시장보고서
상품코드
1801104

항공기 제빙 시장 보고서 : 유체 유형, 용도, 장비, 지역별(2025-2033년)

Aircraft De-Icing Market Report by Fluid Type (Type I, Type II, Type III, Type IV), Application (Military, Commercial), Equipment (De-Icing Trucks, Sweepers, and Others), and Region 2025-2033

발행일: | 리서치사: IMARC | 페이지 정보: 영문 117 Pages | 배송안내 : 2-3일 (영업일 기준)

    
    
    




※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

세계 항공기 제빙 시장 규모는 2024년 13억 6,000만 달러에 달했습니다. 향후 IMARC Group은 2033년에는 20억 1,000만 달러에 달할 것으로 예상되며, 2025-2033년 동안 4.23%의 연평균 성장률(CAGR)을 기록할 것으로 예측하고 있습니다. 항공 업계의 안전하고 효율적인 겨울철 운항 요구 증가, 제빙 기술 혁신, 엄격한 안전 규제 시행, 추운 지역의 공항 건설 증가 등이 시장 성장을 촉진하는 요인으로 작용하고 있습니다.

항공기 제빙 시장 동향

제빙 방법의 기술적 진보

화학제품을 사용하지 않고 고주파 전류를 이용해 얼음을 녹이는 제빙 시스템의 개발은 주목할 만한 기술 발전입니다. 이 시스템을 통해 기존의 화학 제빙제가 불필요해져 환경에 미치는 악영향과 물류상의 문제를 해결할 수 있습니다. 2023년 12월 5일, 보스턴에 본사를 둔 De-Ice(TM)는 에어캐나다가 Airbus A320 기종에 화학제품을 사용하지 않는 제빙 솔루션을 도입한 최초의 항공사가 되었다고 발표했습니다. 이 기술은 제빙에 고주파 전류를 이용합니다. 이러한 개선을 통해 제빙제로 인한 환경 영향을 줄이고, 얼음 퇴적에 따른 지연을 최소화하여 효율을 향상시키고 있습니다. 또한, 이러한 항공기 제빙 시장의 최근 동향은 항공사가 엄격한 환경 규제를 준수하고 지속가능한 항공 여행 관행에 대한 고객의 증가하는 수요를 충족시킬 수 있도록 돕고 있습니다. 혁신적이고 친환경적인 제빙 방식으로의 전환은 겨울철 공항 운영을 재구성하고 지속가능성과 효율성을 향상시키고 있습니다.

지속가능한 제빙 방법 개선

지속가능한 제빙 방법의 발전은 환경적 책임을 중시하면서 효과를 유지하면서 항공기 제빙 산업에 혁명을 일으키고 있습니다. 이러한 발전은 효율적으로 분해되는 친환경 제빙액 개발로 이루어져 환경에 미치는 영향을 줄이고 주변 생태계에 대한 피해를 줄이고 있습니다. 또한 기업들은 더 적은 양의 액체로 최고의 효과를 발휘하는 더 효과적인 제빙기 개발에 자원을 투입하고 있습니다. 가열 포장이나 적외선 제빙 시스템과 같은 신기술은 기존 화학 기술에 비해 환경 친화적이고 에너지 효율이 높은 대안으로 각광받고 있습니다. 이러한 지속가능한 방법은 엄격한 환경 규제를 준수하는 데 도움이 될 뿐만 아니라 전 세계 지속가능성 목표를 지원하고 궁극적으로 보다 환경 친화적이고 효과적인 항공 부문을 촉진할 수 있습니다. 2023년 9월, 빌뉴스 공항은 발트해 연안 국가 최초의 제빙 폐수처리 공장을 가동하기 시작했습니다. 이는 항공기 제빙에서 배출되는 폐수를 처리 및 재사용하여 지속가능성을 높이는 것을 목적으로 유럽연합(EU)이 일부 출자한 290만 유로 규모의 프로젝트입니다.

이상기후 빈도 증가

기후변화로 인한 이상기후 빈도의 증가가 항공기 제빙에 대한 수요를 견인하고 있습니다. 정기적이고 격렬한 겨울 폭풍, 폭설, 얼어붙은 날씨는 비행의 안전을 보장하고 중단을 줄이기 위해 강력한 제빙 프로토콜이 필요합니다. 항공사와 공항들은 이러한 문제를 효과적으로 해결하기 위해 첨단 제빙 기술 및 장비에 투자하여 대응하고 있습니다. 이러한 추세는 예측할 수 없는 겨울 날씨가 지속되는 지역에서는 운항 연속성 확보가 필수적이기 때문에 특히 중요합니다. 예를 들어, 캐나다에서는 자연재해와 이상기후로 인해 30억 달러 이상의 보험 손해가 발생했습니다. CatIQ(Catastrophe Indices and Quantification Inc.)에 따르면, 2023년 이상기후로 인한 보험비용은 전국적으로 31억 달러를 넘어섰다고 합니다.

