• The role of TOD in water quality monitoring
    Reflecting the content of organic matter in water
    Total oxygen demand (TOD) refers to the amount of oxygen required when the reducing substances in water are burned at high temperature to become stable oxides, and the result is measured in mg/L. The TOD value can reflect the amount of oxygen consumed when almost all organic matter in water (including carbon C, hydrogen H, oxygen O, nitrogen N, phosphorus P, sulfur S and other components) are burned to become CO₂, H₂O, NOₓ, SO₂, etc. It is closer to the theoretical oxygen demand value than biochemical oxygen demand (BOD), chemical oxygen demand (COD) and permanganate index, and can more comprehensively reflect the total amount of organic matter in water.

    https://www.renkeer.com/what-is-cod-bod-toc-tod/
    The role of TOD in water quality monitoring Reflecting the content of organic matter in water Total oxygen demand (TOD) refers to the amount of oxygen required when the reducing substances in water are burned at high temperature to become stable oxides, and the result is measured in mg/L. The TOD value can reflect the amount of oxygen consumed when almost all organic matter in water (including carbon C, hydrogen H, oxygen O, nitrogen N, phosphorus P, sulfur S and other components) are burned to become CO₂, H₂O, NOₓ, SO₂, etc. It is closer to the theoretical oxygen demand value than biochemical oxygen demand (BOD), chemical oxygen demand (COD) and permanganate index, and can more comprehensively reflect the total amount of organic matter in water. https://www.renkeer.com/what-is-cod-bod-toc-tod/
    WWW.RENKEER.COM
    Wastewater Monitoring: COD, BOD, TOC, TOD
    COD, BOD, TOC, and TOD are key indicators used to evaluate organic pollution levels in wastewater for treatment and environmental monitoring.
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  • Isopropyl Alcohol (IPA) Νέο
    $1
    Σε απόθεμα
    india
    0 Προεπισκόπηση
    Isopropyl alcohol, also known as rubbing alcohol, is a colorless and flammable liquid commonly used for a variety of purposes. Here are some details regarding its description, benefits, how to use it, and cautions to keep in mind:

    Description: Isopropyl alcohol is a chemical compound with the molecular formula C₃H₈O. It is a volatile liquid that evaporates quickly and has a strong odor. Isopropyl alcohol is produced through the hydration of propylene or by the hydrogenation of acetone. It is widely available in various concentrations, typically ranging from 70% to 99%.

    More : https://www.theyoungchemist.com/detail/isopropyl-alcohol-ipa.html
    Isopropyl alcohol, also known as rubbing alcohol, is a colorless and flammable liquid commonly used for a variety of purposes. Here are some details regarding its description, benefits, how to use it, and cautions to keep in mind: Description: Isopropyl alcohol is a chemical compound with the molecular formula C₃H₈O. It is a volatile liquid that evaporates quickly and has a strong odor. Isopropyl alcohol is produced through the hydration of propylene or by the hydrogenation of acetone. It is widely available in various concentrations, typically ranging from 70% to 99%. More : https://www.theyoungchemist.com/detail/isopropyl-alcohol-ipa.html
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  • The Dragon and The Elephant: China Vs India (Part 2)
    Why China Surpassed India in Technology and Industrial Output.

    Catching up with China is a formidable challenge that requires unwavering political will, broad societal consensus, and consistent execution of well-thought-out strategies over many years. While the path is arduous, a focused and determined India can significantly accelerate its journey towards becoming a global leader in technology, science, and industry.

    For India to bridge the gap with China in technology, science, and industrial output, a multifaceted and sustained national effort is required. This involves strategic interventions across research and development, manufacturing, human capital, infrastructure, and governance. Here’s a deeper insight into what India needs to do:

    1. Turbocharge Research & Development (R&D) and Foster a Robust Innovation Ecosystem:

    Dramatically Increase R&D Investment: India's current R&D spending (around 0.7% of GDP) pales in comparison to China's (over 2.5%). A national mission to elevate this to at least 2-3% of GDP within the next decade is crucial. This requires increased public funding and significant incentives for private sector R&D.

