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市場調查報告書
商品編碼
1857130
生質能發電:全球市佔率排名、總銷售額和需求預測(2025-2031年)Biomass Power Generation - Global Market Share and Ranking, Overall Sales and Demand Forecast 2025-2031 |
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2024年全球生質能發電市場規模估計為497.07億美元,預計到2031年將達到731.27億美元,在2025-2031年的預測期內,年複合成長率為5.7%。
生質能發電是一種利用燃燒、氣化和發酵等方式將生質能資源(例如農林廢棄物、食物廢棄物和廢棄物糞便)轉化為電能的技術。它兼具再生、排放排放和循環經濟的特徵。生質能包括林業和農業的廢棄物、殘渣和特定產品廢棄物,以及市政和工業廢棄物中的可生物分解有機成分。它還包括食品加工業廢棄物、市政廢棄物、工業廢棄物、農業廢棄物、木材廢棄物、木材、鋸末、短輪伐期木本作物以及許多其他材料。生質能可用作發電、暖氣和交通運輸的能源來源。生質能是一種環境友善、碳中和且永續的發電能源來源,具有減少對石化燃料依賴的巨大潛力。
技術類型(直接燃燒發電;氣化發電;沼氣發電)
原理(生質能直接燃燒產生蒸氣驅動渦輪機;生質能轉化為可燃性氣體驅動發電機;厭氧發酵產生甲烷用於發電)
應用規模(10-100MW;1-10MW;0.1-5MW)
效率範圍(25-35%;30-42%;35-45%)
典型燃料(秸稈、木屑、甘蔗渣;稻殼、鋸末、農業殘餘物;牲畜和家禽糞、有機污水、垃圾掩埋沼氣)
區域市場狀況
全球生質能發電市場呈現明顯的技術發展趨勢,歐洲和美國引領潮流,亞太地區也快速擴張。歐洲憑藉其嚴格的碳減排政策和成熟的環境標準,佔據了全球超過35%的市場。德國和瑞典等國正致力於發展生質能氣化聯合循環技術,與傳統的燃煤發電相比,該技術可將發電效率提高10%至15%。北美市場則以廢棄物焚化發電為主。美國長期以來一直保持著全球生質能發電裝置容量前三名的地位,並且在沼氣熱電聯產技術方面也處於領先地位。
亞太地區是成長最快的區域市場,到2024年將佔全球市場佔有率的40%。中國將貢獻該地區新增裝置容量的60%以上。
製造商和產業鏈分析
核心上游環節:原料供應商主要為農林廢棄物收集、儲存和運輸企業(例如China National Agricultural Development Group)。核心設備包括焚化爐(德國Martin、中國Shanghai Electric)、氣化爐(美國GE、China Huadian Heavy Industry)和煙氣處理設備(中國Zhongji Shengfeng、荷蘭Paques)。焚燒爐和氣化爐的投資額佔總投資額的60%以上。典型的下游客戶可分為三大類:國有電網公司(例如State Grid和 China Southern Power Grid,以基準價格購電);高耗能工業用戶(例如鋼鐵企業和化學企業,透過綠色電力直連購買生質能電力);以及地方政府環衛部門(垃圾焚化發電計劃的主要投資者)。技術趨勢與消費量
生質能發電正迅速朝向更高效率、更清潔運作和更智慧化的方向發展。核心技術突破集中在三個關鍵領域:在燃燒效率方面,循環流體化床氣化技術實現了高效的原料轉化;在環境保護與資源利用一體化方面,Zhongji Shengfeng的煙氣脫硝餘熱回收技術實現了三重突破:氮氧化物去除率達到99%,顆粒物排放降至5 mg/m³以下,氮氧化物轉化為液態氮。這為每座工廠每年帶來超過2,000萬元的額外收益,有效解決了產業環境成本高昂的痛點;在數位化和智慧化管理控制方面,人工智慧演算法和物聯網平台被整合到整個流程中進行最佳化。例如,Dosker的碳排放分析系統即時監測燃燒資料,並透過演算法調整進料速率,使碳排放效率提高了18%。 5G技術與遠端監控系統的結合,將設備運作維護的反應時間縮短至兩小時以內,停機時間減少30%。生質能發電作為唯一兼具「固態廢棄物處理」和「能源生產」雙重特性的再生能源來源,正透過產業升級和技術創新,成為全球能源轉型的重要支柱。在「雙碳」和提升環保標準的雙重驅動下,能夠適應當地原料、在環保技術方面取得突破、並具備數位智慧管理控制能力的企業有望主導市場。未來,隨著綠色電力直連模式的推廣和沼氣聯產技術的成熟,生質能能發電將從單一能源朝向「電-熱-氣-肥」的多聯產模式發展,進一步展現其生態和經濟價值。
本報告目的是全面概述全球生質能發電市場,重點關注總銷售收入、市場佔有率和主要企業的排名,並依地區/國家、類型和應用進行分析。
本報告以百萬美元為單位,提供生質能發電市場規模、估算和預測資料,涵蓋2020年至2031年的歷史資料和預測資料,並以2024年為基準年。定量和定性分析有助於讀者制定業務/成長策略、評估市場競爭格局、分析公司在當前市場中的地位,並就生質能發電做出明智的商業決策。
The global market for Biomass Power Generation was estimated to be worth US$ 49707 million in 2024 and is forecast to a readjusted size of US$ 73127 million by 2031 with a CAGR of 5.7% during the forecast period 2025-2031.
