세계 포름산 시장 – 2023-2030

Global Formic Acid market - 2023-2030

상품코드CH7506
발행기관DataM Intelligence
발행일2023.12.05
페이지 수201 Pages
포맷PDF + EXCEL
커버리지Global

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보고서 요약(국문)

개요
세계 포름산 시장은 2022년 11억 달러 규모에 도달했으며, 2023년부터 2030년까지 연평균 3.7%의 성장률을 보이며 2030년에는 14억 달러에 이를 것으로 예상됩니다.
화학 산업의 핵심 구성 요소인 포름산은 안료, 의약품, 용제 등 다양한 제품 생산에 사용됩니다. 이러한 산업 분야의 발전은 포름산 수요 증가에 부분적으로 기여하고 있습니다. 포름산은 다른 여러 물질보다 환경 친화적인 것으로 여겨지며, 보다 지속 가능한 대체재로 활용될 수 있는 분야에서 인기가 높아지고 있습니다.
농업 분야에서도 포름산은 중요한 역할을 합니다. 동물 사료의 항생제 및 방부제로 사용되는 포름산은 동물의 건강 유지와 성장 촉진에 필수적입니다. 세계 인구 증가에 따라 식량 소비가 증가하고 있으며, 이는 더욱 생산적인 농업 방식에 대한 필요성을 증대시키고, 결과적으로 포름산 수요 증가로 이어지고 있습니다.

아시아 태평양 지역은 전 세계 포름산 시장의 3분의 1 이상을 차지하는 성장 지역 중 하나이며, 중국과 인도를 비롯한 세계 최대 농업 경제국들이 다수 위치해 있습니다. 포름산은 농업에서 동물 사료 방부제 및 살충제로 널리 사용됩니다. 식량 생산 증대와 농업 확장에 대한 필요성이 증가하면서 이 지역의 포름산 수요가 증가하고 있습니다.

주요 동향
의약품 중간체로서의 사용 증가
의학 분야에서 85% 농도의 포름산은 부작용이 적고 치료 순응도가 높아 사마귀 치료에 효과적이고 비용 효율적이며 안전한 치료법으로 널리 사용되고 있습니다. 따라서 포름산은 아미도피린, 비타민 B 등 여러 의약품 생산의 중간체로 사용됩니다. 전 세계적인 홍역 발생은 아미도피린 제제에 대한 수요 증가를 부추기고 있습니다.

유니세프의 최신 자료에 따르면 2022년 첫 두 달 동안 전 세계적으로 홍역 발병 사례가 2021년 같은 기간에 비해 증가했습니다. 미국 질병통제예방센터(CDC)는 2021년 소말리아, 나이지리아, 인도에서 각각 5,760건, 5,613건, 4,178건의 홍역 발병 사례가 발생할 것으로 예측했습니다.
이러한 상황으로 인해 아미도피린, 비타민 B 등과 같은 의약품 수요 증가에 대응하기 위한 제약 중간체 수요가 증가하고 있습니다. 결과적으로 포름산 소비가 증가할 것으로 예상되며, 이는 향후 몇 년 동안 시장 성장을 촉진할 것입니다.
가죽 및 섬유 산업의 성장
포름산은 이러한 특성 때문에 염색, 무두질 및 기타 공정에 사용됩니다. 따라서 가죽 및 섬유 산업에 매우 적합합니다. 섬유 부문에 대한 외국인 투자 증가와 새로운 섬유 및 가죽 생산 시설 건설과 같은 요소들이 섬유 및 가죽 산업의 성장을 뒷받침하고 있습니다.

예를 들어, 방글라데시의 몽글라 수출가공지역(EPZ)은 중국 기업인 시허 섬유기술방글라데시 유한회사(Xihe Textile Technology Bangladesh Limited)의 1,289만 달러 투자 덕분에 곧 의류 제조 산업을 갖추게 될 것입니다. 이 프로젝트는 2023년까지 개발이 완료될 예정입니다.
유럽 공동체의 가죽 가공업자 및 가공업자 국가협회 연합에 따르면, 유럽 연합은 전 세계 가죽 무두질 시장의 약 56%를 점유하고 있습니다. 가죽 및 섬유 산업의 성장으로 인해 포름산 산업도 성장하고 있습니다.
가변적인 원자재 비용
포름산 시장은 원자재 비용의 변동성으로 인해 매우 제한적입니다. 포름산 생산은 일반적으로 메탄올 카르보닐화 공정을 통해 이루어지며, 이때 메탄올과 일산화탄소가 주요 원료로 사용됩니다. 특정 필수 구성 요소의 비용은 포름산의 전체 생산 비용에 상당한 영향을 미칠 수 있습니다.
원자재 비용 상승은 포름산 생산자들이 경쟁력 있는 가격을 유지해야 한다는 압력을 가중시켜 결과적으로 수익 마진에 영향을 미칠 수 있습니다. 원자재 가격 변동에 대한 가격 민감도는 포름산 산업에서 공급망 관리와 비용 절감 전략이 얼마나 중요한지를 보여줍니다.
엄격한 규제
포름산은 많은 대체재 시장을 장악해 왔음에도 불구하고, 사용을 제한하는 규제로 인해 산업 확장이 저해되고 있습니다. 예를 들어, 포름산은 부식성이 강한 화학물질로, 눈, 폐, 기타 장기에 접촉할 경우 심각한 건강 문제를 일으킬 수 있습니다. 또한, 유럽 연합의 CLP00 조화 분류 및 라벨링 시스템에 따르면, 이 물질은 심한 피부 화상과 눈 손상을 유발할 수 있습니다.
뿐만 아니라, 기업들은 REACH 등록에서 포름산을 섭취 시 위험, 흡입 시 독성, 장기 손상, 가연성, 심각한 눈 손상 유발 물질로 분류하고 있습니다. 황산과 혼합될 경우, 포름산은 치명적인 일산화탄소 중독을 일으킬 수 있습니다. 따라서 이러한 규제는 포름산 시장 확장을 제한하는 요인으로 작용하고 있습니다.

