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1、4,000,000 tons laterite-nickel ore Project inIndonesia Feasibility Study ReportChapter 1 General Introduction1.1 Overview of the project . 71.2 Research conclusions of the project established.:. .81.2.1 Market prospects.81.2.2 Supply of the raw material. . . 81.2.3 Policy protection. . .91.2.4 Capit

2、al assuranee.91.2.5 Organization guarantee. . . . . 91.2.6 Tech ni cal support.91.2.7 HR buildi ng. . 91.2.8 Risk control. .101.2.9 Financial Benefit conclusion.111.2.10 Social benefits conclusion.111.2.11Feasibility compositive estimation of the projectestablished. . 111.3 Main technical and econom

3、ic indexes.11Chapter 2 Background of the Project2.1 The background of construction. . .132.2 The necessity of construction.132.3The feasibility of construction.132.3.1 Economic feasibility232. Policyfeasibility. .14233. Technical feasibility. 142.3.4 Model feasibility. .142.3.5 Organization and HR f

4、easibility. .15Chapter 3 Project Analysis and Forecasting3.1 The market scale survey. .153.2The market compete nee survey.163.3 The market prospect forecasting.173.4 The product schemes and con structi on scale. 173.5 The forecast of the product sales revenue-. .18Chapter 4 Construction conditions a

5、nd site selection4.1 Resources and raw materialg.184.2 Selection area for the construction.194.3 Site selection.19Chapter 5 Plant Know-How.13.205.1 Project composition5.2 Tech nical soluti ons in production. .215.2.1Selection of process technical scheme-.215.2.2 Process flow.235.2.3 Brief outline of

6、 the process. .255.3 29 full intelligent tunnel kiln. . . .265.3.1 Brief descripti on of the tunnel kil n developme nt :.265.3.2 Structure of the tinnel kil n .275.3.3 Kiln structure.295.3.4 Main technical parameters of the tunnel kiln.345.3.5 Comparative advantages and disadvantages of the rotary a

7、nd tunnelkiln.355.424 sets 3. 6m two-stage gas furnace, air-cooled, cooling process coldgas stati ons . :. 365.4.1 Overview of gas furnace. .365.4.2 Planning design basis.375.4.3 Project scale and main technical requirements. .385.4.4 Nati onal sta ndard (adopted or referenced). 385.4.5 Desig n of g

8、as station.395.4.6 Brief outline of the process and advantagesin energy saving anden vir onment protection.435.4.7 Flowing process.445.4.8 Main characters of 3.6m two stages generator.485.4.9 Electronic control and instrument system in gas station.495.4.10 Pipe network system in gas station. 495.4.1

9、1 Coal feeding system.515.4.12 Gas wet desulfurization. 515.4.13 Manufacturing standards, testing standards, acceptance criteria,detection means. 555.4.14 Gas preparation and safe production of gas station.565.4.15 Gas preparation and firefighting of gas station. 575.4.16 The organization and workin

10、g personnels of the gas station.575.4.17 Direct cost calculating. 575.4.18 Device configuration detail of gas system.585.5 Material balance, water balance, nickel element balance, gas balance, andequipment capacity matched of the project.615.5.1 Material balance, water balance, nickel element balanc

11、e, gas balance625.5.2 Main equipment scheme in production.645.6 Working system.685.7 Production inspection.685.8General layout and transportation, utility and ancillary engineering. 68Chapter 6 Environmental Protection and Labor Safety6.1 Environmental state of the construction region .776.2 The mai

12、n pollution sources and contaminants of the project.776.3 The environmental protection standards to be adopted. 776.4 Environment control scheme.786.5 Investment estimation of the environment protection.806.6 Evaluation conclusions of the environment impact.816.7 Labor protection and production safe

13、ty. 816.7.1 Analysis of risk、 occupational harmfulness in the production.816.7.2 The main countermeasures in labor safety design.826.8 Energy saving .85Chapter 7 Business Organizations and Labor Quota7.1 Business organizations.877.2 Labor requirement and personnel training. 88Chapter 8 The Implement

14、ation Schedule of the Project8.1 The various stages of the implementation.898.2 The implementation schedule of the project.898.3 The cost of the implementation.89Chapter 9 Financial Estimation of the Project9.1 Total investment estimation.899.2 Funds raising.90Chapter 10 Financial Economy and Social

15、 Benefits10.1 Production costs and sales revenue estimation.9010.2 Financial evaluation and risk assessment. 92Chapter 11 Conclusions and Recommendations11.1 Conclusions.9311.2 Recommendations.941.1 项目概况7400万吨印尼红土泥镍矿项目可行性研究报告1.2立项研究结论第一章总论第三章 项目分析及预测1.2.1 项目产品市场前景81.2.2 项目原料供应问题81.2.3 项目政策保障问题91.2.4

16、 项目资金保障问题91.2.5 项目组织保障问题91.2.6 项目技术保障问题91.2.7 项目人力保障问题91.2.8 项目风险控制问题101.2.9 项目财务效益结论111.2.10 项目社会效益结论111.2.11 项目立项可行性综合评价111.3 主要技术经济指标汇总11第二章 项目背景2.1 项目建设背景132.2 项目建设必要性132.3 项目建设可行性132.3.1 经济可行性132.3.2 政策可行性142.3.3 技术可行性142.3.4 模式可行性142.3.5 组织和人力资源可行性153.1 项目市场规模调查153.2 项目市场竞争调查163.3 项目市场前景预测173.

17、4 产品方案和建设规模173.5 产品销售收入预测18第四章建设条件与厂址选择4.1 资源和原材料184.2 建设地区的选择194.3 厂址选择19第五章工厂技术方案5.1 项目组成205.2 生产技术方案215.2.1 工艺技术方案的选择215.2.2 工艺流程235.2.3 工艺流简述255.329 条 3.2mx168m 全智能化隧道窑265.3.1 隧道窑发展简述265.3.2隧道窑的结构275.3.3 窑体结构295.3.4 隧道窑的主要技术参数345.3.5 回转窑与隧道窑优缺点对比355.5.1 项目物料平衡、水平衡、镍元素平衡、煤气平衡 625.424 台 3. 6m 两段煤气

18、发生炉风冷间冷工艺的冷煤气站365.4.1煤气发生炉概述365.4.2规划设计依据375.4.3工程规模及主要技术要求385.4.4采用或参照的国家标准385.4.5煤气站设计395.4.6工艺流程简述及节能环保优势435.4.7技术工艺流程445.4.8 3.6m 两段煤气发生炉主要技术特点485.4.9煤气站常规控制电控、仪表系统495.4.10煤气站管网系统495.4.11上煤系统515.4.12煤气湿法脱硫515.4.13制造标准、检测标准、验收标准、检测手段555.4.14煤气制备和煤气站安全生产565.4.15煤气制备和煤气站消防575.4.16煤气站生产组织和劳动定员575.4.17煤气直接成本测算575.4.18煤气系统设备配置明细585.5项目物料平衡、水平衡、镍元素平衡、煤气平衡和各设备产能匹配615.5.2主要生产设备方案645.5.1 项目物料平衡、水平衡、镍元素平衡、煤气平衡 625.6工作制度685.7生产检验685.8 总图运输和公用与辅助工程68第六章环保与劳动安全6.1建设地区环境现状776.2 项目主要污染源和污染物776.3 项目拟采用的环境保护标准776.

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