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市場調查報告書
商品編碼
2122266
氣體分析儀:市場佔有率分析、行業趨勢和統計數據、成長預測(2026-2031 年)Gas Analyzer - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2026 - 2031) |
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根據 Mordor Intelligence 預測,氣體分析儀市場規模預計將在 2026 年達到 10.8 億美元,在 2031 年達到 14.5 億美元,複合年成長率為 6.14%。

本報告按產品類型(固定式/可攜式)、技術(電化學式、順磁式、氧化鋯式及其他)、應用(排放氣體監測、安全/洩漏檢測及其他)、終端用戶行業(石油天然氣、化工/石化、水/污水處理及其他)、安裝方式(現場安裝/抽取式)和地區進行細分。市場預測以美元計價。
更嚴格的監管是推動成長的最大動力。美國第19號方法(將於2024年修訂)強制要求對燃煤鍋爐的二氧化硫測量進行連續氧氣校正,迫使電力公司停用無法進行自動跨度檢查的分析設備。歐盟將水泥窯的氮氧化物排放限值降低至150毫克/立方米,並強制要求從2025年1月起每小時上傳數據,從而有效地結束了人工記錄。中國於2025年將超低排放標準擴展至鋼鐵業,強制要求顆粒物排放量低於10毫克/立方米,並要求將即時數據傳輸至省級數據平台。印度也同樣強制要求從2025年起在50兆瓦以上的發電廠安裝連續監測設備,導致古吉拉突邦和馬哈拉斯特拉邦的待維修計畫數量激增。這些法規加在一起,縮短了採購週期,並使多參數平台更具優勢,這些平台將二氧化硫、氮氧化物、一氧化碳和顆粒物的測量整合到一個櫃子中。
目前,工廠正在將分析儀與工業IoT(IIoT) 閘道整合,這推動了市場成長約 1.5 個百分點。根據艾默生預測,到 2025 年,38% 的分析儀訂單將配備用於雲端歷史資料庫的 OPC UA 或 MQTT 邊緣模組。西門子推出了 Sitrans CV,該產品具有設備內建的 TensorFlow 推理功能,可偵測層析管柱污染並觸發自動重新校準。由於 FDA 關於即時放行測試的指導意見要求對反應器內的氧氣和二氧化碳進行封閉回路型控制,製藥業率先採用者了這些技術。 ISA-TR108.00.01 等標準定義了現場設備的網路安全規範,促使買家優先考慮韌體空中升級 (FOTA) 功能。預測性維護可減少停機時間。 ABB 報告稱,AZ30 系列產品整合了漂移預測演算法,已將平均維修時間 (MTTR) 縮短了 22%。
一套完整的抽取式連續排放監測系統 (CEMS) 每個煙囪的成本在 8 萬至 15 萬美元之間,此外每年還需要 1.2 萬至 1.8 萬美元的校準耗材費用。預算緊張的運營商,尤其是新興市場的運營商,通常會推遲項目,直到監管機構發出關閉通知。例如,印度監管機構在 2024 年針對 1200 台鍋爐發出的關閉通知就是這種情況。此外,也存在租賃模式。恩德斯豪斯 (Endress+Hauser) 於 2024 年在德國推出了一項基於訂閱的檢測服務,但目前該服務的應用範圍仍僅限於大型電力公司。
由於法規要求不間斷記錄煙囪數據,且工廠優先考慮將冗餘採樣管線整合到單一櫃體中,固定式系統在2025年佔銷售額的65.18%。然而,隨著氣體分析儀市場適應密閉空間作業法規和第三方排放審計的要求,預計到2031年,攜帶式儀器市場將以每年7.20%的速度成長。美國2024年頒布的密閉空間標準要求在進入儲槽時即時監測四種氣體,促使地方政府公共產業從單氣體偵測徽章轉向多氣體可攜式設備。目前,可攜式TDLAS設備可以在保持0區安全的情況下檢測亞ppm級的氨氣和氯化氫,使檢查人員無需安裝固定設備即可檢查洩漏。
這種轉變也體現在籌資策略中。營運商越來越依賴攜帶式設備作為間歇性監測的主要工具,同時也在計劃對固定系統維修,以應對較長的停機時間。租賃設備的種類日益豐富,使得小規模煉油廠無需大量資本投入即可使用高性能分析儀器。韌體更新增加了雲端同步功能,使攜帶式設備能夠像固定系統一樣將資料傳輸到歷史資料庫,從而幫助管理員更快地將現場測量資料與連續測量資料進行比對,並更快地解決合規性問題。
預計到2025年,NDIR將佔據氣體分析儀市場38.29%的佔有率,其在二氧化碳、甲烷和碳氫化合物監測領域一直佔據著穩固的地位。同時,隨著終端用戶優先考慮現場可靠性和抗其他氣體干擾能力,TDLAS預計將以每年7.10%的速度成長至2031年。據橫河電機稱,由於運營商意識到無漂移性能有助於在嚴格的氮氧化物法規下減少停機時間,氨氣洩漏檢測用TDLAS的訂單同比成長了一倍。電化學電池由於成本低、體積小,在攜帶式安全設備領域仍佔據主導地位,但其6-12個月的感測器壽命短且對溫度敏感,限制了其在連續運作應用中的吸引力。
順磁分析儀在醫用氣體和半導體製造廠的超高純氧氣管線領域佔據著獨特的地位,而氧化鋯探頭仍然是700 度C以上環境中燃燒控制的主要工具。光聲雷射和量子級聯雷射正以十億分之一(ppb)級的靈敏度嶄露頭角,但其高成本限制了它們在科研機構和高價值製藥設施中的應用。如果監管機構將TDLAS指定為涉及水分過程的標準方法,其應用速度可能會進一步加快。
