惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

Y
Y Combinator Blog
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
博客园 - 司徒正美
Blog — PlanetScale
Blog — PlanetScale
博客园 - 聂微东
月光博客
月光博客
量子位
大猫的无限游戏
大猫的无限游戏
Stack Overflow Blog
Stack Overflow Blog
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
The Cloudflare Blog
P
Proofpoint News Feed
B
Blog RSS Feed
美团技术团队
腾讯CDC
C
Check Point Blog
Engineering at Meta
Engineering at Meta
F
Fortinet All Blogs
N
Netflix TechBlog - Medium
Recent Announcements
Recent Announcements
J
Java Code Geeks
S
SegmentFault 最新的问题
WordPress大学
WordPress大学
宝玉的分享
宝玉的分享

Business News Today: Latest Business News, Finance News

Markets’ dilemma: Trust the bark or wag of oil prices The sector call illusion Bandu’s Blockbusters For April 12, 2026 Mastering Derivatives: Does Lag Impact Effectiveness Of OI? Who Am I? April 12, 2026 Index Outlook: Rising From Dire Straits US Market Outlook: Gaining Strength Bullion Cues: Gold And Silver Futures Face Barrier F&O Tracker: Tentative Shift In Trend F&O Strategy: Buy L&T Put Maruti Suzuki to launch 4 EVs by 2031 India Inc flags surge in cost of packaging raw material, seeks relief measures India-flagged LPG tanker Jag Vikram crosses Strait of Hormuz after US-Iran ceasefire Muted pricing power, rising costs to curb benefits of demand in cement sector: HDFC Securities Iran's new supreme leader Mojtaba Khamenei has severe and disfiguring wounds, sources say No road tax, registration fees for electric vehicles priced up to ₹30 lakh till March 2030: Delhi’s draft EV policy Central Railway to run four special local trains for Ambedkar Jayanti West Asia tensions push up costs for India; further impact hinges on stability: Report ED initiates fresh raids against former Bengal minister Chatterjee in teacher recruitment scam Election Commission reverses Mittal’s DVAC posting, appoints him DGP, TN Armed Police Israel and Lebanon are expected to hold talks. Here’s what to know US, Iran set for peace talks but doubts emerge over Lebanon, sanctions Cotton Association revises output estimates for 2025-26 up at 324 lakh bales of 170 kg each Orbicular gets USFDA’s tentative nod for generic Semaglutide Injection in partnership with Apotex Malls, high-streets in NCR clock 45% rise in leasing of retail spaces in Jan-Mar: C&W FIIs pull ₹28,375 crore in five sessions; domestic buyers cushion fall as indices post best week in months Nifty and Bank Nifty Prediction for the week 13 Apr’26 to 17 Apr’26 by BL GURU Proposed Trump arch in Washington DC includes winged figure, eagles, lions and gold inscriptions 'Ladakh' replaces 'Jammu and Kashmir' in Aadhaar records for UT residents Misri ends US trip with focus on civil nuclear cooperation and LPG exports
The 10,000-litre myth: Understanding the true water footp...
By Kushal Mittal · 2026-05-16 · via Business News Today: Latest Business News, Finance News

Historically, India has borne the economic burden of a substantial crude oil import bill, which reached an astonishing $137 billion in recent cycles. At present, the country is transitioning towards domestically produced biofuels, viewing this shift not only as an environmentally responsible initiative but also as a vital survival strategy. A central element of this energy transition is the Ethanol Blended Petrol (EBP) programme.

The momentum of this shift is undeniable. As of February 2026, industry data reveal that during the Ethanol Supply Year (ESY) 2025 to 2026, India successfully blended over 353 crore litres of ethanol. This progress has maintained a national average of 20 per cent blending of petrol across the country. This milestone is the payoff of a decade spent aligning policy with infrastructure. However, as the industry scales, it has run head-first into a narrative that is as loud as it is scientifically hollow. The first is the claim that every single litre of ethanol consumes 10,000 litres of water.

Unmasking the statistical sleight of hand

The argument that ethanol production consumes “10,000 litres of water per litre of fuel” is rooted in a fundamental misunderstanding of how water footprints are calculated. That often-cited figure refers to virtual water — the cumulative rainwater and irrigation used during the agricultural cultivation of the crop over its entire lifecycle. It is an agricultural accounting metric, not a measure of industrial water consumption.

