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Tooth abrasion in workers exposed to noise in the Montenegrin textile industry.

A cross-sectional study was performed on 225 textile workers from a wool production company in Montenegro to test the hypothesis of a relationship between exposure to intense industrial noise and tooth abrasion. The group exposed to intense noise (104 dB (A) Leq) consisted of 111 weavers (82 males and 29 females), while the control group (81 dB (A) Leq) consisted of 114 blue-collar workers (32 males and 82 females) in preparation departments. A specialist in dental prosthetics clinically examined all the subjects and additionally analyzed tooth statuses on hard plaster models. Gender, age, socioeconomic status and tooth brushing habits of workers were controlled as confounding factors. Significantly high adjusted odds ratios for tooth abrasion of 3.74 (95% CI = 1.42-7.85; p < 0.01) were found among female workers exposed to intense noise in comparison with the control group. The analysis of the subclass of male workers with severe tooth abrasion (grades III-IV) revealed significantly high adjusted odds ratios for tooth abrasion of 5.48 (95% CI = 1.76-14.50; p < 0.01) among the noise exposed group compared to the control group. This study suggests that extremely high levels of occupational noise might be related to tooth abrasion in exposed textile workers.

Adult↗

Respiratory disease in cotton textile workers in the People's Republic of China. II. Pulmonary function results.

Pulmonary function tests were performed pre and post workshift on 887 textile workers with at least two years of employment in two cotton mills and one silk mill in Shanghai, the People's Republic of China. Environmental sampling was performed with vertical elutriators, and pulmonary function was performed with standardized techniques. Cotton textile workers were found to have greater across-shift decrements in forced expiratory volume in 1 s (FEV1.0) than silk workers. Increasing duration of exposure resulted in increasing acute decrements in FEV1.0, although significant acute decrements were found in workers with less than five years of exposure. The acute changes in FEV 1.0 were noted in both symptomatic and asymptomatic cotton workers, though the difference between the across-shift change in FEV1.0 (delta FEV1.0%) of the byssinotics and nonbyssinotics increased as work duration increased. There was no difference in preshift FEV1.0 between the cotton and silk workers, but several selection factors likely influenced the observations.

Adult↗

Healthcare textile services: infection control.

The purpose of this technical document is to acquaint managers with the basic infection control practices that are generally considered to be appropriate for a textile care services operation in a health care facility. An infection control program that provides the information needed by employees to conduct operational activities in a safe manner is essential to avoid the contamination of personnel. This document discusses the responsibilities of various staff members in the department, basic infection control practices, the physical control of organisms, appropriate housekeeping as well as engineering and maintenance and employee health issues relevant to the textile care department.

Cross Infection↗

Considerations on the changes of certain immunologic parameters in occupational allergic bronchial asthma due to textile fibers.

The changes of some immunologic parameters such as IgG, IgA and IgM, the C3 complement, the circulating immune complexes and alpha 1--antitrypsin were investigated in 75 patients with occupational allergic bronchial asthma to textile fibers as compared with 50 apparently healthy controls with no occupational exposure to textile fibers. It was observed that IgG and IgA decreased significantly while IgM increased. Likewise C3 decreased in all patients with occupational allergic bronchial asthma (OABA) as compared with the controls an CIC increased significantly. The determinations carried out demonstrated a parallelism of action in the immune response.

Adult↗

Increased toxicity of textile effluents by a chlorination process using sodium hypochlorite.

Chlorinated textile effluents were tested for their toxicity using different bioassays. These assays were the Microtox assay, daphnia (Daphnia similis) 48-hr survival test, medaka embryo 14-day and juvenile 96-hr survival tests, and tilapia (Oreochromis mossambicus) juvenile 96-hr survival test. By comparing the results of toxicity tests on water samples collected at the instream prior to the chlorination process and at the outlet of the wastewater treatment facility, we found that wastewater toxicity was obviously increased by chlorination using NaOCl as the oxidant, as evidenced by the different bioassays used. Because no significant difference was observed in water chemistry, such as pH, DO, and conductivity, the induced-toxicity may be partially attributable to residue chlorine or other chlorinated compounds generated by chlorination. Future studies are warranted to identify the cause of the increase in the textile wastewater toxicity.

Animals↗

Partial oxidation of reactive dyestuffs and synthetic textile dye-bath by the O3 and O3/H2O2 processes.

