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ロシアにおける硫黄利用

Research of Technology, Methods and Practice of Sulfur Utilisation in Russia (2nd edition)

発行 INFOMINE Research Group 商品コード 66843
出版日 ページ情報 英文
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ロシアにおける硫黄利用 Research of Technology, Methods and Practice of Sulfur Utilisation in Russia (2nd edition)
出版日: 2015年03月26日 ページ情報: 英文
概要

当報告書では、ロシアにおける硫黄利用 (硫黄回収・処分) の技術・手法や実践状況を調査しており、利用方法、保管方法、利用機関、企業、今後の利用方法の導入予測などの情報を取りまとめてお届けいたします。

イントロダクション

第1章 世界各国での硫黄の回収量

第2章 ロシア国内での硫黄回収手段・技術の開発

  • 建築材料の生産
    • 硫黄セメント・硫黄コンクリート
    • 硫黄アスファルトおよび硫黄アスファルト・コンクリート
    • 溶融硫黄および硫黄水溶液の建築材料への注入
  • 新種の肥料・植物保護剤の生産用の硫黄利用
  • ポリマー・オイル添加物としての硫黄およびその合成物の利用
    • 塩化ビニルのポリマーの安定剤としての硫黄
    • オイル添加物
  • 高純度硫黄の生産
  • 硫黄およびその合成物の硫化物・多硫化物への加工

第3章 硫黄保管の方法

  • 世界各国での硫黄の保管手段
  • ロシア企業における硫黄保管の実際

第4章 ロシア国内の硫黄回収の関連組織

  • LLC "Gazprom VNIIGAZ" (モスクワ)
  • LLC "NIIZHB" (モスクワ)
  • JSC "Gintsvetmet" (モスクワ)
  • Innovation center "Chemtec" (Ufa、バシコルトスタン共和国)
  • Norilsk industrial Institute (ノリリスク)
  • Kazan national research technological University (カザン、タタルスタン共和国)

第5章 ロシア国内で硫黄回収手段を導入した (または導入予定の) 企業

  • JSC Gazprom (モスクワ)
  • LLC "Engineering" (アストラハン)
  • Polar division of OJSC MMC Norilsk Nickel (ノリリスク)
  • LLC NPP "Prospectus" (リャザン)
  • JSC "Ural copper-smelting plant (Revda、スヴェルドロフスク州)

第6章 結論:ロシア国内の硫黄処分手法の予測

付録1:ロシア国内の硫黄利用関連組織の住所一覧

付録2:硫黄処分手法を導入した企業、および硫黄コンクリート・硫黄アスファルトの製造用装置を供給している企業の住所一覧

図表一覧

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目次

This report is the second edition of the study of existing technologies, methods and practices of utilization of sulfur in Russia.

The purpose of the study - analysis of technologies, methods and practices of utilization of sulfur in Russia.

Object of research - technologies for the utilization of sulfur.

The presented work was carried out in 2 stages: desk research and field activities. In the first phase were analyzed multiple sources of information, first of all, data of state bodies. There have also been involved materials businesses, the media and the Internet, the database of "INFOMINE". In the second stage, the collected data were verified and refined through telephone interviews with specialists of the involved enterprises.

The report consists of 6 sections, contains 100 pages, including 8 figures, 16 tables and 2 appendices.

In the first Chapter of the report presents information about the global experience sulphur recovery.

The second Chapter is devoted to existing technologies, methods and techniques of utilization of sulfur in Russia.

In the third Chapter presents data on the methods and means of storage of sulfur.

In the fourth Chapter of the report presents information about Russian organizations involved in the utilization of sulfur.

In the fifth Chapter discusses the companies that implement (assuming implement) methods of disposal of sulfur.

The sixth Chapter is devoted to forecast of implementation of the developed technologies and disposal methods sulfur in Russia for the period up to 2030.

The Appendix presents addresses and contact information of enterprises involved in recycling of sulfur in Russia.

Target audience research:

  • market participants and sulfur products based on sulphur - producers, consumers, traders;
  • potential investors.

This research claims to be a reference tool for marketing services and for decision management solutions, working in the market of sulfur and seroprotection.

