1. Global Market – Executive Summary
1.1. Summary of Key Findings
1.2. Summary of Statistics
1.3. Mega Trend in Chemical Industry
1.4. Fact.MR Analysis and Recommendations
2. Global Market Overview
2.1. Market Introduction
2.2. Market Definition
2.3. Market Taxonomy
3. Key Market Trends
3.1. Key Trends Impacting the Market
3.2. Development Trends
4. Market Background
4.1. Global Chemical Industry Outlook
4.1.1. Chemical sales by region
4.1.2. Top 10 countries in the chemical market
4.2. Overview
4.2.1. Manufacturing process
4.3. Global Production Overview
4.3.1. Methods of production
4.3.2. Production by Regions*
4.3.2.1. North America
4.3.2.2. Europe
4.3.2.3. Asia Pacific
4.3.2.4. Rest of the World
4.4. Production by key countries*
4.4.1. China
4.4.2. USA
4.4.3. Norway
4.4.4. Others
(per information available in public and private domains)
4.5. Global Oil & Gas Industry Overview and Outlook
4.5.1. Total Proved reserves of Crude Oil
4.5.2. Global Crude Oil production
4.5.2.1. By Region
4.5.2.2. By key countries
4.6. U.S. Historic & Current Oil & Gas production scenario
4.6.1. Rig count
4.7. Crude Oil Price Movements
4.7.1. WTI price movements
4.7.2. Brent price movements
4.8. Drilling and Completion Fluids Market Statistics and Overview
4.8.1. Water-based Muds
4.8.2. Oil-based Muds
4.8.3. Synthetic-based Muds
4.9. Regulatory Framework
4.10. Forecast Factors – Relevance & Impact
4.10.1. Global GDP outlook
4.10.2. Global Chemical industry outlook
4.10.3. Population growth estimates
4.11. Value Chain Analysis
4.11.1. List of Key Manufacturers
4.11.2. List of Distributors
4.11.3. List of End-users
4.11.4. Value added at each node
4.12. Market Dynamics
4.12.1. Drivers
4.12.2. Restraints
4.12.3. Opportunity Analysis
5. Global Market Demand Analysis 2018-2022 and Forecast, 2023-2033
5.1. Historical Market Volume (Tons) Analysis, 2018-2022
5.2. Current and Future Market Volume (Tons) Projections, 2023-2033
5.3. Y-o-Y Growth Trend Analysis
6. Global Market – Pricing Analysis
6.1. Regional Pricing Analysis
6.2. Pricing Break-up
6.3. Global Average Pricing Analysis Benchmark
7. Global Market Demand (US$ Mn) Analysis 2018-2022 and Forecast, 2023-2033
7.1. Historical Market Value (US$ Mn) Analysis, 2018-2022
7.2. Current and Future Market Value (US$ Mn) Projections, 2023-2033
7.2.1. Y-o-Y Growth Trend Analysis
7.2.2. Absolute $ Opportunity Analysis
8. Global Market Analysis 2018-2022 and Forecast 2023-2033, By Delivery Form
8.1. Introduction / Key Findings
8.2. Historical Market Size (US$ Mn) and Volume Analysis By Delivery Form, 2018-2022
8.3. Current and Future Market Size (US$ Mn) and Volume Analysis and Forecast By Delivery Form, 2023 – 2033
8.3.1. Dry solid / Non-caking powder
8.3.2. Brine Solution
8.3.2.1. < 75% 8.3.2.2. > 75%
8.4. Market Attractiveness Analysis By Delivery Form
9. Global Market Analysis 2018-2022 and Forecast 2023-2033, by Application
9.1. Introduction / Key Findings
