@article {728, title = {Performance of a pilot-scale packed bed reactor for perchlorate reduction using a sulfur oxidizing bacterial consortium.}, journal = {Biotechnol Bioeng}, volume = {109}, year = {2012}, month = {2012 Mar}, pages = {637-46}, abstract = {A novel sulfur-utilizing perchlorate reducing bacterial consortium successfully treated perchlorate (ClO$_{4}$$^{-}$) in prior batch and bench-scale packed bed reactor (PBR) studies. This study examined the scale up of this process for treatment of water from a ClO $_{4}$$^{-}$ and RDX contaminated aquifer in Cape Cod Massachusetts. A pilot-scale upflow PBR (\~{}250-L) was constructed with elemental sulfur and crushed oyster shell packing media. The reactor was inoculated with sulfur oxidizing ClO$_{4}$$^{-}$ reducing cultures enriched from a wastewater seed. Sodium sulfite provided a good method of dissolved oxygen removal in batch cultures, but was found to promote the growth of bacteria that carry out sulfur disproportionation and sulfate reduction, which inhibited ClO$_{4}$$^{-}$ reduction in the pilot system. After terminating sulfite addition, the PBR successfully removed 96\% of the influent ClO$_{4}$$^{-}$ in the groundwater at an empty bed contact time (EBCT) of 12 h (effluent ClO$_{4}$$^{-}$ of 4.2 {\textmu}g L(-1)). Simultaneous ClO$_{4}$$^{-}$ and NO$_{3}$$^{-}$ reduction was observed in the lower half of the reactor before reactions shifted to sulfur disproportionation and sulfate reduction. Analyses of water quality profiles were supported by molecular analysis, which showed distinct groupings of ClO$_{4}$$^{-}$ and NO$_{3}$$^{-}$ degrading organisms at the inlet of the PBR, while sulfur disproportionation was the primary biological process occurring in the top potion of the reactor.}, keywords = {Bioreactors, Cluster Analysis, DNA, Bacterial, DNA, Ribosomal, Massachusetts, Microbial Consortia, Molecular Sequence Data, Oxidation-Reduction, Perchloric Acid, Phylogeny, RNA, Ribosomal, 16S, Sequence Analysis, DNA, Sulfites, Sulfur, Water Microbiology, Water Pollutants, Chemical, Water Purification}, issn = {1097-0290}, doi = {10.1002/bit.24354}, author = {Boles, Amber R and Conneely, Teresa and McKeever, Robert and Nixon, Paul and N{\"u}sslein, Klaus R and Ergas, Sarina J} }