    Strengthen Industry-Academia Collaboration: Create seamless pathways for joint research projects, knowledge transfer, and commercialization of academic innovations. Establish dedicated innovation hubs, research parks, and technology incubators with active industry participation.

    Revamp the Patent Regime: Streamline the patent filing and grant process to make it faster, more efficient, and aligned with global best practices. Strengthen intellectual property rights (IPR) protection to encourage innovation.

    Promote Mission-Oriented Research: Identify and fund national missions in critical and emerging areas like artificial intelligence (AI), quantum computing, advanced materials, green hydrogen, and biotechnology, similar to China’s strategic focus areas.

    Attract and Retain Top Talent: Implement policies to attract global scientific talent (including Indian diaspora) and create conducive environments to retain and nurture domestic researchers.

    2. Transform into a Global Manufacturing Powerhouse:
    Enhance Manufacturing Competitiveness:-
    Scale and Efficiency: Encourage the creation of large-scale manufacturing units capable of competing globally on cost and quality.

    Supply Chain Resilience: Develop robust domestic supply chains for critical components and raw materials to reduce import dependency, learning from China’s integrated approach.

    Technology Adoption: Promote the adoption of Industry 4.0 technologies (AI, IoT, robotics, automation) in manufacturing processes.

    Strategic Industrial Policy:-
    Targeted Support: Continue and refine Production Linked Incentive (PLI) schemes for strategic sectors, ensuring clear goals and accountability.

    Ease of Doing Business: Persistently work on simplifying regulations, reducing bureaucratic hurdles, and ensuring policy stability at both central and state levels. This includes faster approvals, easier land acquisition, and streamlined labor laws.

    Focus on High-Value Manufacturing: Shift focus from low-value assembly to high-value-added manufacturing, including design, engineering, and R&D-intensive production.

    3. Revolutionize Education and Skill Development:-
    Overhaul Technical and Vocational Education:

    Modernize Curricula: Align engineering, polytechnic, and vocational training curricula with current and future industry demands, emphasizing practical skills, problem-solving, and emerging technologies.

    Mass Skilling and Upskilling: Launch large-scale initiatives to skill, reskill, and upskill the workforce for advanced manufacturing, digital technologies, and R&D roles.

    Strengthen Apprenticeships: Expand and strengthen apprenticeship programs with active industry involvement.

    Improve Quality of Higher Education:
    Invest in STEM Excellence: Significantly increase investment in science, technology, engineering, and mathematics (STEM) education at all levels.

    Faculty Development: Implement rigorous training and development programs for faculty in higher education and technical institutions.

    Attract Foreign Universities and Foster Competition: Encourage top global universities to set up campuses in India to enhance quality and provide global exposure, as envisioned in the National Education Policy (NEP) 2020.

    4. Build World-Class, Future-Ready Infrastructure:
    Logistics and Connectivity: Continue the aggressive push for modernizing and expanding infrastructure, including highways (Bharatmala), railways (Dedicated Freight Corridors), ports (Sagarmala), and airports. Focus on multi-modal connectivity and reducing logistics costs and turnaround times, which are critical for manufacturing competitiveness.

    Reliable Power Supply: Ensure uninterrupted, high-quality power at competitive rates for industries.

    Digital Infrastructure: Strengthen and expand high-speed internet connectivity and data centers to support a digitally-driven economy and advanced technological applications.

    Industrial Parks and Clusters: Develop well-equipped industrial parks and sector-specific clusters with plug-and-play infrastructure to attract investment.

    5. Ensure Agile and Enabling Governance:
    Bureaucratic and Regulatory Reforms:
    Speed and Transparency: Implement deep administrative reforms to make bureaucracy more agile, responsive, and transparent. Reduce red tape through single-window clearance systems and extensive use of technology.

    Policy Stability and Predictability: Ensure long-term policy stability and predictability to build investor confidence.

    Effective Centre-State Coordination: Foster greater synergy between central and state governments in policy formulation and implementation related to industrial development, infrastructure, and skill development.

    Strengthen Legal and Judicial Processes: Ensure faster contract enforcement and dispute resolution mechanisms.

