it, you have it for life. Basically what happens is the lungs become hyper-sensitive to berrylium, which causes an allergic reaction wherein the lungs from little nodules called granulomas. These granulomas make breathing extremely difficult and can go on to instigate diseases like tuberculosis.


Erionite Ca3K2Na2[Al10Si26O72].30H2O (Z = 1) (I swear that's a real chemical formula!)

Image: Matteo Chinellato - Wiki

Erionite is a member of the zeolite family, a class of fibrous silicate minerals often referred to as molecular sieves thanks to their handy ability to selectively filter out (through absorption) specific molecules from both the atmosphere and liquids. Often found in volcanic ash, erionite was often used to as a catalyst for doping noble metals used for hydrocarbon cracking and as a fertilizer component.

It looks a lot like asbestos minerals and harms humans much in the same way: mesothelioma. It's primarily an industry-specific disease—or at least it was, until we realized that it caused super-cancer and stopped mining the stuff in the late 1980s.


Hydroxyapatite (Ca5(PO4)3(OH))

4

Image: American Museum of Natural History

The phosphorous in your garden fertilizer and fluoride in your tap water very likely came from a rock like this, called Apatite. These phosphate minerals come in three varieties, each respectively containing elevated levels of OH, F, or Cl ions—the Hydroxyapatite version being a major component of your tooth enamel and the Fluorapatite version constituting what's dumped into civic water supplies to prevent cavities. And while having strong teeth and bones is a good thing, exposure to Hydroxyapatite (either by mining or processing it) will deposit those same minerals on your heart valves, effectively petrifying them.


Crocidolite (Na2(Fe2+,Mg)3Fe3+2Si8O22(OH)2)

Image: Raimond Spekking - Wiki

Say hello to the world's most dangerous material: Crocidolite, better known as blue asbestos. It was once widely used for a variety of commercial and industrial applications thanks to its strong, fire-resistant, and flexible nature—from ceiling tiles and roofing materials to flooring and thermal insulation.

But then, in 1964, Dr Christopher Wagner made the connection between asbestos and mesothelioma and the market for these products disappeared overnight. Unfortunately, cleaning up asbestos-laden buildings throughout the country has taken far longer and continues to this day.


MedicalConspiracies- Stone cold - the 11 most dangerous minerals


http://www.mining-technology.com/features/featurethe-11-most-dangerous-minerals-4256873/


Stone cold - the 11 most dangerous minerals


2 May 2014


A number of minerals pose serious hazards to human beings and the environment. Mining-technology.com, using research compiled by Dr. Gordon Brown of Stanford University, lists the eleven minerals with the most catastrophic consequences for human health.


Crocidolite (blue asbestos)

Crocidolite, also known as blue asbestos, is considered by many to be the world's most dangerous mineral. The exposure of this fibrous mineral causes fatal diseases including lung and mesothelial cancer.

Crocidolite, like any other types of asbestos, was used to make commercial and industrial products including ceiling tiles, cement sheets and insulation boards. It was, however, the least desired due to its poor heat-resistance properties.

Crocidolite asbestos mining occurred mostly in Western Australia, Bolivia and South Africa in the past, but production has ceased due to the serious health risks posed.

In one of the worst incidents the town of Wittenoom in the Pilbara region of Western Australia where crocidolite mining was carried out between 1943 and 1966, was almost destroyed after more than 1,000 miners and residents died of mesothelioma and other diseases caused by mining the mineral.

Hydroxyapatite

Hydroxyapatite or Hydroxylapatite, one of the Apatite groups of phosphate minerals and the major component of tooth enamel and bone mineral, poses a direct threat to health by creating deposits in heart valves and arteries causing blockages.

Apatite is mostly used in the production of phosphorus mineral fertilisers as well as in the chemical and pharmaceutical industries. Commercial scale apatite mining has been carried out in Idaho, Tennessee and Wyoming in the US as well as in North Africa and Russia, where an entire town, Apatity in Murmansk Oblast, is named after it.

The International Mineralogical Association (IMA) has renamed the mineral as Apatite-(CaOH). The other two variants of Apatite are Apatite-(CaF) [Fluorapatite] and Apatite-(CaCl) [Chlorapatite].

Erionite

Exposure to Erionite, a naturally occurring fibrous mineral belonging to a group of silicate minerals called zeolites, causes diseases such as mesothelioma, a rare form of cancer.

The carcinogenic mineral is found in volcanic ash that has been altered by weathering and ground water and has caused several reported deaths in the Central Anatolia Region of Turkey. Errionite deposits have been identified in at least 12 U.S. states including Arizona, Nevada, Oregon and Utah.

Although Errionite mining ceased in the late 1980s, exposure to the deadly mineral can occur during the production and mining of other zeolites which are still in commercial use for their ability to selectively adsorb molecules from air or liquids.

Phenacite

Beryllium, a toxic element contained in Phenacite can induce lung cancer and severe lung inflammatory diseases including berylliosis and chemical pneumonitis.

Beryllium was traditionally used as a base material in ceramics, special types of glass and in fluorescent tubes, but its use is currently restricted to making metals and alloys for use in computer hardware, telecommunication equipment, windows for X-ray tubes, gyroscopes, missiles, and rockets.

