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市場調查報告書
商品編碼
2124289
亞太地區氣體探測器:市場佔有率分析、產業趨勢與統計及成長預測(2026-2031)Asia Pacific Gas Detector - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2026 - 2031) |
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據 Mordor Intelligence 稱,亞太地區氣體探測器市場在 2025 年的價值為 6.39 億美元,預計到 2031 年將達到 9.3656 億美元,而 2026 年為 6.8102 億美元,預測期(2026-2031 年)的複合年成長率為 6.8%。

本報告可攜式通訊類型(有線、無線)、探測器類型(固定式、可攜式)、終端用戶產業(石油天然氣、化學和石化、水處理及污水處理等)以及國家/地區(中國、日本、印度、韓國、東南亞、澳洲和紐西蘭以及其他亞太國家)進行細分。市場預測以美元計價。
各國政府持續加強職業安全法規,要求製造商、煉油廠和公共產業在密閉空間和危險製程區域安裝經認證的多氣體監測儀。馬來西亞2022年修訂的《職業安全與健康法》規定,所有雇主必須任命安全協調員並記錄空氣監測程序,這促進了化工和棕櫚油加工產業叢集採用固定式氣體檢測儀。在澳大利亞,進入密閉空間必須使用符合AS/NZS標準的本質安全型測量儀器;而在韓國,工作場所強制測量五種氣體(O₂、CO、LEL、H₂S、CO₂)的濃度,使得攜帶式多氣體檢測儀的需求標準化。企業標準化正在創造協同效應。跨國公司正在將其內部安全規程推廣到其在越南和印尼的相關工廠,從而促進其供應鏈中聯網氣體檢測平台的統一採購。因此,感測器的基本規格得到了結構性改進,響應時間縮短了,工作範圍擴大了,並引入了數位校準日誌,為差異化技術提供者創造了有利條件。
東南亞石化產業的擴張正推動該地區對檢測設備進行最大規模的資本投資。例如,馬來西亞耗資35億美元的邊佳蘭能源綜合體項目和印尼全長555公里的杜邁-賽曼基輸油管項目,均需對揮發性有機化合物、甲烷和硫化氫進行連續監測,從而持續推動對固定式感測器陣列的需求。泰國國家石油公司(PTTEP)計劃在未來五年內投資212億美元用於其上游天然氣和液化天然氣業務,這將進一步增加對海上平台防爆探測器的需求。同時,越南龍山綜合體將增建低溫乙烷儲罐,需要配備破裂前洩漏偵測系統。煉油和石化一體化中心以及深海天然氣田的興起,使得危險因子的複雜性日益增加,加速了具備連續自診斷功能的連網紅外線、超音波和雷射探測器的部署。
價格敏感度仍然是中小製造商採用該技術的主要障礙。安裝帶有冗餘迴路的連網紅外線探測器的成本可能高達年度安全預算的數倍。在馬來西亞尤其如此,合規訓練費用已高達每位協調員500-900馬來西亞馬幣。區域供應商提供的硬體成本優惠會被系統整合費、校準氣體費和雲端服務費部分抵消,從而延長了投資回收期。儘管有多邊融資方案,但中小企業的認知度有限,阻礙了該技術在泰國汽車供應鏈和越南服裝產業叢集的大規模應用。供應商正在推出基於訂閱的「氣體檢測即服務」模式,該模式包含硬體、校準和軟體,並收取月度營運費,但該服務模式下合規證書的法規核准因司法管轄區而異,限制了其可擴展性。
到2025年,有線架構在亞太地區氣體探測器市場仍將佔據48.15%的佔有率。這主要是因為流程工業已經擁有類比和數位佈線,而且故障模式及影響分析(FMEA)建議對危及生命的警報採用冗餘有線迴路。同時,無線技術預計將以平均每年8.62%的速度成長至2031年,因為電池供電節點顯著降低了安裝成本。安裝成本是現有設施的主要成本因素之一。 LTE-M和NB-IoT模組與無線韌體更新的結合簡化了大規模資產管理流程,而WirelessHART網狀網路則滿足了連續流程的確定性要求。在韓國一家造船廠進行的示範實驗證實,無線偵測器可將部署時間縮短60%,並消除對電纜配線架的返工需求。
行動裝置擴大整合藍牙低功耗(BLE)信標和雲端閘道器,從而兼顧便攜性和車隊級可視性。固定無線混合系統正在興起:經ATEX認證的電力線為探測器供電,而訊號回程傳輸透過2.4GHz網狀網路實現,無需在旋轉機械或危險區域上方鋪設銅纜。與日本和澳洲電信業者的合作使得捆綁式SIM資料方案成為可能,從而降低了終端用戶的重複通訊成本。鑑於這些結構性優勢,無線技術有望蠶食有線技術的市場佔有率,但考慮到舊有系統的慣性和企業認證週期,有線技術預計至少在2027年之前仍將佔據主導地位。
According to Mordor Intelligence, the Asia Pacific gas detector market size was valued at USD 639 million in 2025 and estimated to grow from USD 681.02 million in 2026 to reach USD 936.56 million by 2031, at a CAGR of 6.58% during the forecast period (2026-2031).