    6. Strategically Attract and Nurture Investment:
    Targeted FDI in High-Tech Areas: Proactively seek foreign direct investment in high-technology sectors, R&D, and advanced manufacturing, offering competitive incentives and a stable policy environment.

    Boost Domestic Investment: Encourage domestic companies to invest more in capacity building, technology upgradation, and innovation.

    Develop a Robust Capital Market: Further develop capital markets to provide risk capital and long-term financing for technology ventures and industrial projects.

    7. Focus on Emerging Technologies and Self-Reliance:
    National Strategy for Key Technologies: Develop and implement comprehensive national strategies for emerging technologies like AI, machine learning, semiconductors (e.g., India Semiconductor Mission), 5G/6G, biotechnology, and renewable energy.

    Promote Indigenous Development: While collaborating globally, prioritize indigenous development of critical technologies to enhance self-reliance (Atmanirbhar Bharat) and reduce strategic vulnerabilities.
    Learning from China (Both Successes and Mistakes):

    Emulate Strategic Focus and Execution: Learn from China's ability to set long-term strategic goals and execute them with speed and scale, particularly in infrastructure and targeted industrial development.

    Invest in Human Capital: Replicate China's success in mass education and skilling relevant to industrial needs.

    Avoid Pitfalls: Be cautious of issues like over-reliance on state-led investment leading to potential misallocation, debt overhang, environmental degradation if not managed sustainably, and intellectual property theft concerns that have been associated with China's rise. India's democratic framework, while sometimes slower, can provide checks and balances for more sustainable and equitable growth if harnessed effectively.

    Catching up with China is a monumental task that requires a generational commitment to reform, investment, and execution. It necessitates a "whole-of-nation" approach, involving government, industry, academia, and civil society working in concert towards clearly defined national goals.

