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Worldwide Crotonic Acid Industry to 2025 – Featuring Central Drug House, ALB Technology and Penta Manufacturing Among Others

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DUBLIN, Sept. 17, 2021 /PRNewswire/ — The “Crotonic Acid Market Research Report: By Application, End User – Global Industry Analysis and Growth Forecast to 2025” report has been added to ResearchAndMarkets.com’s offering.

The increasing consumption of crotonic-acid-based dispersions in paints, coatings, and adhesives will steer the crotonic acid market at a CAGR of 7.9% during the forecast period (2021-2025). Adhesives containing this acid offer rapid solidification, owing to which their application has significantly surged in high-speed manufacturing lines, such as those of packaging and textiles. The soaring demand for these adhesives will propel the market to $853.7 million by 2025 from $592.0 million in 2020.

Thus, the expansion of the adhesives industry is one of the key factors contributing to the crotonic acid market growth. The acid is used as a comonomer with vinyl acetate, to produce copolymers that are primarily utilized in the formulation of adhesives. For example, hot-melt adhesives are usually developed by grafting crotonic and acrylic acids onto metallocene ethylene-octene copolymers. Additionally, technological advancements have led to the preparation of improved adhesives that offer exceptional flexibility, performance, and bond strength under a wide temperature range.

Another key factor driving the market is the spurring demand for paints and coatings. This acid is a vital ingredient of these products as it can form copolymers when blended with other chemical compounds. Additionally, when the crotonic acid monomer is copolymerized with other compounds, it results in a thickener, which is applied in the manufacturing of glossy emulsion paints. These paints offer extra glow and protection to the interiors and exteriors of buildings. Thus, the soaring demand for glossy emulsion paints will facilitate market growth in the forecast years.

The categories under the application segment of the crotonic acid market include coatings, fungicides, adhesive resins, plasticizers, and intermediates. Among these, the adhesive resins category dominated the market in 2020, and it is expected to maintain its lead throughout the forecast period. This is due to the rising application of crotonic acid in the manufacturing of copolymer dispersions for adhesive resins. Thus, the spurring demand for these adhesive formulations in the electronics, textile, packaging, and automobile industries will define the positive growth outlook for this category.

Further, the end user segment of the crotonic acid market is categorized into chemical, pharmaceutical, paints and coatings, automobile, packaging, textile, and electronics. Among these, the paints and coatings category held the largest market share in 2020, and it is expected to register the fastest growth in the forecast years. This can be owed to the exponential use of crotonic-acid-based binders in paints and coatings to hold the pigments in place by binding them and form a coating layer. The spiking demand for paints and coatings from the automotive, packaging, and construction sectors will fuel the growth of this category.

Globally, China dominated the crotonic acid market during the historical period (2016-2020), and it is expected to reflect the same trend in the forecast years. Additionally, the Chinese market is also projected to demonstrate the fastest growth throughout the forecast period. This can be ascribed to the magnifying demand for adhesives and paints and coatings for the repair and renovation of residential and commercial buildings. Moreover, the growing application of crotonic acid as a plasticizer, fungicide, and intermediary in the chemical, agriculture, and pharmaceutical industries will boost the market growth in China.

Key Topics Covered:

Chapter 1. Research Background

Chapter 2. Research Methodology

Chapter 3. Executive Summary

Chapter 4. Industry Outlook
4.1 Definition of Market Segments
4.1.1 By Application
4.1.1.1 Adhesive resins
4.1.1.2 Coatings
4.1.1.3 Plasticizers
4.1.1.4 Fungicides
4.1.1.5 Intermediates
4.1.1.6 Others
4.1.2 By End User
4.1.2.1 Chemical
4.1.2.2 Pharmaceutical
4.1.2.3 Paints & coatings
4.1.2.4 Automobile
4.1.2.5 Packaging
4.1.2.6 Textile
4.1.2.7 Electronics
4.1.2.8 Others
4.2 Matrix (Application and End User)
4.3 Market Dynamics
4.3.1 Drivers
4.3.1.1 Growing demand for paints & coatings
4.3.1.2 Rapid growth in the adhesives industry
4.3.1.3 Impact analysis of drivers on market forecast
4.3.2 Restraints
4.3.2.1 Short shelf life
4.3.2.2 Impact analysis of restraints on market forecast
4.4 Impact of COVID-19
4.5 Value Chain Analysis
4.6 Production Process Analysis
4.6.1 Conventional Process
4.6.2 Biomass
4.7 Export Import Analysis
4.7.1 Major Crotonic Acid-Exporting Countries
4.7.2 Major Crotonic Acid-Importing Countries
4.8 Porter’s Five Forces Analysis
4.8.1 Bargaining Power of Buyers
4.8.2 Bargaining Power of Suppliers
4.8.3 Intensity of Rivalry
4.8.4 Threat of New Entrants
4.8.5 Threat of Substitutes
4.9 Production Cost
4.10 Pricing of Crotonic Acid
4.11 Global ASP of Crotonic Acid

