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A study of the potential release of bioaerosols from containers as a result of reduced frequency residual waste collections

机译:研究由于频率残留废物收集频率减少而从容器中释放生物气溶胶

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摘要

Microorganisms have the potential to grow within waste containers if waste is stored for longer periods as a result of an extended residual waste collection cycle. Release of microorganisms as bioaerosols during waste collection and processing may be an occupational risk to workers within the industry. There may be many constituents of the bioaerosol that may be of concern, however, there are currently only workplace exposure limits proposed for endotoxin (90 EU m). A field-scale trial was established to determine the concentration of mesophilic bacteria, Gram-negative bacteria, , thermotolerant fungi, , endotoxin and (1→3)-β-D-glucan in air within bins containing either bagged or loose residual waste, in warm (23 °C) or cold (7 °C) conditions, to simulate an extended collection cycle. Fresh waste was added during the first four weeks, with an additional ‘missed collection’ phase of a further four weeks where no more waste was added. A second trial examined the microbiological components of bioaerosols associated with ‘tipping’ the bins, simulating the moment when bins are emptied into waste collection vehicles. The majority of \udmesophilic bacteria, fungi and concentrations were recorded when fresh material was added to the bins, with only mesophilic bacteria recorded up to week 6 during the ‘missed collection’ phase. (1→3)-β-D-glucan concentrations were variable throughout the first trial, (geometric mean range 0.4-13.8 ng m). Perhaps the bioaerosol component of most interest was endotoxin (geometric mean range 0.52-1288 EU m-3). Elevated endotoxin concentrations were recorded during the ‘missed collection’ phase of the extended collection cycle and during ‘tipping’. This data demonstrates significant concentrations of bioaerosols and particularly endotoxin can be generated during prolonged residual waste storage and collection. As endotoxin is a bioaerosol component of concern it can be concluded there is the potential for workplace exposure hence identifying key areas for risk assessment.
机译:如果由于残留废物收集周期延长而将废物储存更长的时间,则微生物就有可能在废物容器内生长。在废物收集和处理过程中,微生物以生物气溶胶的形式释放可能是该行业工人的职业风险。可能需要关注生物气溶胶的许多成分,但是,目前仅提议针对内毒素的工作场所接触限值(90 EU m)。建立了一个现场规模的试验,以测定装有袋装或散装残余废物的垃圾箱中空气中的嗜温细菌,革兰氏阴性细菌,耐热真菌,内毒素和(1→3)-β-D-葡聚糖的浓度,在温暖(23°C)或寒冷(7°C)的条件下,模拟延长的采集周期。在最初的四个星期内增加了新鲜废物,在接下来的四个星期内又增加了一个“遗漏收集”阶段,不再增加废物。第二项试验研究了与“倾倒垃圾箱”相关的生物气溶胶的微生物成分,模拟了将垃圾箱倒入垃圾收集车的时间。当将新鲜的物料添加到垃圾箱中时,记录了大多数\ udmesophilic细菌,真菌和浓度,直到“遗失收集”阶段直到第6周为止,仅记录了嗜温细菌。在第一个试验中,(1→3)-β-D-葡聚糖的浓度是可变的(几何平均范围为0.4-13.8 ng m)。可能最受关注的生物气溶胶成分是内毒素(几何平均范围0.52-1288 EU m-3)。在延长的收集周期的“丢失收集”阶段和“小费”期间,记录到内毒素浓度升高。该数据表明,在长时间残留废物的存储和收集过程中,会产生大量浓度的生物气溶胶,尤其是内毒素。由于内毒素是令人关注的生物气溶胶成分,因此可以得出结论,存在工作场所暴露的可能性,从而确定了风险评估的关键领域。

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