So lets take a look at the new "Green" VW battery being built in Canada. How Green is it? The battery chemistry is Lithium iron phosphate or lithium ferro-phosphate (LFP). It requires Manganese, phosphate, iron, and lithium. #GreenEnergy 🧵
The worlds largest manganese resources are located in two South African mines: South 32’s open-cut Mamatwan mine and Black Rock mine located in Kuruman, South Africa.
After mining, drilling, blasting, diesel fuel, electricity made from coal fired plants, water, floatation, chemicals and toxic tailings ponds. The next step is ..
Manganese is made by by heating the mineral pyrolusite (MnO2) in the presence of charcoal. Most manganese is still obtained from pyrolusite, although it is usually burned in a furnace with powdered aluminum or is treated with sulfuric acid to form manganese sulfate/electrolyzed.
Phosphate; Most phosphate is found in sedimentary rock. Only the purest 1% of that 5% is igneous anorthosite, devoid of heavy metals and low in sulphur content, and therefore capable of producing large amounts of LFP battery-grade PPA.
Energy intensive from mining to concentration. All necessary for the refinement and production of phosphoric acid to produce LFP cathode active material.
The thermal process, where elemental phosphorous is produced from phosphate rock, coke, and silica in an electrical resistance furnace is then oxidized and hydrated to form acid. Thermal-generated acid is highly purified.
Process emissions include gaseous fluorides in the form of hydrofluoric acid (HF) and silicon tetrafluoride (SiF4) fluoride, dust, cadmium (Cd), lead (Pb), zinc (Zn), and radionuclides.
Lithium is mined in two ways. Brine and solid ore. In solid ore it requires all the same mining and process as any mineral. Again sulfuric acid, diesel, toxic tailings ponds etc. Tailings ponds can cause groundwater contamination with metals including antimony and arsenic.
Brines require almost 2 million litres of water to produce one ton of lithium. The common environmental side effects are water loss, ground destabilisation, biodiversity loss, increased salinity of rivers, contaminated soil and toxic waste.
None of this includes the copper, steel, plastic's and manufacturing. Every step of the battery process requires smelting and millions of gallons of fossil fuels, including coal. So how green is it? It's not.
• • •
Missing some Tweet in this thread? You can try to
force a refresh
Looking for a job in mining? HD Mechanics. Starting wage 160K a year . 6 months a yr. work. Camp accommodation and meals supplied. Brand new, fully tooled service trucks with 8,000lb 30ft crane, heated toolboxes. All benefits.
Unbeatable flexibility - choose where you work, when you work and what you work on
Opportunities across Canada
Take your career overseas with opportunities in Australia, Africa & Asia. & the USA
Experience on HD off-road mine site equipment
Red Seal Heavy Equipment Technician (Off-Road)
Provincial trade certs (Off-Road) will be considered. Flights provided from all major Canadian airports. All PPE supplied including winter gear and boot allowance.
If you want to learn more about mining I can teach you more about mining. Hell I can teach you so much about mining all you will need is a helmet, cap light, a pair of boots, lunch bucket and you will be ready for your first day of on the job training. UG or OP.
The mining and metals sector is facing a crucial juncture with a shortage of skilled workers and retirees leaving the industry in droves. For instance, in May 2022, the US mining sector had 36,000 job vacancies, up from 27,000 the previous year.
With the push for so called "GreenEnergy" I personally believe the mining industry is about to explode. Good paying jobs if you're interested. Mining is a trade and if you work at it and become good you will never want for a job.
800 sq. ft. of solar panels weigh 1 ton. 2.5 lbs per sq. ft. 40-340 watt panels is what's needed to power a typical family home. This depends on sun zone, amount of snow cover etc. Approx. cost $10,000 dollars for panels. 10K divided by 20 yrs.=$500 per yr. #GreenEnergy 🧵
There is approx. 140 million housing units in the United States. 112000000000 sq. ft. of solar panels would be needed to power just the homes excluding all industry. 4017.44 sq. miles of panels. How much mining/manufacturing do we have to do to make that amount of solar panels?
280000000000 lbs or 140000000 tons. So we know in order to make one ton (t) MG-Si (Kato, et. al) (solar wafers for solar panels) it takes 2.4 tons of quartz, 550 kg of coal, 200kg oil coke, 600kg charcoal and 300 kg of woodchips. This excludes glass, plastic, copper and aluminum.
Mining tailing ponds are among the largest and most dangerous structures engineered by humanity. #GreenEnergy is expected to increase the demand for certain minerals 30- to 800-fold, which means a lot more toxic tailings ponds worldwide. 🧵
The world’s 29,000-35,000 existing active, inactive and abandoned tailings storage facilities contain approximately 223 billion tonnes (534 billion cubic meters) of tailings waste.
Every one million tonnes of mined mineral product generated requires physical and economic provision to also manage 4.9 million tonnes of waste ore, waste rock and tailings.
This is the Cerrejon coal mine in Colombia, it's the biggest open-cast coal mine in Latin America and one of the largest surface coal mining operations in the world. It is having detrimental impacts on the environment and on local communities. #GreenEnergy 🧵
It takes a great deal of this coal to make what? Solar wafers. In fact in order to make 1 ton of MG-Si (Kato, et. al) it takes 550 kg of this coal and for 1 ton of MG-Si (Globe) it takes 1.4 tonnes.
The Cerrejón open-pit mine in Columbia supplies “Blue Gem” coal, a primary source of carbon for
solar silicon smelters around the world.
Mining requires a lot of explosives. 300 holes, each containing 1 ton of anfo. The toxic dust from the explosion would settle miles away. This is just another aspect of what it takes to make #GreenEnergy But they wont talk about that.
Replacing hydrocarbons with green machines under current plans, never mind aspirations for far greater expansion, will vastly increase the mining of various critical minerals around the world.
A single electric car battery weighing 1,000 pounds requires extracting and processing some 500,000 pounds of materials. Averaged over a battery’s life, each mile of driving an electric car “consumes” five pounds of earth.