Ozonation and O3/H2O2 oxidation of reactive dyestuffs and simulated textile dye-bath were investigated. Effects of reaction pH, initial dye concentration, H2O2 concentration and assisting chemicals on treatment efficiency were examined. We found considerable improvement in COD and colour removal rates at pH = 11, that was almost the actual pH of the prepared textile wastewater, whereas in particular increasing the initial dyestuff concentration had an adverse effect upon oxidation rates. Removal of colour, COD and TOC were found to be fairly sensitive to the introduction of soda that is frequently applied as an auxiliary chemical during the reactive dyeing process. The addition of H2O2 had negligible effect on COD removal efficiency and decolorization rate compared to ozonation alone at different pH values. Accordingly it can be inferred that the theoretically expected effect of OH radical scavengers (e.g. carbonate, chloride) present in the synthetic dye-bath as well as introduced radical formation promoters (e.g. H2O2, OH-) were probably hidden due to the complexity of the synthetic wastewater matrix. Biodegradability of the ozonated dye-bath was accelerated by a factor of three corresponding to a 233% relative enhancement. The inhibition of the oxygen uptake rate decreased from 91% to 75% within only 5 min treatment time.

Coloring Agents↗

Pilot scale nanofiltration membrane separation for waste management in textile industry.

This paper presents the pilot scale membrane separation studies on dyehouse effluents of textile industry. Nanofiltration (NF) membranes which have 2 m2 of surface area were evaluated for membrane fouling on permeate flux and their suitability in separating COD, color and conductivity in relation to operating pressure and feed concentration from textile industry dyehouse effluents. Successive batch runs demonstrated that any serious membrane fouling was not experienced for NF membrane tested in treating this type of wastewater. The permeate flux was found to increase significantly with operating pressure. Flux decreased with increasing recovery rate. The overall removal efficiencies of COD, color and conductivity were found as greater than 97%. COD was lower than 10 mg/l at 12 bar pressures. Permeate COD was also increased with increasing recovery and COD was 30 mg/l with recovery of 80%. Almost complete color removal was achieved with nanofiltration membrane. Color value was also decreased from 500 Pt-Co to 10 Pt-Co unit. This significant reduction in color and COD makes possible the recycle of the permeate in the dyehouse. Permeate conductivity was decreasing with increasing pressure and retention of conductivity increases with increasing pressures. This phenomenon is expected from the analysis of conductivity mass transport model. Economical analysis have been done and the total estimated cost will be 0.81$/m3 based on 1000 m3/day of and this value is very economical for Istanbul City due to increasing industrial water supply tariffs.

Coloring Agents↗

Effect of textile industrial effluent on tree plantation and soil chemistry.

A field study was conducted at Arid Forest Research Institute to study the effect of textile industrial effluent on the growth of forest trees and associated soil properties. The effluent has high pH, electrical conductivity (EC), sodium adsorption ratio (SAR) and residual sodium carbonate (RSC) whereas the bivalent cations were in traces. Eight months old seedlings of Acacia nilotica, Acacia tortilis, Albizia lebbeck, Azadirachta indica, Parkinsonia aculeata and Prosopis juliflora were planted in July 1993. Various treatment regimes followed were; irrigation with effluent only (W1), effluent mixed with canal water in 1:1 ratio (W2), irrigation with gypsum treated effluent (W3), gypsum treated soil irrigated with effluent (W4) and wood ash treated soil irrigated with effluent (W5). Treatment regime W5 was found the best where plants attained (mean of six species) 173 cm height, 138 cm crown diameter and 9.2 cm collar girth at the age of 28 months. The poorest growth was observed under treatment regime of W3. The growth of the species varied significantly and the maximum growth was recorded for P. juliflora (188 cm height, 198 cm crown diameter and 10.0 cm collar girth). The minimum growth was recorded for A. lebbeck. Irrigation with effluent resulted in increase in percent organic matter as well as in EC. In most of the cases there were no changes in soil pH except in W5 where it was due to the effect of wood ash. Addition of wood ash influenced plant growth. These results suggest that tree species studied (except A. lebbeck) can be established successfully using textile industrial wastewater in arid region.

Humans↗

The effect of pre-ozonation on the H2O2/UV-C treatment of raw and biologically pre-treated textile industry wastewater.

Advanced chemical oxidation of raw and biologically pretreated wastewater by ozonation, H2O2/UV-C treatment and the successive combination of ozonation and H2O2/UV-C oxidation was investigated. For the raw textile wastewater, the application of successive O3 + H2O2/UV-C oxidation enhanced the COD and TOC removal efficiency of the H2O2 (50 mM)/UV-C process by a factor of 13 and 4, respectively. In case of the biotreated textile wastewater, the preliminary ozonation step increased COD removal of the H2O2 (10 mM)/UV-C treatment system from 15% to 62%, and TOC removal from 0% to 34%, but did not appear to be more effective than applying a single ozonation process in terms of TOC abatement rates. Enhancement of the biodegradability was more pronounced for the biologically pre-treated wastewater with a two fold average increase in the BOD5/COD ratio for the studied chemical oxidation systems.