Chapter 5. Global Market Size and Forecast
5.1 By Application
5.2 By End User
5.3 By Geography

Chapter 6. China Market Size and Forecast
6.1 By Application
6.2 By End User

Chapter 7. European Union Market Size and Forecast
7.1 By Application
7.2 By End User
7.3 By Country

Chapter 8. U.S. Market Size and Forecast
8.1 By Application
8.2 By End User

Chapter 9. India Market Size and Forecast
9.1 By Application
9.2 By End User

Chapter 10. Southeast Asia Market Size and Forecast
10.1 By Application
10.2 By End User
10.3 By Country

Chapter 11. MEA and Others Market Size and Forecast
11.1 By Application
11.2 By End User
11.3 By Country

Chapter 12. Competitive Landscape
12.1 Market Share Analysis of Key Players
12.2 List of Key Players
12.3 List of Other Players

Chapter 13. Company Profiles
13.1 Tianjin Jinhui Pharmaceutical Group Co. Ltd.
13.1.1 Business Overview
13.1.2 Product and Service Offerings
13.2 Kono chem co. Ltd.
13.2.1 Business Overview
13.2.2 Product and Service Offerings
13.3 WeylChem International GmbH
13.3.1 Business Overview
13.3.2 Product and Service Offerings
13.4 Zhengzhou Tuozhixiang Trading Co. Ltd.
13.4.1 Business Overview
13.4.2 Product and Service Offerings
13.5 EUCLID
13.5.1 Business Overview
13.5.2 Product and Service Offerings
13.6 Central Drug House (P) Ltd.
13.6.1 Business Overview
13.6.2 Product and Service Offerings
13.7 Henan Tianfu Chemical Co. Ltd.
13.7.1 Business Overview
13.7.2 Product and Service Offerings
13.8 ALB Technology Limited
13.8.1 Business Overview
13.8.2 Product and Service Offerings
13.9 Penta Manufacturing Company
13.9.1 Business Overview
13.9.2 Product and Service Offerings
13.10 Spectrum Chemical Manufacturing Corporation
13.10.1 Business Overview
13.10.2 Product and Service Offerings

Chapter 14. Appendix

For more information about this report visit https://www.researchandmarkets.com/r/lhyex6

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Source: https://www.prnewswire.com:443/news-releases/worldwide-crotonic-acid-industry-to-2025—featuring-central-drug-house-alb-technology-and-penta-manufacturing-among-others-301379558.html

Energy

People’s Daily Online: uma pesquisa do Instituto de Zoologia de Kumming mostrou um aumento estável da população de pavões verdes, uma espécie ameaçada de extinção

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O pavão verde é uma espécie de ave nativa da China. Ela foi listada como espécie ameaçada de extinção em 1988, como vulnerável em 1994, e foi atualizada para espécie ameaçada em 2009 na Lista vermelha de espécies ameaçadas da IUCN.

Para proteger e salvar o pavão verde selvagem, o governo de Yunnan o listou como uma “Espécie com população minúscula” na província de Yunnan em 2009, destinou fundos especiais e adotou uma série de medidas para fortalecer a proteção do pavão verde e do seu habitat. Enquanto isso, o trabalho de construção de uma base de inseminação artificial com a ajuda do centro de reprodução e resgate da vida selvagem de Yunnan e a realização de pesquisas sobre inseminação artificial com a cooperação de unidades de pesquisa científica relevantes alcançaram sucesso preliminar. Depois que o número da população de pavões verdes gerados por inseminação artificial atingir um determinado nível, a domesticação no campo e outros trabalhos serão iniciados, e também serão elaborados planos para soltar o pavão verde na área de distribuição em potencial.