시장 세분화 분석
세계 포름산 시장은 등급, 생산 방식, 용도, 최종 사용자 및 지역별로 세분화됩니다.
농업 생산성 향상으로 인한 농업 부문 포름산 수요 증가
농업 부문은 세계 포름산 시장의 3분의 1 이상을 차지하며 성장세를 보이는 분야 중 하나입니다. 포름산과 옥살산을 혼합하면 해충 방제 효과가 향상됩니다. 이는 작물 보호, 사료 보존 및 기타 여러 이점을 제공합니다. 이러한 특성으로 인해 포름산은 농업 분야에서 널리 사용되고 있습니다.
농업 사업의 성장은 사료 내 동물 성장 촉진용 항생제 사용 금지, 농업 생산성 향상 등 여러 요인에 의해 좌우됩니다. 예를 들어, 미국, 영국 등 북미 및 유럽 여러 국가에서는 사료 내 동물 성장 촉진용 항생제 사용이 금지되었습니다.

또한, OECD-FOA 농업 전망에 따르면 전 세계 농업 생산량은 2026년까지 304,403.61톤에 이를 것으로 예상됩니다. 원료를 장기간 보존하기 위해, 규제 강화와 농업 생산량 증가 전망으로 인해 유기 화합물 사용이 증가할 것입니다. 이는 포름산 소비 증가로 이어져 향후 시장 성장을 가속화할 것으로 예상됩니다.
지리적 시장 침투
아시아 태평양 지역 가죽 및 섬유 산업의 포름산 수요 증가
아시아 태평양 지역은 가죽, 섬유 등 지역 경제 성장과 밀접하게 연관된 산업들로 인해 전 세계 포름산 시장에 큰 영향을 미치고 있습니다. 이 지역의 섬유 산업 성장은 예측 기간 동안 포름산 시장 점유율을 최대 43.4%까지 끌어올릴 것으로 예상됩니다. 또한, 아시아 태평양 지역의 농업 산업은 식량 안보 강화를 위한 식품 보존 방법 개발 및 기타 요인들의 영향으로 성장하고 있습니다.

예를 들어, 아시아 태평양 지역의 식량 작물 생산량은 2020년과 2021년 사이에 눈에 띄게 증가했습니다. 미국 농무부 통계에 따르면 이 기간 동안 식량 작물 전체 생산량이 크게 증가했습니다. 이전 최고 기록인 약 9억 9,880만 톤에 비해 10억 2,670만 톤, 즉 2.8% 이상 증가했습니다. 미국 농무부 자료에 따르면 2021년 기준 중국의 소는 9만 5,619천 마리로 2016년의 9만 1,380천 마리에서 4.6% 증가했습니다.
2011년 중국 전체의 소는 5만 3천 마리였습니다. 2021년에는 5만 3,400마리로 약 1%의 소폭 증가를 보였습니다. 이처럼 아시아 태평양 지역의 축산업과 농업 산업의 성장은 개미산 소비 증가를 견인하고 있습니다. 포름산 시장 성장은 기술 발전에 힘입어 가속화되고 있습니다.
예를 들어, AB Agri는 2022년 7월, 지역 생산 능력을 크게 늘리기 위해 중국 산시성 퉁촨시에 240kg톤 규모의 신규 사료 공장을 건설했습니다. AB Agri China에서 두 번째로 큰 규모인 이 34,000㎡ 시설에는 돼지 사료와 반추동물 사료 생산 라인이 별도로 마련되어 있습니다.
코로나19 영향 분석
팬데믹은 국제 공급망, 특히 화학 부문에 영향을 미쳤습니다. 여러 국가의 봉쇄, 여행 제한, 시설 임시 폐쇄로 인해 포름산 및 관련 화합물의 생산과 운송이 지연되었습니다. 공급망 차질로 인해 많은 부문에서 포름산 공급에 차질이 생겨 공급 부족과 물류 문제가 발생했습니다.
또한, 전염병으로 인해 포름산 수요에도 변화가 생겼습니다. 봉쇄 조치와 소비자 지출 감소로 인해 가죽 및 섬유와 같은 특정 포름산 사용 산업에서는 수요가 감소했지만, 의약품 및 농업과 같은 다른 산업에서는 수요가 증가했습니다.
예를 들어, 포름산은 소독제와 살균제 생산에 사용되는데, 이 두 제품 모두 팬데믹 기간 동안 수요가 급증했습니다. 수요 패턴의 변화로 인해 제조업체는 생산 전략을 변경해야 했습니다. 포름산 시장의 가격 변동성은 공급 시스템의 차질과 수요 변화로 인해 발생했습니다.
포름산 및 관련 화학 물질 가격은 생산 비용 증가와 공급 제약으로 인해 때때로 상승했습니다. 그러나 팬데믹이 확산되면서 시장 역학이 변화했고, 가격은 공급과 수요의 변화에 ​​​​따라 변동했습니다. 이러한 가격 변동에 대처하기 위해 다양한 산업 분야의 기업들은 조달 관행을 신중하게 관리해야 했습니다.
러시아-우크라이나 전쟁 영향 분석
대규모 농산물 생산국인 우크라이나의 상황은 농산물 공급망에 영향을 미칠 수 있습니다. 포름산은 작물 보호 및 사료 보존을 포함한 여러 용도로 농업에 사용됩니다. 농업 부문의 혼란은 간접적으로 포름산 소비에 영향을 미칠 수 있습니다.
또한, 분쟁으로 인해 공급망이 중단되거나 주요 화학 제조업체인 러시아에 대한 경제 제재가 가해질 경우, 국제 시장에서 포름산과 같은 화학 물질의 공급과 가격에 영향을 미칠 수 있습니다. 지정학적 혼란은 상품 시장의 변동성을 야기하는 주요 원인 중 하나입니다.
화학 물질인 포름산은 가죽 무두질, 섬유 생산, 화학 물질 생산 등 다양한 산업 공정에 사용됩니다. 지정학적 분쟁으로 인한 원자재 또는 에너지 가격의 급격한 변동은 포름산 생산 비용에 영향을 미칠 수 있습니다. 이러한 가격 변동은 포름산을 사용하는 산업 분야의 제품 가격과 수익성에 영향을 미쳐 공급과 수요의 역학 관계를 변화시킬 수 있습니다.

