Mobilisation of toxic trace elements under various beach nourishments

Publication date

2017

Authors

Pit, Iris R.ISNI 0000000492915426
Dekker, S.C.ORCID 0000-0001-7764-2464ISNI 0000000397042727
Kanters, Tobias J.
Wassen, Martin J.ORCID 0000-0002-9735-2103ISNI 0000000392292815
Griffioen, J.ORCID 0000-0001-6307-0100ISNI 000000039033097X

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

To enhance protection and maintain wide beaches for recreation, beaches are replenished with sand: so-called beach nourishments. We compared four sites: two traditional beach nourishments, a mega beach nourishment and a reference without beach nourishment. Two sites contain calcareous-rich sand, whereas the other two sites have calcareous-poor sand. We aimed to understand hydrogeochemical processes to indicate factors critical for the mobility of trace elements at nourishments. We therefore analysed the chemical characteristics of sediment and pore water to ascertain the main drivers that mobilise toxic trace elements. With Dutch Quality Standards for soil and groundwater, the characteristics of sediment and pore water were compared to Target Values (the values at which there is a sustainable soil quality) and Intervention Values (the threshold above which the soil's functions are at risk). The pore water characteristics revealed that Target Values were regularly exceeded, especially for the nourishment sites and mainly for Mo (78%), Ni (24%), Cr (55%), and As (21%); Intervention Values for shallow groundwater were occasionally exceeded for As (2%), Cr (2%) and Zn (2%). The sediment characteristics did not exceed the Target Values and showed that trace elements were mainly present in the fine fraction of <150 μm. The oxidation of sulphide minerals such as pyrite resulted into the elevated concentration for all nourishment sites, especially when an unsaturated zone was present and influence of rainwater was apparent. To prevent trace metal mobility at a mega beach nourishment it is important to retain seawater influences and limit oxidation processes. In this respect, a shoreface nourishment is recommended rather than a mega beach nourishment with a thick unsaturated zone. Consequently, we conclude that whether a site is carbonate-rich or carbonate-poor is unimportant, as the influence of seawater will prevent decalcification, creating a low risk of mobilisation of trace elements.

Keywords

Pyrite oxidation, Freshening, Coastal management, Trace elements, Decalcification, SDG 14 - Life Below Water

Citation

Pit, I R, Dekker, S C, Kanters, T J, Wassen, M J & Griffioen, J 2017, 'Mobilisation of toxic trace elements under various beach nourishments', Environmental Pollution, vol. 231, pp. 1063-1074. https://doi.org/10.1016/j.envpol.2017.08.064