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Nutrition

DIY Electrolyte Drinks That Actually Work

Most adults don't need them. For those who do, a kitchen mix matches the WHO oral rehydration formula at roughly 1-3% of the cost of commercial products.

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DIY Electrolyte Drinks That Actually Work

The 60-second version

Commercial electrolyte drinks are a roughly USD$10-billion-a-year category sold around the premise that ordinary humans need engineered hydration formulas. The published evidence is much narrower: the average sedentary or moderately active adult needs nothing more than water and food. Real electrolyte replacement matters in three specific contexts: prolonged exercise (>60 minutes, particularly in heat), illness with significant fluid losses (vomiting, diarrhea), and certain clinical conditions. For those use cases, a homemade drink built from water, salt, a small amount of sugar, and citrus juice matches the published WHO oral rehydration solution formula and outperforms most commercial products on the dimensions that matter (sodium content, osmolality, cost, no artificial colours or sweeteners). Sports drinks like Gatorade contain less sodium than the WHO formula, more sugar than physiology requires, and 25-50× the cost per dose. Premium brands (LMNT, Liquid IV, Pedialyte) are closer to the right formula but still 5-15× the cost of a kitchen mix. This article walks through the published evidence on when electrolytes actually help, the WHO oral rehydration formula and its DIY equivalent, four working recipes, and the cost-per-dose math.

When electrolytes actually matter

The body tightly regulates electrolyte balance through kidney filtration, hormonal signalling (aldosterone, ADH), and dietary intake. For the typical North American adult, who consumes 3,000-3,500 mg of sodium daily through ordinary food, supplementation produces no measurable benefit for someone already meeting sodium needs through food Kenefick 2012. The published evidence supports electrolyte replacement in specific scenarios:

The evidence does NOT support routine electrolyte supplementation for: ordinary daily hydration, gym sessions under 60 minutes, walking, low-intensity yoga, recovery drinks for office workers, or the general “wellness” market the category targets.

The ACSM position stand's core conclusion, in plain terms: absent unusual fluid losses or prolonged exercise, healthy adults eating a normal diet have no established need for electrolyte supplementation — and the marketing of these products has run well ahead of the evidence base for routine use.

— Paraphrased from Sawka et al., Med Sci Sports Exerc, 2007 (ACSM position stand) view source

The WHO oral rehydration formula

The WHO/UNICEF reduced-osmolarity oral rehydration solution is the published gold standard. It targets 75 mEq/L sodium (~1,725 mg/L), 65 mEq/L chloride, 20 mEq/L potassium, and 75 mmol/L glucose, for a total osmolarity of 245 mOsm/L. The reduced-osmolarity formula adopted in 2002 outperformed earlier higher-osmolarity formulas in pediatric trials Hahn 2001.

For most adults in North America, an exact WHO ORS is overkill outside of acute illness. A practical sports / general-purpose dilution at roughly 50% strength is appropriate for >60-minute exercise and matches what commercial products in the LMNT / Liquid IV tier deliver.

Four working recipes

All measured to fill a 1-litre water bottle. Adjust to taste; the science permits a wide tolerance. Use iodised table salt unless your physician has advised otherwise.

Use caseSalt (NaCl)SugarCitrus juiceNotes
Acute illness (vomiting/diarrhea)1/2 tsp (~1,150 mg sodium)2 tbsp (~24 g)Juice of 1/2 lemon or limeWHO ORS approximation; consume at room temp; physician oversight if severe
Long exercise / hot day1/4 tsp (~575 mg sodium)1-2 tbsp (~12-24 g)Juice of 1/2 orange or lime~575 mg/L sodium matches ACSM guidance for >60 min in heat
Light exercise / mild dehydration1/8 tsp (~290 mg sodium)1 tbsp (~12 g)Splash of any citrusFor 30-60 minute moderate sessions; otherwise water suffices
Hangover / morning rehydration1/4 tsp (~575 mg sodium)1 tbsp + 1 tsp honeyJuice of 1/2 lemonReplaces fluid + sodium losses; honey adds glucose for liver

Add one banana (about 400 mg potassium) or a half cup of orange juice (about 250 mg potassium) to any recipe if you want to match the ORS potassium content. Most North American diets supply abundant potassium without supplementation.

Cost comparison: kitchen vs. commercial

ProductApprox. dose (1L)Sodium (mg)Cost (CAD, 2026)Notes
Homemade (kitchen)1L290–1,150$0.05–0.15Adjustable; no artificial additives
Gatorade (1L bottle)1L~460$3-4Lower sodium than DIY; more sugar than needed
Pedialyte1L~1,035$8-10WHO-formula-adjacent; effective for illness
LMNT (1 stick to 1L)1L~1,000$2.50-3 per stickHigh sodium; widely-marketed brand
Liquid IV (1 stick to 0.5L)0.5L~500$2.50-3 per stickMid-range sodium; sugar-heavy
Nuun (1 tablet to 0.5L)0.5L~360$1-1.50 per tabletLower sodium; portable

The math is stark: a homemade litre delivering more sodium than Gatorade costs 1-3% as much. The premium-brand electrolyte stick is 15-25× the cost of an equivalent kitchen mix. The portability and convenience are real benefits; the active ingredients are nearly identical.

