市场调查报告书
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碳酸二甲酯到 2028 年的全球市场预测 - 按等级(工业级、试剂级、电池级)、应用、最终用户和地区分析Dimethyl Carbonate Market Forecasts to 2028 - Global Analysis By Grade (Industrial Grade, Reagent Grade and Battery Grade ), Application, End User and Geography |
根据 Stratistics MRC 的数据,2022 年全球碳酸二甲酯市场规模将达到 11 亿美元,预计到 2028 年将达到 18 亿美元,预测期内復合年增长率为 9.2%。据说长在
碳酸二甲酯 (DMC) 已被确定为出色的溶剂和环保剂。 此前,光气和甲醇用于生产DMC,但存在副产物和中间体危害大的问题。 因此,使用一氧化碳或甲醇的氧化羰基化法投入实际应用,DMC 逐渐被公认为绿色试剂。 碳酸二甲酯用于製造油漆、粘合剂、清洁剂等。 DMC还用作医药中间体和电池的电解液。
据丙烷教育和研究委员会称,二甲醚用于将液化石油气混合到汽车丙烷汽车汽油中,在美国有近 260,000 辆使用经过认证的燃料系统的液化石油气上路车辆。 其中许多用于车队应用,例如校车、穿梭巴士和警车。
随着电子行业的爆发式增长,对电池的需求也越来越大。 锂离子电池主要用于手机等便携式电子设备。 作为製造这些锂离子电池的重要组成部分,DMC 市场有望随着锂离子电池行业的发展而扩大。 DMC 具有吸收大量周围水分的特性,这会降低其作为电解质的有效性。 因此,寻求使电池更小、更轻的智能手机製造商无法采用 DMC,阻碍了市场增长。
传统的 DMC 生产方法使用一氧化碳和光气等有毒气体来生产危险产品。 磷是一种高度危险的物质,会导致严重的健康危害。 此外,由于副产品加工对环境的严重影响,涉及光气的工艺设计会产生额外的成本以确保安全的环境。 甲醇光气化法被全球许多公司用于合成碳酸二甲酯。 这是碳酸二甲酯市场拓展的一个障碍。
聚碳酸酯因其透明度、韧性、热性能、化学和可燃性以及尺寸稳定性等特性而受到越来越多的需求。 聚碳酸酯是一种常见的工程热塑性塑料,用于各种行业,包括电气/电子、汽车、建筑/施工、消费品和医疗。 使用聚碳酸酯材料的主要行业是建筑业和汽车业。 这些行业的扩张正在增加对塑料聚合物製造的需求。 技术进步、政府支持以及包装、电子和医疗行业不断增长的需求增加了塑料聚合物的产量,在全球市场创造了各种机会。
由于对碳酸二甲酯製造商实施了严格的许可要求,製造商可能难以获得许可,这反过来又会阻碍增长。 在预测期内难以引入尖端技术以实现理想的工艺环境,预计也会阻碍碳酸二甲酯市场的崛起。 此外,石油和天然气价格的波动会对碳酸二甲酯的生产产生不利影响,因为甲醇、环氧乙烷和二氧化碳的原料均来自原油。 因此,这种化合物的成本结构是由原材料成本和获取途径驱动的。
碳酸二甲酯市场受到 COVID-19 疫情的影响。 鑑于中国公司广泛使用聚碳酸酯和锂电池生产,大多数受 COVID-19 影响的国家仍处于封锁状态,製造企业暂时停工。。 大多数 COVID-19 病例增加的国家都处于封锁状态,製造商暂时停止运营,直到病毒过去。 在中国,COVID-19 疫情导致锂离子电池和聚碳酸酯的生产停滞。 为了符合环保法规,中国生产的DMC有一半以上是通过使用碳酸亚丙酯(PC)和甲醇的绿色合成方法生产的。 COVID-19 流行病影响了全球碳酸二甲酯市场,因为製造商专注于合成必不可少的各种离子液体。
电池等级 (>99.9%) 由于其在化学链中作为有机溶剂和中间体的重要作用,预计将实现有利可图的增长。 锂电池电解液已经取代了传统的粘合剂、涂层剂、显影剂和聚碳酸酯,为广泛的DMC应用做出了贡献。 电池用碳酸二甲酯的争夺很可能会扰乱行业竞争格局,由于产能提升水平高,新技术成本低,市场增长速度加快。
农药领域预计在预测期内将以最快的复合年增长率增长,因为它不仅用于农药业务,还用作绿色化工原料和有机合成中间体。 异氰酸甲酯是主要产品,其次是几种氨基甲酸酯类杀虫剂。 碳酸二甲酯是有机化合物合成中的重要一步,在农药生产过程中因其简单、安全和对环境影响小而受到重视。 在农药生产中,碳酸二甲酯类化合物作为环保中间体的使用有望带动市场的广泛应用。
由于聚碳酸酯使用量的显着增加,预计亚太地区在预测期内将占据最大的市场份额。 由于清洁剂、油漆、杀虫剂、粘合剂和锂离子电池等各种终端用户应用对碳酸二甲酯的需求不断增加,预计亚太地区碳酸二甲酯市场在预测期内将以可观的速度增长。增加。
由于聚碳酸酯使用量的显着增加,预计欧洲在预测期内的复合年增长率最高。 由于对碳酸二甲酯的需求增加,预计欧洲碳酸二甲酯市场在预测期内将以有利的速度扩张。 由于锂离子电池生产中电解液的消耗量增加,许多知名品牌正专注于生产电池级碳酸甲酯而非工业级碳酸甲酯,推动市场增长,尤其是与其他工业应用相比增长。
碳酸二甲酯市场的主要参与者有: Kowa Co., Ltd., Ube Industries Co., Ltd., Kaika Chemical Group, Merck KGaA, Arrow Chemical Group Corp., Kishida Chemical Co., Ltd., Henan GP Chemicals Co., Ltd. 河南 GP Chemicals Co. Ltd., WEGO Chemical Group, Hefei TNJ Chemical Industry Co.Ltd, Thermo Fisher Scientific, Aceto Corporation, Silver Fern Chemicals, Connect Chemicals, Tokyo Chemical Industry Co.
