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Study on each phase characteristics of the whole coal life cycle and their ecological risk assessment—a case of coal in China

机译:全煤生命周期各阶段特征及其生态风险评价研究 - 以中国煤炭为例

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摘要

The paper divided the whole coal life cycle, explained each phase characteristics, and took coal mine in China as a study case to assess the ecological risk in coal utilization phase. The main conclusions are as follows: (1) the whole coal life cycle is divided into coal mining, processing, transportation, utilization, and waste disposal. (2) The key points of production organization and characteristics in the five phases have great differences. The coal mining phase is characterized by the damage of the key ecological factors (water, soil, atmosphere, vegetation, etc.) damaged while the coal processing phase by discharging waste. The characteristics in coal transportation phase mainly performance as escaping and migration of atmospheric pollutants. In coal utilization phase, the main characteristics are aggravation of greenhouse effect. The main characteristics of waste disposal phase are accumulation of negative ecological effects on the land. (3) The ecological risk of soil heavy metals is serious in coal utilization phase. The potential ecological hazard coefficients of Pb and As in coal, residue and ash are all lower than 40, presenting low environmental impact on soil; the potential ecological risk coefficients of Cd are higher than 60, nearly half of their potential ecological risk coefficients are higher than 160, which presents high environmental pollution impact on soil; Hg’s potential ecological risk coefficients are higher than 320, presenting the highest environmental pollution impact on soil; the comprehensive pollution indexes in coal, residue, and ash are relatively high, which means the pollution hazard potential to soil environment is high. (4) The ecological risk of the atmospheric solid suspended matter is relatively strong in coal utilization phase. The ecological risk of Cd and As in primary flue gas is both lower than net flue gas. The geoaccumulation indexes of Cd and Hg in primary flue gas and net flue gas are both higher than 5, presenting the very strong ecological risk; 50 % of the geoaccumulation index values of As are between 3 and 4, which has also presenting a strong ecological risk while Pb does not present the ecological risk characterization.
机译:本文对整个煤炭生命周期进行了划分,解释了每个阶段的特征,并以中国的煤矿为研究案例来评估煤炭利用阶段的生态风险。主要结论如下:(1)整个煤炭生命周期分为采煤,加工,运输,利用和废物处置。 (2)这五个阶段的生产组织要点和特点存在很大差异。煤炭开采阶段的特征是在排放废物的煤炭加工阶段受到破坏的关键生态因素(水,土壤,大气,植被等)的破坏。煤炭运输阶段的特征主要表现为大气污染物的逸出和迁移。在煤炭利用阶段,主要特征是温室效应的加剧。废物处置阶段的主要特征是在土地上累积了负面的生态影响。 (3)煤炭利用阶段土壤重金属的生态风险严重。煤,残渣和灰分中的铅和砷的潜在生态危害系数均低于40,对土壤的环境影响较小。 Cd的潜在生态风险系数大于60,其潜在生态风险系数的近一半大于160,对土壤的环境污染影响较大。汞的潜在生态风险系数高于320,对土壤的环境污染影响最大。煤,渣,灰的综合污染指数较高,说明对土壤环境的污染隐患较高。 (4)在煤炭利用阶段,大气固体悬浮物的生态风险较大。一次烟气中Cd和As的生态风险均低于净烟气。一次烟气和净烟气中Cd和Hg的地质累积指数均高于5,具有很强的生态风险。 As的50%的土壤累积指数值在3-4之间,这也表现出很强的生态风险,而Pb则没有生态风险特征。

著录项

  • 作者

    Dai, W; Dong, J; Yan, W; Xu, J;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-31 16:18:20

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