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Professional Zinc Alloy Surface Finishing Solutions

Tartaric Acid

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Tartaric Acid

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  • Estimated Delivery:Oct 02 - Oct 06

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Product description
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Product Overview

Tartaric Acid (C4H6O6, L(+)-tartaric acid) is a natural di-carboxylic hydroxy acid - the molecule behind the classic Rochelle-type electroless copper bath and a workhorse complexant for copper and iron chemistry in the finishing shop. It is a white crystalline powder, freely soluble in water, mildly acidic (1% pH about 2.2), and it forms strong, soluble complexes with copper, iron(III), tin and aluminium ions in alkaline solution. In plating practice it is used three ways: as the complexant in alkaline electroless copper (usually as tartaric acid neutralised with caustic or as its Rochelle salt form), as a co-complexant in acid cleaning and oxide-removal dips for copper alloys, and as an addition to dilute sulfuric anodizing baths where a less aggressive, tartaric-modified process is specified for aluminium. Market grades reflect the salt's two worlds: food and wine grades dominate supply, while technical plating grade adds certified metal limits (Fe, Pb, sulfate, chloride) and consistent assay - the differences that decide whether a bath runs clear or dulls.

Product Identity (Encyclopaedia Card)

PropertyValue
Chemical nameTartaric Acid
Chemical formulaC4H6O6
CAS number87-69-4
AppearanceColourless to white crystals
Grade / typeFood / technical grade
Standard packing25 kg PP woven bag or kraft paper bag with PE inner liner; 25 kg fibre drum

What it is and what it does. Tartaric acid is the mild organic acid and complexant used in acid cleaning, in electroless plating and in the colouring of copper alloys, where it holds metal ions in solution without attacking the base metal aggressively.

  • White crystals; the dipotassium salt is also used where a near-neutral complexant is needed.
  • Used with tin and copper salts in the colouring of brass and bronze hardware.
  • Mild compared with the mineral acids, but still a serious eye irritant in powder form.

Typical Use in a Plating / Finishing Line

ItemTypical guidance
Copper alloy colouring10-50 g/L with the metal salt at 40-70 C
Cleaning and deoxidising5-20 g/L with a surfactant
AnalysisAcid base titration

Safety, Handling & Storage

ItemRequirement
Hazard classificationIrritant (GHS07) — causes serious eye irritation
Personal protective equipmentSafety goggles and acid-resistant gloves; dust mask when handling powder
Spill / first aidSweep up dry powder, or dilute and neutralise small liquid spills, then rinse to the effluent treatment system
StorageCool, dry, ventilated store; keep sealed against moisture, away from alkalis and oxidisers
TransportClassified and packed according to IATA/IMDG for the hazard class; UN number and packing group stated on the shipping documents

Quality Documents Shipped With Every Batch

DocumentComment
COA (certificate of analysis)Provided with the shipment; batch traceable to the production date
MSDS (safety data sheet)Provided with the shipment; batch traceable to the production date
Packing listProvided with the shipment; batch traceable to the production date
Commercial invoiceProvided with the shipment; batch traceable to the production date
Certificate of origin on requestProvided with the shipment; batch traceable to the production date

Buyer Questions We Answer Every Week

QuestionAnswer
Is it food grade?Both food and technical grades are available, but only technical grade is supplied for plating use.
Which is more effective, tartaric or citric acid?They behave differently with metal ions; the choice depends on the metal being complexed and on the pH of the process.
ItemTypical Value
Chemical formulaC4H6O6 (L(+)-tartaric acid)
Assay≥ 99.5%
AppearanceWhite crystalline powder, odourless
Solubility (20°C)~ 1300 g/L in water
pH (1% solution)~ 2.2
Iron (Fe)≤ 0.002%
Chloride / Sulfate≤ 0.005% / ≤ 0.02%
Heavy metals (as Pb)≤ 0.001%
Residue on ignition≤ 0.05%
Standard packing25KG woven bag with PE inner liner

How to Check Quality Before Loading a Batch

CheckMethodPass Criteria
AppearanceVisualWhite uniform crystals; yellow tint or grey specks = iron/copper contamination or old stock
Solubility / clarityDissolve 100 g in 100 ml DI waterClear, colourless solution, no residue
AssayCOA (alkalimetric titration)≥ 99.5%; reject below 99.0%
Heavy metalsSulfide spot test on a 10% solutionNo darkening - lead and iron are the impurities that dull alkaline copper baths
Coupon test (electroless Cu)Build a small Rochelle-type bath with the new lot, plate a brass panelCopper colour, coverage and rate match the reference bath

How QLQ controls it: tartrate electroless copper is sensitive to iron and lead at trace level, so each lot is quarantined, assay-verified and coupon-tested before release. Batch numbers are kept on file for 12 months so any colour or stability complaint can be re-tested against the exact delivery.

How It Works in the Bath (Tartrate Electroless Copper)

Rochelle-type electroless copper was the first practical electroless copper chemistry, and it still suits decorative and low-build work. Tartrate complexes copper so it stays dissolved in the strongly alkaline bath (pH 12-13) where copper hydroxide would otherwise precipitate; the complex releases copper to the catalytic surface as the reducer (formaldehyde) donates electrons, and plating proceeds on copper, brass or catalysed plastic. The bath is simpler and cheaper to run than EDTA systems, at the cost of a lower stability ceiling - it must be filtered, watched and replenished by analysis. Tartaric acid also does useful work in acid media: it lifts copper oxide films from copper and brass in inhibited acid dips without heavy etching, and its iron complexes keep dissolved iron from re-depositing as smut.

