首页> 外文会议>International Symposium on Geoenvironmental Reclamation, Nov 20-22, 2000, Nagpur, India >Dynamic Model for Environment Restoration Measure Cost in Lignite Mines
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Dynamic Model for Environment Restoration Measure Cost in Lignite Mines

机译:褐煤矿山环境恢复计量成本的动态模型

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摘要

1. The principles of sustainable mine development in Lignite Mines in Western India is based on scientific mine planning are followed for the protection of environment giving due consideration to the socio-economical aspects. 2. The implemented dynamic model for environmental protection measure in Lignite mines in Western India derived as follow: Y_(40) = 0.08517X1 +0.002125 X2 + 3.575 Where Y_(40)=Cost of Environment Protection Measure in Rs. per Tonne of Lignite, X1 = Stripping ratio upto 40 meter depth X2 = Cost of production of lignite upto 40 meter depth Y_(80) = 0.08517X1 + 0.00187X2 + 3.57145 Y_(80) = Cost of Environment Protection Measure in Rs. per Tonne of Lignite, X1 = Stripping ratio upto 80 meter depth X2 = Cost of production of lignite upto 80 meter depth Y_(110) = 0.08517X1 + 0.001585X2 + 3.5697 Y_(110) = Cost of Environment Protection Measure in Rs. per Tonne of Lignite, X1 = Stripping ratio upto 110 meter depth X2 = Cost of production of lignite upto 110 meter depth 1. The efficacy of Dynamic model for Environment Protection Measure is realized in Lignite Mines in Western India, where it forms the basis for future course of action that shows optimizing return at the minimum expense of inputs. The model based on various design parameters is benchmark for budgeting in Environment Protection Measure. 2. The significance of Dynamic Model for Environment Protection cannot be over-emphasized. Irrespective of uncertainties that may exist or arises model is worthwhile and advantageous to all future management action. Above all this model is introduce in the management and planning methods that integrate environmental impacts in the project planning process from the outset of a project and that do not see environmental mitigation as something to be added as an afterthought once plan has been executed. 3. As per the recommendation of Environment monitoring agency, the annual recurring environmental control cost for adoption of various control measures will be 1.5 to 2.0 % of production cost of lignite. This is controversial as we look into the Table 4.0, 5.0 and 6.0 that the cost of production increases as depth increases but environment protection measure cost remains unchanged.
机译:1.印度西部褐煤矿的可持续矿山开发原则基于科学的矿山规划,旨在保护环境,同时适当考虑到社会经济方面。 2.印度西部褐煤矿山环境保护措施的实施动态模型推导如下:Y_(40)= 0.08517X1 +0.002125 X2 + 3.575其中Y_(40)=环境保护措施的成本,单位为卢比。每吨褐煤X1 =剥皮率最高40米深度X2 =褐煤最高40米深度的生产成本Y_(80)= 0.08517X1 + 0.00187X2 + 3.57145 Y_(80)=环保措施的成本,单位为卢比。每吨褐煤,X1 =高达80米深度的剥离率X2 =高达80米深度的褐煤的生产成本Y_(110)= 0.08517X1 + 0.001585X2 + 3.5697 Y_(110)=环保措施的成本,单位为卢比。每吨褐煤,X1 =高达110米深的剥采率X2 =高达110米深的褐煤的生产成本1.环保措施的动态模型的有效性在印度西部的褐煤矿中实现,它是未来的行动方案,以最低的投入成本显示出最佳的回报。基于各种设计参数的模型是“环境保护措施”预算的基准。 2.不能过分强调动态模型对环境保护的重要性。不管模型可能存在或出现的不确定性,对于所有未来的管理措施都是值得的和有利的。最重要的是,该模型引入了管理和计划方法,这些方法从项目一开始就将环境影响整合到项目计划过程中,并且一旦执行计划,就不会将减轻环境影响作为事后的考虑。 3.根据环境监测机构的建议,采用各种控制措施的年度经常性环境控制成本将为褐煤生产成本的1.5%至2.0%。当我们查看表4.0、5.0和6.0时,随着深度的增加,生产成本增加,但是环保措施的成本保持不变,这是有争议的。

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