View allAll Photos Tagged lithium

The graph shows the import structure of six selected metals – iron, aluminium, copper, tin, platinum and lithium – and the links between certain resource-rich countries and the EU. Highly relevant imports do not only affect the ores themselves, but also other products in the value chain: metals, alloys, intermediates and finished products.

 

The analysis of the six selected metals carried out as part of the project Strategic Dialogue on Sus-tainable Raw Materials for Europe (STRADE) showed South America's outstanding role in European imports of lithium and the two bulk metals iron and copper. These imports are linked to a number of opportunities and challenges – such as job creation, socio-economic development from mining – but also challenges such as tailings dam bursts, water scarcity and local conflicts due to environmental pressure and socio-economic problems. The primary production of other metals is associated e.g. with violent social conflicts (platinum from South Africa), maritime ecosystem degradation by offshore mining (tin from Indonesia) and missing links to socio-economic development (bauxite from Guinea). Processed goods are often imported from other regions. China and Russia in particular play an important role for the European manufacturing industry.

 

The contents shown in the infographic are based on data from UN COMTRADE, International Alu-minium Institute, BIObyDeloitte, European Copper Institute, USGS, BGS and Oeko-Institut's own assumptions.

 

Detailed information in the policy paper "EU raw material import flows – acknowledging non-EU environmental and social footprints" (2/2017): stradeproject.eu/fileadmin/user_upload/pdf/STRADEPolBrf_0...

 

Further information on the STRADE Project and current publications at: stradeproject.eu

The nation needs real breakthroughs in basic research before we can produce large batteries that are affordable, efficient, safe and reliable enough for widespread use. To meet that goal, we must bridge a technology gap in energy storage, as shown here.

 

The dashed line here is a slope of 1, so this shows how we have not achieved theoretical limits on specific energy yet. Importantly, this graph also shows that, even if you improve lithium ion to its theoretical maximum, you only move the Li-ion point slightly to the right on this curve. Granted the scale is logarithmic, but this illustrates how far we are away from octane.

the drive motors are brushless with lithium polymer batteries

Teardown of a very cheap and common lithium ion charger that can be purchased on ebay from many different sellers. You can get them with different "cradles" which suits different camera batteries. This one is for NP-95 Fuji battery. Charges a single cell 3.7V battery. Voltage and current regulation is done by a Artschip MC34063 based switching regulator chip in buck step-down configuration. Constant current set by the 0.27R current sense resistor, and output is set to 4.2V. It also has a 12V input for car charging. Single sided PCB. The one i purchased had a pad cracked off a through hole capacitor, and I had to fix it before using.

If you want to share my work, please contact me! And after having my agreement, quote me, it will be nice!

Si vous voulez partager mes photos, veuillez me contacter, et me citer si vous avez mon accord, ça serait sympa!

Teardown of a very cheap and common lithium ion charger that can be purchased on ebay from many different sellers. You can get them with different "cradles" which suits different camera batteries. This one is for NP-95 Fuji battery. Charges a single cell 3.7V battery. Voltage and current regulation is done by a Artschip MC34063 based switching regulator chip in buck step-down configuration. Constant current set by the 0.27R current sense resistor, and output is set to 4.2V. It also has a 12V input for car charging. Single sided PCB. The one i purchased had a pad cracked off a through hole capacitor, and I had to fix it before using.

I wanna stay in love with my sorrow.

My Black Friday purchase to use with my K100DSuper

Detalhes sobre a formação, exploração, maiores reservas e principais usos do lítio.

 

Editoria de Mundo da Gazeta do Povo (Curitiba-PR). Publicado em novembro de 2009.

 

Infografia: Fabiano de Miranda e Lyn Jannuzzi

Texto: Osny Tavares

lithium collodion negative, Iodine intensification, 4x5" (10X12), Petzval 250 mm f3,6, 3 min exposure artificial lamp. 18X24 cm, gelatine silver printed with enlarger, the negative has been cropped to 6x8,5 cm. Rollei FB paper.

lithium in batteries

 

name: Tok Yong Fa

admin num: 074288L

Class: MB0704

 

Looking dangerous...

Small piece of lithium reacting readily with water. The reaction of compact metal is much slower than with finely divided metal and the hydrogen formed does not ignite. Lithium hydroxide is formed in solution, which turns phenolphthalein magenta - it is alkaline.

 

Toledo, Ohio Police Department Ford Crown Victoria at Lithium Innovations plant fire 3/2/17 in Toledo, Ohio

An international team of scientists – including several researchers from the U.S. Department of Energy’s (DOE) Argonne National Laboratory – have discovered an anode battery material with superfast charging and stable operation over many thousands of cycles.

 

This image shows the change in composition and structure as the starting material is heated and water is expelled to form a new layered structure (LS), then the desired hydrated nanostructure (HN), then beyond the desired structure all the way to a completely dehydrated nanostructure (DN).

 

This material is a water-bearing compound, “lithium titanate hydrate,” which Argonne developed in collaboration with researchers from Tsinghua University in Beijing and the Massachusetts Institute of Technology.

 

Find out more »

 

To learn about collaborating with Argonne, contact partners@anl.gov.

 

Credit: Nature Communications and study authors. Licensed here (creativecommons.org/licenses/...). Image was resized.

WOMMA Webinar

Wednesday, July 21, 2010

11:00 AM - 12:00 PM CDT

Register Here: WOMMA dot ORG forward slash Events

 

What are the secrets to spreading news about your services like wild fire? How can your products become a global phenomenon? What research supports word of mouth marketing methodologies & claims?

 

Please join WOMMA and Lithium Technologies for a revealing discussion about recent findings from rich data on word of mouth interactions. Learn three things you can do right away, & three mistakes to avoid.