2023 年 2 月,科学服务领域的全球领导者 Thermo Fisher Scientific 和生命科学行业基于机器人的解决方案的领先製造商 Celltrio 将为生物治疗客户提供全自动细胞,宣布他们将合作提供文化体系。
2023 年 1 月,Thermo Fisher Scientific 将与阿斯利康合作,为 Tagrisso 开发基于实体组织和血液的伴随诊断测试。 该合作伙伴关係将在 Genexus Dx System* 上使用 Oncomine Dx Express Test*,Genexus Dx System* 是一个完全集成的下一代测序(NGS)平台,具有自动化的样本到报告工作流程。
2022 年 12 月,阿达尼集团(Adani)与 Kowa Company, Ltd.(以下简称 Kowa)签署了长期的“商业联盟协议”,重点关注碳中和业务和解决方案。并签署了补充谅解备忘录(MOU) 关于在日本和台湾购买、销售和营销绿色氨水。
2022 年 3 月,Kowa Company, Ltd.(以下简称 Kowa)宣布,印度最大的私营火电运营商 Adani Power Ltd.(以下简称 APL)宣布已与 IHI(APL)签署谅解备忘录) 和 IHI Corporation (IHI) 就改建的可能性进行技术和经济可行性研究并进行评估,并为此签署了谅解备忘录。
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According to Stratistics MRC, the Global Dimethyl Carbonate Market is accounted for $1.1 billion in 2022 and is expected to reach $1.8 billion by 2028 growing at a CAGR of 9.2% during the forecast period. Dimethyl carbonate (DMC) has been identified as both a green agent and is an excellent solvent. Phosgene and methanol were formerly used to make DMC, however the made by a particular hazardous by products and intermediates. A more practical oxidative carbonylation method using carbon monoxide or methanol took its place, led to the validation of DMC as a green reagent. The production of paints, adhesives, and cleaning agents all use dimethyl carbonate. DMC has also been employed as a medicinal intermediate and as an electrolyte in batteries.
According to the Propane Education and Research Council, DME is used for LPG blending that is in Propane auto gas in vehicles and there are nearly 260,000 on-road LPG vehicles with certified fuel systems in the United States. Many are used in fleet applications, such as school buses, shuttles, and police vehicles.
Battery demand has risen considerably as a result of the electronics industry's explosive growth. Li-ion batteries primarily became quite popular for powering portable electronics like cell phones. As a crucial component in the production of these Li-ion batteries, DMC's market is anticipated to increase in tandem with that of the Li-ion battery industry. DMC has the capacity to absorb a sizable amount of water from its surroundings, which lowers its effectiveness as an electrolyte. This prevents smartphone makers, who are looking for smaller, lighter batteries, from adopting it thereby propelling the growth of the market.
The conventional method of generating DMC uses poisonous gases like carbon monoxide and phosgene while creating dangerous by products. The highly hazardous substance phosphorus can cause serious health problems. Even for the treatment of its by product has a significant environmental impact, thus any process design including phosgene will result in additional expenses to ensure a safe environment. The methanol phosgenation method is employed by numerous firms throughout the world to synthesise dimethyl carbonate. This in turn hinders the market's expansion for dimethyl carbonate.
The demand for polycarbonate is rising as a result of its features, which include transparency, toughness, thermal properties, chemical and flammability, and dimensional stability. Polycarbonate is a common engineering thermoplastic used in a variety of industries, including electrical and electronics, automotive, building and construction, consumer products, and medical. Construction and the automobile industries are the two main industries that employ polycarbonate material. The expansion of these industries has increased the demand for plastic polymer manufacture. Due to advancements in technology, government assistance, and increased demand from the packaging, electronics, and medical industries, the production of plastic polymer is rising creating various opportunities in the global market.