北美地區煉油廠高度集中,工業物聯網(IIoT)應用較早,且持續監測法規嚴格,預計到2025年,該地區將佔全球銷售額的32.03%。美國修訂後的「新污染源排放標準」(NSPS)收緊了對燃煤發電廠二氧化硫和氮氧化物排放的限制,並強制要求每季進行相對精度測試,這促使許多電廠用原位探頭取代了90年代的萃取分析儀。加拿大將於2025年將基於產量的定價系統擴展至天然氣加工企業,亞伯達省的壓縮站已安裝了紅外線甲烷探測器。墨西哥於2025年3月推出了煉油廠即時排放報告系統,推動了伊達爾戈省和瓜納華托省對設備維修的需求。
預計到2031年,亞太地區將以每年6.40%的速度成長,成長超過其他任何地區。中國的超低排放法規現已應用於水泥和玻璃產業,規定顆粒物排放量限值為10毫克/標準立方米,並強制要求全省範圍內即時傳輸資料。印度對50兆瓦以上電廠的監管導致裝置容量超過100吉瓦的燃煤發電廠維修工程積壓。在日本,氫氣加註網路的資金正在逐步到位,持續檢測低於0.1%(體積比)氫氣洩漏的需求推動了電化學分析儀和熱導率分析訂單的成長。在韓國,石化儲槽區的揮發性有機化合物(VOC)排放標準已收緊,強制要求使用靈敏度低於ppm且已獲得1區認證的火焰離子化檢測器。
在歐洲,根據嚴格的工業排放指令,預計到2025年,連續監測將佔據約25%的市場。每小時數據傳輸取代了人工記錄,而德國的自願碳標籤計劃正在推動高效分析儀器的應用。在英國,廢棄物現已強制要求使用長通傅立葉轉換紅外線)對戴奧辛進行連續監測,這推動了對高階系統的需求,每套系統的成本超過20萬美元。在中東和非洲,連續監測正在穩定成長,沙烏地阿拉伯的石化聯合企業和南非的礦場都已開始應用,但支出仍以專案為單位。南美洲也在發展,儘管規模較小,巴西的紙漿廠已強制安裝CEMS,阿根廷的瓦卡穆爾塔頁岩區也正在進行甲烷檢測測試。
According to Mordor Intelligence, the gas analyzer market size is USD 1.08 billion in 2026 and is projected to reach USD 1.45 billion in 2031, reflecting a 6.14% CAGR.

This report is Segmented by Product Type (Fixed, and Portable), Technology (Electrochemical, Paramagnetic, Zirconia, and More), Application (Emission Monitoring, Safety and Leak Detection, and More), End-User Vertical (Oil and Gas, Chemical and Petrochemical, Water and Wastewater, and More), Installation Method (In-Situ, and Extractive), and Geography. The Market Forecasts are Provided in Terms of Value (USD).
Tighter rules add the single largest uplift to growth. The 2024 update to U.S. Method 19 now obliges continuous oxygen correction for sulphur dioxide at coal boilers, forcing utilities to retire analyzers that cannot execute automated span checks. The European Union lowered nitrogen oxide limits for cement kilns to 150 mg/Nm3 and imposed hourly data uploads beginning January 2025, effectively ending manual logbooks. China extended ultra-low emissions limits to steel in 2025, mandating particulate matter below 10 mg/Nm3 with real-time uploads to provincial dashboards. India likewise required continuous monitors on >= 50 MW power plants in 2025, accelerating retrofit backlogs across Gujarat and Maharashtra. Together, these rules compress procurement cycles and favour multi-parameter platforms that consolidate sulphur dioxide, nitrogen oxides, carbon monoxide, and particulate measurements in one cabinet.