목차

제1장 서문

제2장 조사 범위와 조사 방법

  • 조사 목적
  • 이해관계자
  • 데이터 소스
    • 1차 정보
    • 2차 정보
  • 시장 추정
    • 상향식 접근
    • 하향식 접근
  • 조사 방법

제3장 주요 요약

제4장 소개

제5장 세계의 항공기 제빙 시장

  • 시장 개요
  • 시장 실적
  • COVID-19의 영향
  • 시장 예측

제6장 시장 내역 : 유체 유형별

  • 유형 I
  • 유형 II
  • 유형 III
  • 유형 IV

제7장 시장 내역 : 용도별

  • 군용
  • 상업용

제8장 시장 내역 : 장비별

  • 제빙트럭
  • 스위퍼
  • 기타

제9장 시장 내역 : 지역별

  • 북미
    • 미국
    • 캐나다
  • 아시아태평양
    • 중국
    • 일본
    • 인도
    • 한국
    • 호주
    • 인도네시아
    • 기타
  • 유럽
    • 독일
    • 프랑스
    • 영국
    • 이탈리아
    • 스페인
    • 러시아
    • 기타
  • 라틴아메리카
    • 브라질
    • 멕시코
    • 기타
  • 중동 및 아프리카

제10장 SWOT 분석

제11장 밸류체인 분석

제12장 Porter's Five Forces 분석

제13장 가격 분석

제14장 경쟁 구도

  • 시장 구조
  • 주요 기업
  • 주요 기업 개요
    • B/E Aerospace Inc.(Rockwell Collins Inc.)
    • BASF SE
    • Clariant AG
    • General Atomic Technologies
    • Global Ground Support LLC(Air T Inc.)
    • JBT Corporation(FMC Technologies)
    • Kilfrost Ltd.
    • The Dow Chemical Company
    • Tronair Inc.
    • UTC Aerospace Systems(Collins Aerospace)
    • Vestergaard Company A/S
KSM 25.09.08

The global aircraft de-icing market size reached USD 1.36 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 2.01 Billion by 2033, exhibiting a growth rate (CAGR) of 4.23% during 2025-2033. The growing need for safe and efficient winter operations in aviation, innovations in de-icing technology, implementation of stringent safety regulations, and rising construction of airports in colder are some of the factors impelling the market growth.

Aircraft De-Icing Market Trends:

Technological Advancements in De-icing Methods

The development of de-icing systems that avoid chemicals and instead utilize high-frequency electric currents to melt ice represents a notable technological advancement. These systems eliminate the need for traditional chemical de-icers, which can harm the environment and pose logistical challenges. On December 5 2023, Boston-based company De-Ice(TM) disclosed that Air Canada would be the inaugural airline to implement its chemical-free de-icing solutions on Airbus A320 planes, leading to a notable decrease in winter departure delays and carbon emissions. This technology utilizes high-frequency electric current for de-icing. These improvements lessen the impact on the environment of de-icing chemicals and improve efficiency by minimizing delays from ice accumulation. Moreover, these aircraft de-icing market recent developments assist airlines in adhering to stringent environmental regulations and meeting the growing demand from customers for sustainable air travel practices. The shift to innovative, eco-conscious de-icing methods is reshaping winter airport operations, improving sustainability and efficiency.

Improvements in Sustainable De-icing Practices

Progress in sustainable de-icing methods is revolutionizing the aircraft de-icing industry by emphasizing environmental responsibility while maintaining effectiveness. These advancements consist of creating environment-friendly de-icing fluids that decompose efficiently, decreasing environmental impact and lessening damage to nearby ecosystems. Moreover, businesses are putting resources into developing more effective de-icing machinery that requires less liquid but still delivers top-notch results. New technologies like heated pavements and infrared de-icing systems are becoming popular as they provide greener and more energy-efficient options compared to conventional chemical techniques. These sustainable methods not only assist in complying with strict environmental regulations but also support worldwide sustainability objectives, ultimately promoting a more eco-friendly and effective aviation sector. In September 2023, Vilnius Airport started operating the first de-icing wastewater treatment plant in the Baltic States, which is a €2.9m project partially funded by the European Union (EU) to enhance sustainability by treating and reusing wastewater from aircraft de-icing.