    By Jo Ikeji-Uju
    https://afriprime.net/pages/Anything
    The Dragon and The Elephant: China Vs India (Part 2) Why China Surpassed India in Technology and Industrial Output. Catching up with China is a formidable challenge that requires unwavering political will, broad societal consensus, and consistent execution of well-thought-out strategies over many years. While the path is arduous, a focused and determined India can significantly accelerate its journey towards becoming a global leader in technology, science, and industry. For India to bridge the gap with China in technology, science, and industrial output, a multifaceted and sustained national effort is required. This involves strategic interventions across research and development, manufacturing, human capital, infrastructure, and governance. Here’s a deeper insight into what India needs to do: 1. Turbocharge Research & Development (R&D) and Foster a Robust Innovation Ecosystem: Dramatically Increase R&D Investment: India's current R&D spending (around 0.7% of GDP) pales in comparison to China's (over 2.5%). A national mission to elevate this to at least 2-3% of GDP within the next decade is crucial. This requires increased public funding and significant incentives for private sector R&D. Strengthen Industry-Academia Collaboration: Create seamless pathways for joint research projects, knowledge transfer, and commercialization of academic innovations. Establish dedicated innovation hubs, research parks, and technology incubators with active industry participation. Revamp the Patent Regime: Streamline the patent filing and grant process to make it faster, more efficient, and aligned with global best practices. Strengthen intellectual property rights (IPR) protection to encourage innovation. Promote Mission-Oriented Research: Identify and fund national missions in critical and emerging areas like artificial intelligence (AI), quantum computing, advanced materials, green hydrogen, and biotechnology, similar to China’s strategic focus areas. Attract and Retain Top Talent: Implement policies to attract global scientific talent (including Indian diaspora) and create conducive environments to retain and nurture domestic researchers. 2. Transform into a Global Manufacturing Powerhouse: Enhance Manufacturing Competitiveness:- Scale and Efficiency: Encourage the creation of large-scale manufacturing units capable of competing globally on cost and quality. Supply Chain Resilience: Develop robust domestic supply chains for critical components and raw materials to reduce import dependency, learning from China’s integrated approach. Technology Adoption: Promote the adoption of Industry 4.0 technologies (AI, IoT, robotics, automation) in manufacturing processes. Strategic Industrial Policy:- Targeted Support: Continue and refine Production Linked Incentive (PLI) schemes for strategic sectors, ensuring clear goals and accountability. Ease of Doing Business: Persistently work on simplifying regulations, reducing bureaucratic hurdles, and ensuring policy stability at both central and state levels. This includes faster approvals, easier land acquisition, and streamlined labor laws. Focus on High-Value Manufacturing: Shift focus from low-value assembly to high-value-added manufacturing, including design, engineering, and R&D-intensive production. 3. Revolutionize Education and Skill Development:- Overhaul Technical and Vocational Education: Modernize Curricula: Align engineering, polytechnic, and vocational training curricula with current and future industry demands, emphasizing practical skills, problem-solving, and emerging technologies. Mass Skilling and Upskilling: Launch large-scale initiatives to skill, reskill, and upskill the workforce for advanced manufacturing, digital technologies, and R&D roles. Strengthen Apprenticeships: Expand and strengthen apprenticeship programs with active industry involvement. Improve Quality of Higher Education: Invest in STEM Excellence: Significantly increase investment in science, technology, engineering, and mathematics (STEM) education at all levels. Faculty Development: Implement rigorous training and development programs for faculty in higher education and technical institutions. Attract Foreign Universities and Foster Competition: Encourage top global universities to set up campuses in India to enhance quality and provide global exposure, as envisioned in the National Education Policy (NEP) 2020. 4. Build World-Class, Future-Ready Infrastructure: Logistics and Connectivity: Continue the aggressive push for modernizing and expanding infrastructure, including highways (Bharatmala), railways (Dedicated Freight Corridors), ports (Sagarmala), and airports. Focus on multi-modal connectivity and reducing logistics costs and turnaround times, which are critical for manufacturing competitiveness. Reliable Power Supply: Ensure uninterrupted, high-quality power at competitive rates for industries. Digital Infrastructure: Strengthen and expand high-speed internet connectivity and data centers to support a digitally-driven economy and advanced technological applications. Industrial Parks and Clusters: Develop well-equipped industrial parks and sector-specific clusters with plug-and-play infrastructure to attract investment. 5. Ensure Agile and Enabling Governance: Bureaucratic and Regulatory Reforms: Speed and Transparency: Implement deep administrative reforms to make bureaucracy more agile, responsive, and transparent. Reduce red tape through single-window clearance systems and extensive use of technology. Policy Stability and Predictability: Ensure long-term policy stability and predictability to build investor confidence. Effective Centre-State Coordination: Foster greater synergy between central and state governments in policy formulation and implementation related to industrial development, infrastructure, and skill development. Strengthen Legal and Judicial Processes: Ensure faster contract enforcement and dispute resolution mechanisms. 6. Strategically Attract and Nurture Investment: Targeted FDI in High-Tech Areas: Proactively seek foreign direct investment in high-technology sectors, R&D, and advanced manufacturing, offering competitive incentives and a stable policy environment. Boost Domestic Investment: Encourage domestic companies to invest more in capacity building, technology upgradation, and innovation. Develop a Robust Capital Market: Further develop capital markets to provide risk capital and long-term financing for technology ventures and industrial projects. 7. Focus on Emerging Technologies and Self-Reliance: National Strategy for Key Technologies: Develop and implement comprehensive national strategies for emerging technologies like AI, machine learning, semiconductors (e.g., India Semiconductor Mission), 5G/6G, biotechnology, and renewable energy. Promote Indigenous Development: While collaborating globally, prioritize indigenous development of critical technologies to enhance self-reliance (Atmanirbhar Bharat) and reduce strategic vulnerabilities. Learning from China (Both Successes and Mistakes): Emulate Strategic Focus and Execution: Learn from China's ability to set long-term strategic goals and execute them with speed and scale, particularly in infrastructure and targeted industrial development. Invest in Human Capital: Replicate China's success in mass education and skilling relevant to industrial needs. Avoid Pitfalls: Be cautious of issues like over-reliance on state-led investment leading to potential misallocation, debt overhang, environmental degradation if not managed sustainably, and intellectual property theft concerns that have been associated with China's rise. India's democratic framework, while sometimes slower, can provide checks and balances for more sustainable and equitable growth if harnessed effectively. Catching up with China is a monumental task that requires a generational commitment to reform, investment, and execution. It necessitates a "whole-of-nation" approach, involving government, industry, academia, and civil society working in concert towards clearly defined national goals. By Jo Ikeji-Uju https://afriprime.net/pages/Anything
    AFRIPRIME.NET
    Anything Goes
    Share your memories, connect with others, make new friends
    0 Σχόλια 0 Μοιράστηκε 6χλμ. Views 0 Προεπισκόπηση
  • #HydrogenGasSensor Market is presently valued at USD 685 million and is anticipated to amplify at a CAGR of 6.2%, thereby amassing a valuation of USD 1,250 million by end of the assessment timeline.