등급별
• 80% 미만 ~ 89.5%
• 89.5% ~ 90.5%
• 91.6% ~ 99%
• 99% 이상
생산 방법별
• 메탄올 카르보닐화
• 메틸 포르메이트 가수분해
용도별
• 가죽 무두질
• 동물 사료 및 사일리지 첨가제
• 의약품 중간체
• 세척제
• 방부제
• 염색
• 라텍스
• 기타
최종 사용자별
• 농업
• 가죽
• 섬유 및 의류
• 의료
o 아미도피린
o 비타민 B
o 기타
• 고무
• 화학
o 메탄아미드
o 디에틸 포름아미드
o 기타
• 종이
• 기타
• 북미
o 미국
o 캐나다
o 멕시코
• 유럽
o 독일
o 영국
o 프랑스
o 이탈리아
o 러시아
o 기타 유럽
• 남미
o 브라질
o 아르헨티나
o 남미 기타 지역
• 아시아 태평양
o 중국
o 인도
o 일본
o 호주
o 아시아 태평양 기타 지역
• 중동 및 아프리카
주요 개발 사항
• 2023년 5월 1일, 인도 구와하티 공과대학(IIT Guwahati) 연구진은 이산화탄소를 부산물로 추가 생성하지 않고 목정에서 수소 가스를 방출할 수 있는 촉매를 개발했습니다. 이 공정은 간단하고 환경적으로 안전할 뿐만 아니라 중요한 산업 화학 물질인 포름산을 생성합니다. 이러한 진전으로 메탄올은 유망한 "액체 유기 수소 운반체"(LOHC)로 주목받고 있으며 수소-메탄올 경제의 발전을 촉진합니다.

• 2022년 7월 13일, 생명공학 기업인 인젠자(Ingenza)와 존슨 매튜(Johnson Matthey)는 농업 및 제약 산업을 포함한 다양한 분야에 적용하고 다른 생물 공정의 원료로 사용할 수 있도록 산업 배출 이산화탄소를 활용하여 포름산을 생산하는 연구를 공동으로 진행하고 있습니다. 가장 염기성인 카르복실산인 포름산은 이산화탄소(CO2)를 촉매 수소화하여 생성할 수 있습니다. 그러나 CO2의 높은 안정성 때문에 활성화 장벽을 극복하는 데 많은 에너지가 필요합니다.
• 2020년 11월 10일, BASF는 포름산과 프로피온산의 가격을 인상했습니다. 북미 지역의 포름산 가격은 파운드당 0.05달러 인상될 예정입니다.
경쟁 환경
시장의 주요 글로벌 업체로는 BASF SE, Eastman Chemical Company, Gujarat Narmada Valley Fertilizers & Chemicals Limited, Luxi Chemical Group Co Ltd., Perstorp Holdings AB, PT Sintas Kurama Perdana, Thermo Fisher Scientific, Spectrum Chemical Mfg. Corp., Lanxess AG 및 Alfa Chemistry 등이 있습니다.
보고서 ​​구매 이유

• 등급, 생산 방식, 용도, 최종 사용자 및 지역별 글로벌 포름산 시장 세분화를 시각화하고 주요 상업 자산 및 주요 업체를 파악합니다.

• 트렌드 분석 및 공동 개발을 통해 사업 기회를 발굴합니다.

• 모든 세그먼트를 포함한 포름산 시장 수준의 다양한 데이터가 담긴 Excel 데이터 시트를 제공합니다.

• 심층적인 질적 인터뷰와 연구를 바탕으로 종합적인 분석 결과를 담은 PDF 보고서를 제공합니다.

• 주요 업체들의 주요 등급을 포함한 등급별 매핑 자료를 Excel 파일로 제공합니다.