ApplicationTypical working dataRole of tartaric acid
Rochelle-type electroless copper (decorative)CuSO4·5H2O 10-20 g/L; tartaric acid 30-45 g/L (or Rochelle salt 40-55 g/L); NaOH to pH 12-13; formaldehyde 37% 10-20 ml/L; 20-40°CComplexant holding copper soluble at high pH
Acid oxide-removal dip for copper/brass5-15% acid + tartaric acid 10-30 g/L, 20-40°C, 1-5 minComplexes Cu2+ and Fe3+, prevents redeposition smut
Nickel / Ni-alloy bath additions1-10 g/L as co-complexant where iron dissolves from partsHolds dissolved iron in a plateable/cleanable form
Tartaric-sulfuric anodizing (aerospace type)Dilute sulfuric bath (about 30-50 g/L H2SO4) with tartaric acid roughly 4-10 g/LModerates attack; part of the approved low-pitting anodize process
Soak / ultrasonic cleaners1-5 g/L in neutral-alkaline blendsSequesters metals from soils and hard water

Ranges shown are starting points verified in workshop practice; proprietary electroless copper systems carry their own complexant blend and must be replenished per the process supplier. Rule of thumb in tartrate copper: keep the tartrate:copper molar ratio near 1.5-2.5:1 and verify stability hourly on a live bath.

Common Problems & Fixes (Workshop Table)

ProblemRoot causeFix
Bath decomposes (black powder) during a runTartrate/copper ratio low, stabiliser exhausted, or over-heatingCool, filter or treat; re-analyse ratio; shorten batch cycles
Slow deposition or patchy coverageOver-complexed copper, low pH, or exhausted reducerVerify ratio and pH; top up formaldehyde; confirm bath loading
Dull reddish depositFree copper too high, copper oxide particles in bathRaise complexant slightly, filter 1-5 μm, re-balance
Smut re-deposits on brass after acid dipDissolved copper redepositing - tartrate dose too low in the dipRaise tartaric acid to 20-30 g/L; keep the dip cool and fresh
White haze on anodized aluminiumTartaric-sulfuric ratio or temperature out of windowVerify bath composition and temperature against the process spec

Handling & Safety

  • Health: tartaric acid powder is an irritant to eyes and airways; gloves, goggles and a dust mask are adequate. Solutions are acidic - rinse splashes promptly.
  • Dissolving: dissolves freely in water with stirring. When making Rochelle-type copper baths, neutralise the tartaric acid with caustic first (exothermic - add slowly) before adding the copper salt.
  • Storage: keep bags sealed and dry. Tartaric acid is stable, but damp powder cakes and weighing errors follow; check assay if a bag has been wet.
  • Incompatibility: keep away from strong oxidizers (nitric acid, peroxide, hypochlorite) - organic hydroxy acids can react vigorously when mixed with oxidising agents.
  • Effluent: tartaric acid is biodegradable and adds COD to the waste stream; spent electroless copper baths are copper-bearing and high-load - treat or dispose through the licensed route, never to drain.

What It Does on Iron, Zinc Alloy, Copper and Stainless Steel Parts

SubstrateHow tartrate chemistry serves the partPractice note
Iron / steel partsTartrate in inhibited acid dips lifts iron oxide and shop dirt with less base-metal attack, protecting dimensional partsAdd inhibitor; keep dwell short; rinse and dry fully before storage
Zinc alloy die-castingsUsed in post-buffing soak cleaners at neutral pH to remove buffing soils and oxide without etching zincKeep pH near neutral and temperature moderate; check for grey smut under load
Copper / brassThe core application: electroless copper builds thin even layers; acid-tartrate dips deoxidise bright surfaces without immersion smutFor decorative copper 0.2-1 μm suffices; protect with lacquer or a nickel top layer
Stainless steelAlkaline tartrate cleaners remove iron smut and fingerprints from stainless surfaces before passivation or platingFollow with DI rinse; confirm passivity on food-contact parts

FAQ

QuestionAnswer
Can I use food-grade tartaric acid for my plating bath?Physically yes - it is the same molecule. But food grades are not certified for the metal limits that matter to a bath, so traceability and lot-to-lot consistency are weaker. Plating-grade material with a COA is the safer purchase for production.
Tartaric acid or Rochelle salt - which do I weigh out?Rochelle salt (potassium sodium tartrate tetrahydrate) is the neutralised form and dissolves straight into the alkaline bath; tartaric acid must be neutralised first. Dose on the tartrate anion content - Rochelle salt weighs about 1.9 times as much as tartaric acid for the same tartrate load, so convert carefully.
Why did my tartrate copper bath suddenly go black?That is spontaneous decomposition - free copper was too high (low ratio), stabiliser depleted, or the bath overheated or was seeded by dust or rough particles. It cannot be reversed; cool it, treat or replace, and run the next bath with hourly pH/ratio checks.
Does QLQ support electroless copper and cleaning lines?Yes - COA with every shipment, and QLQ engineers help with bath make-up, analysis routines and remote defect diagnosis for customers in 10+ countries.

Copper bath or cleaning line acting up? Send QLQ your analysis values and a panel photo - engineers check complexant ratio, pH and contamination and return a written fix. Contact us.

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