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Research and the problems of litter and medical wastes on the UK coastline.

Recent research has shown that recreational water and bathing beach quality are associated with injury, infection and personal well-being. Continued surveillance is essential to audit the environmental and associated health trends. In the Coastwatch UK project and since 1989, annual surveys each autumn have been undertaken during a two-week study period, into the extent of littering of the UK coastline. The Public Health Laboratory Service also collects data on the use of hepatitis B immunoglobulin. In these studies it is now possible to examine time trends. The findings are not reassuring. They help to justify present concern about the health effects of discarded litter and medical waste and fears that environmental degradation could lead to loss of income from tourism. In response, some health and local authorities have started public education programmes, supplying litter bins on or near bathing beaches, emptying them regularly and undertaking beach cleansing during the summer months. The UK government is also introducing new legislation that will require 6 mm fine mesh wire screens on all shore-based sewage outlets around the UK coastline. Continued monitoring is needed to assess the effectiveness of these interventions. The need for greater personal responsibility is particularly identified.

Environmental Health↗

Drifting blooms of the endemic filamentous brown alga Hincksia sordida at Noosa on the subtropical east Australian coast.

Since 2002, the usually uncommon endemic filamentous brown alga Hincksia sordida (Harvey) Silva (Ectocarpales, Phaeophyta) has formed nuisance blooms annually during spring/early summer at Main Beach, Noosa on the subtropical east Australian coast. The Hincksia bloom coincides with the normally intensive recreational use of the popular bathing beach by the local population and tourists. The alga forms dense accumulations in the surf zone at Main Beach, giving the seawater a distinct brown coloration and deterring swimmers from entering the water. Decomposing algae stranded by receding tides emit a nauseating sulphurous stench which hangs over the beach. The stranded algal biomass is removed from the beach by bulldozers. During blooms, the usually crowded Main Beach is deserted, bathers preferring to use the many unaffected beaches on the Sunshine Coast to the south of Main Beach. The bloom worsens with north-easterly winds and is cleared from Noosa by south easterly winds, observations which have prompted the untenable proposal by local authorities that the bloom is forming offshore of Fraser Island in the South Pacific Ocean. The Noosa River estuarine system/Laguna Bay is the more probable source of the bloom and the nutrient inputs into this system must be substantial to generate the high bloom biomass. Current mitigation procedures of removing the blooming alga off the beach with bulldozers treat the symptom, not the cause and are proving ineffective. Environmental management must be based on science and the Noosa bloom would benefit greatly from the accurate ecological data on which to base management options.

Australia↗

Nowcast modeling of Escherichia coli concentrations at multiple urban beaches of southern Lake Michigan.

Predictive modeling for Escherichia coli concentrations at effluent-dominated beaches may be a favorable alternative to current, routinely criticized monitoring standards. The ability to model numerous beaches simultaneously and provide real-time data decreases cost and effort associated with beach monitoring. In 2004, five Lake Michigan beaches and the nearby Little Calumet River outfall were monitored for E. coli 7 days a week; on nine occasions, samples were analyzed for coliphage to indicate a sewage source. Ambient lake, river, and weather conditions were measured or obtained from independent monitoring sources. Positive tests for coliphage analysis indicated sewage was present in the river and on bathing beaches following heavy rainfall. Models were developed separately for days with prevailing onshore and offshore winds due to the strong influence of wind direction in determining the river's impact on the beaches. Using regression modeling, it was determined that during onshore winds, E. coli could be adequately predicted using wave height, lake chlorophyll and turbidity, and river turbidity (R2 = 0.635, N = 94); model performance decreased for offshore winds using wave height, wave period, and precipitation (R2 = 0.320, N = 124). Variation was better explained at individual beaches. Overall, the models only failed to predict E. coli levels above the EPA closure limit (235 CFU/100 ml) on five of eleven occasions, indicating that the model is a more reliable alternative to the monitoring approach employed at most recreational beaches.

Bathing Beaches↗

Zoonotic protozoa: from land to sea.

Attention to worldwide pollution of the coastal marine environment has focused primarily on toxic algal blooms and pathogenic bacteria that multiply in nutrient-rich waters. However, massive but unseen amounts of feces from humans, their pets, and their domesticated animals are discharged, dumped, or carried in runoff, bringing encysted zoonotic protozoan parasites to estuaries and coastal waters. Here, they contaminate bathing beaches, are filtered and concentrated by shellfish eaten by humans and marine mammals, and infect a wide range of marine animal hosts, resulting in morbidity and mortality to some populations. This review addresses the extent of contamination and the animals affected by three genera of important zoonotic protozoa: Giardia, Cryptosporidium and Toxoplasma.

