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Lightweight Aggregate Made from Dredged Material in Green Roof Construction for Stormwater Management

机译:疏Roof材料制成的轻质骨料用于屋顶绿化工程用于雨水管理

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摘要

More than 1.15 million cubic meters (1.5 million cubic yards) of sediment require annual removal from harbors and ports along Ohio’s Lake Erie coast. Disposing of these materials into landfills depletes land resources, while open water placement of these materials deteriorates water quality. There are more than 14,000 acres of revitalizing brownfields in Cleveland, U.S., many containing up to 90% impervious surface, which does not allow “infiltration” based stormwater practices required by contemporary site-based stormwater regulation. This study investigates the potential of sintering the dredged material from the Harbor of Cleveland in Lake Erie to produce lightweight aggregate (LWA), and apply the LWA to green roof construction. Chemical and thermal analyses revealed the sintered material can serve for LWA production when preheated at 550 °C and sintered at a higher temperature. Through dewatering, drying, sieving, pellet making, preheating, and sintering with varying temperatures (900–1100 °C), LWAs with porous microstructures are produced with specific gravities ranging from 1.46 to 1.74, and water absorption capacities ranging from 11% to 23%. The water absorption capacity of the aggregate decreases as sintering temperature increases. The LWA was incorporated into the growing media of a green roof plot, which has higher water retention capacity than the conventional green roof system.
机译:每年需要从俄亥俄州伊利湖沿岸的港口和港口清除超过115万立方米(150万立方码)的沉积物。将这些材料丢弃到垃圾填埋场中会消耗土地资源,而在露天放置这些材料则会降低水质。美国克利夫兰(Cleveland)拥有超过14,000英亩的活化棕地,其中许多土地的不透水率高达90%,这不允许当代基于现场的雨水法规要求基于“渗透”的雨水实践。这项研究调查了烧结从伊利湖克利夫兰港口挖出的材料以生产轻骨料(LWA)并将其应用于屋顶绿化的潜力。化学和热分析表明,在550°C的温度下预热并在较高的温度下烧结时,该烧结材料可用于LWA生产。通过在不同温度(900–1100°C)下进行脱水,干燥,筛分,制粒,预热和烧结,可生产出具有微孔结构的微水,其比重范围为1.46至1.74,吸水率范围为11%至23 %。骨料的吸水能力随着烧结温度的升高而降低。 LWA被并入了绿化屋顶地块的生长介质中,与常规的绿化屋顶系统相比,其保水能力更高。

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