 

This 60-minute webinar will cover practical knowledge on:

* The power of influencers: Why incentivizing brand advocates within your customer community increases the effectiveness of word-of-mouth marketing programs by as much as 50 percent

* First-mover advantage: How establishing a customer community swiftly earns you significant competitive advantage within your industry

* Sales acceleration with high ROI: Which mechanisms maximize your returns in the form of qualified leads & sales from your interactive web investments

 

Dr. Michael Wu, Principal Scientist of Analytics & Phil Soffer, VP of Product Marketing, will share findings from a recent research collaboration with:

* Barak Libai of MIT Sloan School of Management & Recanati Graduate School of Business, Tel Aviv University

* Eitan Muller of New York University’s Stern School of Business & the Recanati School

* Renana Peres of The Wharton School, University of Pennsylvania & the Hebrew University of Jerusalem.

 

This research quantifies the impact of customer networks on word-of-mouth marketing campaigns.

 

Speakers:

Michael Wu - Principal Scientist of Analytics, Lithium Technologies

Michael received his Ph.D. from UC Berkeley’s Biophysics graduate program. Currently, he applies similar data-driven methodologies to investigate & understand the complex dynamics within online communities as well as the greater social web.

 

Phil Soffer – VP Product Marketing, Lithium Technologies

Phil is responsible for product strategy, go-to-market activities & messaging. Philip graduated summa cum laude from Cornell & holds a Master’s from the UC Berkeley.

This is a rechargeable laptop battery made of lithium-ion (Li-ion).

 

Chan Ka Chun Patrick

070618A / FS0703

Lithium is a very reactive, and btw the lightest metal.

It's the energizer bunny...get it? Ok it didn't turn out that great as the others...but Lithium is a tough element to illustrate!

A paracord globe knot wrist lanyard with clip, for attachment to an edc(everyday carry) pocket knife, flashlight, multitool, keyring, or whatnot... stormdrane.blogspot.com/2015/10/revisiting-globe-knots.html

Mineração de lítio no Salar del Hombre Muerto, Argentina; por evaporação de água de poços de salmoura / Argentina´s Salar del Hombre Muerto lithium mining by brine well water evaporation.

 

+ info:

 

1) Características / Features

 

2) "Pronósticos apuntan a que la demanda de litio va a casi quintuplicarse para el año 2025" by Bloomberg

 

3) About Portofino

 

#cbers4 #litio #lithium #salar #argentina #lithiumion #battery #atacama #brine #mining #mineração #portofino #catamarca #fmclithium #tsx

 

Imagem / Image CBERS4 PAN10m Salar del Hombre Muerto, Argentina

Coordenadas do centro da imagem / Image center: 25°28'36.7"S 67°05'51.9"W

Data / Date: 09-10-2018 / 2018-09-10

RGB 234 (falsa cor / false color)

Cena / Scene: 175 / 128

Autor / Author: Oton Barros (DSR/OBT/INPE)

 

Imagem em HD / HD Image

 

Visite-nos / Visit us: www.dsr.inpe.br

 

Lithium metal being burned in air. Filmed in high speed and cut to keep it short.

September 25, 2019 -Daniel Simmons, Assistant Secretary for Energy Efficiency and Renewable Energy (EERE) and the Battery Prize Team announced the 15 winners of Phase 1 of the DOE Battery Recycling Prize, a $67,000 prize that aims to reclaim and recycle critical materials (e.g., cobalt and lithium) from lithium-based battery technology. For a total of $1 million in prizes, these projects focus on cost-effective recycling processes to recover as much economic value as possible from spent lithium-ion batteries. The announcement was made at the National Renewable Energy Laboratory. (Photo by Dennis Schroeder / NREL)

I'm in the midst of doing a 365 doll project. I don't actually have 365 dolls but the basic intention is to photograph a different doll each day, in addition to a different doll's photo every day I will also post up some pertinent details about them.

____________________________________________________________________

Model- Pullip- Eos

Name- Lithium

Mods- None

Bio- Lithium was obsessed with the idea of flight since she was a little girl. She was quite disappointed when the reality set in that humans are not really capable of flight. Instead of giving up on her childish fantasy she decided she would make her dreams a reality through the use of mad science. After years of studying the logistics and countless failures Lithium finally made herself a set of wings capable of flight. Her wings are not really capable of sustained flight but she is diligently working on improving their design. The Comprachico later stole her wing design and modified it then used Valkyrie as an unwillingly test subject for them.

+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+_+

_+_+_+_

I bought a second Eos a while back because my first one's stock died within days of my deboxing her, the wings broke a bunch of stuff fell off the hat and her goggle/monocle thing broke and I barely touched her. I was so heartbroken that her stock was so subpar I bought a second one hoping for better luck, I just deboxed her today her monocle thing has already become detached T_T.

   

ALL RIGHTS RESERVED

All material in my gallery MAY NOT be reproduced, copied, edited, published, transmitted or uploaded in any way without my permission

 

Model : Silvia "Perfidia" Aiello

Mua : Valeria Spiga

 

Photo, Lights, Editing by : Giacomo macis

 

strobist info :

250DI II on camera Right

All triggered with cactus wireless system

Powered by Innovatronix

   

Follow me on facebook : www.facebook.com/pages/Giacomo-Macis/178256760711#!/pages...

Lithium nanoparticles formed on a surface of a lithium conducting glass ceramic.

Lithium images and lyrics taken from Nirvana's Nevermind and Evanescence's The Open Door albums.

 

I have provided a translation of some of the tags I use on Flickr which you may find interesting www.flickr.com/photos/flights_of_fancy/6973610225/

Lithium-air batteries are particularly appealing to researchers because they have a significantly higher theoretical capacity than conventional lithium-ion batteries. Read more »

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