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each <strong>of</strong> the eight compartments were analyses for E. Coli, total coliforms, Pseudomonas spp.,<br />

Salmonella spp., Vibrio spp., and Shigella spp.<br />

Table A3. 2: Pathogen indicator organisms detected in the influent and effluent <strong>of</strong> the <strong>pilot</strong>-<strong>scale</strong><br />

ABR. Data are single measurements or averages <strong>of</strong> two measurements (coliforms<br />

only) on grab samples obtained on 23 April 2001 and 3 July 2001 during the 20 h T-<br />

HRT operating period under PLC control.<br />

Pathogen indicator organism Influent Effluent<br />

Total coliforms (cfu./100 mℓ) > 4 000 000 46 500<br />

E. coli (cfu./100 mℓ) > 4 000 000 3 500<br />

Total Ascaris spp. (/100 mℓ) 232 298<br />

Viable Ascaris spp.(/100 mℓ) 83 5<br />

Pseudomonas spp. (/100 mℓ) 0 1<br />

Salmonella spp.(/100 m/ℓ) 0 0<br />

Vibrio spp. (/100 mℓ) 0 0<br />

Shigella spp. (/100 mℓ) 0 0<br />

All analyses were performed by Durban Metro Wastewater (now eThekwini Water Services)<br />

Laboratories in Prior Road, Durban. Table 4.1 presents average results for the two sampling days. The<br />

small sample numbers (in most cases, one <strong>analysis</strong> per pathogen indicator organism) meant that<br />

descriptive and comparative statistical calculations could not be performed. Comparison between<br />

single influent and effluent measurements show that a reduction <strong>of</strong> at least 2 log units was obtained for<br />

coliforms, and viable Ascaris spp. reduced from 83 viable eggs per 100 mℓ to 5 viable eggs per<br />

100 mℓ representing a removal <strong>of</strong> 94%.<br />

197

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