Who DIY suits and who it doesn’t

ProfileDIY fitWhy
Endurance athlete training >60 min dailyExcellentCost savings significant; formula adjustable; refilled water bottle works
Adult with acute diarrhea/vomitingExcellent (or use Pedialyte)Both work; DIY is cheaper but less precise
Hot-weather worker (construction, landscaping)ExcellentRefillable bottle; consistent dose; full control
Adult on low-sodium diet for hypertensionCaveatTalk to MD first; the salt content of any electrolyte drink matters
Adult with kidney diseaseAvoid without MD oversightSodium and potassium are tightly regulated; ad-hoc dosing is risky
Child with severe illnessUse commercial PedialytePediatric dosing precision matters; WHO ORS sachets also work
Casual gym-goerSkip bothPlain water + meals supply adequate electrolytes for <60 min sessions
Pregnant womanDiscuss with OBSodium needs change; formula adjustments may be appropriate

Ingredient notes

Don’t over-replace fluid or sodium

Two failure modes are worth mentioning:

The thirst mechanism in healthy adults is reliable. Drink to thirst plus a bit more during heat or long exertion; eat normally; reserve electrolyte drinks for genuine sweat losses or illness.

Storage and practical tips

Practical takeaways

Frequently asked questions

Do I really need an electrolyte drink for the gym?

Almost certainly not. The ACSM position stand on fluid replacement (Sawka 2007) supports electrolyte-containing fluids for exercise lasting more than 60 minutes, particularly in heat. Sessions under 60 minutes at moderate intensity meet electrolyte needs from ordinary food eaten before or after. Plain water is sufficient for most gym-goers; the marketing of these products has run substantially ahead of the evidence.

How is a homemade drink different from Gatorade?

Sodium content and sugar/calorie ratio. Gatorade contains about 460 mg of sodium per litre and ~58 g of sugar; ACSM guidance for endurance work in heat is 500-700 mg/L of sodium. A DIY mix at 1/4 tsp salt per litre delivers ~575 mg of sodium and lets you choose your own sugar level. The kitchen mix is roughly 1-3% of the cost.

Is the WHO oral rehydration formula safe for general use?

For acute diarrheal illness or significant fluid losses, yes — it’s saved millions of lives. For routine daily hydration in a healthy adult, the WHO formula is overkill: it delivers 1,700 mg of sodium per litre, more than the daily WHO sodium-intake recommendation in a single bottle. Use full ORS during illness; use a half-strength version for endurance exercise; skip both for everyday hydration.

What about premium brands like LMNT, Liquid IV, or Pedialyte?

They work. They’re also expensive. LMNT is closer to the WHO ORS sodium target and lower in sugar than Gatorade; Liquid IV markets aggressively on a 'cellular transport technology' claim that is essentially the standard WHO oral rehydration mechanism repackaged; Pedialyte is the most clinically validated for pediatric illness. All three deliver active ingredients similar to a homemade mix at 5-15× the cost. Convenience and portability are real benefits if you value them.

Are there people who should NOT use DIY electrolytes?

Yes. Adults on low-sodium diets for hypertension, cardiovascular disease, or kidney disease should not casually add electrolyte drinks — talk to your physician first. Children with significant illness should get pediatrician-directed Pedialyte rather than ad-hoc DIY mixes. Adults on diuretics or other electrolyte-affecting medications need medical oversight. The DIY recipes are appropriate for healthy adults in the documented use cases (endurance exercise, acute illness without complications, occupational heat exposure).

References

Sawka 2007Sawka MN, Burke LM, Eichner ER, Maughan RJ, Montain SJ, Stachenfeld NS. American College of Sports Medicine position stand: exercise and fluid replacement. Med Sci Sports Exerc. 2007;39(2):377-390. View source →
WHO 2006World Health Organization. Oral rehydration salts: production of the new ORS. WHO/FCH/CAH/06.1. Geneva: World Health Organization; 2006. View source →
Hahn 2001Hahn S, Kim Y, Garner P. Reduced osmolarity oral rehydration solution for treating dehydration due to diarrhoea in children: systematic review. BMJ. 2001;323(7304):81-85. View source →
Hew-Butler 2015Hew-Butler T, Rosner MH, Fowkes-Godek S, et al. Statement of the third international exercise-associated hyponatremia consensus development conference. Clin J Sport Med. 2015;25(4):303-320. View source →
Munos 2010Munos MK, Fischer Walker CL, Black RE. The effect of oral rehydration solution and recommended home fluids on diarrhoea mortality. Int J Epidemiol. 2010;39 Suppl 1:i75-i87. View source →
Convertino 1996Convertino VA, Armstrong LE, Coyle EF, et al. American College of Sports Medicine position stand. Exercise and fluid replacement. Med Sci Sports Exerc. 1996;28(10):i-ix. View source →
Nichols 2005Nichols PE, Jonnalagadda SS, Rosenbloom CA, Trinkaus M. Knowledge, attitudes, and behaviors regarding hydration and fluid replacement of collegiate athletes. Int J Sport Nutr Exerc Metab. 2005;15(5):515-527. View source →
Kenefick 2012Kenefick RW, Cheuvront SN. Hydration for recreational sport and physical activity. Nutr Rev. 2012;70 Suppl 2:S137-S142. View source →
Noakes 2003Noakes T. Fluid replacement during marathon running. Clin J Sport Med. 2003;13(5):309-318. View source →
Shirreffs 2004Shirreffs SM, Armstrong LE, Cheuvront SN. Fluid and electrolyte needs for preparation and recovery from training and competition. J Sports Sci. 2004;22(1):57-63. View source →
Maughan 2016Maughan RJ, Watson P, Cordery PA, et al. A randomized trial to assess the potential of different beverages to affect hydration status: development of a beverage hydration index. Am J Clin Nutr. 2016;103(3):717-723. View source →
Popkin 2010Popkin BM, D’Anci KE, Rosenberg IH. Water, hydration, and health. Nutr Rev. 2010;68(8):439-458. View source →
ACSM 2016Thomas DT, Erdman KA, Burke LM. American College of Sports Medicine joint position statement: nutrition and athletic performance. Med Sci Sports Exerc. 2016;48(3):543-568. View source →

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