市場調查報告書
商品編碼
1351515
雷射誘導擊穿光譜 (LIBS) 市場規模 - 按產品(手持式、台式)、最終用途(學術和研究機構、製藥和生物技術公司) - 全球預測,2023-2032 年Laser-induced Breakdown Spectroscopy (LIBS) Market Size - By Product (Handheld, Desktop), By End-use (Academic and Research Institutes, Pharmaceuticals and Biotechnology Companies) - Global Forecast, 2023-2032 |
在全球環境問題不斷升級的推動下,雷射誘導擊穿光譜 (LIBS) 市場規模從 2023 年到 2032 年的複合年成長率預計將達到 6.2%。隨著全球對環境問題、污染和資源枯竭的認知不斷提高,對精確、快速分析技術的需求變得至關重要。因此,LIBS 技術透過在各種應用中提供準確的元素分析,提供了強大的解決方案來解決這些問題。
此外,冶金、採礦和製造領域對更快、更準確、無破壞性金屬成分評估的先進工具的日益青睞將推動產業成長。例如,2023 年 7 月,基於感測器的分選技術的全球製造商 TOMRA Recycling Sorting 推出了 AUTOSORTTM PULSE,這是一款採用動態 LIBS 的新機器,用於鋁合金的高吞吐量分選。
雷射誘導擊穿光譜市場根據產品、最終用途和地區進行細分。
就產品而言,預計到2032 年,桌面LIBS 市場規模的複合年成長率將達到5.6%。桌上型雷射誘導擊穿光譜設備的緊湊尺寸、經濟性、攜帶性和易用性已將其擴展到更廣泛的用戶範圍,從研究人員到工業專業人士。此外,桌上型電腦在靈敏度、精度和速度方面的最新進步擴大了該技術在採礦、金屬和環境監測方面的應用範圍。
根據最終用途,學術和研究機構領域的行業規模預計在 2023 年至 2032 年期間將實現 6.2% 的成長率。這是由於 LIBS 因其多功能性和分析能力而擴大被學術和研究機構採用。包括化學、地質學、環境科學和材料科學在內的各個科學學科的研究人員都依賴該技術進行元素分析,進一步促進了該領域的成長。
從地區來看,亞太地區雷射誘導擊穿光譜市場規模預計從 2023 年到 2032 年將以 6.6% 的複合年成長率擴大。這種擴張可歸因於不斷發展的工業格局和對先進分析技術的更加重視。此外,學術和研究部門快速發展的新興經濟體的存在正在促進 LIBS 應用的創新。
學術機構持續進行的研發投資也提高了該地區科學發現技術的接受度。舉個例子,2023 年 8 月,印度月船 3 號月球車的雷射誘導擊穿光譜儀首次對靠近南極的月球表面元素成分進行了現場測量。
Laser-induced Breakdown Spectroscopy (LIBS) Market size is set to witness 6.2% CAGR from 2023-2032, driven by the escalating environmental concerns worldwide. With the surging global awareness of environmental issues, pollution, and resource depletion, the need for precise and rapid analytical techniques has become paramount. LIBS technology thus offers powerful solutions to address these concerns by offering accurate elemental analysis in various applications.
Moreover, the rising preference for advanced tools that are faster, more accurate with no destructive metal composition assessment in metallurgy, mining, and manufacturing will propel the industry growth. For instance, in July 2023, TOMRA Recycling Sorting, a global manufacturer of sensor-based sorting technology, launched AUTOSORTTM PULSE, a new machine with dynamic LIBS for high throughput sorting of aluminum alloys.
Laser-induced breakdown spectroscopy market is segmented based on product, end-use, and region.
With respect to product, the desktop LIBS market size is anticipated to witness 5.6% CAGR through 2032. The compact size, affordability, portability, and ease of use of desktop laser-induced breakdown spectroscopy devices have expanded their accessibility to broader range of users, from researchers to industrial professionals. Moreover, recent advancements in desktops in terms of sensitivity, precision, and speed have extended the scope of applications of the technology across mining, metals, and environmental monitoring.
Based on end-use, the industry size from the academic and research institutes segment is expected to record 6.2% growth rate from 2023-2032. This is due to the increasing adoption of LIBS in the arsenal of academic and research institutions due to its versatility and analytical capabilities. Researchers across various scientific disciplines, including chemistry, geology, environmental science, and materials science, rely on this technology for elemental analysis, further contributing to the segment growth.
Regionally, Asia Pacific laser-induced breakdown spectroscopy market size is expected to expand at 6.6% CAGR from 2023-2032. This expansion can be attributed to the evolving industrial landscape and higher emphasis on advanced analytical technologies. Moreover, the presence of emerging economies with fast-growing academic and research sectors are fostering innovations in LIBS applications.
The ongoing R&D investments by academic institutions have also increased the acceptance of the technology for scientific discovery in the region. To cite an instance, in August 2023, the Indian Chandrayaan-3 Rover's Laser-Induced Breakdown Spectroscopy instrument took the first in-situ measurements of the lunar surface's elemental composition close to the south pole.