글로벌 포름산 시장 보고서는 약 69개의 표, 76개의 그림, 201페이지 분량입니다.
주요 대상 고객 (2023년 기준)
• 제조업체/구매자
• 산업 투자자/투자 은행가
• 시장 조사 전문가
• 신흥 기업

보고서 요약(영어 원문)

Overview
Global Formic Acid Market reached US$ 1.1 billion in 2022 and is expected to reach US$ 1.4 billion by 2030, growing with a CAGR of 3.7% during the forecast period 2023-2030.
A crucial component of the chemical industry, formic acid is used to create a wide range of goods, such as pigments, medicines and solvents. The development of these sectors helps to partially meet the rising demand for formic acid. Formic acid is considered to be more environmentally friendly than several other substances. For situations where it could be a more sustainable substitute, formic acid is growing in popularity.
The agriculture industry uses formic acid. The agriculture industry uses formic acid. For an antibiotic and preservative in animal feed, chemical formic acid is vital for maintaining the health and increasing the growth of animals. Consumption of food products is rising as the world's population increases, leading to a need for improved and more productive methods of agriculture, which in turn increases the demand for formic acid.
Asia-Pacific is among the growing regions in the global formic acid market covering more than 1/3rd of the market and Asia-Pacific is located in multiple of the world's largest agricultural economies, such as China and India. Animal feed preservatives and pesticides like formic acid are frequently utilized in agriculture. The necessity for more food production and the expansion of agriculture has pushed formic acid demand in the area.
Dynamics
Increasing Use as a Pharmaceutical Intermediate
In medicine, the use of formic acid with an 85% concentration is a successful, cost-effective and safe treatment option for common warts with few adverse effects and high compliance. As a result, formic acid serves as a pharmaceutical intermediary in the production of several drugs, including amidopyrin, vitamin B and others. The global outbreak of measles is driving up demand for amidopyrin medications.
According to the latest UNICEF data, there was an increase in measles cases globally in the initial two months of 2022 compared to the same time in 2021. The Centres for Disease Control and Prevention also forecasted that in 2021, there will be, 5,760, 5,613 and 4,178 cases of measles in Somalia, Nigeria and India.
As a result, there is a rising demand for pharmaceutical intermediates to address the heightened requirement for medications like amidopyrin, vitamin B and others. Formic acid consumption is anticipated to increase as a result, which will fuel market expansion in the approaching years.
Expanding Leather and Textile Industries
Formic acid is employed in dyeing, tanning and other processes because of these characteristics. It is therefore perfect for the leather and textile industries. The expansion of the textile and leather industries is being aided by elements including rising foreign investment in the textile sector and the construction of new textile and leather production facilities.
For instance, the Mongla Export Processing Zone (EPZ) in Bangladesh will soon have a garment manufacturing industry thanks to an investment of US$ 12.89 million from the China-owned business Xihe Textile Technology Bangladesh Limited. The project will be finished in its development by 2023.
According to the Confederation of National Associations of Tanners and Dressers of the European Community, the European Union also controls around 56% of the world's leather tanning market. Because of the increasing leather and textile sectors, the formic acid industry is growing.
Variable Raw Material Costs
The market for formic acid is certainly extremely limited by the volatility of raw material costs. The production of formic acid typically involves the methanol carbonylation process, where methanol and carbon monoxide serve as the primary raw materials. The cost of certain essential components can significantly impact the overall production expenses of formic acid.
Rising raw material costs can put pressure on formic acid producers to maintain competitive prices, which might therefore have an impact on their profit margins. The price sensitivity to changes in raw material prices highlights how crucial supply chain management and cost-cutting tactics are in the formic acid sector.
Stringent Regulations
The regulation that limits its usage is limiting the industry's expansion, even though formic acid has controlled the market for many of its alternatives. For instance, formic acid is a chemical that is corrosive and when it comes into contact with the eyes, lungs and other organs, it may cause serious health issues. In addition, this substance can cause severe skin burns and eye damage, according to the CLP00 harmonized classification and labeling system for the European Union.
Additionally, this substance is categorized as being dangerous if eaten, toxic if breathed, damaging to organs, combustible and causing significant eye damage by companies in their REACH registrations. If mixed with sulfuric acid, formic acid is a very deadly cause of carbon monoxide poisoning. Therefore, these limitations are restricting the market's expansion for formic acid.
Segment Analysis
The global formic acid market is segmented based on grade, production method, application, end-user and region.
Increasing Demand for Formic Acid in Agriculture due to Rising Agriculture Productivity
The agriculture segment is among the growing regions in the global formic acid market covering more than 1/3rd of the market. The efficiency of pesticides against pests is increased when formic acid and oxalic acid are combined. The results in effective crop protection, the preservation of animal feed and other advantages. Formic acid is commonly applied in agriculture as a result of these characteristics.
The expansion of the agriculture business depends on several variables, including the prohibition of antibiotics that promote growth in animal feed, rising agricultural productivity and others. For instance, the use of antibiotics that promote animal development in feed has been outlawed in several North American and European nations, including U.S., UK and others.
Additionally, the OECD-FOA Agriculture Forecast predicts that global agricultural production will reach 304,403.61 Tons by 2026. In order to conserve the feedstock for a long time, the use of organic compounds will rise due to the prohibitions and anticipated increases in agricultural output. The is expected to increase formic acid consumption, which would speed up market expansion in the future years.
Geographical Penetration
Expanding Demand for Formic Acid in Leather and Textile Sectors in Asia-Pacific
Asia-Pacific has had a major impact on the globally formic acid market because of very closely connected industries like leather, textiles and others to the region's economic growth. The growing textile industry of the region is expected to improve the market share of formic share up to 43.4% in the forecast period. Additionally, the Asia-Pacific agriculture industry is growing, mostly as an outcome of developments in food preservation methods aimed at improving food security as well as other contributing factors.