Biodegradation, Environmental↗

Ozonation application in activated sludge systems for a textile mill effluent.

The study investigates the effect of partial ozonation of textile wastewater, both at the inlet (pre-ozonation) and the outlet (post-ozonation) of biological treatment, for the optimization of COD and color removals, both typical polluting parameters associated with the textile industry. Pre-ozonation provides at optimum contact time of 15 minutes 85% color removal, but only 19% COD reduction. Removal of the soluble inert COD fraction remains at 7%, indicating selective preference of ozone for simpler compounds. Post-ozonation is much more effective on the breakdown of refractory organic compounds and on color removal efficiency. Ozonation after biological treatment results in almost complete color removal and a 14% soluble inert COD reduction. The polishing effect of post-ozonation also proves quite attractive from an economical standpoint, involving approximately 50% of the ozone utilization at the same ozone flux rate and contact time, yet providing a lower soluble residual COD level.

Bioreactors↗

[Malignant tumor incidence in employees of the Alytus textile factory (1978-1997)].

UNLABELLED: The purpose of this study was to evaluate cancer incidence in the large cotton-manufacturing factory in Lithuania. Altogether 10,198 workers employed at least 1 year in 1969-1997 were included in the cohort and followed during the period 1978/01/01-1997/12/31. National cancer rates were used to calculate the expected number of cancer cases. The overall cancer risk for men was slightly higher than that in the general population (standardized incidence rate (SIR) 1.15, 95% confidence interval (95% CI) 0.98-1.34). A significant increase in the incidence of esophagus (11 observed cases, SIR 3.76, 95% CI 1.88-6.67) and slightly increased of lung (42 observed cases, SIR 1.26, 95% CI 0.91-1.70) cancer became evident. None of the cancer risk showed statistically significant excess cancer incidence in the textile-processing (spinning and weaving) departments (SIR 0.98). In the women cohort the level of the general incidence was very close to expected, standardized incidence rates (SIR) being 0.99 (95% CI 0.88-1.13). However, there was a significant increase in the number of cases of gall bladder (6 observed, SIR 3.19, 95% CI 1.17-6.95). The analysis of the results among textile-processing (spinning and weaving departments) workers indicated the elevated risk of breast cancer (44 observed cases, SIR 1.49, 95% CI 1.08-2.0) and cervical cancer (24 observed cases, SIR 1.68, 95% CI 1.08-2.50). The number of lung cancer cases in this group was a higher, but statistically not significant (5 observed cases, SIR 1.53, 95% CI 0.5-3.58). Increased SIR values were observed for > or = 10 years since the first exposure for all cancers, cervix uteri, ovary and kidney. CONCLUSIONS: The overall cancer risk for men cohort was slightly higher than that in the general population. There was a significant increase in the number of cancer of the esophagus. The overall excess risk in women cohort was only for gall bladder, but for spinners and weavers the elevated risk was for cervix uteri and breast cancer. After 10 years of employment the excess risk was already for all cancers, cervix uteri, ovary and kidney malignant tumors.

Adult↗

Feasibility study to upgrade a textile wastewater treatment plant by a hollow fibre membrane bioreactor for effluent reuse.

A pilot plant membrane bioreactor has been tested in parallel with a full-scale activated sludge wastewater treatment plant fed on the wastewater from a textile factory. The possibility to upgrade the final effluent for internal reuse was investigated. The pilot and full-scale plants are located in a textile factory (Boselli & C., Olgiate Comasco, North Italy) which manufactures and finishes polyester fabric. The activated sludge wastewater treatment plant (WWTP) is an extended aeration system. The MBR pilot plant is a ZW-10 bench hollow fibre module (membrane surface area: 0.93 m2) submerged in a 200 L tank. Performance and operation of the membrane bioreactor (MBR) were evaluated in terms of permeate characteristics and variability (COD, colour, total N and P, microbiological counts), of membrane specific flux (l m(-2) h(-1) bar(-1)) and other operational parameters (sludge growth and yield).

Bioreactors↗

[Follow-up of respiratory symptoms and pulmonary ventilatory function in jute textile workers].