Plants now pair analyzers with industrial Internet of Things (IIoT) gateways, adding roughly 1.5 percentage points to growth. Emerson disclosed that 38% of 2025 analyzer orders shipped with OPC UA or MQTT edge modules for cloud historians. Siemens released the Sitrans CV with on-device TensorFlow inference that flags chromatography column fouling and triggers automatic recalibration. Pharmaceutical lines have become early adopters because FDA guidance on real-time release testing requires closed-loop control of oxygen and carbon dioxide in bioreactors. Standards such as ISA-TR108.00.01 now define cybersecurity profiles for field devices, prompting buyers to prioritize firmware-over-the-air capability. Predictive diagnostics cut downtime; ABB reported a 22% reduction in mean-time-to-repair on its AZ30 series after embedding drift-prediction algorithms.
A complete extractive CEMS can cost USD 80,000-150,000 per stack, with recurring calibration supplies adding USD 12,000-18,000 annually. Budget-constrained operators, especially in emerging markets, often delay projects until regulators issue closure notices, as India's board did for 1,200 boilers in 2024. Leasing models exist; Endress+Hauser piloted subscriptions in Germany in 2024, but uptake remains limited to large utilities.
Other drivers and restraints analyzed in the detailed report include:
For complete list of drivers and restraints, kindly check the Table Of Contents.
Fixed systems delivered 65.18% of 2025 revenue because regulations require uninterrupted stack data and plants value multiplexed sample lines that feed one cabinet. Portable instruments, however, will grow 7.20% annually by 2031 as the gas analyzer market embraces confined-space entry rules and third-party emissions audits. The 2024 U.S. confined-space standard compels real-time four-gas monitoring during tank entry, prompting municipal utilities to replace single-gas badges with multi-gas portables. Portable TDLAS units now achieve sub-ppm ammonia and hydrogen chloride detection yet remain Zone 0 safe, letting inspectors verify leaks without installing fixed infrastructure.
Procurement strategies reflect this shift. Operators increasingly treat portable devices as primary tools for episodic surveys, while scheduling fixed-system retrofits for longer outages. Rental fleets have grown, giving smaller refiners access to high-end analyzers without full capital outlay. As firmware updates add cloud synchronization, portable devices feed the same historians as fixed systems, allowing managers to reconcile spot readings with continuous streams and close compliance gaps faster.
NDIR held a 38.29% share of the gas analyzer market in 2025, historically entrenched in carbon dioxide, methane, and hydrocarbon monitoring. TDLAS, though, will expand 7.10% per year through 2031 as end-users prioritize in-situ reliability and cross-gas immunity. Yokogawa reported that TDLAS orders for ammonia slip doubled year-over-year once operators realized drift-free performance could reduce downtime under tight nitrogen oxide limits. Electrochemical cells still dominate portable safety roles because they are inexpensive and compact, but six-to-twelve-month sensor life and temperature sensitivity limit continuous-duty appeal.
Paramagnetic analyzers keep a niche in high-purity oxygen lines serving medical gas and semiconductor fabs, while zirconia probes remain combustion-control workhorses above 700 °C. Photoacoustic and quantum-cascade lasers are emerging at parts-per-billion sensitivity levels, though their high-cost confines adoption to research labs and high-value pharmaceutical suites. If regulators codify TDLAS as the reference method for moisture-laden processes, its climb could steepen further.
North America generated 32.03% of 2025 revenue, supported by dense refinery clusters, early IIoT adoption, and strict continuous monitoring rules. The updated U.S. New Source Performance Standards narrow sulphur dioxide and nitrogen oxide limits for coal utilities and call for quarterly relative-accuracy tests, prompting many plants to replace 1990s-era extractive analyzers with in-situ probes. Canada extended its Output-Based Pricing System to natural-gas processors in 2025, bringing infrared methane detectors to Alberta compressor stations. Mexico adopted real-time emissions reporting for refineries in March 2025, anchoring retrofit demand across Hidalgo and Guanajuato.
Asia Pacific is forecast to grow 6.40% annually through 2031, the quickest of any region. China's ultra-low emissions rules now cover cement and glass, requiring 10 mg/Nm3 particulate ceilings and live data feeds province-wide. India's >= 50 MW mandate created a backlog of coal-plant retrofits exceeding 100 GW in capacity. Japan funds hydrogen refuelling networks and demands continuous hydrogen leak detection below 0.1 vol%, stimulating orders for electrochemical and thermal-conductivity analyzers. South Korea tightened volatile organic compound limits at petrochemical tank farms, requiring sub-ppm flame-ionization detectors that carry Zone 1 ratings.
Europe held roughly 25% share in 2025 under the Industrial Emissions Directive's demanding timelines. Hourly data transmission has eliminated manual logs, while Germany's voluntary carbon-label program urges efficiency-oriented analyzers. The United Kingdom now specifies continuous dioxin monitoring by long-path Fourier-transform infrared in waste incineration, pushing high-end systems above USD 200,000 per installation. The Middle East and Africa grow steadily as Saudi petrochemical complexes and South African mines adopt continuous monitoring, though spend remains project-based. South America is smaller but rising, with Brazil mandating CEMS on pulp mills and Argentina piloting methane detection at Vaca Muerta shale fields.