9.2. Historical Market Size (US$ Mn) and Volume Analysis By Application, 2018-2022
9.3. Current and Future Market Size (US$ Mn) and Volume Analysis and Forecast By Application, 2023 – 2033
9.3.1. De-icing
9.3.2. Drilling fluids
9.3.3. Heat transfer fluids
9.3.4. Anti-freeze
9.3.5. Agricultural products
9.3.6. Lubricants & greases
9.3.7. Others
9.4. Market Attractiveness Analysis By Application
10. Global Market Analysis 2018-2022 and Forecast 2023-2033, by Region
10.1. Introduction
10.2. Historical Market Size (US$ Mn) and Volume Analysis By Region, 2018-2022
10.3. Current Market Size (US$ Mn) and Volume Analysis and Forecast By Region, 2023 – 2033
10.3.1. North America
10.3.2. Latin America
10.3.3. Europe
10.3.4. South Asia & Oceania
10.3.5. East Asia
10.3.6. Middle East & Africa
10.4. Market Attractiveness Analysis By Region
11. North America Market Analysis 2018-2022 and Forecast 2023-2033
11.1. Introduction
11.2. Pricing Analysis
11.3. Historical Market Size (US$ Mn) and Volume Trend Analysis By Market Taxonomy, 2018-2022
11.4. Market Size (US$ Mn) and Volume Forecast By Market Taxonomy, 2023 – 2033
11.4.1. By Country
11.4.1.1. U.S.
11.4.1.2. Canada
11.4.2. By Delivery Form
11.4.3. By Application
11.5. Market Attractiveness Analysis
11.5.1. By Country
11.5.2. By Delivery Form
11.5.3. By Application
11.6. Market Trends
11.7. Key Market Participants – Intensity Mapping
11.8. Drivers and Restraints – Impact Analysis
12. Latin America Market Analysis 2018-2022 and Forecast 2023-2033
12.1. Introduction
12.2. Pricing Analysis
12.3. Historical Market Size (US$ Mn) and Volume Trend Analysis By Market Taxonomy, 2018-2022
12.4. Market Size (US$ Mn) and Volume Forecast By Market Taxonomy, 2023 – 2033
12.4.1. By Country
12.4.1.1. Brazil
12.4.1.2. Mexico
12.4.1.3. Rest of Latin America
12.4.2. By Delivery Form
12.4.3. By Application
12.5. Market Attractiveness Analysis
12.5.1. By Country
12.5.2. By Delivery Form
12.5.3. By Application
12.6. Market Trends
12.7. Key Market Participants – Intensity Mapping
12.8. Drivers and Restraints – Impact Analysis
13. Europe Market Analysis 2018-2022 and Forecast 2023-2033
13.1. Introduction
13.2. Pricing Analysis
13.3. Historical Market Size (US$ Mn) and Volume Trend Analysis By Market Taxonomy, 2018-2022
13.4. Market Size (US$ Mn) and Volume Forecast By Market Taxonomy, 2023 – 2033
13.4.1. By Country
13.4.1.1. Germany
13.4.1.2. Italy
13.4.1.3. France
13.4.1.4. U.K.
13.4.1.5. Spain
13.4.1.6. BENELUX
13.4.1.7. Russia
13.4.1.8. Rest of Europe
13.4.2. By Delivery Form
13.4.3. By Application
13.5. Market Attractiveness Analysis
13.5.1. By Country
13.5.2. By Delivery Form
13.5.3. By Application
13.6. Market Trends
13.7. Key Market Participants – Intensity Mapping
13.8. Drivers and Restraints – Impact Analysis
14. South Asia & Oceania Market Analysis 2018-2022 and Forecast 2023-2033
14.1. Introduction
14.2. Pricing Analysis
14.3. Historical Market Size (US$ Mn) and Volume Trend Analysis By Market Taxonomy, 2018-2022
