表紙:日本の上下水処理市場:化学物質タイプ別、水処理プロセス別、最終用途産業別、地域別、機会、予測、2017年~2031年
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日本の上下水処理市場:化学物質タイプ別、水処理プロセス別、最終用途産業別、地域別、機会、予測、2017年~2031年

Japan Water and Wastewater Treatment Market Assessment, By Chemical Type, By Water Treatment Process, By End-use Industry, By Region, Opportunities, and Forecast, FY2017-2031F

出版日: | 発行: Market Xcel - Markets and Data | ページ情報: 英文 101 Pages | 納期: 3~5営業日

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価格
価格表記: USDを日本円(税抜)に換算
本日の銀行送金レート: 1USD=156.76円
日本の上下水処理市場:化学物質タイプ別、水処理プロセス別、最終用途産業別、地域別、機会、予測、2017年~2031年
出版日: 2023年09月12日
発行: Market Xcel - Markets and Data
ページ情報: 英文 101 Pages
納期: 3~5営業日
  • 全表示
  • 概要
  • 図表
  • 目次
概要

日本の上下水処理の市場規模は、2023年に94億米ドルになるとみられています。同市場は、2024年から2031年までの予測期間中に5.3%のCAGRで拡大し、2031年には142億米ドルに成長すると予測されています。自治体における上下水処理薬品の需要増加と、産業部門における生産活動の活発化が、市場成長の主な要因です。

さらに、製紙・パルプ、食品・水などの産業環境における水処理に関連する厳しい規制が、優れた持続可能性目標を確保するために、日本における上下水処理プラントの立ち上げを促しており、市場成長を促進しています。さらに、水の制約に関連する環境問題の高まりが、廃水処理プロセスの採用を後押ししています。その結果、水から汚染物質を除去するために、PH制御、殺生物剤などの水・廃水処理薬品に対する需要が増加しています。これが日本の上下水処理市場の成長を促進しています。

日本の工業生産施設では、冷却、すすぎ、加工など、さまざまな水ベースの工業プロセスを最適化するために、水処理と廃水処理の配備が不可欠です。製造装置における自動化プロセスの増加や、持続可能性に準拠した工業生産の増加は、日本の水・廃水処理市場の成長を促進する主要動向です。

日本では厳しい規制が蔓延しているため、優れた環境コンプライアンスを確保するために水や廃水を処理することが義務付けられています。さらに、日本では厳しい政府規制を採用することで、洗浄、加工などの産業プロセスにおける処理済み廃水の利用が保証されています。

水処理と廃水処理に関連する主な利点には、汚染物質の容易な分解、最小限の臭気制御、効率的な化学消毒剤などがあります。このように、水処理と廃水処理は病気の原因となる細菌を除去します。廃水処理施設の利用は、規制基準への大幅な準拠と処理水の効率的な利用を確保するため、日本の発電部門で増加しています。

当レポートでは、日本の上下水処理市場について調査し、市場の概要とともに、化学物質タイプ別、水処理プロセス別、最終用途産業別、地域別動向、および市場に参入する企業のプロファイルなどを提供しています。

目次

第1章 調査手法

第2章 プロジェクトの範囲と定義

第3章 COVID-19の影響

第4章 ロシア・ウクライナ戦争の影響

第5章 エグゼクティブサマリー

第6章 お客様の声

第7章 日本の上下水処理市場の見通し、2017年~2031年

  • 市場規模と予測
  • 化学物質タイプ別
    • 腐食防止剤
    • 凝固剤
    • 凝集剤
    • 消泡剤
    • 有機ポリマー
    • 汚泥浄化装置
    • 殺生物剤および生物分散剤
    • PHコントロール
    • その他
  • 水処理プロセス別
    • 下水処理プロセス
    • 排水処理プロセス
    • 活性汚泥法
    • その他
  • 最終用途産業別
    • 発電
    • 石油・ガス
    • 化学プラント
    • 鉱業
    • 自治体
    • 食品・飲料
    • 紙・パルプ
    • 繊維
    • その他
  • 地域別

