Zürcher Nachrichten - Scientists find simple, safe method to destroy 'forever chemicals'

EUR -
AED 4.330578
AFN 75.468553
ALL 95.370831
AMD 434.26718
ANG 2.110613
AOA 1082.496254
ARS 1649.279971
AUD 1.625347
AWG 2.125489
AZN 2.009303
BAM 1.955202
BBD 2.368676
BDT 144.305864
BGN 1.967008
BHD 0.444064
BIF 3500.4294
BMD 1.179189
BND 1.491244
BOB 8.126515
BRL 5.795828
BSD 1.17604
BTN 111.057033
BWP 15.789171
BYN 3.323484
BYR 23112.111202
BZD 2.365277
CAD 1.609181
CDF 2670.864298
CHF 0.915942
CLF 0.026704
CLP 1050.508704
CNY 8.019372
CNH 8.014083
COP 4394.855841
CRC 540.634648
CUC 1.179189
CUP 31.248518
CVE 110.231286
CZK 24.334582
DJF 209.425947
DKK 7.476537
DOP 69.938609
DZD 156.038276
EGP 62.195977
ERN 17.68784
ETB 183.631137
FJD 2.574218
FKP 0.86512
GBP 0.864667
GEL 3.154379
GGP 0.86512
GHS 13.247948
GIP 0.86512
GMD 86.674958
GNF 10318.844
GTQ 8.979254
GYD 246.064742
HKD 9.236241
HNL 31.264438
HRK 7.538916
HTG 153.972908
HUF 353.981307
IDR 20491.303919
ILS 3.421187
IMP 0.86512
INR 111.345548
IQD 1540.628801
IRR 1546506.829043
ISK 143.873347
JEP 0.86512
JMD 185.35331
JOD 0.836092
JPY 184.70237
KES 151.883547
KGS 103.085327
KHR 4718.556838
KMF 492.90156
KPW 1061.270109
KRW 1723.751231
KWD 0.36279
KYD 0.9801
KZT 543.543758
LAK 25791.111834
LBP 105315.489444
LKR 378.634195
LRD 215.803997
LSL 19.293799
LTL 3.48184
LVL 0.71328
LYD 7.436725
MAD 10.75591
MDL 20.110849
MGA 4912.497521
MKD 61.616155
MMK 2475.640798
MNT 4221.622084
MOP 9.4824
MRU 47.006623
MUR 55.210091
MVR 18.163925
MWK 2038.876413
MXN 20.468414
MYR 4.623647
MZN 75.362436
NAD 19.293799
NGN 1609.593864
NIO 43.276764
NOK 10.859513
NPR 177.691653
NZD 1.984332
OMR 0.453611
PAB 1.17604
PEN 4.066156
PGK 5.193412
PHP 71.358689
PKR 327.765953
PLN 4.239717
PYG 7183.802847
QAR 4.298685
RON 5.21945
RSD 117.334114
RUB 87.543025
RWF 1724.072695
SAR 4.44258
SBD 9.456429
SCR 17.539736
SDG 708.107537
SEK 10.86706
SGD 1.503353
SHP 0.880384
SLE 29.067455
SLL 24727.006491
SOS 672.094441
SRD 44.100547
STD 24406.83871
STN 24.492509
SVC 10.290853
SYP 130.395965
SZL 19.281103
THB 37.973479
TJS 10.972544
TMT 4.127163
TND 3.415955
TOP 2.839205
TRY 53.473293
TTD 7.970562
TWD 36.927538
TZS 3063.662984
UAH 51.6595
UGX 4406.652233
USD 1.179189
UYU 46.905654
UZS 14265.63688
VES 588.693738
VND 31022.113342
VUV 138.276182
WST 3.19218
XAF 655.756438
XAG 0.014675
XAU 0.00025
XCD 3.186819
XCG 2.119552
XDR 0.815551
XOF 655.756438
XPF 119.331742
YER 281.384102
ZAR 19.327341
ZMK 10614.123377
ZMW 22.390152
ZWL 379.698489
  • RBGPF

