市場調查報告書
商品編碼
1271319
鹼性固體廢物市場 - 增長、未來展望、競爭分析,2023-2031 年Alkaline Solid Waste Market - Growth, Future Prospects and Competitive Analysis, 2023 - 2031 |
在 2023 年至 2031 年的預測期內,全球鹼性固體廢物市場預計將以 4% 的複合年增長率增長。 為了減少廢物處理和處置對環境的影響,對廢物的最大再利用和循環利用有著巨大的需求。 在鋼鐵、水泥/混凝土、紙漿/造紙、化工等諸多領域,全球範圍內都會產生鹼性固體廢棄物。 鹼性固體廢物的主要功能是將加速碳化循環產生的二氧化碳礦化。 二氧化碳排放是全球氣候變化的主要原因,但鹼性固體廢物通常用於減輕其最嚴重的影響。 因此,預計在預測期內,鹼性固體廢物的市場動態將快速增長。 鹼性固體廢物的主要成分是礦渣、灰渣、泥漿等。 為了解決這個問題,鹼性固體廢物製造商需要在生產用於化妝品、醫療保健和建築施工等行業的各種產品時使用鹼性固體廢物。 目前在減少過度排放和從各行業的灰燼中提取有價值的材料方面取得的進展是預計在預測期內為鹼性固體廢物市場提供巨大潛力的關鍵技術。
固體廢物是家庭、商業或工業活動產生的任何不需要的固體或無價值的材料。 管理固體廢物可以減少或消除對環境和人類健康的有害影響。 為了讓市政當局有效地管理垃圾,需要採取各種措施。 垃圾和廢物收集、運輸、處理、回收和處置的記錄。 與城市居民的社會經濟條件成反比的生活方式的改變佔了垃圾產生量變化的大部分。 鹼廢業務產生鋼鐵礦渣、水泥窯灰、生活垃圾焚燒灰、大氣污染防治灰、貝殼灰、鹼土及污泥等工業鹼性固廢。
近年來,對鹼性固體廢物利用的研究進展迅速,被認為是穩定固體廢物和防止全球變暖最有希望的解決方案之一。 然而,儘管發表了許多驗證其性能的論文,但尚未評估通過 CO2 礦化和鹼性固體廢物的利用來減少 CO2 的全球潛力。 如果實施 CO2 礦化和利用,中國每年減排總量的潛力最高可達 19.2%。 根據一項研究,全球 CO2 減排武器庫中最重要的綠色技術之一是 CO2 的礦化和利用,即鹼性固體廢物的強度。
燃煤產品 (CCP) 含有對環境有害的化學物質,包括砷、鎘和汞。 如果不仔細監測這些化合物,它們會對生態系統構成嚴重威脅。 因此,必須規範燃煤電廠對飛灰等 CCP 的處置。
根據處理類型,鹼性固體廢物市場分為堆肥、焚燒、垃圾填埋、地表採礦、回收等。 到2022年,回收將佔全球鹼性固體廢物市場的30%。 該細分市場預計在 2023 年至 2031 年的預測期內以 5% 的複合年增長率發展。 最近的研究表明,工業活動正在加速全球變暖並改變大氣的化學結構。 這種廢物處理會導致二氧化碳排放。 因此,在個人護理、醫療保健、油漆和塗料、建築和施工等行業中,大部分鹼性固體廢物通過鹼水解進行回收和再利用。
按價值計算,到 2022 年歐洲將佔全球市場份額的 35% 左右。 歐洲既有高度發達的發達國家,也有新興經濟體。 由於穩步的工業擴張,德國在歐洲市場佔據主導地位。 到 2022 年,亞太地區將佔據全球鹼性固體廢物市場 25% 的份額。 預計亞太市場在預測期內將穩步增長。 鹼性固廢回收工業廢料需求顯著增長是亞太地區鹼性固廢市場的新興趨勢之一。 中國是該地區鹼性固體廢物需求的主要驅動力。 到 2022 年,中東和非洲以及拉丁美洲合計將佔全球市場的不到 18%。 未來幾年,預計這兩個地區將加大對減少二氧化碳排放和利用鹼性固體廢物的投資。
全球鹼性固體廢物行業正在慢慢整合,少數大型企業控制著大部分市場。 大多數公司都對鹼性固體廢物的廣泛研究進行了大量投資。 鹼性固體廢物生產的特點是主要參與者關注新產品開發和創新。 TSUNEISHI KAMTECS CORPORATION、SWACO、Biffa Group、SUEZ Group、Kandi Mineral Technologies Private Limited、Novelis等著名公司以向多個領域供應鹼性固體廢物而聞名。
2023 年 1 月,卡萬塔將收購一家馬薩諸塞州環境服務、廢水處理和回收公司。 這家總部位於莫裡斯敦的公司為企業和社區提供環境服務,將為公司在新英格蘭市場的發展做出貢獻,並鞏固其作為可持續材料管理行業領導者的地位。
The global alkaline solid waste market is expected to grow at a CAGR of 4% during the forecast period of 2023 to 2031. Significant demand exists to maximize waste reuse and recycling to reduce the environmental impact of waste treatment and disposal. Many sectors, including iron/steel, cement/concrete, pulp/paper, and chemicals, produce alkaline solid waste on a global scale. The primary function of alkaline solid waste is to mineralize carbon dioxide produced by an accelerated carbonation cycle. While carbon dioxide emission is the principal cause of global climate change, alkaline solid waste is commonly used to mitigate its most severe effects. Hence, market dynamics for alkaline solid waste are anticipated to increase at a rapid rate during the projection period. Principal components of alkaline solid waste include slag, ash, mud, etc. To fight the issue, makers of alkaline solid waste are required to employ it in the production of a variety of products used in industries such as cosmetics, health care, building & construction, etc. Current advancements in mitigating excessive emissions and extracting valuable materials from ash from various industries are a key technique that is projected to give significant alkali solid waste market potential over the forecast period.
