Impact of an external electron acceptor on phosphorus mobility between water and sediments.

Abstract:

:The present work assessed the impact of an external electron acceptor on phosphorus fluxes between water and sediment interface. Microcosm experiments simulating a sediment microbial fuel cell (SMFC) were carried out and phosphorus was extracted by an optimized combination of three methods. Despite the low voltage recorded, ~96 mV (SMFC with carbon paper anode) and ~146 mV (SMFC with stainless steel scourer anode), corresponding to a power density of 1.15 and 0.13 mW/m(2), it was enough to produce an increase in the amounts of metal bound phosphorus (14% vs 11%), Ca-bound phosphorus (26% vs 23%), and refractory phosphorus (33% vs 28%). These results indicate an important role of electroactive bacteria in the phosphorus cycling and open a new perspective for preventing metal bound phosphorus dissolution from sediments.

journal_name

Bioresour Technol

journal_title

Bioresource technology

authors

Martins G,Peixoto L,Teodorescu S,Parpot P,Nogueira R,Brito AG

doi

10.1016/j.biortech.2013.10.048

subject

Has Abstract

pub_date

2014-01-01 00:00:00

pages

419-23

eissn

0960-8524

issn

1873-2976

pii

S0960-8524(13)01628-3

journal_volume

151

pub_type

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