    Read More: https://wemarketresearch.com/reports/hydrogen-gas-sensor-market/129

    #GasDetection #SafetyTech #HydrogenSafety #EnvironmentalMonitoring #GasSensors #HydrogenDetection
    #HydrogenGasSensor Market is presently valued at USD 685 million and is anticipated to amplify at a CAGR of 6.2%, thereby amassing a valuation of USD 1,250 million by end of the assessment timeline. Read More: https://wemarketresearch.com/reports/hydrogen-gas-sensor-market/129 #GasDetection #SafetyTech #HydrogenSafety #EnvironmentalMonitoring #GasSensors #HydrogenDetection
    WEMARKETRESEARCH.COM
    Hydrogen Gas Sensor Catalysts Market Size, Share, Growth & Trends 2022-30
    The Global Hydrogen Gas Sensor Market is presently valued at USD 685 million and is anticipated to amplify at a CAGR of 6.2%, thereby amassing a valuation of USD 1,250 million by end of the assessment timeline.
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  • https://www.maximizemarketresearch.com/market-report/merchant-hydrogen-market/72881/


    The Merchant Hydrogen Market size was valued at USD 100.92 Billion in 2024 and the total Merchant Hydrogen revenue is expected to grow at a CAGR of 7.1% from 2025 to 2032, reaching nearly USD 174.71 Billion.
    https://www.maximizemarketresearch.com/market-report/merchant-hydrogen-market/72881/ The Merchant Hydrogen Market size was valued at USD 100.92 Billion in 2024 and the total Merchant Hydrogen revenue is expected to grow at a CAGR of 7.1% from 2025 to 2032, reaching nearly USD 174.71 Billion.
    WWW.MAXIMIZEMARKETRESEARCH.COM
    Merchant Hydrogen Market- Global Industry Analysis and Forecast (2025-2032)
    The Merchant Hydrogen Market size was valued at USD 100.92 Billion in 2024 and the total revenue is expected to grow at a CAGR of 7.1%
    0 Σχόλια 0 Μοιράστηκε 288 Views 0 Προεπισκόπηση
  • https://www.databridgemarketresearch.com/reports/global-hydrogenated-oils-market
    https://www.databridgemarketresearch.com/reports/global-hydrogenated-oils-market
    Hydrogenated Oils Market – Global Market Size, Share, and Trends Analysis Report – Industry Overview and Forecast to 2032 | Data Bridge Market Research
    The Hydrogenated Oils market was valued at USD 85.20 Billion in 2024 and is expected to reach USD 119.32 Billion by 2032, growing at a CAGR of 4.3% (2025-2032). Get insights on trends, segmentation, and key players with Data Bridge Market Research Reports.
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  • #Greenhydrogen is a clean energy source produced by using renewable electricity to split water into hydrogen and oxygen through electrolysis. It emits no carbon dioxide, making it environmentally friendly. Green hydrogen is gaining attention as a sustainable fuel alternative for industries, transportation, and power generation, supporting global decarbonization efforts.