For instance, the output of food crops increased noticeably in the Asia-Pacific area between 2020 and 2021. The U.S. Department of Agriculture's statistics show this period experienced a large increase in the overall output of food crops. As opposed to the previous record of almost 998.8 million metric Tons, the output increased by more than 1026.7 million metric Tons or 2.8%. According to data from U.S. Department of Agriculture, there were 95,619 thousand cattle in China as of 2021, a 4.6% rise from the 91,380 thousand cattle there in 2016.
In 2011, there were 53,000 thousand beef cows in China as an entire nation. By 2021, there would be 53,400 thousand, a minor increase of about 1%. The Asia-Pacific's expanding livestock and agricultural industries are hence driving up formic acid consumption. Formic acid market growth is thus being accelerated by technology.
For instance, in July 2022, in an effort to greatly increase the region's production capacity, AB Agri developed a new 240-kilo-ton feed mill in Tongchuan City, Shaanxi Province, China. The second-largest factory in AB Agri China, the new 34,000 sq m facility has distinct manufacturing lines for swine and ruminant feeds.
COVID-19 Impact Analysis
The pandemic affected international supply systems, especially those in the chemical sector. Formic acid and associated compounds were produced and transported with delays as a result of lockdowns, travel restrictions and temporary facility shutdowns in several nations. The availability of formic acid for many sectors was impacted by the supply chain disruption, which led to shortages of supplies and logistical difficulties.
Demand changes for formic acid were also brought on by the epidemic. Due to lockdowns and lower consumer spending, certain formic acid-using businesses, such as leather and textiles, witnessed a decline in demand; however, other industries, like medicines and agriculture, reported a rise in demand.
For example, formic acid is used in the production of disinfectants and sanitizers, both of which were in high demand during the pandemic. The alteration in demand patterns compelled manufacturers to alter their manufacturing strategies. Price volatility in the formic acid market was caused by the disruption of supply systems and changing demand.
Formic acid and related chemicals' prices have occasionally gone up as a result of production cost increases and supply constraints. But as the pandemic spread, market dynamics changed and prices changed in response to shifting conditions of supply and demand. To negotiate these pricing swings, businesses across a range of industries had to carefully manage their procurement practices.
Russia-Ukraine War Impact Analysis
The supply chain for agricultural products may be affected by the situation in Ukraine, a large agricultural producer. Formic acid is employed in agriculture for several functions, including crop protection and the preservation of feed. Any disturbances in the agriculture industry may have an impact on formic acid consumption in a secondary way.
Additionally, if the conflict caused supply chain interruptions or economic penalties against Russia, a significant chemical manufacturer, it may affect the availability and cost of chemicals like formic acid on the international market. Market volatility for commodities is frequently caused by geopolitical turmoil.
Chemical formic acid is used in many industrial processes, such as the tanning of leather, the production of textiles and the production of chemicals. The price of producing formic acid may be impacted by sudden changes in the price of raw materials or energy sources brought on by geopolitical conflicts. The pricing and profitability of goods in sectors that use formic acid may be impacted by these price swings, which may change the dynamics of supply and demand.
By Grade
• Less than 80% to 89.5%
• 89.5% to 90.5%
• 91.6% to 99%
• Above 99%
By Production Method
• Carbonylation of Methanol
• Hydrolysis of Methyl Formate
By Application
• Leather Tanning
• Animal Feed & Silage Additives
• Pharmaceutical Intermediate
• Cleaning Agents
• Preservatives
• Dyeing
• Latex
• Others
By End-User
• Agriculture
• Leather
• Textile and Apparels
• Healthcare
o Amidopyrin
o Vitamin B
o Others
• Rubber
• Chemical
o Methanamide
o Diethyl Formamide
o Others
• Paper
• Others
By Region
• North America
o U.S.
o Canada
o Mexico
• Europe
o Germany
o UK
o France
o Italy
o Russia
o Rest of Europe
• South America
o Brazil
o Argentina
o Rest of South America
• Asia-Pacific
o China
o India
o Japan
o Australia
o Rest of Asia-Pacific
• Middle East and Africa
Key Developments
• On May 1, 2023, Indian Institute of Technology Guwahati researchers developed a catalyst that can release hydrogen gas from wood alcohol without producing any more carbon dioxide as a byproduct. The procedure yields formic acid, an important industrial chemical in addition to being simple and safe for the environment. As a result of this progress, methanol is a promising "Liquid Organic Hydrogen Carrier" (LOHC) and helps advance the idea of a hydrogen-methanol economy.
• On July 13, 2022, Ingenza, a biotechnology company and Johnson Matthey are working in collaboration to manufacture formic acid from acquired industrial CO2 emissions for application in a variety of sectors, including agriculture and the pharmaceutical industry, as well as a possible feedstock for other bioprocesses. A useful chemical called formic acid, the most basic carboxylic acid, may be created by catalytically hydrogenating CO2. However, due to CO2's high degree of stability, activation barriers must be surmounted with a lot of energy.
• On November 10, 2020, BASF increased the cost of formic acid and propionic acid. The price of formic acid in North America will increase by US$ 0.05 per pound.
Competitive Landscape
The major global players in the market include BASF SE, Eastman Chemical Company, Gujarat Narmada Valley Fertilizers & Chemicals Limited, Luxi Chemical Group Co Ltd., Perstorp Holdings AB. PT Sintas Kurama Perdana, Thermo Fisher Scientific, Spectrum Chemical Mfg. Corp., Lanxess AG and Alfa Chemistry .
Why Purchase the Report?
• To visualize the global formic acid market segmentation based on grade, production method, application, end-user and region, as well as understand key commercial assets and players.
• Identify commercial opportunities by analyzing trends and co-development.
• Excel data sheet with numerous data points of formic acid market-level with all segments.
• PDF report consists of a comprehensive analysis after exhaustive qualitative interviews and an in-depth study.
• Grade mapping available as Excel consisting of key Grades of all the major players.
The global formic acid market report would provide approximately 69 tables, 76 figures and 201 Pages.
Target Audience 2023
• Manufacturers/ Buyers
• Industry Investors/Investment Bankers
• Research Professionals
• Emerging Companies

