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市场调查报告书
商品编码
1383320
到 2030 年分析凝胶渗透色谱市场预测:按类型、应用和地区分類的全球分析Analytical Gel Permeation Chromatography Market Forecasts to 2030 - Global Analysis By Type (High Temperature and Ambient Temperature), Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球分析凝胶渗透色谱市场规模将达到 14 亿美元,预计到 2030 年将达到 26 亿美元,预测期内年复合成长率为 9.2%。
分析型凝胶渗透色谱 (GPC) 是一种强大的分析技术,用于分离、表征和定量样品中聚合物、大分子和颗粒的分子量分布。它广泛应用于分析化学、材料科学和高分子化学的许多领域。在聚合物研究中,聚合物分子量分布、多分散指数(PDI)和特性黏度均使用此方法检测。这种方法有助于聚合物品质和性能的评估,并且是市场成长背后的驱动力。
分析化学的全球化为以前欠发达的领域创造了新的机会。随着新兴国家对工业和研究的投资,对分析凝胶渗透色谱等分析设备的需求不断增加。标准化的分析方法和程序有利于国际贸易和法规合规性。标准的统一确保了这种分析方法在世界某个地区获得的结果在其他国家是等效且可接受的,从而使公司能够在全球范围内更轻鬆地运作。
分析凝胶渗透色谱很复杂,通常需要特定的专业知识和培训。这可能会使这种方法不太容易实现,特别是对于规模较小的学术机构、研究机构或员工培训资源有限的公司。为您的员工提供必要的培训可能既昂贵又耗时。此外,培训需要组织资源,从而增加了执行分析凝胶渗透色谱的总体成本。此外,这种方法的复杂性意味着大多数人对材料、聚合物或类似主题特别感兴趣。由于跨学科使用有限,未来的市场占有率可能会受到限制。
环境分析需要仔细注意品质保证和控制。使用分析凝胶渗透色谱法监测和分析土壤、水和空气等环境样品中的有机和高分子化学品。环境保护和法规遵从性取决于准确的结果。品管的关键要素之一是确保资料完整性。维持资料准确性和可追溯性需要资料验证并遵守良好生产规范 (GMP) 或良好实验室规范 (GLP) 指南。
分析凝胶渗透色谱设备的高成本使得该过程不太容易实现,特别是对于预算有限的新兴企业、学术机构和小型实验室。这可能会导致无法平等地获得高级分析功能。此外,预算限制可能迫使一些组织将资金转向其他优先事项,这可能会推迟或取消此类设备的采购。此外,除了初始购买价格之外,拥有此类设备还涉及持续成本,例如消耗品、维护、校准和支援服务。对某些组织来说,这些成本可能令人望而却步。
作为阻止病毒传播的关闭程序的一部分,世界各地的多个实验室被迫暂时关闭或减少业务。这使得常规分析凝胶渗透色谱研究和测试变得困难。由于多个研究项目被推迟或重新导向到与 COVID-19 相关的试验和研究,我们对分析凝胶渗透色谱的持续研究的关注度有所下降。对于科学家和研究人员来说,在进行通常需要亲自在实验室工作的实验和资料分析时,很难进行远端协作和工作。
高温凝胶渗透色谱(通常称为高温尺寸排除层析)是一种先进的分析技术,扩展了 GPC 的可能性。当处理质量随温度变化的材料时,或当了解聚合物的分子量或行为在高温下如何变化时,该技术特别有用。
分析凝胶渗透色谱在製药行业中用于表征基于聚合物的药物递送系统,如脂质体、奈米颗粒和微球,因此製药业在预测期内将出现最高的年复合成长率,预计将出现增长。此色谱法评估这些系统的稳定性和尺寸分布,这会影响药物释放特性。製药专家使用这种方法透过选择具有影响药物释放和生物利用度的特定分子量特性的聚合物来改进药物配方。
由于亚太地区经济强劲扩张,预计该地区在预测期内将占据最大的市场占有率,大量资金将用于材料、化学品和化学品等各行业的研发。药品。这增加了对分析凝胶渗透色谱和其他分析工具的需求。中国、印度、韩国和新加坡等国家正迅速扩大其生物技术和製药产业。这些行业中使用的聚合物药物传输系统、生物製药和其他材料的表征和品管在很大程度上依赖分析凝胶渗透色谱。
预计北美在预测期内将经历最高的年复合成长率。这是因为政府机构、商业公司和学术机构的研发支出庞大,为分析凝胶渗透色谱等分析仪器创造了一个健康的市场。该地区以其分析设备的创新而闻名。分析凝胶渗透色谱硬体和软体不断发展,提高了灵敏度、精度和资料吞吐量。在北美,聚合物和製药业非常重视品管和法规遵从性。品管对于确保产品符合法律和行业要求至关重要。
According to Stratistics MRC, the Global Analytical Gel Permeation Chromatography Market is accounted for $1.4 billion in 2023 and is expected to reach $2.6 billion by 2030 growing at a CAGR of 9.2% during the forecast period. A potent analytical method for separating, characterizing, and quantifying the molecular weight distribution of polymers, macromolecules, and particles in a sample is analytical gel permeation chromatography (GPC), sometimes referred to as size exclusion chromatography (SEC). It is extensively used in many areas of analytical chemistry, materials science, and polymer chemistry. In polymer research, molecular weight distribution, polydispersity index (PDI), and inherent viscosity of polymers are all measured using this method. Assessing polymer quality and performance is aided by it which drives the market growth.