    Read More: https://wemarketresearch.com/reports/green-hydrogen-market/1341

    #CleanEnergy #SustainableFuel #RenewableEnergy #HydrogenEconomy #ZeroEmissions #Decarbonization #FutureFuel
    #Greenhydrogen is a clean energy source produced by using renewable electricity to split water into hydrogen and oxygen through electrolysis. It emits no carbon dioxide, making it environmentally friendly. Green hydrogen is gaining attention as a sustainable fuel alternative for industries, transportation, and power generation, supporting global decarbonization efforts. Read More: https://wemarketresearch.com/reports/green-hydrogen-market/1341 #CleanEnergy #SustainableFuel #RenewableEnergy #HydrogenEconomy #ZeroEmissions #Decarbonization #FutureFuel
    WEMARKETRESEARCH.COM
    Green Hydrogen Market Trends, Size, Growth & Future Insights
    The Green Hydrogen market is set to grow from USD 8.75 Billion in 2025 to USD 138.85 Billion by 2035, with a CAGR of 39.5% during forecast period 2025 to 2035.
    0 Σχόλια 0 Μοιράστηκε 2χλμ. Views 0 Προεπισκόπηση
  • Hydrogen Electrolyzer Market: Current Analysis and Forecast (2024-2032)

    https://univdatos.com/reports/hydrogen-electrolyzer-market-2
    Hydrogen Electrolyzer Market: Current Analysis and Forecast (2024-2032) https://univdatos.com/reports/hydrogen-electrolyzer-market-2
    UNIVDATOS.COM
    Hydrogen Electrolyzer Market Size & Share Report, 2032
    The Global Hydrogen Electrolyzer Market was valued at USD 817.5 million and is expected to grow at a strong CAGR of around 57.4% from 2024 to 2032
    0 Σχόλια 0 Μοιράστηκε 956 Views 0 Προεπισκόπηση
  • #Greenhydrogen market is set to grow from USD 8.75 billion in 2025 to USD 138.85 billion by 2035, at a CAGR of 39.5%. This growth is fueled by rising clean energy demand and the push for net-zero emissions. Unlike conventional methods, green hydrogen is produced using renewable sources like wind, solar, and hydropower.

    Read More: https://wemarketresearch.com/reports/green-hydrogen-market/1341

    #CleanEnergy #RenewableEnergy #NetZero #HydrogenEconomy #SustainableFuture #EnergyTransition #CAGR
    #Greenhydrogen market is set to grow from USD 8.75 billion in 2025 to USD 138.85 billion by 2035, at a CAGR of 39.5%. This growth is fueled by rising clean energy demand and the push for net-zero emissions. Unlike conventional methods, green hydrogen is produced using renewable sources like wind, solar, and hydropower. Read More: https://wemarketresearch.com/reports/green-hydrogen-market/1341 #CleanEnergy #RenewableEnergy #NetZero #HydrogenEconomy #SustainableFuture #EnergyTransition #CAGR
    WEMARKETRESEARCH.COM
    Green Hydrogen Market Trends, Size, Growth & Future Insights
    The Green Hydrogen market is set to grow from USD 8.75 Billion in 2025 to USD 138.85 Billion by 2035, with a CAGR of 39.5% during forecast period 2025 to 2035.
    0 Σχόλια 0 Μοιράστηκε 2χλμ. Views 0 Προεπισκόπηση
  • The #greenhydrogen market is set to grow from USD 8.75 billion in 2025 to USD 138.85 billion by 2035, with a 39.5% annual growth rate. Driven by clean energy demand and decarbonization efforts, it plays a key role in sustainable energy and carbon neutrality.

    Read more: https://wemarketresearch.com/reports/green-hydrogen-market/1341

    #CleanEnergy #Sustainability #RenewableEnergy #HydrogenEconomy #NetZero #Decarbonization
    The #greenhydrogen market is set to grow from USD 8.75 billion in 2025 to USD 138.85 billion by 2035, with a 39.5% annual growth rate. Driven by clean energy demand and decarbonization efforts, it plays a key role in sustainable energy and carbon neutrality. Read more: https://wemarketresearch.com/reports/green-hydrogen-market/1341 #CleanEnergy #Sustainability #RenewableEnergy #HydrogenEconomy #NetZero #Decarbonization
    WEMARKETRESEARCH.COM
    Green Hydrogen Market Trends, Size, Growth & Future Insights
    The Green Hydrogen market is set to grow from USD 8.75 Billion in 2025 to USD 138.85 Billion by 2035, with a CAGR of 39.5% during forecast period 2025 to 2035.
    0 Σχόλια 0 Μοιράστηκε 2χλμ. Views 0 Προεπισκόπηση
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