第8章 供給サイド分析

第9章 市場マッピング、2023年

第10章 マクロ環境と産業構造

  • 需給分析
  • 輸出入分析- 量と金額
  • サプライ/バリューチェーン分析
  • PESTEL分析
  • ポーターのファイブフォース分析

第11章 市場力学

第12章 主要参入企業の情勢

第13章 価格分析

第14章 ケーススタディ

第15章 主要企業の見通し

  • Kurita Water Industries Ltd
  • ASAHI CHEMICAL & INDUSTRIAL CO., LTD
  • Nippon Light Metal Co., Ltd
  • Tohkemy Corporation.
  • San Nopco Limited
  • BASF SE
  • Dow
  • Solvay
  • Ecolab
  • Solenis

第16章 戦略的推奨事項

第17章 お問合せと免責事項

図表

List of Tables

  • Table 1. Pricing Analysis of Products from Key Players
  • Table 2. Competition Matrix of Top 5 Market Leaders
  • Table 3. Mergers & Acquisitions/ Joint Ventures (If Applicable)
  • Table 4. About Us - Regions and Countries Where We Have Executed Client Projects

List of Figures

  • Figure 1. Japan Water & Wastewater Treatment Market, By Value, In USD Billion, FY2017-FY2031F
  • Figure 2. Japan Water & Wastewater Treatment Market, By Volume, In Tons, FY2017-FY2031F
  • Figure 3. Japan Water & Wastewater Treatment Market Share, By Chemical Type, In USD Billion, FY2017-FY2031F
  • Figure 4. Japan Water & Wastewater Treatment Market Share, By Water Treatment Process, In USD Billion, FY2017-FY2031F
  • Figure 5. Japan Water & Wastewater Treatment Market Share, By End-Use Industry, In USD Billion, FY2017-FY2031F
  • Figure 6. Japan Water & Wastewater Treatment Market Share, By Region, In USD Billion, FY2017-FY2031F
  • Figure 7. By Chemical Type Map-Market Size (USD Billion) & Growth Rate (%), FY2023
  • Figure 8. By Water Treatment Process Map-Market Size (USD Billion) & Growth Rate (%), FY2023
  • Figure 9. By End-Use Industry Map-Market Size (USD Billion) & Growth Rate (%), FY2023
  • Figure 10. By Region Map-Market Size (USD Billion) & Growth Rate (%), FY2023
目次
Product Code: MX10397

Japan Water and Wastewater Treatment Market size was valued at USD 9.4 billion in FY2023, which is expected to grow to USD 14.2 billion in FY2031, with a CAGR of 5.3% during the forecast period, between FY2024 and FY2031. The increasing demand for water and wastewater treatment chemicals in the municipal corporation and the rising production activities in industrial sectors are the primary factors driving the market growth.

Moreover, the stringent regulations related to water treatment in industrial settings such as paper & pulp, food & water, and others are prompting the launch of new water and wastewater treatment plants in Japan to ensure superior sustainability targets, fostering market growth. Furthermore, the increasing environmental concerns related to water constraints are boosting the adoption of wastewater treatment processes. As a result, the demand for water and wastewater treatment chemicals such as PH control, biocides, and others is increasing to eliminate the contaminants from water. This, in turn, is fostering the growth of the Japan water and wastewater treatment market.

Increasing Industrial Production Activities is Boosting the Demand for Water and Wastewater Treatment Chemicals in Japan

In Japanese industrial manufacturing facilities, water and wastewater treatment deployment is vital to optimizing various water-based industrial processes, including cooling, rinsing, processing, and others. The increasing automation processes in manufacturing units and rising sustainability-compliant industrial production are the key trends driving growth of Japan water and wastewater treatment market.

For instance, according to the Japan Paper Association, in 2021, pulp production in Japan was 7,224,426 tons, and in 2022, it was 7,793,682 tons leading to the annual growth rate of pulp production in Japan at 7.9%. Thus, the increasing industrial manufacturing activities related to paper & pulp, food & beverage, and others fuel the demand for water and wastewater treatment chemicals in Japan to ensure efficient removal of hazardous substances and contaminants, thereby propelling the market growth.

Stringent Regulations Associated with Water and Wastewater Treatment in Japan

The prevalence of stringent regulations in Japan makes it mandatory to treat water and wastewater to ensure superior environmental compliance. Moreover, adopting stringent government regulations in Japan ensures the deployment of treated wastewater in industrial processes such as cleaning, processing, and others.