Animals↗

The pattern of organochlorines in mussels Mytilus edulis L. from the south west Baltic Sea.

The concentration of organochlorines (PCB, DDT and its metabolites, HCH isomers and HCB) were determined in mussel, Mytilus edulis, from the south west Baltic Sea. The harbor Kiel Innenförde showed the highest contamination with PCB (487 microg/kg dry weight), the Gelting bathing beach area the lowest contamination (38 microg/kg). The highest contamination with DDT was measured in Lübeck bay, which may be explained by the long term application of DDT in the former German Democratic Republic. Penta- and hexa-chlorinated PCB were selectively accumulated in Mytilus edulis whereas highly lipophilic PCB with more than seven chlorine atoms were found in negligible concentrations. The accumulation of these compounds in mussels is determined by equilibrium partitioning with ambient water.

Animals↗

Respiratory colonization with Pseudomonas putrefaciens after near-drowning in salt water.

Pseudomonas putrefaciens, a marine organism infrequently found in human culture material, was repeatedly isolated from the sputum of a patient with pneumonia during a three-week period following a salt-water drowning accident. Similar organisms were found in the water at the site of the accident in Boston, and at ocean bathing beaches on nearby Martha's Vineyard.

Drowning↗

Rapid seven-hour fecal coliform test.

A rapid 7-h fecal coliform (FC) test for the detection of FC in water has been developed. This membrane filter test utilizes a lightly buffered lactose-based medium (m-7-h FC medium) combined with a sensitive pH indicator system. FC colonies appeared yellow against a light purple background after incubation at 41.5 degrees C for 7 to 7.25 h. Comparison of FC test results showed that the mean verified FC count ratio (7-h FC count/24-h FC count) for surface water samples was 1.08. The mean FC count ratio (7-h FC count/24-h FC count) for unchlorinater wastewater ranged from 1.95 to 5.05. Verification of yellow FC colonies from m-7-h FC medium averaged 97%. Data from field tests on Lake Michigan bathing beach water samples showed that unverified 7-h FC counts averaged 96% of the 24-h FC counts. The 7-h FC test was found to be suitable for the examination of surface waters and unchlorinated sewage and could serve as an emergency test for detection of sewage or fecal contamination of potable water.

Culture Media↗

Detection of Legionella species in sewage and ocean water by polymerase chain reaction, direct fluorescent-antibody, and plate culture methods.

Legionella spp. are ubiquitous in most environmental water sources; however, sewage treatment plants have not been examined as potential environmental reservoirs for these bacteria. This study used polymerase chain reaction, direct fluorescent-antibody staining, and culture methods to examine raw and treated sewage, ocean-receiving waters, and nearshore coastal environments for the presence of Legionella pneumophila and other Legionella spp. The study concluded that Legionella spp. are present in all phases of sewage treatment and that population numbers do not significantly decline through the treatment process. Ocean-receiving waters located 5 miles offshore, where the treated sewage is discharged, were found to contain Legionella spp., but ocean water between the discharge site and coastal bathing beaches was negative. This suggests that the Legionella spp. from the ocean discharge site were not reaching the nearshore beach waters. A flood control channel and river that entered the ocean were found to contain Legionella spp., and a nearby beach swimming area was also found to be positive, suggesting that land runoff from the flood control channel and river were the source of the Legionella spp. in the beach water samples that tested positive.

Bacteriological Techniques↗

Ubiquity and persistence of Escherichia coli in a Midwestern coastal stream.

Dunes Creek, a small Lake Michigan coastal stream that drains sandy aquifers and wetlands of Indiana Dunes, has chronically elevated Escherichia coli levels along the bathing beach near its outfall. This study sought to understand the sources of E. coli in Dunes Creek's central branch. A systematic survey of random and fixed sampling points of water and sediment was conducted over 3 years. E. coli concentrations in Dunes Creek and beach water were significantly correlated. Weekly monitoring at 14 stations during 1999 and 2000 indicated chronic loading of E. coli throughout the stream. Significant correlations between E. coli numbers in stream water and stream sediment, submerged sediment and margin, and margin and 1 m from shore were found. Median E. coli counts were highest in stream sediments, followed by bank sediments, sediments along spring margins, stream water, and isolated pools; in forest soils, E. coli counts were more variable and relatively lower. Sediment moisture was significantly correlated with E. coli counts. Direct fecal input inadequately explains the widespread and consistent occurrence of E. coli in the Dunes Creek watershed; long-term survival or multiplication or both seem likely. The authors conclude that (i) E. coli is ubiquitous and persistent throughout the Dunes Creek basin, (ii) E. coli occurrence and distribution in riparian sediments help account for the continuous loading of the bacteria in Dunes Creek, and (iii) ditching of the stream, increased drainage, and subsequent loss of wetlands may account for the chronically high E. coli levels observed.