Biomass power generation is a technology that converts biomass resources, such as agricultural and forestry waste, garbage, and livestock manure, into electricity through combustion, gasification, and fermentation. It combines renewable, low-carbon emissions, and circular economy characteristics. Biomass includes waste, residues, and by-products from forestry and agriculture, as well as the biodegradable organic fraction of municipal and industrial waste. It also includes waste from the food processing industry, municipal and industrial waste, agricultural and wood waste, wood, sawdust, short-rotation woody crops, and many other materials. Biomass is used as an energy source for power generation, heating, and transportation. Biomass is an environmentally friendly, carbon-neutral, and sustainable energy source for power generation, with significant potential to reduce dependence on fossil fuels.
Technology Type (Direct Combustion Power Generation; Gasification Power Generation; Biogas Power Generation)
Principle (Direct combustion of biomass to generate steam to drive a turbine; Conversion of biomass into combustible gas to drive a generator; Anaerobic fermentation to generate methane for power generation)
Applicable Scale (10-100 MW; 1-10 MW; 0.1-5 MW)
Efficiency Range (25-35%; 30-42%; 35-45%)
Typical Fuels (Straw, wood chips, bagasse; Rice husks, sawdust, agricultural residues; Livestock and poultry manure, organic wastewater, landfill gas)
Regional Market Landscape
The global biomass power generation market demonstrates a "Europe and the United States lead in technology, while Asia-Pacific expands in scale" landscape. Europe, with its stringent carbon reduction policies and mature environmental standards, holds over 35% of the global market share. Countries like Germany and Sweden are focusing on developing biomass gasification-coupled technologies, which improve power generation efficiency by 10-15% compared to traditional coal-fired units. The North American market is centered around waste incineration power generation. The United States has long maintained a top-three position globally in biomass power generation capacity and leads in biogas co-generation technology.
The Asia-Pacific region is the fastest-growing regional market, accounting for 40% of the market size by 2024. China contributes over 60% of the region's installed capacity growth.
Manufacturer and Industry Chain Analysis
Core upstream links: The raw material supply side is primarily agricultural and forestry waste collection, storage, and transportation companies (such as China National Agricultural Development Group). Core equipment components include incinerators (Martin, Germany, Shanghai Electric, China), gasification units (GE, China Huadian Heavy Industry, USA), and flue gas treatment equipment (Zhongji Shengfeng, China, and Paques, the Netherlands). Incinerators and gasification units account for over 60% of total equipment investment. Downstream typical customers are divided into three core groups: first, state-owned power grid companies (such as State Grid and China Southern Power Grid, which purchase electricity at benchmark prices); second, high-energy-consuming industrial users (such as steel and chemical companies, which purchase biomass electricity through green power direct connections); and third, local government sanitation departments (the main investors in waste-to-energy projects). Technological Trends and Innovations
Biomass power generation is rapidly evolving toward higher efficiency, cleaner operation, and smarter processes. Core technological breakthroughs are concentrated in three key areas: In terms of combustion efficiency, circulating fluidized bed gasification technology achieves efficient raw material conversion. In terms of integrating environmental protection with resource utilization, Zhongji Shengfeng's flue gas denitrification and heat recovery technology achieves a triple breakthrough: NOx removal efficiency reaches 99%, particulate matter emissions are below 5mg/m3, and nitrogen oxides are converted into liquid nitrogen fertilizer. This generates over 20 million yuan in additional annual revenue per plant, addressing the industry's pain point of excessively high environmental costs. In terms of digital intelligent management and control, AI algorithms and IoT platforms are integrated to optimize the entire process. For example, Dosker's carbon emission analysis system monitors combustion data in real time and adjusts feed rates through algorithms, increasing carbon emission reduction efficiency by 18%. Combined with 5G and a remote monitoring system, equipment operation and maintenance response time is shortened to within 2 hours, reducing downtime by 30%. In summary, as the only renewable energy source that combines the dual attributes of "solid waste treatment" and "energy production," biomass power generation is becoming a key pillar of the global energy transition through industrial upgrading and technological innovation. Driven by the dual goals of "dual carbon" and the upgrading of environmental standards, companies with the ability to adapt to local raw materials, breakthroughs in environmental protection technologies, and digital intelligent management and control will dominate the market. In the future, with the promotion of green electricity direct connection models and the maturity of biogas cogeneration technology, biomass power generation will evolve from a single power supply to a multi-generation model of "electricity-heat-gas-fertilizer," further unleashing both ecological and economic value.
This report aims to provide a comprehensive presentation of the global market for Biomass Power Generation, focusing on the total sales revenue, key companies market share and ranking, together with an analysis of Biomass Power Generation by region & country, by Type, and by Application.
The Biomass Power Generation market size, estimations, and forecasts are provided in terms of sales revenue ($ millions), considering 2024 as the base year, with history and forecast data for the period from 2020 to 2031. With both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding Biomass Power Generation.
Market Segmentation
By Company
Segment by Type
Segment by Application
By Region
Chapter Outline
Chapter 1: Introduces the report scope of the report, global total market size. This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 2: Detailed analysis of Biomass Power Generation company competitive landscape, revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 5: Revenue of Biomass Power Generation in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 6: Revenue of Biomass Power Generation in country level. It provides sigmate data by Type, and by Application for each country/region.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product revenue, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.