Berliner Boersenzeitung - Metal mining's carbon footprint far larger than thought: study

EUR -
AED 4.189623
AFN 75.859613
ALL 93.725503
AMD 416.913444
AOA 1046.691244
ARS 1685.85222
AUD 1.631279
AWG 2.053459
AZN 1.936001
BAM 1.956332
BBD 2.297425
BDT 140.788309
BHD 0.430217
BIF 3406.626956
BMD 1.14081
BND 1.473101
BOB 12.404375
BRL 5.79543
BSD 1.14071
BTN 110.21499
BWP 15.54423
BYN 3.288095
BYR 22359.884211
BZD 2.294124
CAD 1.607077
CDF 2576.521248
CHF 0.926795
CLF 0.027113
CLP 1066.997498
CNY 7.71878
CNH 7.728209
COP 3685.000183
CRC 517.540825
CUC 1.14081
CUP 30.231476
CVE 110.295012
CZK 24.169152
DJF 203.125271
DKK 7.475469
DOP 66.398067
DZD 151.876399
EGP 58.571458
ERN 17.112156
ETB 184.110697
FJD 2.534655
FKP 0.853108
GBP 0.853431
GEL 2.989404
GGP 0.853108
GHS 13.248605
GIP 0.853108
GMD 83.279142
GNF 10008.723412
GTQ 8.701368
GYD 238.644936
HKD 8.944387
HNL 30.547312
HRK 7.53539
HTG 149.140582
HUF 363.867758
IDR 20431.914603
ILS 3.495477
IMP 0.853108
INR 110.090088
IQD 1494.306607
IRR 1568813.967359
ISK 143.000918
JEP 0.853108
JMD 181.039261
JOD 0.808803
JPY 186.03823
KES 147.643818
KGS 99.764004
KHR 4608.253924
KMF 492.829823
KRW 1688.793022
KWD 0.353697
KYD 0.950559
KZT 533.295112
LAK 25803.021102
LBP 102147.294674
LKR 383.634388
LRD 206.46618
LSL 18.798915
LTL 3.368516
LVL 0.690065
LYD 7.319992
MAD 10.708914
MDL 20.058458
MGA 4867.324418
MKD 61.596761
MMK 2394.958199
MNT 4094.381569
MOP 9.212007
MRU 45.5694
MUR 53.949034
MVR 17.625327
MWK 1977.938205
MXN 19.874669
MYR 4.662503
MZN 72.896132
NAD 18.798915
NGN 1567.233817
NIO 41.981423
NOK 10.947696
NPR 176.343984
NZD 1.960711
OMR 0.438631
PAB 1.14071
PEN 3.880556
PGK 5.103389
PHP 70.484396
PKR 316.907432
PLN 4.32998
PYG 6913.881294
QAR 4.158532
RON 5.237686
RSD 117.397347
RUB 89.407847
RWF 1678.456715
SAR 4.292409
SBD 9.211661
SCR 15.256069
SDG 685.056025
SEK 11.077908
SGD 1.473049
SLE 27.778915
SOS 651.877378
SRD 43.022812
STD 23612.472385
STN 24.506668
SVC 9.980716
SZL 18.78111
THB 38.566811
TJS 10.551271
TMT 3.992836
TND 3.376719
TRY 53.865873
TTD 7.740106
TWD 37.018192
TZS 3011.737267
UAH 51.080299
UGX 4266.160839
USD 1.14081
UYU 45.772455
UZS 13746.740541
VES 839.990689
VND 30018.714958
VUV 136.278057
WST 3.128069
XAF 656.135537
XAG 0.019234
XAU 0.000277
XCD 3.083097
XCG 2.055759
XDR 0.815986
XOF 656.135537
XPF 119.331742
YER 272.140239
ZAR 18.792336
ZMK 10268.662676
ZMW 20.959703
ZWL 367.340489
  • AZN