The reality inside a modern Indian ethanol distillery is dramatically different. Today’s high-efficiency distilleries, operating under stringent environmental norms and zero-liquid-discharge frameworks, typically consume only about 3–4 litres of process water for producing one litre of ethanol. The contrast between these numbers is not a minor technicality; it represents the critical distinction between the biological water requirement of a crop and the actual industrial water used during ethanol conversion.

Equally important is the nature of the feedstock being utilised. A significant share of India’s grain-based ethanol production relies on damaged food grains, broken rice, surplus maize, and other stocks that are unsuitable for human consumption. If these grains are not redirected towards ethanol production, they often remain underutilised or deteriorate in storage, effectively wasting the agricultural resources already invested in cultivating them.

By converting such surplus or non-food-grade grains into clean fuel, the ethanol industry is not creating an additional water burden on the system. Rather, it is extracting economic and environmental value from agricultural output that has already consumed water at the farm level. In this sense, grain-based ethanol production represents a pragmatic waste-to-wealth approach that enhances resource efficiency, strengthens energy security, and supports circular economy principles.

The double standard of virtual water

The current debate around ethanol and water usage also reveals a striking double standard in how the concept of virtual water is selectively applied. India is among the world’s largest exporters of rice, and every kilogram of rice exported effectively carries with it an estimated virtual water footprint of nearly 4,000 litres. Yet this enormous outflow of embedded agricultural water seldom attracts the same level of public criticism or alarmist commentary directed at the ethanol sector.

Similarly, for decades, food grains have been diverted towards industrial applications such as starch manufacturing, brewing, and other processing industries without significant debate over their cumulative water footprint. The underlying agricultural water consumption associated with these sectors was rarely framed as a national resource crisis.

In contrast, ethanol production is increasingly being singled out and held solely responsible for a much broader and longstanding structural challenge related to agricultural water use, cropping patterns, and irrigation practices. These issues predate India’s biofuel programme by many decades and cannot be simplistically attributed to ethanol alone.

For the public discourse to remain credible and constructive, it must be grounded in context, scientific accuracy, and a complete understanding of the data. Isolated or decontextualised figures may generate sensational narratives, but they do little to advance meaningful policy solutions. India’s ethanol programme is fundamentally aimed at enhancing energy security, reducing fossil fuel imports, supporting farmers, and accelerating the transition towards cleaner fuels. Any evaluation of the sector must therefore consider both its resource footprint and its wider national benefits in a balanced and evidence-based manner.

The dividends of energy self-reliance

The EBP programme is not just a climate project because it functions as an economic powerhouse. The results recorded from 2014 to 2015 through February 2016 paint a picture of undeniable success.

Expeditious payments exceeding ₹1,50,925 crore have flowed back to the farming community. This has turned traditional food providers into vital stakeholders in the energy value chain, often referred to as Urjadatas. Additionally, the initiative has saved India over ₹170,560 crore in foreign exchange, acting as a critical cushion against global oil market volatility.

From an atmospheric standpoint, the programme has facilitated a net CO₂ reduction of approximately 869 lakh metric tonnes. It has also successfully substituted over 289 million metric tonnes of crude oil. These are tangible, recorded wins for the national economy and the environment alike.

The arrival of the net-zero distillery

Beyond the blending statistics, the industry is undergoing a digital overhaul. The modern distillery is no longer just a utility but has evolved into a high-tech ecosystem. AI and IoT sensors are enabling facilities to precisely control water usage and steam flow. Extensive use of a Zero Liquid Discharge (ZLD) system for treating and recycling process water within the plant is reducing dependence on natural sources for fresh water.

Even the byproducts such as Distillers Dried Grains with Solubles (DDGS) are high-protein animal feeds. It replaces fodder that would otherwise require its own significant water footprint to grow.

A forward-looking perspective

The narrative that ethanol is a water villain is a misinterpretation of industrial mechanics. As India targets higher blending percentages and welcomes the era of flex-fuel vehicles, the conversation must evolve.

The ethanol programme is a masterstroke of national resource optimisation. It cleans the air, shores up the agrarian economy, and shields the nation from foreign energy dependence. It is a system built on the bedrock of self-reliance. Its legacy should be defined by the tangible prosperity it brings to India’s soil, not by the myths that seek to obscure it.

The author is Vice President, All India Distillers’ Association (AIDA)

Published on May 16, 2026