For instance, the Japan Waste Management and Public Cleaning Law compulsorily complies with local governments to develop a Household Wastewater Treatment Plan for the municipalities. Municipalities and cities will construct, operate, and maintain sewage treatment facilities. Hence, the compulsory stringent regulations for wastewater treatment are accelerating the demand for chemicals such as PH control, biocides, and others to remove the traces of bacteria. As a result, Japan's stringent government regulations favor market growth for water and wastewater treatment.

Increasing Demand for Wastewater Treatment in the Japanese Power Generation Sector

The prime benefits associated with water and wastewater treatment include easy breakdown of contaminants, minimum odor control, efficient chemical disinfectants, and others. Thus, water and wastewater treatment eliminate disease-causing bacteria. The utilization of wastewater treatment plants is increasing in the Japanese power generation sector to ensure significant compliance with regulatory norms and efficient use of treated water.

For instance, according to the Institute for Sustainable Energy Policies, Japan's electricity generation through thermal power plants accounted for 71.7% of the total share of electricity generation in 2021. Therefore, the increasing electricity generation through thermal power plants is accelerating the deployment of wastewater treatment chemicals in Japan to ensure efficient water re-usage, which is supplementing the market growth.

Impact of COVID-19

The restrictions imposed due to the COVID-19 pandemic in 2020 significantly impacted the production activities related to pulp & water, textiles, and others in Japan. For instance, according to the Japan Paper Association, paper and paperboard production declined by 10%, reaching 22,868,904 tons compared to 25,401,407 tons in 2019. Thus, the halt in manufacturing paper and pulp in Japan led to a decline in the revenue growth of the market in 2020.

However, the ease of COVID-19-related regulation by the end of 2020 led to improved market conditions in Japan. Likewise, in the coming years, it is anticipated that the impact of the COVID-19 pandemic will be negligible, which will lead to the Japan water and wastewater treatment industry's outlook growth prospects during the projected forecast period.

Impact of Russia-Ukraine War

Materials such as aluminum sulfate, mineral oil, and others are vital for the manufacturing of water & wastewater treatment chemicals. The Japanese economy highly relies on Russia for energy demand. As a result, the higher energy prices impact the overall pricing of materials such as aluminum sulfate, mineral oil, and others. In addition, the volatility of petroleum prices directly impacts production costs.

For instance, according to the World Bank (WB), in 2022, due to the Russia-Ukraine war, the price of crude oil soared by USD 100 per barrel, reaching its highest level since 2013. Thus, the higher petroleum price impacted the transportation costs, raw material price, and others, impeding market expansion in the 1st quarter of 2022.

Key Players Landscape and Outlook

The prominent industry players dealing in the manufacturing of water and wastewater treatment market in Japan include Kurita Water Industries Ltd., ASAHI CHEMICAL & INDUSTRIAL CO., LTD, Nippon Light Metal Co., Ltd., Tohkemy Corporation., and others. The above-listed players are equipped with state-of-the-art manufacturing facilities to ensure an adequate supply of products as per the end-use industries' demand. The major players involved in water and wastewater treatment manufacturing in Japan are investing in strategies such as new product innovation, acquisitions, and others to increase their market share in the Japan water and wastewater treatment industry.

For instance, in March 2023, Xylem, a global manufacturer of water technology acquired Evoqua Water Technologies, a leading Japan Water and Wastewater Treatment chemicals manufacturer for USD 7.5 Billion. The prime focus of the acquisition was to increase the market position growth of Xylem in the Japan water and wastewater treatment market.

Table of Contents

1. Research Methodology

2. Project Scope & Definitions

3. Impact of COVID-19

4. Impact of Russia-Ukraine War

5. Executive Summary

6. Voice of Customer

  • 6.1. Market Awareness and Product Information
  • 6.2. Brand Awareness and Loyalty
  • 6.3. Factors Considered in Purchase Decision
    • 6.3.1. Brand Name
    • 6.3.2. Quality
    • 6.3.3. Quantity
    • 6.3.4. Price
    • 6.3.5. Product Specification
    • 6.3.6. Application Specification
    • 6.3.7. VOC/Toxicity Content
    • 6.3.8. Availability of Product
  • 6.4. Frequency of Purchase
  • 6.5. Medium of Purchase