Graças às medidas de proteção eficazes, a população do pavão verde está estável e aumentando. Os dados mostram que Yunnan tinha cerca de 485 a 547 pavões verdes em 2018, e 555 a 600 indivíduos de 2019 a 2021. Entre eles, os pavões verdes selvagens estavam mais concentrados nas áreas do vale da parte de cima e do meio do rio Yuanjiang, onde a população também é a maior. De acordo com os resultados de câmeras infravermelhas e monitoramento por vídeo em várias reservas da natureza, nos últimos anos, há uma tendência de mudança e crescimento de algumas das áreas em que o pavão verde de Yunnan habita.

Contato: Zhao Jian, Li Faxing
Tel: 0086-871-64184120
E-mail: [email protected]

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FONTE People’s Daily Online

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Source: https://www.prnewswire.com:443/news-releases/people-s-daily-online-uma-pesquisa-do-instituto-de-zoologia-de-kumming-mostrou-um-aumento-estavel-da-populacao-de-pavoes-verdes-uma-especie-ameacada-de-extincao-819339436.html

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Energy

Segunda Conferência Ministerial de Energia da Rota e Cinturão é realizada em Qingdao

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A iniciativa especifica o papel da energia eólica, solar, hídrica, biomassa, nuclear e outras formas de energia verde para a implementação do Acordo de Paris e o Plano de 2030 para o Desenvolvimento Sustentável das Nações Unidas, ressaltando que a energia verde está se tornando um importante impulsionador para o desenvolvimento econômico global e trará oportunidades sem precedentes para a cooperação mutuamente benéfica entre os países.

A iniciativa adota o princípio “responsabilidades comuns, mas diferenciadas (CBDR)”, clamando pelo repeito ao direito de cada país de escolher seu próprio caminho para a transição energética. Ela enfatiza a necessidade de maior apoio aos países em desenvolvimento em termos de fundos, tecnologia e capacidade de construção para um desenvolvimento mais equilibrado e ampliado de energia verde.

A iniciativa exige ações conjuntas para apoiar o desenvolvimento de energia verde e de baixo carbono em países em desenvolvimento. As tarefas específicas incluem a definição de planos e metas mais ambiciosos de desenvolvimento de energia verde, a melhoria da confiabilidade e da resiliência do fornecimento de energia verde e a criação de um ambiente mais atraente para o investimento em energia verde.

Contato:Zhu Yiling
Tel.:+86-532-85911619
Site:http://www.qingdaochina.org
Facebook:https://www.facebook.com/qingdaocity
Twitter:https://twitter.com/loveqingdao

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FONTE Stadt Qingdao

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Source: https://www.prnewswire.com:443/news-releases/segunda-conferencia-ministerial-de-energia-da-rota-e-cinturao-e-realizada-em-qingdao-847051936.html

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Energy

LONGi announces “Net-zero Plant” pledge at UN biodiversity conference

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With the challenges of climate change and biodiversity loss growing, the realization of global sustainable development has reached a crossroads. As the only solar energy company invited to attend the 15th meeting of the Conference of the Parties to the Convention on Biological Diversity (COP15), LONGi firmly believes that photovoltaics can change the earth’s ecology and contribute to biodiversity protection.

“Climate change has an all-round impact on biodiversity, and unreasonable energy development modes represent a key factor leading to climate change and increasing biodiversity issues,” said Li, going on to add that LONGi is a staunch supporter of climate action, in the belief that photovoltaics plus energy storage can be a powerful weapon to mitigate climate change. The company has taken the lead in promoting the reduction in cost and increase in efficiency of photovoltaic products, reducing the cost of photovoltaic power generation by more than 90% over the past decade, providing technical support for the achievement of carbon peak and neutrality goals.

LONGi launched its “Solar for Solar” concept in December 2018, based on manufacturing photovoltaic products driven by photovoltaic power generation, with the objective of extending the role of PV in ecological restoration. The concept had originated in Yunnan Province, where LONGi was the first PV company to establish a base, going on to play a leading role in the development of the province’s new energy industry.

In 2020, LONGi successively joined RE100, EV100, EP100 and Scientific Carbon Target (SBTi), becoming the only Chinese solar technology company to join four international initiatives at the same time. The company’s Baoshan production base, in effect the first “Net-zero Plant”, was also a concrete implementation of the four initiatives, and can be viewed as the starting point for “Net-zero LONGi”.

Yunnan is the province with the most abundant green energy in China. Installed capacity  accounts for 85%, with power generation from green energy reaching 90%, laying a very solid foundation for building a net-zero plant.