14.4. Market Size (US$ Mn) and Volume Forecast By Market Taxonomy, 2023 – 2033
14.4.1. By Country
14.4.1.1. India
14.4.1.2. Thailand
14.4.1.3. Indonesia
14.4.1.4. Malaysia
14.4.1.5. Australia & New Zealand
14.4.1.6. Rest of South Asia & Oceania
14.4.2. By Delivery Form
14.4.3. By Application
14.5. Market Attractiveness Analysis
14.5.1. By Country
14.5.2. By Delivery Form
14.5.3. By Application
14.6. Market Trends
14.7. Key Market Participants – Intensity Mapping
14.8. Drivers and Restraints – Impact Analysis
15. East Asia Market Analysis 2018-2022 and Forecast 2023-2033
15.1. Introduction
15.2. Pricing Analysis
15.3. Historical Market Size (US$ Mn) and Volume Trend Analysis By Market Taxonomy, 2018-2022
15.4. Market Size (US$ Mn) and Volume Forecast By Market Taxonomy, 2023 – 2033
15.4.1. By Country
15.4.1.1. China
15.4.1.2. Japan
15.4.1.3. South Korea
15.4.2. By Delivery Form
15.4.3. By Application
15.5. Market Attractiveness Analysis
15.5.1. By Country
15.5.2. By Delivery Form
15.5.3. By Application
15.6. Market Trends
15.7. Key Market Participants – Intensity Mapping
15.8. Drivers and Restraints – Impact Analysis
16. Middle East & Africa Market Analysis 2018-2022 and Forecast 2023-2033
16.1. Introduction
16.2. Pricing Analysis
16.3. Historical Market Size (US$ Mn) and Volume Trend Analysis By Market Taxonomy, 2018-2022
16.4. Market Size (US$ Mn) and Volume Forecast By Market Taxonomy, 2023 – 2033
16.4.1. By Country
16.4.1.1. GCC Countries
16.4.1.2. Turkey
16.4.1.3. Northern Africa
16.4.1.4. South Africa
16.4.1.5. Rest of Middle East & Africa
16.4.2. By Delivery Form
16.4.3. By Application
16.5. Market Attractiveness Analysis
16.5.1. By Country
16.5.2. By Delivery Form
16.5.3. By Application
16.6. Market Trends
16.7. Key Market Participants – Intensity Mapping
16.8. Drivers and Restraints – Impact Analysis
17. Emerging Countries Market Analysis 2018-2022 and Forecast 2023-2033
17.1. Introduction
17.1.1. Market Value Proportion Analysis, By Key Countries
17.1.2. Global Vs. Country Growth Comparison
17.2. China Market Analysis
17.2.1. Introduction
17.2.2. Pricing Analysis
17.2.3. Market Value Proportion Analysis by Market Taxonomy
17.2.4. Market Volume (Tons) and Value (US$ Mn) Analysis and Forecast by Market Taxonomy
17.2.4.1. By Application
17.2.4.2. By Delivery Form
17.3. India Market Analysis
17.3.1. Introduction
17.3.2. Pricing Analysis
17.3.3. Market Value Proportion Analysis by Market Taxonomy
17.3.4. Market Volume (Tons) and Value (US$ Mn) Analysis and Forecast by Market Taxonomy
17.3.4.1. By Application
17.3.4.2. By Delivery Form
17.4. Brazil Market Analysis
17.4.1. Introduction
17.4.2. Pricing Analysis
17.4.3. Market Value Proportion Analysis by Market Taxonomy
17.4.4. Market Volume (Tons) and Value (US$ Mn) Analysis and Forecast by Market Taxonomy
17.4.4.1. By Application
17.4.4.2. By Delivery Form
18. Market Structure Analysis
18.1. Market Analysis by Tier of Companies (Potassium Formate)
