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Environmental, health, and safety guidelines pulp and paper mills : Руководство по охране окружающей среды, здоровья и труда для целлюлозно-бумажной промышленности (Russo)

The Environmental, Health, and Safety (EHS) Guidelines are technical reference documents with general and industry specific examples of Good International Industry Practice (GIIP). The EHS Guideline for Pulp and Paper Mills includes information relevant to pulp and paper manufacturing facilities including wood-based chemical and mechanical pulping, recycled fiber pulping, and pulping based on non-wood raw materials such as bagasse, straw, and reed. It does not include production or collection of raw materials which are addressed in other relevant EHS Guidelines. Annex A contains a description of industry sector activities. This document is organized according to the following sections: (i) Section one describes Industry-Specific Impacts and Management; (ii) Section two explains Performance Indicators and Monitoring; and (iii) Section three concludes with References and Additional Sources. A complete list of industry-sector guidelines can be found at: www.ifc.org/ifcext/enviro.nsf/Content/EnvironmentalGuidelines.

Detalhes

  • Data do documento

    2007/12/10

  • TIpo de documento

    Documento de Trabalho

  • No. do relatório

    113557

  • Nº do volume

    1

  • Total Volume(s)

    1

  • País

    Mundo,

  • Região

    Regiões Mundiais,

  • Data de divulgação

    2017/03/16

  • Disclosure Status

    Disclosed

  • Nome do documento

    Руководство по охране окружающей среды, здоровья и труда для целлюлозно-бумажной промышленности

  • Palavras-chave

    paper mill;pulp mill;recovery boiler;Occupational health and safety;worker health and safety;mechanical pulp;health and safety hazard;transport of hazardous material;health and safety training;community health and safety;waste water treatment plant;emission of nitrogen oxide;sulfur compound;chemical recovery;semi-chemical pulping process;volatile organic compound;wastewater treatment technology;wood raw material;chlorine dioxide;Lime;chemical recovery boiler;solid waste volume;secondary wastewater treatment;steam generation system;access to forest;air pollution control;internationally accepted standards;personal protective equipment;chemical oxygen demand;accident and disease;number of accidents;pulp mill effluents;total suspended solid;biochemical oxygen demand;hydrogen sulfide emission;control of fire;electric power consumption;source of nitrogen;water conservation strategy;elemental chlorine bleaching;water storage tank;chemical pulp bleaching;production of pulp;sulfite pulping;sulfur dioxide;sodium hydroxide;wood chip;paper manufacturing;sodium sulfide;sulfite mill;bleach plant;biological treatment;organic material;mobile equipment;fatty acid;occupational hazard;water system;combustion source;dry solids;aqueous solution;industry sector;sulfite process;cellulose fibers;lime kiln;risk assessment;integrated mill;black liquor;Environmental Assessment;biological sludge;cooling water;industrial facility;chemical use;gas;wood handling;sulfur emission;bleached pulp;management strategy;process water;sodium carbonate;recovery system;power boiler;wastewater discharge;air emission;tertiary treatment;organic waste;paper fiber;vehicle movement;organic substance;equipment failure;elevated temperature;vacuum pump;pollution prevention;steam energy;chemical feedstock;process chemical;fresh water;paper machine;safety procedure;monitoring program;activated sludge;performance level;liquor spills;environment institute;secondary treatment;steam boiler;land application;pulp production;emission control;hazardous gas;moving parts;clean water;emission management;process gas;dimethyl sulfide;calcium sulfate;incineration plant;flue gas;carbon dioxide;hot issue;forest industries;throttle valve;acid soil;pulp manufacturing;treated effluent;direct discharge;average values;process control;emission emission;total load;underground mine;industrial process;radioactive substance;biological pretreatment;effluent quality;water course;extended aeration;small fraction;energy usage;soil conditioner;toxic compound;sludge dewatering;primary treatment;nutrient content;primary emissions;toxic substance;safe disposal;Waste Material;flow control;paper production;residential area;air supply;high concentration;market pulp;wood logs;lignin content;process use;water use;energy recovery;ground cover;cost of energy production;moisture content;plant material;waste wood;lumber wood;scrap metal;lumber processing;fiber strength;calcium carbonate;sulfite pulps;wood constituents;recovery furnace;residual lignin;chemical solution;steam heat;water jets;potable water;occupational exposure;waste treatment;emission indicator;analytical method;production load;daily average;monitoring activity;treatment system;sewage collection;wood species;river water;treated water;sodium base;manufacturing process;gaseous emission;electrical energy;recovery process;mechanical energy;atmospheric pressure;accidental discharge;chemical reaction;biological property;storage area;combustion by-products;gas monitor;biological filter;aerated lagoons;organic pollutant;pulp industry;water consumption;dry debarking;fiber increase;water recirculation;heating system;mechanical treatment;existing technology;electrical equipment;fiber pulp;professional skill;feed water;environmental degradation;paper industry;principal risk;hydrogen peroxide;sodium hypochlorite;sodium sulfate;sulfuric acid;bleach tower;gas leak;safety management;chemical exposure;hazard identification;wastewater stream;guard rail;production line

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