Rising Frequency of Extreme Weather Events

The increasing frequency of extreme weather events caused by climate change is driving the aircraft de-icing demand. Regular and intense winter storms, significant snowfall, and icy weather require strong de-icing protocols to guarantee the safety of flights and reduce interruptions. Airlines and airports are responding by investing in advanced de-icing technologies and equipment to effectively tackle these challenges. This trend is particularly important in areas with unpredictable winter weather, where it is vital to ensure operational continuity. For instance, Canada experienced more than $3 billion in insured losses as a result of natural disasters and extreme weather events. According to the Catastrophe Indices and Quantification Inc. (CatIQ), insured costs for extreme weather events exceeded $3.1 billion in 2023 on a national scale.

Aircraft De-Icing Market Segmentation:

Breakup by Fluid Type:

  • Type I
  • Type II
  • Type III
  • Type IV

Type I accounts for the majority of the market share

Type I is the most prominent segment in market, largely because it is widely used to remove ice and frost from aircraft surfaces before takeoff. This fluid, which is high in glycol content and low in viscosity, is popular for its fast and effective de-icing abilities, making it perfect for use in changing weather conditions. The widespread use of type I fluid is motivated by its affordability, simplicity, and quick results, which are essential for upholding flight schedules and safety. Its ability to work with many different types of aircraft and perform well in various temperatures helps to make it a leading product in the market.

Breakup by Application:

  • Military
  • Commercial

Commercial holds the largest share of the industry

Commercial dominates the market, driven by the wide network of commercial airlines and the large number of passenger and cargo flights worldwide. The increasing need for de-icing in regions with severe winter weather is crucial to guarantee safety and efficiency due to the rising demand for air travel. Commercial airline companies make notable investments in advanced de-icing technologies and systems to reduce delays and improve the passenger journey, all while following strict regulatory requirements. Moreover, the growing focus on enhancing airport facilities and the rising volume of flights play a major role in the market dominance of the commercial sector.

Breakup by Equipment:

  • De-Icing Trucks
  • Sweepers
  • Others

De-icing trucks represent the leading market segment

De-icing trucks represent the largest market as per the aircraft de-icing market outlook because they play a crucial part in maintaining the safety and efficiency of planes in winter weather. These specially designed vehicles have advanced spraying systems and heated fluid tanks to apply de-icing quickly and anti-icing fluids on the surfaces of aircraft. Their ability to move easily and be adaptable allows them to quickly service various airplanes in different areas of an airport, leading to shorter turnaround times and ensuring flight schedules are kept. The growing use of de-icing trucks is driven by the need for effective and dependable de-icing options in large international airports and smaller regional hubs, highlighting their importance in present-day airport activities. For example, NextGen De-icing was introduced by Equivu Capital Holdings on June 21, 2023. NextGen De-icing's goal was to reduce winter operation expenses and flight interruptions for airlines by utilizing less de-icing fluid and sophisticated equipment like de-icing trucks with advanced technology.

Breakup by Region:

  • North America
    • United States
    • Canada
  • Asia Pacific
    • China
    • Japan
    • India
    • South Korea
    • Australia
    • Indonesia
    • Others
  • Europe
    • Germany
    • France
    • United Kingdom
    • Italy
    • Spain
    • Russia
    • Others
  • Latin America
    • Brazil
    • Mexico
    • Others
  • Middle East and Africa

North America leads the market, accounting for the largest aircraft de-icing market share

The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. according to the report, North America represents the largest regional market for aircraft de-icing.

North America dominates the market, mainly because of its vast airline network and regular exposure to harsh winter conditions. Robust de-icing infrastructure and operations are required due to the existence of large international airports and high air traffic volumes. Moreover, strict aviation safety rules and substantial funding for innovative technologies contribute to the aircraft de-icing market growth. The North American market is advantaged by the strong presence of top industry players and ongoing advancements in de-icing solutions, guaranteeing the effectiveness and safety of aircraft operations during the winter months. For instance, in 2023, Air Canada experimented with a new idea by utilizing heated tape strips for de-icing planes instead of glycol sprays, which was tested by a Boston startup named De-Ice. The technology went through regulatory testing, demonstrating its safety and durability.