18.2. Market Concentration
18.3. Market Share Analysis of Top Players
19. Competition Analysis
19.1. Competition Dashboard
19.2. Competition Benchmarking
19.3. Competition Deep Dive
19.3.1. ADDCON GmbH
19.3.1.1. Overview
19.3.1.2. Product Portfolio
19.3.1.3. Geographical Sales footprint
19.3.1.4. SWOT Analysis
19.3.2. BASF SE
19.3.2.1. Overview
19.3.2.2. Product Portfolio
19.3.2.3. Geographical Sales footprint
19.3.2.4. SWOT Analysis
19.3.3. Cabot Corporation
19.3.3.1. Overview
19.3.3.2. Product Portfolio
19.3.3.3. Geographical Sales footprint
19.3.3.4. SWOT Analysis
19.3.4. Dynalene, Inc.
19.3.4.1. Overview
19.3.4.2. Product Portfolio
19.3.4.3. Geographical Sales footprint
19.3.4.4. SWOT Analysis
19.3.5. Evonik Industries
19.3.5.1. Overview
19.3.5.2. Product Portfolio
19.3.5.3. Geographical Sales footprint
19.3.5.4. SWOT Analysis
19.3.6. Hangzhou Focus Chemical Co., Ltd.
19.3.6.1. Overview
19.3.6.2. Product Portfolio
19.3.6.3. Geographical Sales footprint
19.3.6.4. SWOT Analysis
19.3.7. Hawkins, Inc.
19.3.7.1. Overview
19.3.7.2. Product Portfolio
19.3.7.3. Geographical Sales footprint
19.3.7.4. SWOT Analysis
19.3.8. Oxea Corporation
19.3.8.1. Overview
19.3.8.2. Product Portfolio
19.3.8.3. Geographical Sales footprint
19.3.8.4. SWOT Analysis
19.3.9. Perstorp Specialty Chemicals AB
19.3.9.1. Overview
19.3.9.2. Product Portfolio
19.3.9.3. Geographical Sales footprint
19.3.9.4. SWOT Analysis
19.3.10. Other Key Players
19.3.10.1. Overview
19.3.10.2. Product Portfolio
19.3.10.3. Geographical Sales footprint
19.3.10.4. SWOT Analysis
20. Assumptions and Acronyms Used
21. Research Methodology
Table 01: Global Market Value (US$ Mn) by Region, 2018-2033Table 02: Global Market Volume (Kilo Tons) by Region, 2018-2033
Table 03: Global Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 04: Global Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 05: Global Market Value (US$ Mn) by Application, 2018-2033
Table 06: Global Market Volume (Kilo Tons) by Application, 2018-2033
Table 07: North America Market Value (US$ Mn) by Country, 2018-2033
Table 08: North America Market Volume (Kilo Tons) by Country, 2018-2033
Table 09: North America Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 10: North America Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 11: North America Market Value (US$ Mn) by Application, 2018-2033
Table 12: North America Market Volume (Kilo Tons) by Application, 2018-2033
Table 13: Latin America Market Value (US$ Mn) by Country, 2018-2033
Table 14: Latin America Market Volume (Kilo Tons) by Country, 2018-2033
Table 15: Latin America Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 16: Latin America Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 17: Latin America Market Value (US$ Mn) by Application, 2018-2033
Table 18: Latin America Market Volume (Kilo Tons) by Application, 2018-2033
Table 19: Europe Market Value (US$ Mn) by Country, 2018-2033
Table 20: Europe Market Volume (Kilo Tons) by Country, 2018-2033
