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首页> 外文期刊>Waste management & research >Removal of chloride from fly ash produced in hazardous waste incineration by leaching and displacement washing in a vertical filter press
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Removal of chloride from fly ash produced in hazardous waste incineration by leaching and displacement washing in a vertical filter press

机译:通过立式压滤机中的浸出和置换洗涤,去除危险废物焚烧中产生的粉煤灰中的氯化物

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摘要

Fly ash is generated in large quantities by waste incineration processes. Chloride is commonly present in the fly ash produced by the incineration of hazardous materials, such as polyvinylchloride plastic. Major difficulties related to the disposal and handling of fly ash include the high concentration of easily leachable chlorides, heavy metals and toxic compounds. In order to avoid adverse environmental effects from the disposal of fly ash, the content of soluble chlorides must be reduced. One of the most effective options for chloride removal is leaching and displacement washing in a filter press. The primary aim of this study was to obtain efficient removal of chloride from fly ash by utilizing a leaching and displacement washing process, carried out in a filter press. The secondary objective was to obtain high filtration capacities and low filter cake moisture contents. The slurry was prepared by mixing fly ash with water at an ash:water ratio of 1:2 and filtered to separate the solids from the liquid. After solid-liquid separation, most of the dissolved residual chloride was removed from the filter cake by washing the cake with fresh water in the second stage of separation. It was possible to remove up to 98% of the total chloride and to obtain sufficient filtration capacities. The residual moisture content of the filter cakes varied from 22 to 35 wt%, which meant that the cakes could be disposed of in landfill, or possibly utilized as a construction material.
机译:粉煤灰是通过废物焚烧过程产生的。氯化物通常存在于通过焚烧有害物质(例如聚氯乙烯塑料)而产生的粉煤灰中。与粉煤灰的处理有关的主要困难包括高浓度的易浸出氯化物,重金属和有毒化合物。为了避免飞灰的处理对环境造成不利影响,必须降低可溶性氯化物的含量。去除氯化物最有效的选择之一是在压滤机中进行浸出和置换洗涤。这项研究的主要目的是通过在压滤机中进行的浸出和置换洗涤工艺来有效地去除飞灰中的氯化物。第二个目的是获得高过滤能力和低滤饼水分含量。通过将粉煤灰与水以灰分:水的比例为1:2混合来制备浆液,并进行过滤以从液体中分离出固体。固液分离后,通过在分离的第二阶段用淡水洗涤滤饼,将大部分溶解的残留氯化物从滤饼中除去。可以去除高达98%的氯化物并获得足够的过滤能力。滤饼的残余水分含量为22至35重量%,这意味着滤饼可以被丢弃在垃圾填埋场中,或者可以用作建筑材料。

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