HR: 0830h
AN: B21B-0701 [PDF]
TI: Protection of Organic Matter from Enzyme Degradation by Mineral Mesopores
AU: * Zimmerman, A R
EM: azimmer@geosc.psu.edu
AF: Department of Geosciences, The Pennsylvania State University, University Park, PA 16802
AU: Chorover, J D
EM: chorover@ag.arizona.edu
AF: Department of Soil, Water and Environmental Science, The University of Arizona, Tuscon, AZ 85721-0038
AU: Brantley, S L
EM: brantley@essc.psu.edu
AF: Department of Geosciences, The Pennsylvania State University, University Park, PA 16802
AB:
Mineral mesopores (2-50 nm diameter) may sequester organic matter (natural and pollutant) and protect it from microbial and
fungal enzymatic degradation in soils and sediments. Synthetic mesoporous alumina and silica minerals with uniform pore
sizes and shapes were used to test the role of mesopores in protecting organic matter from enzymatic degradation. A model
humic compound, L-3-4-dihydroxyphenylalanine (L-DOPA), was sorbed to the internal surfaces of mesoporous alumina (8.2 nm
diameter pores) and mesoporous silica (3.4 nm diameter pores) as well as to the external surfaces of nonporous alumina and
silica analogues. A fungal derived enzyme, laccase, was added to these sorbate-sorbent pairs in aqueous solution and
activity was monitored by oxygen consumption. Though enzyme activity was suppressed in both cases by mineral-enzyme
interaction (enzyme inhibition likely due to adsorption of the enzyme), both the rate and total extent of enzyme-mediated
degradation of mesopore-sorbed L-DOPA was 3-40 times lower than that of the externally-sorbed analogue. These results
provide, for the first time, direct evidence for the viability of the proposed mesopore protection mechanism for the
sequestration and preservation of sedimentary organic matter and organic contaminants. Mesopore adsorption/desorption
phenomena may also help explain the slow degradation of organic contaminants in soil and sediment and may prove useful as
delivery vehicles for organic compounds to agricultural, medical or environmental systems.
DE: 1055 Organic geochemistry
DE: 1615 Biogeochemical processes (4805)
DE: 4825 Geochemistry
DE: 4850 Organic marine chemistry
SC: Biogeosciences [B]
MN: 2003 Fall Meeting