Competitive Landscape:

  • The market research report has also provided a comprehensive analysis of the competitive landscape in the market. Detailed profiles of all major companies have also been provided. Some of the major market players in the industry include B/E Aerospace Inc. (Rockwell Collins Inc.), BASF SE, Clariant AG, General Atomic Technologies, Global Ground Support LLC (Air T Inc.), JBT Corporation (FMC Technologies), Kilfrost Ltd., The Dow Chemical Company, Tronair Inc., UTC Aerospace Systems (Collins Aerospace) and Vestergaard Company A/S.

(Please note that this is only a partial list of the key players, and the complete list is provided in the report.)

  • Aircraft de-icing companies are prioritizing strategic efforts to strengthen their market position and technological skills. They are putting resources into research and development (R&D) to create eco-friendly and efficient solutions for de-icing, focusing on environmental issues and meeting regulations. On November 15, 2023, Syracuse Hancock International Airport inaugurated the United States' initial glycol recycling plant to repurpose de-icing liquid, decreasing wastewater and guaranteeing a more stable glycol source for airlines. Businesses are also broadening their range of products by merging, acquiring, and forming partnerships to enhance their competitive advantage. Furthermore, they are utilizing cutting-edge technologies like automation and IoT to enhance the efficiency and effectiveness of de-icing procedures. These players are working closely with airports and airlines worldwide to provide tailored de-icing services and equipment, guaranteeing operational reliability and safety in winter weather.

Key Questions Answered in This Report

  • 1.What is the expected growth rate of the global aircraft de-icing market?
  • 2.What has been the impact of COVID-19 on the global aircraft de-icing market?
  • 3.What are the key factors driving the global aircraft de-icing market?
  • 4.What is the breakup of the global aircraft de-icing market based on the fluid type?
  • 5.What is the breakup of the global aircraft de-icing market based on the application?
  • 6.What are the key regions in the global aircraft de-icing market?
  • 7.Who are the key players/companies in the global aircraft de-icing market?

Table of Contents

1 Preface

2 Scope and Methodology

  • 2.1 Objectives of the Study
  • 2.2 Stakeholders
  • 2.3 Data Sources
    • 2.3.1 Primary Sources
    • 2.3.2 Secondary Sources
  • 2.4 Market Estimation
    • 2.4.1 Bottom-Up Approach
    • 2.4.2 Top-Down Approach
  • 2.5 Forecasting Methodology

3 Executive Summary

4 Introduction

  • 4.1 Overview
  • 4.2 Key Industry Trends

5 Global Aircraft De-Icing Market

  • 5.1 Market Overview
  • 5.2 Market Performance
  • 5.3 Impact of COVID-19
  • 5.4 Market Forecast

6 Market Breakup by Fluid Type

  • 6.1 Type I
    • 6.1.1 Market Trends
    • 6.1.2 Market Forecast
  • 6.2 Type II
    • 6.2.1 Market Trends
    • 6.2.2 Market Forecast
  • 6.3 Type III
    • 6.3.1 Market Trends
    • 6.3.2 Market Forecast
  • 6.4 Type IV
    • 6.4.1 Market Trends
    • 6.4.2 Market Forecast

7 Market Breakup by Application

  • 7.1 Military
    • 7.1.1 Market Trends
    • 7.1.2 Market Forecast
  • 7.2 Commercial
    • 7.2.1 Market Trends
    • 7.2.2 Market Forecast

8 Market Breakup by Equipment

  • 8.1 De-Icing Trucks
    • 8.1.1 Market Trends
    • 8.1.2 Market Forecast
  • 8.2 Sweepers
    • 8.2.1 Market Trends
    • 8.2.2 Market Forecast
  • 8.3 Others
    • 8.3.1 Market Trends
    • 8.3.2 Market Forecast

