Document py1MBrZqRd4RooOd7aE7aKLD

ISJArFIOMAL. CANNERS ASSOCIATION 1133 20'- STREET. N.W. WASHINGTON, D C. 20036 AREA COOE 202/338-2030 MASK H. MITCHELL c mu ROBERTS E- SNIVELY. vict c h aio man GHARL.SS J. CAREY, mk is in t |RA I- SOMERS, executive vtcc mc *<o c n t 1 * FOUNOED 1907 Wa s h in g t o n Re s e a r c h La b o r a t o r ie s November 27, 1972 LEAD IN RAW AND CANNED FRUIT JUICES AND FRUIT JUICE DRINKS The National Canners Association in cooperation with several other collaborating organizations is engaged in the collection of information on the lead content of canned products. As a part of this program, comparable samples of raw ingredients and canned product were obtained during the 1972 season from canning plants in several locations, to obtain an indication of the amount of lead naturally incorporated in the product as well as that contri buted by the container. Ingredient samples for grape and orange drink were collected ------------------------R------I--I-I--q---*------------------- m--L---~--- J-------------------------------- -J---- j-- -- ------- -- ^1 - --------------- ---------------------------i_j - --.*-1 earliest available point and again at the filler. The fruit juices and drinks were packed in 404 x 700 plain (P) bodied or enamel lined (E) tinplate containers and stored less than 2 weeks before analysis. Product Grape Drink __________________________Raw Sampling Point Range ______________ ____________________Canned Avg. #Samples Body Range Avg. #Sample; Filler Bowl 0.01-0.01 0.01 2 E 0.03-0.05 0.03 6 Orange Drink Filler Bowl 0 1oo \ 2 E 0.00-0.03 0.01 6 Tomato Juice Blended raw Juice 0.05-0.29 0.14 6 P 0.04-0.47 0.16 . 36 Filler Bowl 0.11-0.20 6 LIA-76741 ,r } r2- The following compilation of lead values in tomato juice was made as a result of an earlier NCA survey. The juice was packed in 1969 and samples were selected from major producing areas in proportion to their fraction of the total national production. Each sample was a composite of six No. 303, or similar size cans, or three 400 x 700 cans. The containers were either tinplate (plain bodied or enamel lined) or glass. They were analyzed after 8 to 14 months of storage. Product Can Size Tomato Juice 307x512; 312x508; 400x700 303x406; 307x512; 400x700 32 Z Body Ranqe n7\ vH P 0.12-0.88 0.36 E Glass 0.10-0.86 0.11-0.62 0.38 0.26 #Samples 40 24 10 The following tabulation of lead values in canned fruit juices, drinks and nectars was taken from data obtained by analyses at the NCA and other collaborating laboratories. Individual lead values obtained by various analytical methods in 22 juices, 10 drinks and 4 nectars canned in various sizes of plain bodied (P) or enamel lined (E)` tinplate containers and stored for one to three years are reported in the table. Lead concentrations in the product range from a trace (T) i.e., less than 0.10 ppm to a maximum value of 1.84 ppm. LIA-7 6 7 42 s ,< . /' rH cn CN cn P" o o o o o o rH o CN CN CN r- <3* CO CN rH CN cn CN cn rH O Eh EH O EH o Eh EH o O o o o o o o o o o & & a IT) o O o CO rH --1 rH CN o bi o o o o o Eh ft. ^ oO rH CN oO H ft ft. ... ft 4ft. ft. r- o o o o o o rH rH rH Cn rH in CN o o o o o o Eh o o 0 0 p rm o CN o CN ft ft o VO rH rH s o i-! ft .ft. ninT o rH o rH 4,. . ... in o o m rH CN ... 4^ ft oo rH C. N ft. ft . oCTi CO rH o o o o o o ooo o o o Eh o o EH o o CO O o CO O Nf cn o 0 o O o o O o rH o o N co C'- CO r- co CO r~ .rji CO X X X X X X X X X i | o CN r-' CN CN r0 O o o o O o Ooo u CN CO CN CN CO cn rH o cn o o CO rH o rH CO XX l X= = X XX i CN r' rH CN i--I oo o rH O rH CN CO CN CN CN $I mi W W P ft CM ft 03 cn cn 0 s: o o o O o o o o o e' r" r^ t" r- I CN en cn G\ o <j\ co cn cn i < CN rH rH rH CN rH CN rH rH CD o o r-' c n cn CN rH i i cn o o O cn o o r- \o e' t" a> an cn en o cn rH rH i--i rH CN rH e ic . Ju a ta it d u er iFl f anned NCA C V a rio u s N e cta rs C o n te n t o f D rin k s and Lead 3 r| M P p u0 3 rH d u 04 o 0 04 M -P 0 P 0 u 0X u c a> c c -H H -r| H 3M Pu b Q -p 0 0 a) CJ rH rH H o. CL, M 1P >1 o 0" u 04 00 04 a. 04 p < <c < u o a 0 o rl 3 b P H 3 0 <4H 0: = r : O, 0 o u> 0. u iH 3 b 0 cn = C 0 o O = a) u r( 3 rH 5H -p P rH LIA 3 P M O <*H .X o 0 o rH 04 0 o H SH 0 p 0 o a, M o -P p<O 0 u i 1 !a 0 000 Cn cn Cn CC3o O 00000 ooO0 0 ooO P P / * o O o in o in i--1 co Ol Ol 04 CO oo 04 CO o o 1--1 o 1--i rO*H r--{ o o in CO 1--1 ^__s o o o o o o o o O o o o --i o O EH B a . p o 04 *s . s x oo 04 rH iO--1 CO o o o o EH Eh Eh r*H w *. * * s s * oo o n- L. r--1 Ol --\ 03 E-i o o o Eh Eh EH o 03 03 CO 03 O O sf o rH rH o o o o o o o rH o Nri1 Ml* m r- r" "vf r- 03 X X X X X X X X X X X = G t--1 i--l r" (M P r~ mi* 1--1 --1 rH o o o 1-- o o o rH o u 04 04 n CO m Ol ro < 04 00 Mt* o rH CO X x= CM i--1 O rH CM 04 = 1 ol ft c m pm pm c m pm ft ft w M Cm ft W H W ft ml 03 O O o 03 o 03 03 O 03 o o O o 03 O 03 O' O' ID O' 30 ID r" VO r-~ C- r- V0 C" V0 (J\ (T> 03 03 03 03 03 03 03 03 03 < 03 03 03 rH rH 1--l rH i--1 i--1 rH rH r-M i--1 1--1 rH CM rH t--1 t--1 : -y :u 3 5 O Ml ft 0) 0 *H 3 G> rH 01 CM c -H cm -ru-j 3 P 03 cMl 01 rH CM CM = G cm -H Ml P **GH Ml +J -rH 3 *GH Ml P P -PH Ml 4-1 ,x pG 40-> rUH Ml ft 3Ml 4-1 ft Ml Ml O X P H U p Ml <1 i--I a UIl r--1 P cm i rH p ft 1 H P o -H 3 & P p P - G -rcH GGG H rH 3 Ml ft c m c m c m ft Llk_76744