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A source apportioned mercury mass balance across a coal-based petrochemical complex

机译:来源分配了整个煤基石化联合企业的汞质量平衡

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Coal-fired power generation facilities are the largest single anthropogenic source of mercury to the atmosphere.Global mapping of anthropogenic emissions has previously estimated the mercury emission from stationary combustion from South Africa at being 82.6 tonnes per annum,but preliminary in-house calculations have placed this at a significantly lower amount.A petrochemical facility in South Africa,utilising a significant amount of coal in its gasification and steam generation processes,undertook a project to determine a mercury mass balance across the complex,and to apportion the Hg emissions from the facility.Mercury associated with the coal gasified predominantly reports to the crude gas stream,with a small proportion reporting to the ash fraction,and less to the liquid hydrocarbon co-products fraction.The Rectisol gas cleaning process is a functional sink that removes mercury from the crude gas as a solid.It is removed during maintenance cleaning and disposed of as per requirements for mercury containing waste.Mercury present in the purified synthesis gas stream is below the detection limit of the analytical equipment.Mass balance calculations around the steam generation facilities,based on isokinetic sampling,revealed that about 80% of the Hg entering the system is emitted from the steam generation process(combustion).The mercury which reports to the steam generation and gasification ash fractions is encapsulated within the mineral matrix and is not considered to pose a risk to the environment as determined by environmental leaching tests.Gasification can be considered to be a more amenable coal utilization process with regards to limited(or zero)coal derived mercury emissions when compared to combustion.
机译:燃煤发电设施是最大的人为大气中汞的单一人为来源。人为排放的全球分布图先前估计南非固定燃烧产生的汞排放为每年82.6吨,但已进行初步的内部计算南非的一家石化工厂在其气化和蒸汽产生过程中使用了大量的煤,开展了一个项目,以确定整个综合设施中的汞质量平衡,并分摊该工厂中的汞排放量与气化的煤相关的汞主要报告给原油气流,其中小部分报告给灰分,而较少报告给液态烃副产物。Rectisol气体清洁工艺是一种功能性的水槽,可从水蒸气中除去汞。固体形式的粗气体,在维护清洁过程中将其除去并按要求进行处理净化后的合成气流中的汞含量低于分析设备的检测极限。基于等动力采样,蒸汽产生设备周围的质量平衡计算表明,进入系统的汞中约有80%是汞。产生蒸汽和气化灰分的汞被包裹在矿物基质中,经环境浸出试验认为没有对环境构成危险,可以考虑气化与燃烧相比,在煤产生的汞排放量有限(或为零)的情况下,这将是一个更令人满意的煤炭利用过程。

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