Solid waste is undesirable solid material or worthless stuff generated by household, commercial, and industrial activities. The management of solid waste can lessen or eliminate the harmful impact on the environment and human health. A variety of measures are required for a municipality to effectively manage waste. They include keeping track of garbage and waste collection, transportation, processing, recycling, and disposal. Changing lifestyles, which are inversely connected with the socioeconomic condition of the urban population, account for the majority of the variation in the amount of rubbish generated. The alkali wastes business produces several industrial alkaline solid wastes, including iron and steel slags, cement kiln dust, municipal solid waste incinerator ash, air pollution control ash, shell ash, and alkaline soil and sludge.
In recent years, research into the utilization of alkaline solid wastes has advanced rapidly, and it is currently considered one of the most promising solutions for stabilizing solid wastes and minimizing global warming. Despite the publication of numerous articles examining the performance of the procedures, no evaluation of the worldwide potential for CO2 reduction through CO2 mineralization and utilization of alkaline solid wastes has been documented. China has the highest potential to cut its annual total emissions by up to 19.2% if CO2 mineralization and utilization are implemented. According to a study, one of the most important green technologies in the arsenal of global CO2 mitigation is the mineralization and utilization of CO2, which are advantages of alkaline solid waste.
Coal combustion products (CCP) contain chemicals that are harmful to the environment, including arsenic, cadmium, and mercury. If these compounds are not carefully monitored, they pose a grave hazard to the ecosystem. Thus, it is essential to regulate the disposal of CCPs, such as fly ash, by coal-fired power plants.
Global regulatory agencies, such as the United States Environmental Protection Agency and the European Union's waste legislation, govern the disposal of industrial waste. In October 2016, the U.S. Environmental Protection Agency (EPA) announced standards for the safe disposal of coal combustion products in the United States. These reasons drive the worldwide demand for hazardous waste management. The expense of healthcare in the United States and Europe is rising rapidly. In numerous regions, the healthcare industry is under pressure to decrease costs while concurrently improving patient outcomes.
According to the Centres for Medicare and Medicaid Services (CMS), the National Healthcare Expenditure (NHE) in the United States increased by 3.9% in 2017 to reach US$ 3.5 Trillion, representing approximately 17.9% of the country's gross domestic product. It is anticipated to increase by 5.5% during the time of projection. In addition, the increase in waste production by healthcare facilities and the stringent regulatory policies regarding waste management and disposal imposed by agencies such as the EPA, CDC, and U.S. FDA have prompted hospitals and other medical waste generators to outsource services that are not directly related to the delivery of healthcare and thereby reduce costs. This has led to the creation of third-party professionals in the U.S. market of medical waste management. This is likely to drive the market for alkaline solid waste from 2023 to 2031.