Colony Count, Microbial↗

Variation in fecal pollution indicators through tidal cycles in the Fraser River estuary.

Daily fluctuations in fecal pollution indicators in the Fraser River estuary were examined by sampling through 24 h at four sites; water levels, currents, and salinities were observed simultaneously. Fecal coliforms were measured on shipboard using the membrane filter technique, and coprostanol and cholesterol were extracted using hexane and analyzed by gas chromatography. Maximum concentrations of fecal sterols and coliforms occurred after high tide at the station upstream of major sewage outfalls and on the ebb or at low tide at the stations downstream of major sewage outfalls. Fecal coliform counts were highly correlated with coprostanol and cholesterol levels at sites near sewage treatment plants. Coprostanol was highly correlated with cholesterol except where concentrations approached detection limits. In receiving waters, fecal coliform counts but not sterol concentrations were reduced by chlorination of sewage treatment plant effluents during the summer months. We concluded that, dependent on the objectives of a future monitoring program, samples should be collected either randomly in time such that the seasonal or annual mean includes tidal variability or systematically during the ebb tide to assess contributions to bathing beaches and shellfish harvesting areas. Fecal sterols deserve consideration as potentials indicators of fecal contamination from chlorinated sewage effluents.

British Columbia↗

Holistic health care, Soviet style.

The information on health care in the USSR available in the literature is limited and the requests of U.S. tourists to visit Soviet hospitals are frequently denied by Intourist, the government tourist bureau. However, we were able to visit several facilities which are part of the Soviet sanatorium system. Here a naturalistic approach to holistic health is clearly evident. Healing Matsesta spring water baths, beach sun, Black Sea swimming, rest and recreation, in a resort setting, offer one approach to health restoration and/or maintenance and illness prevention.

Health Resorts↗

[Research, education and environmental health related to pollution in the Gulf].

At Italian-Russian International Conference on "Rôle of the University on ecological education and training", was illustrate six topics of 30 years of our scientific and didactic activity on Environmental Hygiene, here below summarized: I. At first time, sludges of biological treatment plants and domestic sewage were frequently utilized under bacteriological control as economical and ecological fertilizers of land and waters. At present such a custom is very rare owing the chemical pollution of sewage continuously increasing; but in some countries it is still in use, and is our opinion and experience that organic waste material must be reused as fertilizer of land, more and more devoid of humus and subject to erosion of winds and waters. Some treatment plants are shown, and related plankton pyramid's. II. Pilot sewage treatment plants are frequently used in our experiments and training, for study and control of the biological degradation of organic matter, for evaluate the disappearance rate of bacteria and viruses, for investigate the foric action and behaviour of chemical and radioactive pollutants, for quantify their accumulation in the sludges of sewage treatment plants, and so forth. Different pilot plants are used, located both in our laboratories both in industries; in nuclear power plant are tested at the same time 3 models of 3 different plants (biodiscs, activated sludges, biofiltering channels), working with prevalent algal growth. III. Many species of microorganisms (metazoa, protozoa, algae, fungi, bacteria, viruses and new species like Bdellovibrio) are present in aerobic sewage treatment plants (activated sludge, bacterial bed, biodiscs, lagooning, etc.); in anaerobic treatment (digesters) prevail only methane-producing bacteria. Some of these organisms are very abundant and very active as consumers of organic matter; others are characteristic indicators of well balanced purification or of bad purification owing acute variation of organic load or presence of toxic substances in sewage. Many strains are antibiotic-producing, or Vit. B12 producing; others explain a strong lytic activity or are neuraminidase-formers. Production of great amount of biofloculant polysaccharides useful on sedimentation of organic matter is enhanced by adding particular organic pollutants like distillery wastes and others. Sewage treatment plants are good means for scientific research of particular biota continuously available and for food microbiological training for students and technicians on pathogens present in treated and untreated sewage and in sludges. IV. Big fecal pollution of coastal waters is clearly dangerous because of bathing beaches, shellfish farming, bacterial aerosols, damage to marine biota, eutrofication, aesthetic problems.(ABSTRACT TRUNCATED AT 400 WORDS)

Biodegradation, Environmental↗