This report is Segmented by Communication Type (Wired, and Wireless), Detector Type (Fixed, Portable, and Transportable), End-User Industry (Oil and Gas, Chemicals and Petrochemicals, Water and Wastewater, and More), and Geography (China, Japan, India, South Korea, Southeast Asia, Australia and New Zealand, and Rest of Asia-Pacific). The Market Forecasts are Provided in Terms of Value (USD).
National authorities continue to ratchet up occupational-safety statutes, compelling manufacturers, refiners, and utilities to install certified multi-gas monitors across confined spaces and hazardous process areas. Malaysia's Occupational Safety and Health Amendment 2022 obliges every employer to appoint safety coordinators and document atmospheric-monitoring practices, boosting fixed-detector penetration across chemical and palm-oil processing clusters. Australia enforces intrinsically safe instrumentation under AS/NZS standards for confined-space entry, while South Korea mandates five-gas measurement (O2, CO, LEL, H2S, CO2) at worksites, standardizing demand for portable multi-gas detectors. Corporate harmonization plays a multiplier role: multinationals export internal safety protocols to satellite facilities in Vietnam and Indonesia, driving uniform procurement of networked gas-detection platforms across the supply chain. The result is a structural uplift in baseline sensor specifications, faster response times, wider operating ranges, and digital calibration logs that favour differentiated technology providers.
Southeast Asia's petrochemical build-out supplies the region's single largest capital-expenditure catalyst for detection equipment. Projects such as Malaysia's USD 3.5 billion Pengerang Energy Complex and Indonesia's 555 km Dumai-Sei Mangkei transmission pipeline embed continuous monitoring for volatile organic compounds, methane, and H2S, creating a durable pull-through for fixed sensor arrays. Thailand's PTTEP allocates USD 21.2 billion over five years to upstream gas and LNG, magnifying offshore platform demand for flameproof detectors, while Vietnam's Long Son complex adds cryogenic ethane tanks requiring leak-before-break detection architectures. The swing toward integrated refinery-petrochemical hubs and deep-water gas fields raises hazard complexity, accelerating the adoption of networked infrared, ultrasonic, and laser-based detectors with continuous self-diagnostics.
Price sensitivity remains the principal adoption hurdle for small and medium manufacturers. Installation of networked infrared detectors with redundancy loops can cost multiples of annual safety budgets, especially when compliance training already absorbs MYR 500-900 per coordinator in Malaysia. Hardware savings achieved by regional suppliers are partly offset by integration, calibration gas, and cloud subscription fees, prolonging payback periods. Multilateral credit facilities exist, yet awareness among SMEs is limited, delaying mass roll-outs in Thailand's automotive supply chain and Vietnam's garment clusters. Vendors respond with subscription-based "gas-detection-as-a-service" models bundling hardware, calibration, and software into monthly operating expenditures, but regulatory acceptance of service-model compliance certificates varies across jurisdictions, constraining scale.
Other drivers and restraints analyzed in the detailed report include:
For complete list of drivers and restraints, kindly check the Table Of Contents.
The wired architecture retained 48.15% of the Asia Pacific gas detector market share in 2025, mainly because process industries already possess intrinsic analogue and digital cabling, and failure-mode-and-effect analyses favor redundant, hard-wired loops for life-critical alarms. Wireless, however, is forecast to compound at 8.62% through 2031 as battery-powered nodes slash installation labor, a major cost component in brownfield facilities. LTE-M and NB-IoT modules coupled with over-the-air firmware updates simplify large-scale asset-management cycles, while WirelessHART meshes satisfy determinism requirements in continuous processes. Field trials in Korean shipyards confirm that wireless detectors cut deployment time by 60% and eliminate cable-tray rework.
Portable devices increasingly embed BLE beacons and cloud gateways, blending portability with fleet-wide visibility. Fixed-wireless hybrids emerge where ATEX-rated power lines feed detectors, but signal backhaul occurs via 2.4 GHz mesh, avoiding copper cable runs over rotating machinery and hazardous zones. Telecom-operator partnerships in Japan and Australia enable bundled SIM data plans, reducing recurring connectivity charges for end users. Given these structural advantages, wireless is poised to erode the wired share, yet legacy system inertia and corporate qualification cycles suggest wired dominance persists at least until 2027.