analyzing the rare earth elements (ree’s) and trace metals

2
Page 17 / WISEST Special Issue / Volume 2 / DOI:10.29173/aar54 albertaacademicreview.com Analyzing the Rare Earth Elements (REE’s) and Trace Metals in Tailings Rachel Butler 1 , Deepak Pudasainee 1 , Md Khan 1 , Rajender Gupta 1 1 Department of Chemical and Materials Engineering, University of Alberta Key words: bitumen, froth treatment tailings, Gupta lab, rare earth elements, trace metals, oil sands, TGA, alberta, chemical engineering Abstract In the process of producing bitumen from oil sand, a by-product called tailings is produced. Tailings are a mixture of clay, fine particles, water, solvent and residual bitumen. The industry’s current approach is to leave them in tailings ponds; however, that may cause environmental impacts to the ecosystems around them due in part to the toxic trace metals found in them. Research has shown that there are also valuable rare Earth elements (REEs) present in tailings. REEs found in tailings include Cerium, Neodymium, Lanthanum etc. Iron, Titanium, and Zirconium are not considered REEs but are still valuable enough to be extracted. The objective of this research was to determine the concentration of REEs and trace metals in bitumen froth treatment tailings (FTT). Our research team used acid digestion and inductively coupled plasma mass spectroscopy (ICP-MS) to measure the concentration of REEs and trace metals in several samples of FTT ash. We learned that Cerium was the most prevalent REE in tailings samples (>1000ppm), followed by Neodymium and Lanthanum. Zirconium was the most prevalent trace metal found in this tailings sample (>1000ppm), followed closely by Vanadium. Knowing the exact concentration of harmful trace metals in tailings will allow us to determine the extent of tailings ponds environmental effect and toxicity. Collecting and selling expensive metals found in tailings could be the start of a new precious metals economy in Alberta, which would provide new investment opportunities and jobs. This would also encourage corporations to invest in finding new ways to extract these precious metals, resulting in more purified tailings and less tailings overall going into tailings ponds. Cite as: Butler R., Pudasainee D., Khan M., Gupta R. 2019. Analyzing the rare earth elements (REEs) and trace metals in tailings. Alberta Academic Review, Vol 2 (2) 17-18, WISEST Special Issue (non peer-reviewed), DOI 10.29173/aar54. ISSN 2561-5327 (print) ISSN 2561-5335 (online)

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Page 1: Analyzing the Rare Earth Elements (REE’s) and Trace Metals

Page

17

/ WIS

EST

Spec

ial I

ssue

/ Vo

lum

e 2

/ DO

I:10.

2917

3/aa

r54

albertaacademicreview.com

Analyzing the Rare Earth Elements (REE’s) and Trace Metals in TailingsRachel Butler1, Deepak Pudasainee1, Md Khan1, Rajender Gupta1

1Department of Chemical and Materials Engineering, University of Alberta

Key words:bitumen, froth treatment tailings, Gupta lab, rare earth elements, trace metals, oil sands, TGA, alberta, chemical engineering

Abstract

In the process of producing bitumen from oil sand, a by-product called tailings is produced. Tailings are a mixture of clay, fine particles, water, solvent and residual bitumen. The industry’s current approach is to leave them in tailings ponds; however, that may cause environmental impacts to the ecosystems around them due in part to the toxic trace metals found in them. Research has shown that there are also valuable rare Earth elements (REEs) present in tailings. REEs found in tailings include Cerium, Neodymium, Lanthanum etc. Iron, Titanium, and Zirconium are not considered REEs but are still valuable enough to be extracted. The objective of this research was to determine the concentration of REEs and trace metals in bitumen froth treatment tailings (FTT). Our research team used acid digestion and inductively coupled plasma mass spectroscopy (ICP-MS) to measure the concentration of REEs and trace metals in several samples of FTT ash. We learned that Cerium was the most prevalent REE in tailings samples (>1000ppm), followed by Neodymium and Lanthanum. Zirconium was the most prevalent trace metal found in this tailings sample (>1000ppm), followed closely by Vanadium. Knowing the exact concentration of harmful trace metals in tailings will allow us to determine the extent of tailings ponds environmental effect and toxicity. Collecting and selling expensive metals found in tailings could be the start of a new precious metals economy in Alberta, which would provide new investment opportunities and jobs. This would also encourage corporations to invest in finding new ways to extract these precious metals, resulting in more purified tailings and less tailings overall going into tailings ponds.

Cite as: Butler R., Pudasainee D., Khan M., Gupta R. 2019. Analyzing the rare earth elements (REEs) and trace metals in tailings. Alberta Academic Review, Vol 2 (2) 17-18, WISEST Special Issue (non peer-reviewed), DOI 10.29173/aar54.

ISSN 2561-5327 (print)ISSN 2561-5335 (online)

Page 2: Analyzing the Rare Earth Elements (REE’s) and Trace Metals

Page

18

/ WIS

EST

Spec

ial I

ssue

/ V

olum

e 2

/ DO

I: 10

.291

73/a

ar54

albertaacademicreview.com

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e st

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dige

stio

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Figu

re 8

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ce E

lem

ents

in F

TT a

sh.

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conc

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nted

in lo

gsc

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Figu

re 3

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rmal

beh

avio

r of F

TT in

ther

mo

grav

imet

ric a

naly

zer

(TG

A)

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licat

ion

•K

now

ing

the

exac

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ncen

tratio

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ful

trace

met

als

inta

iling

sw

illal

low

rese

arch

ers

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from

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coul

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star

tofa

new

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ious

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als

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omy

inA

lber

ta,

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chw

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ide

new

inve

stm

ent

oppo

rtuni

ties

and

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.

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ctiv

ely

coup

led

plas

ma

mas

ssp

ectro

scop

yan

alys

is (I

CP

-MS

)

Figu

re 4

.The

rmo

grav

imet

rican

alyz

er

Figu

re7.

FTT

Ash

Figu

re 6

.Drie

dFT

T

Butler et al., 2019