Table 21: Europe Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 22: Europe Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 23: Europe Market Value (US$ Mn) by Application, 2018-2033
Table 24: Europe Market Volume (Kilo Tons) by Application, 2018-2033
Table 25: East Asia Market Value (US$ Mn) by Country, 2018-2033
Table 26: East Asia Market Volume (Kilo Tons) by Country, 2018-2033
Table 27: East Asia Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 28: East Asia Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 29: East Asia Market Value (US$ Mn) by Application, 2018-2033
Table 30: East Asia Market Volume (Kilo Tons) by Application, 2018-2033
Table 31: South Asia & Oceania Market Value (US$ Mn) by Country, 2018-2033
Table 32: South Asia & Oceania Market Volume (Kilo Tons) by Country, 2018-2033
Table 33: South Asia & Oceania Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 34: South Asia & Oceania Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 35: South Asia & Oceania Market Value (US$ Mn) by Application, 2018-2033
Table 36: South Asia & Oceania Market Volume (Kilo Tons) by Application, 2018-2033
Table 37: MEA Market Value (US$ Mn) by Country, 2018-2033
Table 38: MEA Market Volume (Kilo Tons) by Country, 2018-2033
Table 39: MEA Market Value (US$ Mn) by Delivery Form, 2018-2033
Table 40: MEA Market Volume (Kilo Tons) by Delivery Form, 2018-2033
Table 41: MEA Market Value (US$ Mn) by Application, 2018-2033
Table 42: MEA Market Volume (Kilo Tons) by Application, 2018-2033
| ※参考情報 ギ酸カリウム(Potassium Formate)は、化学式が KHCOO で表される有機化合物です。これは、ギ酸(Formic Acid)とカリウムイオンから成り立つ塩であり、無色の結晶または白色の粉末状で存在します。ギ酸カリウムは水に非常に溶けやすく、さまざまな化学反応において重要な役割を果たす化合物です。 ギ酸カリウムには、さまざまな種類がありますが、一般的には工業用、実験室用、食品用のグレードに分類されます。工業用グレードは、主に金属表面処理や電気化学的な用途に使用されることが多く、実験室用は化学研究や分析手法に用いられます。食品用グレードは、食品添加物としての用途に特化しており、食品の保存や風味改善に寄与します。 ギ酸カリウムの用途は非常に多岐にわたり、その特徴的な性質からさまざまな産業に利用されています。まず、ギ酸カリウムは主に融雪剤として使用されることが多いです。寒冷地域では、雪や氷を効率的に溶かすための材料として利用され、道路や駐車場の安全性を保つのに役立ちます。加えて、ギ酸カリウムは航空機の翼や滑走路においても使用され、氷結防止効果を発揮します。 さらに、ギ酸カリウムは製造プロセスにおいても重要です。例えば、化学産業では、合成化学や化学反応において重要な役割を果たします。これは、ギ酸カリウムが酸・塩基反応において中性化剤として機能し、その他の化合物の合成においても反応性を向上させる助けとなるからです。そのため、製薬業界や農業分野での応用も見逃せません。 また、ギ酸カリウムは環境にも優しい選択肢です。他の塩類と比べて、植物や動物に対する毒性が低いため、農業での肥料や土壌改良剤としても使用されます。これは、持続可能な農業プラクティスの促進にも寄与することが期待されています。 ギ酸カリウムはその用途の幅広さから多くの先進的な技術とも関連しています。例えば、燃料電池技術においては、ギ酸の利用が注目されています。ギ酸カリウムは高効率の燃料電池反応をサポートし、エネルギー効率を向上させることができます。また、ギ酸カリウムはバイオテクノロジーの分野でも、微生物培養における栄養源として利用されることがあります。 高温超伝導材料の開発にもギ酸カリウムが関与しています。この材料は、エネルギー効率を高める新しい技術の一部であり、将来的なエネルギー利用に革命をもたらす可能性があります。これにより、ギ酸カリウムは持続可能な技術革新の一環として評価されています。 ギ酸カリウムの製造プロセスは、カリウム塩とギ酸を反応させることにより行われます。この反応は比較的簡単で、コスト効率も良いため、大量生産が可能です。さらに、製造時に生成される副産物も少ないため、環境への負荷も低いという利点があります。 このように、ギ酸カリウムはその化学的特性から多くの産業分野で活用されています。融雪剤や化学合成、農業などのさまざまな用途においてその重要性が増しています。今後も、新たな技術の進展とともに、その応用範囲はさらに広がると考えられています。ギ酸カリウムは、持続可能な製品やプロセスの開発において重要な役割を果たすことが期待されており、今後の研究や開発に注目が集まるでしょう。 |
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