In terms of the type of treatment, the market for alkaline solid waste is segmented into composting, incineration, landfill, open dump, and recycling, among others. In 2022, recycling represented 30% of the worldwide alkaline solid waste market. The segment is expected to develop at a 5% CAGR over the forecast period of 2023 to 2031. Recent research implies that industrial activities have accelerated global warming, hence altering the chemical makeup of the atmosphere. This trash disposal can result in the emission of carbon dioxide. Thus, the majority of alkaline solid waste is recycled and reused in industries such as personal care, healthcare, paints & coatings, and building & construction via alkaline hydrolysis.
Europe accounted for roughly 35% of the global market share in terms of value in 2022. Europe features a few industrialized economies that are highly developed and other emerging or developing economies. Germany dominated the European market due to the country's steady industrial expansion. In 2022, Asia-Pacific held a 25% share of the worldwide alkaline solid waste market. The Asia-Pacific market is expected to grow steadily throughout the forecast period. The considerable growth in demand for alkaline solid waste to recycling industrial waste materials is one of the developing alkaline solid waste market trends in Asia-Pacific. China is the primary driver of the regional demand for alkaline solid waste. Together, Middle East & Africa, and Latin America held less than 18% of the worldwide market in 2022. In the next years, it is anticipated that investment in the reduction of carbon emissions will expand in both regions, as will investment in the utilization of alkaline solid waste.
The global alkaline solid waste industry is moderately consolidated, with a handful of large-scale companies controlling the majority of the market. The bulk of companies invests considerably in an extensive study on alkaline solid waste. The manufacture of alkaline solid waste is characterized by an emphasis on new product development and innovation among key participants. Companies such as TSUNEISHI KAMTECS CORPORATION, SWACO, Biffa Group, SUEZ Group, Kandi Mineral Technologies Private Limited, Novelis, and Other notable players. are well-known suppliers of alkaline solid waste to numerous sectors.
In January of 2023, Covanta purchases an environmental service, wastewater treatment, and recycling company in Massachusetts. The Morristown-based provider of environmental services for businesses and communities will contribute to the company's growth in the New England market and strengthen its position as an industry leader in sustainable materials management.
As of March 2022, At the TsuneishiKamtecs Corporation facility in Saitama, burned ash from landfill debris generates gold, silver, copper, iron, and other metals, including aluminum. The corporation, headquartered in Fukuyama City, Hiroshima Prefecture, claims that its monthly income from rare metals such as gold, silver, and platinum convert to 2.5 million to 3 million JPY (about $20,000 to $25,000 USD) at current market values. At TsuneishiKamtecs Saitama, over 100 percent of cremated ash is recycled to manufactured sand. Using its method, the organization also distinguishes precious materials from garbage.
This study report represents analysis of each segment from 2021 to 2031 considering 2022 as the base year. Compounded Annual Growth Rate (CAGR) for each of the respective segments estimated for the forecast period of 2022 to 2031.
The current report comprises of quantitative market estimations for each micro market for every geographical region and qualitative market analysis such as micro and macro environment analysis, market trends, competitive intelligence, segment analysis, porters five force model, top winning strategies, top investment markets, emerging trends and technological analysis, case studies, strategic conclusions and recommendations and other key market insights.
The complete research study was conducted in three phases, namely: secondary research, primary research, and expert panel review. key data point that enables the estimation of Alkaline Solid Waste market are as follows:
Micro and macro environment factors that are currently influencing the Alkaline Solid Waste market and their expected impact during the forecast period.
Market forecast was performed through proprietary software that analyzes various qualitative and quantitative factors. Growth rate and CAGR were estimated through intensive secondary and primary research. Data triangulation across various data points provides accuracy across various analyzed market segments in the report. Application of both top down and bottom-up approach for validation of market estimation assures logical, methodical and mathematical consistency of the quantitative data.