상세 목차

1. Methodology and Scope
1.1. Research Methodology
1.2. Research Objective and Scope of the Report
2. Definition and Overview
3. Executive Summary
3.1. Snippet by Grade
3.2. Snippet by Production Method
3.3. Snippet by Application
3.4. Snippet by End-User
3.5. Snippet by Region
4. Dynamics
4.1. Impacting Factors
4.1.1. Drivers
4.1.1.1. Increasing Use as a Pharmaceutical Intermediate
4.1.1.2. Expanding Leather and Textile Industries
4.1.2. Restraints
4.1.2.1. Variable Raw Material Costs
4.1.2.2. Stringent Regulations
4.1.3. Opportunity
4.1.4. Impact Analysis
5. Industry Analysis
5.1. Porter's Five Force Analysis
5.2. Supply Chain Analysis
5.3. Pricing Analysis
5.4. Regulatory Analysis
5.5. Russia-Ukraine War Impact Analysis
5.6. DMI Opinion
6. COVID-19 Analysis
6.1. Analysis of COVID-19
6.1.1. Scenario Before COVID
6.1.2. Scenario During COVID
6.1.3. Scenario Post COVID
6.2. Pricing Dynamics Amid COVID-19
6.3. Demand-Supply Spectrum
6.4. Government Initiatives Related to the Market During Pandemic
6.5. Manufacturers Strategic Initiatives
6.6. Conclusion
7. By Grade
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Grade
7.1.2. Market Attractiveness Index, By Grade
7.2. Less than 80% to 89.5% *
7.2.1. Introduction
7.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
7.3. 89.5% to 90.5%
7.4. 91.6% to 99%
7.5. Above 99%
8. By Production Method
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Method
8.1.2. Market Attractiveness Index, By Production Method
8.2. Carbonylation of Methanol*
8.2.1. Introduction
8.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
8.3. Hydrolysis of Methyl Formate
9. By Application
9.1. Introduction
9.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
9.1.2. Market Attractiveness Index, By Application
9.2. Leather Tanning*
9.2.1. Introduction
9.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
9.3. Animal Feed & Silage Additives
9.4. Pharmaceutical Intermediate
9.5. Cleaning Agents
9.6. Preservatives
9.7. Dyeing
9.8. Latex
9.9. Others
10. By End-User
10.1. Introduction
10.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
10.1.2. Market Attractiveness Index, By End-User
10.2. Agriculture*
10.2.1. Introduction
10.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
10.3. Leather
10.4. Textile and Apparels
10.5. Healthcare
10.5.1. Amidopyrin
10.5.2. Vitamin B
10.5.3. Others
10.6. Rubber
10.7. Chemical
10.7.1. Methanamide
10.7.2. Diethyl Formamide
10.7.3. Others
10.8. Paper
10.9. Others
11. By Region
11.1. Introduction
11.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
11.1.2. Market Attractiveness Index, By Region
11.2. North America
11.2.1. Introduction
11.2.2. Key Region-Specific Dynamics
11.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Grade
11.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Method
11.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.2.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.2.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.2.7.1. U.S.
11.2.7.2. Canada
11.2.7.3. Mexico
11.3. Europe
11.3.1. Introduction
11.3.2. Key Region-Specific Dynamics
11.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Grade
11.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Method
11.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.3.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.3.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.3.7.1. Germany
11.3.7.2. UK
11.3.7.3. France
11.3.7.4. Russia
11.3.7.5. Spain
11.3.7.6. Rest of Europe
11.4. South America
11.4.1. Introduction
11.4.2. Key Region-Specific Dynamics
11.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Grade
11.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Method
11.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.4.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.4.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.4.7.1. Brazil
11.4.7.2. Argentina
11.4.7.3. Rest of South America
11.5. Asia-Pacific
11.5.1. Introduction
11.5.2. Key Region-Specific Dynamics
11.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Grade
11.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Method
11.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.5.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
11.5.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
11.5.7.1. China
11.5.7.2. India
11.5.7.3. Japan
11.5.7.4. Australia
11.5.7.5. Rest of Asia-Pacific
11.6. Middle East and Africa
11.6.1. Introduction
11.6.2. Key Region-Specific Dynamics
11.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Grade
11.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Production Method
11.6.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Application
11.6.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By End-User
12. Competitive Landscape
12.1. Competitive Scenario
12.2. Market Positioning/Share Analysis
12.3. Mergers and Acquisitions Analysis
13. Company Profiles
13.1. BASF SE*
13.1.1. Company Overview
13.1.2. Production Method Portfolio and Description
13.1.3. Financial Overview
13.1.4. Key Developments
13.2. Eastman Chemical Company
13.3. Gujarat Narmada Valley Fertilizers & Chemicals Limited
13.4. Luxi Chemical Group Co Ltd.
13.5. Perstorp Holdings AB
13.6. PT Sintas Kurama Perdana
13.7. Thermo Fisher Scientific
13.8. Spectrum Chemical Mfg. Corp.
13.9. Lanxess AG
13.10. Alfa Chemistry
LIST NOT EXHAUSTIVE
14. Appendix
14.1. About Us and Services
14.2. Contact Us

