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Rice Husk Ash to Stabilize Heavy Metals Contained in Municipal Solid Waste Incineration Fly Ash: First Results by Applying New Pre-treatment Technology

机译:稻壳灰稳定城市固体废物焚烧粉煤灰中的重金属:采用新的预处理技术的初步结果

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A new technology was recently developed for municipal solid waste incineration (MSWI) fly ash stabilization, based on the employment of all waste and byproduct materials. In particular, the proposed method is based on the use of amorphous silica contained in rice husk ash (RHA), an agricultural byproduct material (COSMOS-RICE project). The obtained final inert can be applied in several applications to produce “green composites”. In this work, for the first time, a process for pre-treatment of rice husk, before its use in the stabilization of heavy metals, based on the employment of Instant Pressure Drop technology (DIC) was tested. The aim of this work is to verify the influence of the pre-treatment on the efficiency on heavy metals stabilization in the COSMOS-RICE technology. DIC technique is based on a thermomechanical effect induced by an abrupt transition from high steam pressure to a vacuum, to produce changes in the material. Two different DIC pre-treatments were selected and thermal annealing at different temperatures were performed on rice husk. The resulting RHAs were employed to obtain COSMOS-RICE samples, and the stabilization procedure was tested on the MSWI fly ash. In the frame of this work, some thermal treatments were also realized in O2-limiting conditions, to test the effect of charcoal obtained from RHA on the stabilization procedure. The results of this work show that the application of DIC technology into existing treatment cycles of some waste materials should be investigated in more details to offer the possibility to stabilize and reuse waste.
机译:最近,根据所有废物和副产品的使用情况,开发了一种新技术用于城市固体废物焚烧(MSWI)粉煤灰稳定化。特别地,所提出的方法是基于使用稻壳灰(RHA)(一种农业副产品材料)中包含的无定形二氧化硅(COSMOS-RICE项目)。所获得的最终惰性气体可用于多种应用中,以生产“绿色复合材料”。在这项工作中,首次测试了基于即时压降技术(DIC)的稻壳预处理过程,然后将其用于稳定重金属。这项工作的目的是验证COSMOS-RICE技术中预处理对效率对重金属稳定化的影响。 DIC技术基于由高蒸汽压力突然转变为真空而引起的热机械效应,从而在材料中产生变化。选择了两种不同的DIC预处理,并对稻壳进行了不同温度的热退火。将所得的RHA用于获得COSMOS-RICE样品,并在MSWI粉煤灰上测试了稳定程序。在这项工作的框架内,在O 2 限制条件下还进行了一些热处理,以测试从RHA获得的木炭对稳定过程的影响。这项工作的结果表明,应更详细地研究将DIC技术应用到某些废料的现有处理周期中,以提供稳定和再利用废料的可能性。

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