英语翻译To determine the most cost-effective wastewater regenera
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英语翻译
To determine the most cost-effective wastewater regeneration reuse system,the following inequality can serve as a guide.Only when the inequality is satisfied,the regeneration reuse option is economically attractive.
(15)
Sometimes,economic benefits are not the only consideration in implementing a wastewater regeneration reuse system.For example,when the availability of freshwater is very limited,reuse of regenerated water can greatly reduce freshwater consumption.In the case study considered above,implementing a wastewater regeneration reuse program would reduce the freshwater consumption from 299 to 49.2 th-1,representing a saving potential of around 84%.
CONCLUSIONS
The water costs of a manufacturing company can be significant financial burden when it consumes significant quantities of freshwater and generates significant quantities of wastewater.This study illustrates how these costs can be reduced by implementing a wastewater regeneration/treatment reuse system.The total cost of such a system is made up of three major components:the cost of freshwater,the cost of wastewater disposal,and the cost of regeneration/treatment.It is demonstrated that the post-regeneration or post-treatment,contaminant concentration is a key parameter that determines the economic performance of the system.It is shown how the total cost can be minimized by determining an optimum post-regeneration or post-treatment contaminant concentration.These results underlie the importance of cost optimization in promoting wastewater regeneration/treatment reuse to industry.From an economic perspective,industry is more likely to implement wastewater regeneration reuse or treatment reuse programs when there is significant economic gain.
To determine the most cost-effective wastewater regeneration reuse system,the following inequality can serve as a guide.Only when the inequality is satisfied,the regeneration reuse option is economically attractive.
(15)
Sometimes,economic benefits are not the only consideration in implementing a wastewater regeneration reuse system.For example,when the availability of freshwater is very limited,reuse of regenerated water can greatly reduce freshwater consumption.In the case study considered above,implementing a wastewater regeneration reuse program would reduce the freshwater consumption from 299 to 49.2 th-1,representing a saving potential of around 84%.
CONCLUSIONS
The water costs of a manufacturing company can be significant financial burden when it consumes significant quantities of freshwater and generates significant quantities of wastewater.This study illustrates how these costs can be reduced by implementing a wastewater regeneration/treatment reuse system.The total cost of such a system is made up of three major components:the cost of freshwater,the cost of wastewater disposal,and the cost of regeneration/treatment.It is demonstrated that the post-regeneration or post-treatment,contaminant concentration is a key parameter that determines the economic performance of the system.It is shown how the total cost can be minimized by determining an optimum post-regeneration or post-treatment contaminant concentration.These results underlie the importance of cost optimization in promoting wastewater regeneration/treatment reuse to industry.From an economic perspective,industry is more likely to implement wastewater regeneration reuse or treatment reuse programs when there is significant economic gain.
以确定最符合成本效益的污水再生回用系统外,下列不等式,可以作为指导.只有当不平等是满意,再生回用的方案是在经济上的吸引力.
( 15 )
有时候,经济利益并不是唯一的考虑因素,在实施污水再生回用系统.举例来说,当供应淡水是非常有限的,再利用的再生水,可大大减少淡水消耗.在个案研究审议以上,实行污水再生回用计划将减少淡水消费量从299至49.2次- 1 ,是一种节能潜力约为84 % .
结论
水成本的一个以制造业为主的公司可以对重大财政负担时,它消耗了大量的淡水,并产生大量的废水.这项研究说明了如何将这些成本可降低推行废水再生/处理回用系统.总费用的这种制度取得了三个主要组成部分:成本的淡水,成本的废水处理费用,以及再生/治疗.它表明,这种后再生或治疗后,污染物浓度是一个关键的参数,决定着经济系统的性能.它是如何表现出总成本可降至最低确定一种最佳的后再生或治疗后的污染物浓度.这些结果理解的重要性,成本优化推动废水再生/处理回用至工业界.从经济角度看,工业生产更容易执行污水再生回用或处理回用程式时,有显着的经济利益.
( 15 )
有时候,经济利益并不是唯一的考虑因素,在实施污水再生回用系统.举例来说,当供应淡水是非常有限的,再利用的再生水,可大大减少淡水消耗.在个案研究审议以上,实行污水再生回用计划将减少淡水消费量从299至49.2次- 1 ,是一种节能潜力约为84 % .
结论
水成本的一个以制造业为主的公司可以对重大财政负担时,它消耗了大量的淡水,并产生大量的废水.这项研究说明了如何将这些成本可降低推行废水再生/处理回用系统.总费用的这种制度取得了三个主要组成部分:成本的淡水,成本的废水处理费用,以及再生/治疗.它表明,这种后再生或治疗后,污染物浓度是一个关键的参数,决定着经济系统的性能.它是如何表现出总成本可降至最低确定一种最佳的后再生或治疗后的污染物浓度.这些结果理解的重要性,成本优化推动废水再生/处理回用至工业界.从经济角度看,工业生产更容易执行污水再生回用或处理回用程式时,有显着的经济利益.
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