    0.7000

    63.61

    +1.1%

  • GSK

    -0.0900

    50.41

    -0.18%

  • AZN

    0.3300

    182.85

    +0.18%

  • BTI

    0.2000

    58.28

    +0.34%

  • RIO

    2.2700

    105.38

    +2.15%

  • BP

    -0.4700

    43.34

    -1.08%

  • BCE

    -0.4300

    24.14

    -1.78%

  • CMSC

    0.1400

    23.11

    +0.61%

  • RYCEF

    -0.4100

    16.37

    -2.5%

  • BCC

    -2.0900

    70.67

    -2.96%

  • CMSD

    0.1140

    23.534

    +0.48%

  • NGG

    0.9800

    86.89

    +1.13%

  • JRI

    0.0000

    13.15

    0%

  • RELX

    0.0759

    33.58

    +0.23%

  • VOD

    0.5100

    16.2

    +3.15%

Scientists find simple, safe method to destroy 'forever chemicals'
Scientists find simple, safe method to destroy 'forever chemicals' / Photo: Karim SAHIB - AFP/File

Scientists find simple, safe method to destroy 'forever chemicals'

"Forever chemicals" used in daily items like nonstick pans have long been linked to serious health issues –- a result of their toxicity and extreme resistance to being broken down as waste products.

Text size:

Chemists in the United States and China on Thursday said they had finally found a breakthrough method to degrade these polluting compounds, referred to as PFAS, using relatively low temperatures and common reagents.

Their results were published in the journal Science, potentially offering a solution to a longstanding source of harm to the environment, livestock and humans.

"It really is why I do science -- so that I can have a positive impact on the world," senior author William Dichtel of Northwestern University told reporters during a news conference.

PFAS, or per- and polyfluoroalkyl substances, were first developed in the 1940s and are now found in a variety of products, including nonstick pans, water-resistant textiles, and fire suppression foams.

Over time, the pollutants have accumulated in the environment, entering the air, soil, groundwater and lakes and rivers as a result of industrial processes and from leaching through landfills.

A study published last week by Stockholm University scientists found rainwater everywhere on the planet is unsafe to drink because of PFAS contamination.

Chronic exposure to even low levels has been linked to liver damage, high cholesterol, reduced immune responses, low birth weights, and several kinds of cancer.

Although PFAS chemicals can be filtered out of water, there are few good solutions for how to dispose of them once they have been removed.

- 10 down, thousands to go -

Current methods to destroy PFAS require harsh treatments, such as incineration at extremely high temperatures or irradiating them ultrasonic waves.

PFAS' indestructability comes from their carbon-flouride bonds, one of the strongest types of bonds in organic chemistry.

Fluorine is the most electronegative element and wants to gain electrons, while carbon is keen to share them.

PFAS molecules contain long chains of these bonds, but the research team was able to identify a glaring weakness common to a certain class of PFAS.

At one end of the molecule, there is a group of charged oxygen atoms which can be targeted using a common solvent and reagent at mild temperatures of 80-120 degrees Celsius, decapitating the head group and leaving behind a reactive tail.

"Once that happens, that provides access to previously unrecognized pathways that cause the entire molecule to fall apart in a cascade of complex reactions," said Dichtel, ultimately making benign end products.

A second part of the study involved using powerful computational methods to map out the quantum mechanics behind the chemical reactions the team performed to destroy the molecules.

The new knowledge could eventually guide further improvements to the method.

The current study focused on 10 PFAS chemicals including a major pollutant called GenX, which for example has contaminated the Cape Fear River in North Carolina.

But it represents just the tip of the iceberg, since the US Environmental Protection Agency has identified more than 12,000 PFAS chemicals.

"There are other classes that don't have the same Achilles’ heel, but each one will have its own weakness," said Dichtel in a statement.

"If we can identify it, then we know how to activate it to destroy it."

T.Furrer--NZN