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POLYSTYRENE FOAM INSULATION WITH A SUSTAINABLE FLAME RETARDANT: TRANSITION UPDATE

机译:具有可持续阻燃剂的聚苯乙烯泡沫绝缘:过渡更新

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Sustainable solutions are being increasingly demanded in the construction product market place. Polystyrene insulation is an increasingly important component of green construction. The benefits of insulation in residential and commercial buildings include lower energy consumptions, improved thermal comfort, reductions in the first costs of the heating and cooling equipment and reductions in CO_2 emissions from the burning of fossil fuels across the United States. As with all foam insulations, polystyrene foam insulation is combustible and must comply with stringent building and fire codes, which have been in place since 1976. The basic requirement in codes is a flame spread index of 75 or less and a smoke developed index of 450 or less when tested in accordance with ASTM E84, in addition to separation of the foam insulation from building occupants through use of a thermal barrier, typically ?” gypsum board. Additional requirements are in place depending upon the particular application. Like many other building products – from electrical wires to structural and decorative wood products to paint – foam insulation uses flame retardants to protect people and property from the hazards of fire. Flame retardants used in foam insulation meet current regulations and their history of safe use is supported by scientific research. Manufacturers are committed to product safety and the effectiveness of flame retardants, and support research and development efforts to continually advance and improve these materials. A recent announcement by the Design for the Environment program of the U.S. EPA detailed a suitable polymeric flame retardant for use in polystyrene foam insulation. The chemistry is a brominated polymeric flame retardant with an improved environmental profile that was specifically designed and developed for use in polystyrene foam insulation by The Dow Chemical Company to replace Hexabromocyclododecane (HBCD). HBCD has recently been listed as a persistent organic pollutant (POP) under the UNEP Stockholm convention and is on the Authorisation List (Annex XIV) under the European Union REACH (Registration, Evaluation, Authorization and Restriction of Chemicals) Regulation and will be phased out. Response to these actions has led to phase out schedules in various geographies. While earlier conference papers have given an overview of the environmental, health and safety performance of this new polymeric flame retardant, this paper will focus more on the transition process required for an industry sector to incorporate a new additive. Thus it will give an indication of the degree of complexity involved in implementing such developed solutions through the approval of raw materials, plant qualification, product certification in different geographies and markets while throughout seeking to maintain the quality of the final product in terms of technical and environmental performance and meeting critical regulatory milestones, such as building and fire code requirements. If we use the Polymeric FR as an example, assuming that all goes to plan from conception, registration to implementation with full certification for 1 country, an estimate for the development and introduction of PS foam insulation containing the new flame retardant additive is in the range of 7-11 years. An update on the status of the transition to the new polymeric flame retardant alternative by the polystyrene foam insulation industry will also be provided as HBCD is phased out globally.
机译:建筑产品市场越来越多地要求可持续解决方案。聚苯乙烯绝缘是绿色结构的越来越重要的组成部分。住宅和商业建筑中绝缘的好处包括较低的能量消耗,改善热舒适性,减少了加热和冷却设备的第一成本,并在美国燃烧化石燃料的燃烧中的碳气排放。与所有泡沫绝缘一样,聚苯乙烯泡沫绝缘是可燃的,必须符合自1976年以来已经到位的严格建筑和消防码。代码中的基本要求是75或更小的火焰蔓延指数,烟雾发育指数为450根据ASTM E84测试,除了通过使用热障,通常使用热屏障来分离泡沫绝缘材料,通常?“石膏板。根据特定应用程序到位额外的要求。与许多其他建筑产品一样 - 从电线到结构和装饰木制品的油漆 - 泡沫绝缘材料使用阻燃剂保护人员和物业免受火灾危害。泡沫保温中使用的阻燃剂符合现行法规及其安全使用历史得到科学研究支持。制造商致力于产品安全性和阻燃剂的有效性,并支持研究和开发努力,不断推进和改善这些材料。最近由美国EPA环境计划设计的宣布,详细说明了用于聚苯乙烯泡沫绝缘的合适的聚合物阻燃剂。该化学是一种溴化聚合物阻燃剂,其具有改进的环境型材,该型材专门设计和开发用于陶氏化工公司的聚苯乙烯泡沫绝缘,以取代六溴葡聚糖(HBCD)。 HBCD最近已被列为“环境署斯德哥尔摩公约”下的持久有机污染物(POP),并根据欧洲联盟的授权清单(附件XIV)(注册,评估,化学品)监管,并将逐步淘汰。对这些行动的响应导致各种地理位置逐步淘汰计划。虽然早期的会议论文概述了这种新的聚合物阻燃剂的环境,健康和安全性能,但本文将更多地关注行业部门所需的过渡过程,纳入新的添加剂。因此,它将指示通过批准原材料,工厂资格,产品认证在不同地域和市场的批准中实现这些发达解决方案的复杂程度,同时在整个寻求技术和技术方面保持最终产品的质量环境绩效和会议审批监管里程碑,如建筑和消防代码要求。如果我们用聚合物FR为例,假设所有人都要从概念中进行计划,请在一个国家的完整认证中注册到实施,对含有新的阻燃添加剂的PS泡沫绝缘的开发和引入估计7-11岁。在全球化的HBCD在全球化的情况下,还将提供关于新型聚合物阻燃剂替代方法的过渡状态的更新。

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