Phenacite is mined both in crystal and granite forms, and has also been traditionally used as a gemstone. The mines near Yekaterinburg in Russia's Urals region produced phenacite in large crystal forms, while the mineral is also found in the Pikes Peak region of Colorado, USA, Minas Gerais in Brazil, as well as in Madagascar, Myanmar, Norway and Zimbabwe.

K-Feldspar

Potassium feldspar or K-Feldspar, which is a group of potassium aluminium silicate minerals including orthoclase, microcline and adularia, contains small quantities of radioactive uranium that forms radon gas, a major cause of lung cancer.

K-Feldspar is also a major source of lead emissions in the environment and is used to manufacture glass and ceramic products, artificial teeth and scouring powders, while some varieties of the mineral are also used as gemstones.

Large granite bodies in China, Italy, Thailand, USA, Brazil, Colombia, France, Germany, India, Mexico, Norway and Spain currently produce K-Feldspar.

Chrysotile (white asbestos)

Chronic exposure to Chrysotile (white asbestos), the most commonly found asbestos on, leads to progressive lung diseases causing stiffening of the lung tissue.
Significant deposits of Chrysotile asbestos are found in more than 60 countries including Russia, which holds the world's biggest Chrysotile deposit. Mining of this hazardous asbestos variety is banned in more than 50 countries.

Russia is the biggest Chrysotile mining country followed by China, which is the biggest consumer of Chrysotile. Canada closed its last two Chrysotile mines in Quebec including the famous Jeffrey mine in 2011. The mineral is still used in countries including the USA to produce vehicle braking systems, asphaltic roof coatings and gaskets. Brazil, India and other developing countries also use this asbestos mostly as roofing material.

Quartz

Silicosis, lung cancer, kidney disease and immunological problems are caused by exposure to a fine particulate form of Quartz, which is the natural form of silicon dioxide and the second most abundant mineral in the Earth's continental crust.

Quartz occurs in different forms including silica sands, crystal, stones and Tripoli, and has commercial application in hydraulic fracturing in the petroleum industry and in the production of electronics and optical products. Most of the commercial quartz is cultured from seed crystal known as lascas, while natural quartz crystals are used as gemstones.

United States and Brazil are the leading producers of natural quartz crystals, while Canada, Brazil, Germany, Madagascar, China, South Africa and Venezuela are among the leading producers of quartz lascas.

Fluorite

Fluorine, a relatively soluble mineral contained in Fluorite can lead to a severe bone disease called skeletal fluorosis. Fluorite, also known as fluorspar, mainly occurs in large veins in a variety of ores and crystals including iron, coal, and copper. More than 10 million people in the Guizhou province of China are affected with fluorosis due to coal mining in the region.

Fluorite is used in ornaments and lapidary works, in the flux for smelting, in the production of certain glasses, enamels, and microscopic and telescopic lenses.
China is currently the leading producer of Fluorite, followed by Mexico, Mongolia and Russia. South Africa currently holds the biggest Fluorite deposits after Mexico and China.

Pyrite

Pyrite, which is a sulphide mineral composed of iron and sulphur, is a major contaminator of ground water and streams due to acid mine drainage from sulphide mine tailings. Oxidation of pyrite releases toxic metals and metalloids such as Arsenic (As), which is poisonous for humans. Arsenic-containing pyrite in coals still poses a severe health problem for millions of people in the Guizhou province in China.

Sulphur and sulphuric acid used to be produced from Pyrite ore but are currently obtained as by-products of natural gas and crude oil processing leaving very limited economic value to Pyrite so the mineral is currently mined only for specimen purposes.

Galena

Galena, a lead sulphide mineral and the primary ore of lead, is a relatively insoluble mineral which, if released into the environment, can cripple nervous system development in foetuses and children and cause cardiovascular disease in adults.
Galena is often found in well crystallised forms and contains lead as a major component, while some ores also contain small amounts of silver.

Cerrusite and anglesite, the two by-products of the weathering of Galena, in particular increase the amount of lead into going into an environment posing greater health risks than Galena itself.

Galena deposits are found in the USA, UK, British Columbia, Germany and Australia, and is declared as a state mineral for two US states Missouri and Wisconsin, a former mining town in Kansas is also named after Galena. Silver mining from Galena ore occurs in Colorado, Idaho, Utah and Montana.

Cinnabar

Cinnabar, or mercury sulphide, the naturally occurring form of mercury, is a very insoluble mineral which, when oxidised, produces toxic compounds such as methyl mercury and dimethyl mercury - compounds that cause developmental and nervous system disorders in foetuses and children.

Cinnabar, a mineral bright red or brownish-red in colour, occurs in granular and crystal forms usually in areas near volcanic activity and hot springs. Cinnabar was used to produce bright orange pigment on ceramics, murals and tattoos in ancient times, but mining has, however, been significantly reduced during the recent years due to decline in global demand for mercury. Cinnabar mining is currently mostly confined to Spain, China, Kyrgyzstan and Algeria.