Table of Contents

INTRODUCTION

I. World experience sulphur recovery

II. Development of methods and technologies of recycling of sulfur in Russia

  • II.1. The production of building materials
    • II.1.1. Sulfur cement and sulfur concrete
    • II.1.2. The sulfur-asphalt and sulfur-asphalt concrete
    • II.1.3. Impregnation of building materials melt and an aqueous solution of sulfur
  • II.2. The use of sulfur for the production of new types of fertilizers and plant protection means
  • II.3. The use of sulphur and its compositions as additives to polymers and oils
    • II.3.1. Sulfur as a stabilizer of polymers of vinyl chloride
    • II.3.2. Oil additives
  • II.4. The production of high-purity sulfur
  • II.5. Processing of sulfur and its compounds to sulfides and polysulfides

III. Methods and ways of storing sulfur

  • III.1. Global experience sulfur storage
  • III.2. Storage of sulfur in various enterprises of Russia

IV. Organization of Russia dealing with sulphur recovery

  • IV.1. LLC "Gazprom VNIIGAZ" (Moscow)
  • IV.2. LLC "NIIZHB" (Moscow)
  • IV.3. JSC "Gintsvetmet" (Moscow)
  • IV.4. Innovation center "Chemtec" (Ufa, Republic of Bashkortostan)
  • IV.5. Norilsk industrial Institute (Norilsk)
  • IV.6. Kazan national research technological University (Kazan, Republic of Tatarstan)

V. Russian enterprises that implement (assuming implement) sulphur recovery methods

  • V.1. JSC Gazprom (Moscow)
  • V.2. LLC "Engineering" (Astrakhan)
  • V.3. Polar division of OJSC MMC Norilsk Nickel (Norilsk)
  • V.4. LLC NPP "Prospectus" (Ryazan)
  • V.5. JSC "Ural copper-smelting plant (Revda, Sverdlovsk region).

VI. The conclusions. The forecast of the methods of disposal of sulfur in Russia for the period up to 2030

Appendix 1. Address book organizations involved in the utilization of sulfur in Russia

Appendix 2. Address book companies, which implement methods of disposal of sulfur, as well as offering equipment for the production of sulfur concrete and cerebrality in Russia

List of Tables:

  • Table 1: Conventional classification of the various forms of elemental sulfur
  • Table 2: Mechanical properties of sulfur concrete and concrete based on cement
  • Table 3: properties of sulfur concrete
  • Table 4: range of mobile plants for the production of sulfur concrete of production of JSC "Kazan plant of RV"
  • Table 5: Summary table of indicators of physical and mechanical properties of asphalt-bituminous mixtures
  • Table 6: Physico-mechanical properties of concrete before and after sulfur impregnation and MMA
  • Table 7: Physico-mechanical properties of cement mortar before and after impregnation with a solution of sulfur
  • Table 8: Angle of repose of the mixture gas sulphur - bentonite depending on their ratio
  • Table 9: Yield and quality of potatoes under the influence of the modified sulfur gas
  • Table 10: Value of thermal stability time of PVC compositions
  • Table 11: Physical and mechanical properties of polysulfides
  • Table 12: Properties of binders bitonality
  • Table 13: Composition of sulfur concrete proposed Norilsk industrial Institute, and their characteristics
  • Table 14: Dependence of the reduction of the strength characteristics of sulfur concrete from their water saturation
  • Table 15: Values of factors of safety sulfur concretes when exposed to frost
  • Table 16: Physico-mechanical characteristics of the optimal composition of sulfur concrete

List of Figures:

  • Figure 1. A generalized variant of the technology of production of sulfur concrete, widely spread in the world
  • Figure 2. Technology of production of sulfur concrete, developed by the innovation center "Chemtec"
  • Figure 3: flow diagram for production of sulphur and polysulphides waste of silica gel and materials on their basis
  • Figure 4: flow sheet of production of polysulfide and bitumpolysulfide binders
  • Figure 5: Scheme of the "sarcophagus", made of sulphur concrete, storage lump and granulated sulfur according to the method of LLC "Engineering"
  • Figure 6: Schematic diagram of the operation of the apparatus of the vortex layer (ABC) produced by "Engineering"
  • Figure 7: development of the production of materials on the basis of sulfur in three key regions (the Central Federal district, southern Federal district, Volga Federal district) for the period up to 2030, kt
  • Figure 8: development of the production of materials on the basis of sulfur on the whole territory of Russia for the period up to 2030, kt kt
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