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MEASURING THE EFFICACY OF MOLD REMEDIATION ON CONTAMINATED DUCTWORK

机译:测量污染的管道中模具修复的效率

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Published guidelines on mold remediation do not specify sampling protocols to measure the efficacy of remediation efforts. The purpose of this study was to evaluate fungal remediation of contaminated ducts by comparing the amount of residual surface contamination to the amount in new ducts. Fungal contamination of galvanized metal and rigid fibrous glass ducts were evaluated using fluorometric and microscopic methods. Fungal contamination was measured in newly installed ducts in addition to pre- and post-remediation. Newly installed ducts had low levels of fungal debris. Findings demonstrated that both fluorometry and microscopy methods detected fungal surface contamination. After cleaning, metal ducts were statistically less contaminated than when new. Fungal contamination of rigid fibrous glass ducts was reduced by ~90%, but was statistically more contaminated than when new. The fluorometric method performed as well as the microscopic method in detecting fungal contamination and provided faster results for monitoring efficacy of fungal remediation.
机译:已发布的有关模具修复的指南未指定用于评估修复工作效率的采样协议。这项研究的目的是通过比较残留表面污染的数量和新导管的数量来评估受污染导管的真菌修复。镀锌金属和刚性玻璃纤维导管的真菌污染使用荧光法和显微镜法进行评估。除了修复前后,还对新安装的管道中的真菌污染进行了测量。新安装的导管中的真菌碎片含量低。结果表明,荧光法和显微镜法均可检测到真菌表面污染。清洁后,统计上金属导管的污染程度比新导管少。刚性玻璃纤维导管的真菌污染减少了约90%,但在统计学上比新污染时受到的污染更大。在检测真菌污染方面,荧光检测法和显微检测法一样,为监测真菌修复的有效性提供了更快的结果。

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