“We are planning on two years to achieve zero emissions within the operational scope of the LONGi Baoshan base by purchasing green power, energy-saving technological transformation and carbon emission offset measures.” Li divided the realization of the “Net- zero Plant” into four steps: Firstly, ensuring that 100% of the Baoshan base utilises green power throughout the year; secondly, completing the production technology transformation of the base’s carbon deposition materials to significantly reduce natural gas leakage; thirdly, promoting green production in the base and, finally, purchasing Chinese Certified Emission Reduction (CCER) to offset carbon emissions that cannot be completely eliminated.

Li concluded: “LONGi will always be a defender of and contributor to ecological harmony, sparing no effort to achieve net-zero targets, promote global energy transformation and join hands with partners from all walks of life to jointly realize this vision.”

SOURCE LONGi Solar

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Source: https://www.prnewswire.com:443/news-releases/longi-announces-net-zero-plant-pledge-at-un-biodiversity-conference-301402900.html

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Energy

Sinopec coloca em operação o maior cluster de armazenamento de gás do norte da China com fornecimento de dez bilhões de metros cúbicos de armazenamento de gás

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A instalação de armazenamento de gás tem capacidade de 10,03 bilhões de  metros cúbicos e será uma importante garantia de recursos para armazenamento de gás e geração de energia em horários de pico do inverno até a primavera na região norte da China e na bacia do rio Amarelo, além de garantir um suprimento de gás estável.

O cluster de armazenamento de gás Zhongyuan da Sinopec agora tem três blocos, o Wen 23, o Wen 96 e o Wei 11. A instalação de armazenamento de gás Wei 11, que agora está instalada e em funcionamento, é um componente fundamental para estabelecer o cluster de armazenamento de gás natural que chega a dez bilhões de metros cúbicos. O bloco está localizado na junção das províncias de Henan e Shandong e tem capacidade projetada de 1,009 bilhão de metros cúbicos. A maior capacidade de geração de energia em horários de pico diário da instalação de armazenamento de gás Wei 11 é de cinco milhões de metros cúbicos, o que pode atender às demandas de gás de dez milhões de residências todos os dias.

Além disso, a Sinopec terá suas instalações de armazenamento de gás Wen 13 West e Bai 9 na região do campo petrolífero de Zhongyuan instaladas e em funcionamento até o final deste ano, após concluir a construção e injeção de gás, adicionando uma capacidade de armazenamento de gás estimada em 1,116 bilhões de metros cúbicos, aumentando ainda mais os recursos da empresa em armazenamento de gás e geração de energia em horários de pico.

O armazenamento de gás é um “banco de gás natural” subterrâneo, uma infraestrutura de energia que integra geração de energia em horários de pico sazonais, fornecimento de gás em casos de acidente de emergência e reservas nacionais de energia estratégica. À medida que a proporção de gás natural continua a expandir na estrutura de consumo de energia da China, os picos e vales do fornecimento de gás natural, bem como as diferenças sazonais, estão se tornando cada vez mais evidentes. O armazenamento de gás pode “depositar” o excedente de gás natural no mercado e “empurrar” o tempo de escassez de abastecimento durante a estação de aquecimento no inverno para garantir a geração de energia em horários de pico de demanda por gás natural.

A Sinopec continua acelerando a construção de instalações de armazenamento de gás e aprimorando os recursos de armazenamento de gás e de geração de energia em horários de pico na China. A empresa está se preparando para concluir projetos importantes, incluindo o cluster de armazenamento de gás Zhongyuan e a instalação de armazenamento de gás Huangchang na província de Hubei e muito mais, após a conclusão das instalações de armazenamento de gás, incluindo Yong 21, na província de Shandong, Wei 11, na região do campo petrolífero de Zhongyuan, Guxi, na província de Jilin e Qingxi, na província de Sichuan, expandindo continuamente a escala de armazenamento de gás natural e aprimorando efetivamente a capacidade de armazenamento e os recursos de geração de energia em horários de pico de gás para garantir o fornecimento de gás natural.

Para obter mais informações, acesse Sinopec.

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Source: https://www.prnewswire.com:443/news-releases/sinopec-coloca-em-operacao-o-maior-cluster-de-armazenamento-de-gas-do-norte-da-china-com-fornecimento-de-dez-bilhoes-de-metros-cubicos-de-armazenamento-de-gas-881799772.html

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