Analytical chemistry's globalization has created new opportunities in hitherto underdeveloped areas. The need for analytical equipment like analytical gel permeation chromatography has increased as rising nations make investments in industry and research. Both international trade and regulatory compliance have been made easier by standardized analytical methodologies and procedures. Companies may function more easily on a worldwide scale because to the harmonization of standards, which guarantees that this method results obtained in one area of the globe are equivalent and accepted in other countries.
Because of its intricacy, analytical gel permeation chromatography frequently calls for specific expertise and training. This may make the approach less accessible, especially to smaller academic institutions, research labs, or businesses with little funding for training staff. It may be expensive and time-consuming to provide employees with the training they require. Moreover, training requires resources from organizations, which raises the total cost of analytical gel permeation chromatography implementation. Additionally, owing to its intricacy, this method could mostly draw in people who have a particular interest in materials, polymers, or similar topics. Its prospective market share may be constrained by its limited interdisciplinary usage.
Environmental analysis requires careful attention to assurance and control of quality. Organic and polymeric chemicals found in environmental samples including soil, water, and airs are monitored and analysed using analytical gel permeation chromatography. Environmental protection and regulatory compliance depend on accurate results. One of the main components of quality control is guaranteeing the integrity of the data. Maintaining data accuracy and traceability requires validation of the data and adherence to good manufacturing procedures (GMP) or good laboratory practices (GLP) guidelines.
The high expense of analytical gel permeation chromatography equipment can make the procedure less accessible, particularly for start-up businesses, university institutions, and small research labs with tight budgets. Unequal access to sophisticated analytical capabilities may arise from this. Moreover, some organizations may be forced by budgetary restrictions to divert money to other priorities, which might result in the delay or cancellation of these instrument acquisitions. In addition, ownership of this equipment entails continuing costs for consumables, maintenance, calibration, and support services in addition to the initial purchase price. For certain organizations, these expenses may be prohibitive.
As part of shutdown procedures to stop the virus's spread, several laboratories all around the world were forced to temporarily close or scale back operations. This made it more difficult to carry out regular analytical gel permeation chromatography research and tests. The focus on continuing analytical gel permeation chromatography research was diminished as a result of the postponement or redirection of several research programs toward COVID-19-related testing and study. It was difficult for scientists and researchers to collaborate and work remotely while doing experiments and data analysis that usually required in-person work in the lab.
The high temperature segment is estimated to have a lucrative growth, as these enables the examination of polymers and materials at higher temperatures than regular GPC, high-temperature gel permeation chromatography, commonly referred to as high-temperature size exclusion chromatography, is a sophisticated analytical method that expands the possibilities of GPC. This technique is especially helpful for working with materials that have qualities that fluctuate with temperature or for learning about how molecular weight and polymer behaviour alter at high temperatures.
The pharmaceutical industry segment is anticipated to witness the highest CAGR growth during the forecast period, as analytical gel permeation chromatography is used by the pharmaceutical industry to assess the characteristics of polymer-based drug delivery systems, such as liposomes, nanoparticles, and microspheres. It evaluates these systems' stability and size distribution, which affects drug release characteristics. Pharmaceutical experts choose polymers with certain molecular weight properties that affect drug release and bioavailability, and then employ this method to improve medication formulations which propels the growth of the market.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the strong economic expansion in the Asia Pacific area, more money is being spent on research and development in a variety of industries, including materials, chemicals, and medicines. This in turn fuels the need for analytical gel permeation chromatography and other analytical tools. In nations like China, India, South Korea, and Singapore, the biotechnology and pharmaceutical sectors have been expanding quickly. The characterization and quality control of polymer-based drug delivery systems, biopharmaceuticals, and other materials employed in these industries depend heavily on analytical gel permeation chromatography.
North America is projected to have the highest CAGR over the forecast period, owing to R&D expenditures from government agencies, commercial businesses, and academic institutions are substantial, generating a healthy market for analytical equipment such as analytical gel permeation chromatography. The area is renowned for its analytical instrument innovation. Analytical gel permeation chromatography hardware and software have developed further, providing increased sensitivity, accuracy, and data processing capabilities. In North America, the polymer and pharmaceutical sectors strongly prioritize quality control and regulatory compliance. It is essential to guaranteeing that goods fulfil legal and industry requirements.
Some of the key players profiled in the Analytical Gel Permeation Chromatography Market include: Shimadzu, Waters, Agilent Technologies, Malvern, TOSOH Corporation, J2 Scientific, Gilson, Labtech, LC Tech, Schambeck SFD and Polymer Char.
In October 2023, Shimadzu Corporation launched the "Urina" integrated management type urine volume measurement system. Urina is a medical device that accurately measures urine volume based on the difference in body weight before and after urination, eliminating the need for urine collection.
In October 2023, Waters Corporation announced that the University of San Agustin has established the first mass spectrometry imaging center in the Philippines, equipping it with technologies from Waters.
In September 2023, Waters Corporation announced new bioprocess walk-up solutions designed to further simplify biologic sample prep and analysis.