Dimethyl carbonate makers are subject to strict licensing requirements, which makes it difficult for manufacturers to obtain licences and may ultimately harm growth. During the forecast period, it is also projected that difficulties in implementing cutting-edge technology to create a desirable process environment will hinder the rise of the dimethyl carbonate market. Furthermore, the production of dimethyl carbonate is negatively impacted either by potentially serious consequences in oil and gas prices because the raw materials used to make the compound methanol, ethylene oxide, and carbon dioxide are all derived from crude oil. As a result, the cost structure of the compound depends on the cost and access to raw materials.
The dimethyl carbonate market has suffering from the ongoing COVID-19 epidemic. Considering that Chinese businesses utilize polycarbonate and lithium battery production extensively. In most nations where COVID-19 cases were on the rise, there is a state of lockdown, which has caused manufacturing companies to temporarily stop operating until the virus passes. In China, production of lithium-ion batteries and polycarbonates has slowed down due to the COVID-19 epidemic. In order to comply with environmental requirements, more than half of the DMC produced in China is produced using a green synthesis method using propylene carbonate (PC) and methanol. Manufacturers are focusing on various ionic liquids that are essential for the synthesis thus COVID-19 pandemic has affected the global dimethyl carbonate market.
The Battery Grade (≥99.9%) segment is estimated to have a lucrative growth, due to its crucial role as an organic solvent and chemical intermediary in further down the chemical chain. Lithium battery electrolyte solvents, which also have subsequently contributed for the diverse applications of DMC, have replaced conventional adhesives, coatings, developers, and polycarbonates as the product's primary application field whereas lithium battery electrolyte requires higher purity battery-grade dimethyl carbonate. Battery-grade DMC competition with high-boom capacity expansion and low-cost new technology may disrupt the industry's pattern of competitiveness which accelerates the market growth.
The Pesticides segment is anticipated to witness the fastest CAGR growth during the forecast period, due to its utilization in the pesticide business as well as a green chemical raw material and organic synthesis intermediate. Methyl isocyanate is the primary product, followed by a few carbamate insecticides. Dimethyl carbonate is a crucial step in the synthesis of organic compounds and is valued for its simplicity, safety, and low environmental impact during pesticide manufacture. The use of dimethyl carbonate compounds as eco-friendly intermediates in the manufacturing of pesticides will have a wide range of potential applications by encouraging the market.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the significant expansion in the use of polycarbonates in the region. Due to an increase in demand for dimethyl carbonate in various end user applications, including cleaning products, paints and coatings, pesticides, adhesives, and lithium ion batteries in the region, the dimethyl carbonate market in Asia Pacific is anticipated to grow at a promising rate during the forecast period.
Europe is projected to have the highest CAGR over the forecast period, owing to the region's considerable increase in polycarbonate usage. The Europe dimethyl carbonate market is anticipated to expand at a favourable rate during the forecast period as a result of an increase in demand for dimethyl carbonate, a number of well-known brands are focusing on producing battery-grade methyl carbonate rather than industrial grade due to an increase in the consumption of the electrolyte in the production of lithium ion batteries, especially in comparison to other industrial applications by enhancing the market growth.
Some of the key players profiled in the Dimethyl Carbonate Market include: Kowa Company Ltd, Ube Industries Ltd., Haike Chemical Group, Merck KGaA, Arrow Chemical Group Corp., Kishida Chemical Co. Ltd, Henan GP Chemicals Co. Ltd, WEGO Chemical Group, Hefei TNJ Chemical Industry Co. Ltd, Thermo Fisher Scientific, Aceto Corporation, Silver Fern Chemicals, Connect Chemicals and Tokyo Chemical Industry Co Ltd.
In Feb 2023, hermo Fisher Scientific, the world leader in serving science, and Celltrio, a leading manufacturer of robotics-based solutions for the life sciences industry, have announced their collaboration to bring a fully automated cell culture system to biotherapeutics customers.
In Jan 2023, Thermo Fisher Scientific Partners with AstraZeneca to Develop Solid Tissue and Blood-Based Companion Diagnostic Test for Tagrisso, The collaboration will leverage the Oncomine Dx Express Test* on the Genexus Dx System*, a fully-integrated next-generation sequencing (NGS) platform featuring an automated specimen-to-report workflow
In Dec 2022, The Adani Group (Adani) and Kowa Company, Ltd. (Kowa), have renewed their long-standing 'Business Alliance Agreement' (BAA) with major focus on emerging Carbon Neutral Businesses/Solutions, along with a supplemental Memorandum of Understanding (MOU) regarding Offtake, Sales and Marketing of Green Ammonia in Japan and Taiwan.
In March 2022, Kowa Company, Ltd. (Kowa) announced the conclusion of Memorandum of Understanding (MoU) with India's largest private thermal power producer, Adani Power Ltd. (APL) and IHI Corporation (IHI) that aims to perform and evaluate a technical and economic feasibility study concerning a potential modification.
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