언급된 주요 기업들

BASF SE, 4. Key Developments, Eastman Chemical Company, Gujarat Narmada Valley Fertilizers & Chemicals Limited, Luxi Chemical Group Co Ltd., Perstorp Holdings AB, PT Sintas Kurama Perdana, Thermo Fisher Scientific, Spectrum Chemical Mfg. Corp., Lanxess AG, Alfa Chemistry

표 목록 (Tables)

List of Tables

Table 1 Global Formic Acid Market Value, By Grade, 2023, 2027 & 2031 (US$ Million)

Table 2 Global Formic Acid Market Value, By Production Method, 2023, 2027 & 2031 (US$ Million)

Table 3 Global Formic Acid Market Value, By Application, 2023, 2027 & 2031 (US$ Million)

Table 4 Global Formic Acid Market Value, By End-User, 2023, 2027 & 2031 (US$ Million)

Table 5 Global Formic Acid Market Value, By Region, 2023, 2027 & 2031 (US$ Million)

Table 6 Global Formic Acid Market Value, By Grade, 2023, 2027 & 2031 (US$ Million)

Table 7 Global Formic Acid Market Value, By Grade, 2022-2031 (US$ Million)

Table 8 Global Formic Acid Market Value, By Production Method, 2023, 2027 & 2031 (US$ Million)

Table 9 Global Formic Acid Market Value, By Production Method, 2022-2031 (US$ Million)

Table 10 Global Formic Acid Market Value, By Application, 2023, 2027 & 2031 (US$ Million)

Table 11 Global Formic Acid Market Value, By Application, 2022-2031 (US$ Million)

Table 12 Global Formic Acid Market Value, By End-User, 2023, 2027 & 2031 (US$ Million)

Table 13 Global Formic Acid Market Value, By End-User, 2022-2031 (US$ Million)

Table 14 Global Formic Acid Market Value, By Region, 2023, 2027 & 2031 (US$ Million)

Table 15 Global Formic Acid Market Value, By Region, 2022-2031 (US$ Million)

Table 16 North America Formic Acid Market Value, By Grade, 2022-2031 (US$ Million)

Table 17 North America Formic Acid Market Value, By Production Method, 2022-2031 (US$ Million)

Table 18 North America Formic Acid Market Value, By Application, 2022-2031 (US$ Million)

Table 19 North America Formic Acid Market Value, By End-User, 2022-2031 (US$ Million)

Table 20 North America Formic Acid Market Value, By Country, 2022-2031 (US$ Million)

Table 21 South America Formic Acid Market Value, By Grade, 2022-2031 (US$ Million)

Table 22 South America Formic Acid Market Value, By Production Method, 2022-2031 (US$ Million)

Table 23 South America Formic Acid Market Value, By Application, 2022-2031 (US$ Million)

Table 24 South America Formic Acid Market Value, By End-User, 2022-2031 (US$ Million)

Table 25 South America Formic Acid Market Value, By Country, 2022-2031 (US$ Million)

Table 26 Europe Formic Acid Market Value, By Grade, 2022-2031 (US$ Million)

Table 27 Europe Formic Acid Market Value, By Production Method, 2022-2031 (US$ Million)

Table 28 Europe Formic Acid Market Value, By Application, 2022-2031 (US$ Million)

Table 29 Europe Formic Acid Market Value, By End-User, 2022-2031 (US$ Million)

Table 30 Europe Formic Acid Market Value, By Country, 2022-2031 (US$ Million)

Table 31 Asia-Pacific Formic Acid Market Value, By Grade, 2022-2031 (US$ Million)

Table 32 Asia-Pacific Formic Acid Market Value, By Production Method, 2022-2031 (US$ Million)

Table 33 Asia-Pacific Formic Acid Market Value, By Application, 2022-2031 (US$ Million)

Table 34 Asia-Pacific Formic Acid Market Value, By End-User, 2022-2031 (US$ Million)

Table 35 Asia-Pacific Formic Acid Market Value, By Country, 2022-2031 (US$ Million)

Table 36 Middle East & Africa Formic Acid Market Value, By Grade, 2022-2031 (US$ Million)

Table 37 Middle East & Africa Formic Acid Market Value, By Production Method, 2022-2031 (US$ Million)

Table 38 Middle East & Africa Formic Acid Market Value, By Application, 2022-2031 (US$ Million)

Table 39 Middle East & Africa Formic Acid Market Value, By End-User, 2022-2031 (US$ Million)

Table 40 BASF SE: Overview

Table 41 BASF SE: Product Portfolio

Table 42 BASF SE: Key Developments

Table 43 Eastman Chemical Company: Overview

Table 44 Eastman Chemical Company: Product Portfolio

Table 45 Eastman Chemical Company: Key Developments

Table 46 Gujarat Narmada Valley Fertilizers & Chemicals Limited: Overview

Table 47 Gujarat Narmada Valley Fertilizers & Chemicals Limited: Product Portfolio

Table 48 Gujarat Narmada Valley Fertilizers & Chemicals Limited: Key Developments