    0.3000

    169.64

    +0.18%

  • NGG

    1.5650

    83.615

    +1.87%

  • BP

    0.6650

    43.425

    +1.53%

  • RIO

    1.9200

    92.47

    +2.08%

  • CMSC

    -0.0250

    21.97

    -0.11%

  • CMSD

    0.0000

    22.2

    0%

  • BCE

    0.1850

    21.835

    +0.85%

  • RBGPF

    0.0000

    67.35

    0%

  • BTI

    1.0300

    62.45

    +1.65%

  • VOD

    0.3500

    15.62

    +2.24%

  • GSK

    0.4700

    51.25

    +0.92%

  • RELX

    0.5000

    33.23

    +1.5%

  • JRI

    0.0450

    12.975

    +0.35%

  • BCC

    2.2100

    76.61

    +2.88%

  • RYCEF

    0.1300

    18.5

    +0.7%

Metal mining's carbon footprint far larger than thought: study
Metal mining's carbon footprint far larger than thought: study / Photo: Luke Bridgestock - University of St Andrews/AFP

Metal mining's carbon footprint far larger than thought: study

From building wind turbines to reinforcing power grids for rising demand from electric cars, transitioning from fossil fuels to greener economies will require a massive increase in metal extraction.

Text size:

But new research published in Environmental Science and Technology on Wednesday shows the carbon footprint linked to metal mining could be 10 times greater than previously thought, with major implications for the world's climate goals.

"We found an emission source that's not well considered in the mining industry for CO2, that is potentially very large in at least certain settings -- much larger than the well-accounted-for emission sources," senior author Luke Bridgestock of the University of St Andrews told AFP.

"We need to decarbonize the mining industry, and the only way to do that is if we know where the emissions are coming from and have tailored strategies of dealing with each of those emission sources," he added.

Metal mining is energy-intensive, and conventional estimates for its carbon footprint attribute most of its emissions to heavy equipment on-site, as well as diesel transport required to haul ore away.

- Hiding in plain sight -

Bridgestock and colleagues instead looked at acid mine drainage, a common side effect of mining that, despite being well understood, had never been formally quantified before this study.

Metal ores dug up during mining often contain sulfide minerals. When these sulfide minerals interact with oxygen-rich surface waters, they turn it acidic.

As that acidic water reacts with certain rocks -- limestone, for instance -- it releases carbon dioxide into the atmosphere.

Alternatively, the acidic water can flow out to the ocean where its reaction with seawater likewise releases carbon dioxide.

The team focused on the Iberian Pyrite Belt in southwest Spain, a copper-mining region with 82 active or historic mines that generate more acid mine drainage than anywhere else in the world.

By measuring the chemistry of rivers draining the mines, they quantified the extent of acid mine drainage and how much of the water was neutralized through mineral reactions that produce carbon dioxide. They also tracked changes to river water as it mixed with seawater.

Altogether, their results showed that acid mine drainage since industrial-scale mining began in the area in the 19th century had produced a similar amount of carbon dioxide as already known emissions -- meaning the true footprint to date is about double what was previously thought.

- Centuries of emissions -

But that is only part of the story.

Because metal sulfide minerals dug up during mining can take hundreds to thousands of years to fully react with surface water, they will keep generating emissions long after a mine's reserves are depleted.

By the researcher's calculations, that figure is seven to 165 tons of carbon dioxide per ton of copper produced, depending on the sulfide content of the metal ore and local geologic conditions.

The midpoint of that range is roughly ten times greater than conventional carbon footprint estimates.

The team is now testing whether a fast-dissolving mineral called olivine could be used to neutralize the acidic runoff without releasing carbon, potentially cutting emissions drastically.

Bridgestock said the next step is identifying which mining regions are most at risk, so mitigation efforts can be targeted where they matter most.

"Otherwise, we can't get to net zero," he said, "because you'll always have a bunch of emissions from metal mining from this process."

(K.Müller--BBZ)