The acute and chronic effects of exposure to jute dust on respiratory function was studied in a group of textile workers over a 19-year period. During the initial study the prevalence of all chronic respiratory symptoms was higher among the exposed workers compared with the controls. These differences in the prevalence were statistically significant at the time of the follow-up study, 19 years later. Four textile workers developed symptoms of occupational asthma during exposure to jute dust. Measurement of ventilatory capacity at both surveys demonstrated small but statistically significant mean acute reductions of FVC and FEV1 over the work shift. The values for FVC and FEV1 measured at the time of the follow-up study were significantly lower than the predicted normal values. The mean annual decrease for FVC and FEV1 was 35 ml/year what is greater than expected. Our data suggest that exposure to jute dust may in sensitive workers lead to the development of respiratory symptoms and diseases with less pronounced changes in ventilatory capacity.

Adolescent↗

Textile wastewater treatment and reuse by solar catalysis: results from a pilot plant in Tunisia.

Based on results from bench-scale flow-film-reactors (FFR) and aerated cascade photoreactors, a solar catalytic pilot plant has been built at the site of a textile factory. This plant has an illuminated surface area of 50 m2 and is designed for the treatment of 1 m3 h(-1) of wastewater. The preliminary results are presented and compared with a bench-scale FFR using textile wastewater and dichloroacetic acid. Equivalent degradation kinetics were obtained and it was demonstrated that the solar catalytic technology is able to remove recalcitrant compounds and color. However, on-site optimization is still necessary for wastewater reuse and for an economic application.

Catalysis↗

Treatment of textile dyeing wastewater using UV/solar photofenton oxidation processes.

Colour removal of effluent from textile dyeing and finishing industry is becoming important because of aesthetic as well as environmental concerns. Conventional treatment methods have several limitations. Hence emerging technologies like advanced oxidation processes which were based on generation of hydroxyl free radicals (OH) were investigated. In the present work, photofenton oxidation process was used to treat textile dyeing wastewater and the study was carried out at different Fenton molar ratio's (H2O2/Fe2+) like 25:1, 50:1, 75:1, 100:1. It was found that maximum decolourisation occurred at a fenton molar ration of 50:1 and pH 3. A maximum colour removal of 97% was achieved after a contact time of 30 minutes and 70% COD reduction was observed after a contact time of 60 minutes in UV photofenton oxidation process. Whereas 80% colour removal and 50-55% COD reduction was observed after a contact time of 2 hrs in solar photofenton oxidation process.

Coloring Agents↗

Anaerobic/aerobic treatment of colorants present in textile effluents.

The operation of an anaerobic/aerobic process used to degrade the colorants present in textile wastewater is presented. The objective is to produce water that can be reused. Two particular cases were studied: the degradation of a synthetic wastewater containing the colorant disperse blue 79 (DB79) as a model compound and a real textile effluent containing reactive azo dyes. The biodegradation was achieved using a single tank operated as sequencing batch reactor. It was observed that the DB79 was biotransformed to amines in the anaerobic stage decolorizing the wastewater. The amines formed were subsequently mineralized in the aerobic phase. An increase of toxicity was observed in the anaerobic stage due to the amines formation, but the wastewater was detoxified after the aerobic treatment. Removal efficiencies of DB79 around 92% were observed after the treatment. Around 96% of the initial color of the real wastewater was effectively removed. It was observed that the biomass pre-acclimatized to the degradation of DB79 was more effective for the color removal than a freshly inoculum used.

Azo Compounds↗

[Sound-suppressing properties of textiles].

Development types of textile wallpapers and linen cloths (five samples of each) were tested for suppressing sounds in the range from 45 to 75 dBA. Based on test results, sound-suppressing properties of the development types were evaluated and acoustic efficiency as a function of textile thickness and number of layers was determined. Wallpaper Art 50T was found to be the best suppressor of both general sounds and the 2000-8000 Hz octave frequency bands.

Cotton Fiber↗

The effect of nitrogen supplementation on the efficiency of colour and COD removal by Malaysian white-rot fungi in textile dyeing effluent.

White-rot fungi, namely Coriolus versicolor and Schizophyllum commune, were studied for the biodecolorization of textile dyeing effluent in shaker-flask experiments. The results showed that C. versicolor was able to achieve 68% color removal after 5 days of treatment while that of S. commune was 88% in 9 days. Both fungi achieved the above results in non-sterile condition with diammonium hydrogen phosphate as the nutrient supplement. On the other hand, the best COD removal of 80% was obtained with C. versicolor in 9 days in sterile effluent with yeast extract as nutrient supplement, while S. commune was able to remove 85% COD within 8 days in non-sterile textile effluent supplemented with diammonium hydrogen phosphate.

Basidiomycota↗