Table 49 Luxi Chemical Group Co Ltd.: Overview

Table 50 Luxi Chemical Group Co Ltd.: Product Portfolio

Table 51 Luxi Chemical Group Co Ltd.: Key Developments

Table 52 Perstorp Holdings AB: Overview

Table 53 Perstorp Holdings AB: Product Portfolio

Table 54 Perstorp Holdings AB: Key Developments

Table 55 PT Sintas Kurama Perdana: Overview

Table 56 PT Sintas Kurama Perdana: Product Portfolio

Table 57 PT Sintas Kurama Perdana: Key Developments

Table 58 Thermo Fisher Scientific: Overview

Table 59 Thermo Fisher Scientific: Product Portfolio

Table 60 Thermo Fisher Scientific: Key Developments

Table 61 Spectrum Chemical Mfg. Corp.: Overview

Table 62 Spectrum Chemical Mfg. Corp.: Product Portfolio

Table 63 Spectrum Chemical Mfg. Corp.: Key Developments

Table 64 Lanxess AG: Overview

Table 65 Lanxess AG: Product Portfolio

Table 66 Lanxess AG: Key Developments

Table 67 Alfa Chemistry: Overview

Table 68 Alfa Chemistry: Product Portfolio

Table 69 Alfa Chemistry: Key Developments

그림 목록 (Figures)

List of Figures

Figure 1 Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 2 Global Formic Acid Market Share, By Grade, 2023 & 2031 (%)

Figure 3 Global Formic Acid Market Share, By Production Method, 2023 & 2031 (%)

Figure 4 Global Formic Acid Market Share, By Application, 2023 & 2031 (%)

Figure 5 Global Formic Acid Market Share, By End-User, 2023 & 2031 (%)

Figure 6 Global Formic Acid Market Share, By Region, 2023 & 2031 (%)

Figure 7 Global Formic Acid Market Y-o-Y Growth, By Grade, 2023-2031 (%)

Figure 8 Less than 80% to 89.5% Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 9 89.5% to 90.5% Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 10 91.6% to 99% Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 11 Above 99% Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 12 Global Formic Acid Market Y-o-Y Growth, By Production Method, 2023-2031 (%)

Figure 13 Carbonylation of Methanol Production Method in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 14 Hydrolysis of Methyl Formate Production Method in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 15 Global Formic Acid Market Y-o-Y Growth, By Application, 2023-2031 (%)

Figure 16 Leather Tanning Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 17 Animal Feed & Silage Additives Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 18 Pharmaceutical Intermediate Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 19 Cleaning Agents Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 20 Preservatives Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 21 Dyeing Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 22 Latex Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 23 Others Application in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 24 Global Formic Acid Market Y-o-Y Growth, By End-User, 2023-2031 (%)

Figure 25 Agriculture End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 26 Leather End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 27 Textile and Apparels End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 28 Healthcare End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 29 Rubber End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 30 Chemical End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 31 Paper End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 32 Others End-User in Global Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 33 Global Formic Acid Market Y-o-Y Growth, By Region, 2023-2031 (%)

Figure 34 North America Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 35 Asia-Pacific Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 36 Europe Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 37 South America Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 38 Middle East and Africa Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 39 North America Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 40 North America Formic Acid Market Share, By Grade, 2023 & 2031 (%)

Figure 41 North America Formic Acid Market Share, By Production Method, 2023 & 2031 (%)

Figure 42 North America Formic Acid Market Share, By Application, 2023 & 2031 (%)

Figure 43 North America Formic Acid Market Share, By End-User, 2023 & 2031 (%)

Figure 44 North America Formic Acid Market Share, By Country, 2023 & 2031 (%)

Figure 45 South America Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 46 South America Formic Acid Market Share, By Grade, 2023 & 2031 (%)

Figure 47 South America Formic Acid Market Share, By Production Method, 2023 & 2031 (%)

Figure 48 South America Formic Acid Market Share, By Application, 2023 & 2031 (%)

Figure 49 South America Formic Acid Market Share, By End-User, 2023 & 2031 (%)

Figure 50 South America Formic Acid Market Share, By Country, 2023 & 2031 (%)

Figure 51 Europe Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 52 Europe Formic Acid Market Share, By Grade, 2023 & 2031 (%)

Figure 53 Europe Formic Acid Market Share, By Production Method, 2023 & 2031 (%)

Figure 54 Europe Formic Acid Market Share, By Application, 2023 & 2031 (%)

Figure 55 Europe Formic Acid Market Share, By End-User, 2023 & 2031 (%)

Figure 56 Europe Formic Acid Market Share, By Country, 2023 & 2031 (%)

Figure 57 Asia-Pacific Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 58 Asia-Pacific Formic Acid Market Share, By Grade, 2023 & 2031 (%)

Figure 59 Asia-Pacific Formic Acid Market Share, By Production Method, 2023 & 2031 (%)

Figure 60 Asia-Pacific Formic Acid Market Share, By Application, 2023 & 2031 (%)

Figure 61 Asia-Pacific Formic Acid Market Share, By End-User, 2023 & 2031 (%)

Figure 62 Middle East & Africa Formic Acid Market Value, 2022-2031 (US$ Million)

Figure 63 Middle East & Africa Formic Acid Market Share, By Grade, 2023 & 2031 (%)

Figure 64 Middle East & Africa Formic Acid Market Share, By Production Method, 2023 & 2031 (%)

Figure 65 Middle East & Africa Formic Acid Market Share, By Application, 2023 & 2031 (%)

Figure 66 Middle East & Africa Formic Acid Market Share, By End-User, 2023 & 2031 (%)

Figure 67 BASF SE: Financials

Figure 68 Eastman Chemical Company: Financials

Figure 69 Gujarat Narmada Valley Fertilizers & Chemicals Limited: Financials

Figure 70 Luxi Chemical Group Co Ltd.: Financials

Figure 71 Perstorp Holdings AB: Financials

Figure 72 PT Sintas Kurama Perdana: Financials

Figure 73 Thermo Fisher Scientific: Financials

Figure 74 Spectrum Chemical Mfg. Corp.: Financials

Figure 75 Lanxess AG: Financials

Figure 76 Alfa Chemistry: Financials