9 Market Breakup by Region

  • 9.1 North America
    • 9.1.1 United States
      • 9.1.1.1 Market Trends
      • 9.1.1.2 Market Forecast
    • 9.1.2 Canada
      • 9.1.2.1 Market Trends
      • 9.1.2.2 Market Forecast
  • 9.2 Asia Pacific
    • 9.2.1 China
      • 9.2.1.1 Market Trends
      • 9.2.1.2 Market Forecast
    • 9.2.2 Japan
      • 9.2.2.1 Market Trends
      • 9.2.2.2 Market Forecast
    • 9.2.3 India
      • 9.2.3.1 Market Trends
      • 9.2.3.2 Market Forecast
    • 9.2.4 South Korea
      • 9.2.4.1 Market Trends
      • 9.2.4.2 Market Forecast
    • 9.2.5 Australia
      • 9.2.5.1 Market Trends
      • 9.2.5.2 Market Forecast
    • 9.2.6 Indonesia
      • 9.2.6.1 Market Trends
      • 9.2.6.2 Market Forecast
    • 9.2.7 Others
      • 9.2.7.1 Market Trends
      • 9.2.7.2 Market Forecast
  • 9.3 Europe
    • 9.3.1 Germany
      • 9.3.1.1 Market Trends
      • 9.3.1.2 Market Forecast
    • 9.3.2 France
      • 9.3.2.1 Market Trends
      • 9.3.2.2 Market Forecast
    • 9.3.3 United Kingdom
      • 9.3.3.1 Market Trends
      • 9.3.3.2 Market Forecast
    • 9.3.4 Italy
      • 9.3.4.1 Market Trends
      • 9.3.4.2 Market Forecast
    • 9.3.5 Spain
      • 9.3.5.1 Market Trends
      • 9.3.5.2 Market Forecast
    • 9.3.6 Russia
      • 9.3.6.1 Market Trends
      • 9.3.6.2 Market Forecast
    • 9.3.7 Others
      • 9.3.7.1 Market Trends
      • 9.3.7.2 Market Forecast
  • 9.4 Latin America
    • 9.4.1 Brazil
      • 9.4.1.1 Market Trends
      • 9.4.1.2 Market Forecast
    • 9.4.2 Mexico
      • 9.4.2.1 Market Trends
      • 9.4.2.2 Market Forecast
    • 9.4.3 Others
      • 9.4.3.1 Market Trends
      • 9.4.3.2 Market Forecast
  • 9.5 Middle East and Africa
    • 9.5.1 Market Trends
    • 9.5.2 Market Breakup by Country
    • 9.5.3 Market Forecast

10 SWOT Analysis

  • 10.1 Overview
  • 10.2 Strengths
  • 10.3 Weaknesses
  • 10.4 Opportunities
  • 10.5 Threats

11 Value Chain Analysis

12 Porters Five Forces Analysis

  • 12.1 Overview
  • 12.2 Bargaining Power of Buyers
  • 12.3 Bargaining Power of Suppliers
  • 12.4 Degree of Competition
  • 12.5 Threat of New Entrants
  • 12.6 Threat of Substitutes

13 Price Analysis

14 Competitive Landscape

  • 14.1 Market Structure
  • 14.2 Key Players
  • 14.3 Profiles of Key Players
    • 14.3.1 B/E Aerospace Inc. (Rockwell Collins Inc.)
      • 14.3.1.1 Company Overview
      • 14.3.1.2 Product Portfolio
    • 14.3.2 BASF SE
      • 14.3.2.1 Company Overview
      • 14.3.2.2 Product Portfolio
      • 14.3.2.3 Financials
      • 14.3.2.4 SWOT Analysis
    • 14.3.3 Clariant AG
      • 14.3.3.1 Company Overview
      • 14.3.3.2 Product Portfolio
      • 14.3.3.3 Financials
    • 14.3.4 General Atomic Technologies
      • 14.3.4.1 Company Overview
      • 14.3.4.2 Product Portfolio
    • 14.3.5 Global Ground Support LLC (Air T Inc.)
      • 14.3.5.1 Company Overview
      • 14.3.5.2 Product Portfolio
    • 14.3.6 JBT Corporation (FMC Technologies)
      • 14.3.6.1 Company Overview
      • 14.3.6.2 Product Portfolio
      • 14.3.6.3 Financials
    • 14.3.7 Kilfrost Ltd.
      • 14.3.7.1 Company Overview
      • 14.3.7.2 Product Portfolio
      • 14.3.7.3 Financials
    • 14.3.8 The Dow Chemical Company
      • 14.3.8.1 Company Overview
      • 14.3.8.2 Product Portfolio
    • 14.3.9 Tronair Inc.
      • 14.3.9.1 Company Overview
      • 14.3.9.2 Product Portfolio
    • 14.3.10 UTC Aerospace Systems (Collins Aerospace)
      • 14.3.10.1 Company Overview
      • 14.3.10.2 Product Portfolio
      • 14.3.10.3 Financials
    • 14.3.11 Vestergaard Company A/S
      • 14.3.11.1 Company Overview
      • 14.3.11.2 Product Portfolio
      • 14.3.11.3 Financials
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