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Development of a Web-Based Tool for Risk Assessment and Exposure Control Planning of Silica-Producing Tasks in the Construction Sector

机译:开发基于网络的风险评估和曝光控制规划在建筑业中的二氧化硅制作任务的曝光控制规划

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We describe the development and implementation of a novel, on-line risk assessment tool for respirable crystalline silica (RCS) exposure for use in the construction sector. It was motivated by the introduction of new OHS regulation in British Columbia that allowed for the substitution of exposure measurement data with “objective air monitoring data” collected at “equivalent work operations.” This allowance encouraged the introduction of quantitative risk assessment in a notoriously challenging work environment but it was concluded that without assistance, the typical construction employer would struggle to identify, extract, and interpret validate objective data. The tool described here was based on a continually-updatable RCS exposure database, and a predictive regression model based on the database to generate exposure risk estimates. The model was embedded in an adaptive web-based application that can be run on common platforms. The design followed standard web conventions and features so that no specialized training is required for its use. It was designed to be usable by end-users with varying expertise, including non-OHS experts. Users describe the RCS-dust generating task they will perform, and associated control measures. The tool estimates both uncontrolled and controlled task-based exposure concentrations. Using additional information entered by the user, the on-line tool generates an “exposure control plan” or ECP, a legally regulated document for those undertaking work potentially exposing workers to RCS particulate. The development of the tool was a community-based, tri-partite effort of the local OHS regulator, construction employers, and exposure scientists. In addition to being a practical risk assessment tool, the designers wanted it to function as an educational tool, and that it should explore novel methods for exposure data collection and use. The strengths of this approach include the publicly shared updateable database that encourages continuous improvement and illustrates best practices; and the timely and cost effective collection and sharing of exposure data in a value-added manner. It is however limited to a single task per ECP, and only considers exposure to task operators, and not adjacent workers. Currently in BC, users generate up to 3,900 ECP's per year with the tool.
机译:我们描述了一种新颖的在线风险评估工具的开发和实施,可用于施工部门的可吸入结晶二氧化硅(RCS)暴露。它是由于在不列颠哥伦比亚省的新ohs规则引入了新的ohs规则,允许替代在“等同工作运营”中收集的“客观空气监测数据”的曝光测量数据。这笔津贴鼓励在臭名昭着的挑战性工作环境中引入量化风险评估,但得出结论,没有援助,典型的建筑雇主将努力识别,提取和解释验证客观数据。这里描述的工具基于不断更新的RCS曝光数据库,以及基于数据库的预测回归模型,以产生曝光风险估计。该模型嵌入在可在公共平台上运行的基于自适应的基于Web的应用程序。该设计遵循标准的Web约定和功能,以便使用它的使用需要专门的培训。它旨在通过具有不同专业知识的最终用户可用,包括非ohs专家。用户描述了他们将执行的RCS粉尘生成任务以及相关的控制措施。该工具估计不受控制和受控任务的曝光浓度。使用用户输入的附加信息,在线工具会产生“曝光控制计划”或ECP,这是一个合法的文件,用于潜在地将工人暴露给RCS颗粒。该工具的发展是本地OHS监管机构,建筑雇主和曝光科学家的社区,Tri-Partite努力。除了成为实际风险评估工具之外,设计人员还希望它用作教育工具,并且它应该探索曝光数据收集和使用的新方法。这种方法的优势包括公开的可更新数据库,鼓励持续改进,并说明最佳实践;以及以增值方式及时,经济高效的收集和共享曝光数据。然而,它仅限于每个ECP的单一任务,并且仅考虑接触任务运营商,而不是邻近的工人。目前在BC,用户每年使用该工具产生高达3,900家ECP。

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