7. Japan Water and Wastewater Treatment Market Outlook, FY2017-FY2031F

  • 7.1. Market Size & Forecast
    • 7.1.1. By Value
    • 7.1.2. By Volume
  • 7.2. By Chemical Type
    • 7.2.1. Corrosion Inhibitor
    • 7.2.2. Coagulants
    • 7.2.3. Flocculants
    • 7.2.4. Defoamers
    • 7.2.5. Organic Polymers
    • 7.2.6. Sludge Conditioners
    • 7.2.7. Biocides & Bio-Dispersants
    • 7.2.8. PH Control
    • 7.2.9. Others
  • 7.3. By Water Treatment Process
    • 7.3.1. Sewage Treatment Process
      • 7.3.1.1. Primary Treatment
      • 7.3.1.2. Secondary Treatment
      • 7.3.1.3. Tertiary Treatment
    • 7.3.2. Effluent Treatment Process
      • 7.3.2.1. Primary Treatment
      • 7.3.2.2. Secondary Treatment
      • 7.3.2.3. Tertiary Treatment
    • 7.3.3. Activated Sludge Process
    • 7.3.4. Other
  • 7.4. By End-use Industry
    • 7.4.1. Power Generation
      • 7.4.1.1. Thermal
      • 7.4.1.2. Nuclear
      • 7.4.1.3. Others
    • 7.4.2. Oil & Gas
      • 7.4.2.1. Offshore
      • 7.4.2.2. Onshore
    • 7.4.3. Chemical Plants
    • 7.4.4. Mining
    • 7.4.5. Municipal
    • 7.4.6. Food & Beverage
    • 7.4.7. Pulp & Paper
    • 7.4.8. Textile
    • 7.4.9. Others
  • 7.5. By Region
    • 7.5.1. North
    • 7.5.2. Central
    • 7.5.3. South

8. Supply Side Analysis

  • 8.1. Capacity, By Company
  • 8.2. Production, By Company
  • 8.3. Operating Efficiency, By Company
  • 8.4. Key Plant Locations (Up to 25)

9. Market Mapping, FY2023

  • 9.1. By Chemical Type
  • 9.2. By Water Treatment Process
  • 9.3. By End-use Industry
  • 9.4. By Region

10. Macro Environment and Industry Structure

  • 10.1. Supply Demand Analysis
  • 10.2. Import Export Analysis - Volume and Value
  • 10.3. Supply/Value Chain Analysis
  • 10.4. PESTEL Analysis
    • 10.4.1. Political Factors
    • 10.4.2. Economic System
    • 10.4.3. Social Implications
    • 10.4.4. Technological Advancements
    • 10.4.5. Environmental Impacts
    • 10.4.6. Legal Compliances and Regulatory Policies (Statutory Bodies Included)
  • 10.5. Porter's Five Forces Analysis
    • 10.5.1. Supplier Power
    • 10.5.2. Buyer Power
    • 10.5.3. Substitution Threat
    • 10.5.4. Threat from New Entrant
    • 10.5.5. Competitive Rivalry

11. Market Dynamics

  • 11.1. Growth Drivers
  • 11.2. Growth Inhibitors (Challenges, Restraints)

12. Key Players Landscape

  • 12.1. Competition Matrix of Top Five Market Leaders
  • 12.2. Market Revenue Analysis of Top Five Market Leaders (in %, FY2023)
  • 12.3. Mergers and Acquisitions/Joint Ventures (If Applicable)
  • 12.4. SWOT Analysis (For Five Market Players)
  • 12.5. Patent Analysis (If Applicable)

13. Pricing Analysis

14. Case Studies

15. Key Players Outlook

  • 15.1. Kurita Water Industries Ltd.
    • 15.1.1. Company Details
    • 15.1.2. Key Management Personnel
    • 15.1.3. Products & Services
    • 15.1.4. Financials (As reported)
    • 15.1.5. Key Market Focus & Geographical Presence
    • 15.1.6. Recent Developments
  • 15.2. ASAHI CHEMICAL & INDUSTRIAL CO., LTD
  • 15.3. Nippon Light Metal Co., Ltd
  • 15.4. Tohkemy Corporation.
  • 15.5. San Nopco Limited
  • 15.6. BASF SE
  • 15.7. Dow
  • 15.8. Solvay
  • 15.9. Ecolab
  • 15.10. Solenis

Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.

16. Strategic Recommendations

17. About Us & Disclaimer