Document vBmBg5VOGxdVQBV9Xzr3veZOm

ymai&mak'**. \vv */ DEPARTMENT OF THE IN yi't Al b e r t B. Fa l l , Secreta . Un i t e d St a t e s Ge o l o g i c a ' Ge o r g e Ot is Smit h , Dire ERAL RES OF THE UNITED ST 1918 G. F. LOUGHUN Geologist In Charge* Division of Minera Pa r t I--METALS G. F. LOUGHLIN, Geologist i N49746 WASHINGTON LEAD. Bj C. E. SlEBENTHAL. SUMMARY. The following tabular statement gives the g domestic production and consumption of es compiled by the United States Geologica Summon/ of statistics of refined lead, 1917-18, in PRODUCTION. -estlcdcsllvcrlzod Icod....................................................... estlo soft lead..................................................................... ~tlo desllveritod soft lead.............................................. . s desilverized lead........................................................ . Total refined primary * lead.......................................... tJmoaial lead....................................................................... . ~daryolead......................................................... '.......... . CONSUMPTION.*1 *nt consumption of primary lead, slocks disregarded "Primary load/' which Is produced directly from ore, Is hero disting ' Is obtained by refining sklmmings, drosses, and old motals. The uon p. 944 Wherever in this report tho word "load" Is used withou por method of calculating consumption see p. 909. 4 -11 ie output of refined lead in the United State 918 was 539,905 short tons, valued at $76,66 e of pig lead in New York, compared with $94,333,000 in 1917--a loss- in quantity of 8 t, and a loss in value of $17,666,000, or nearly INTRODUCTION. . estimate of the production of refined lead rts received from every lead smelter, in oper .ifthe United States Geological Survey on Jan imate included the actual production for the 1918 and estimates for the remainder of the ires for the production and consumption of for the imports and exports of lead in ore an the preliminary report on the mineral reso tea in 1918, published August 7, 1919. The a, in addition to the statistics given in the 938 MINERAL RESOURCES, 1M8--PART I. LEAD. tables and curves showing production, value, consumption, imports, exports, and prices for a period of years, and embodies certain his torical notes on the reaction of tiio load industry to tho war. Tho statistics of production of lead in LI)is country in 1!)I8 havo been compiled by the Geological Survey from confidential reports submitted by each lead-smelting company in operation during the year. The'statistics of the recovery of secondary lead were also collected by the Geological Survey. The statistics of domestic con sumption of refined lead arc taken m part from the refiner y returns and in part from tho records of the Bureau of Foreign and Domestic Oommorco, of the Department of Commerce, and tho statistics of foreign production are compiled from tho sources indicated in connection with the tables here presented. PRODUCTION BY MON The collection of statistics of the prod intervals during the period of participation tho war gives tho data for the following tab Pained primary lead produced in the United Stales, 19 * Month. January....................................................................... March.......................................'...... .................................................... ITtODUCTtON. QUANTITY AND VALUE. The refined lead produced in the United States from 1720 to 1914 from domestic ores and from foreign ores and baso bullion and its value at tho average price in New York are shown in a table in the chapter on lead in Mineral Resources for 1914. Details for years later than 1905 are shown in the table below. Production, price per pound, and value of refined lead in the United Stales, 1720-1918. Year. 17,0(1 foreignFrom do- Dosilvcr- soft lead.' Total pro dilution. mosUcorcs and baso load.", b bullion.& From ores. From foreign hnso bullion. 1`rico per pound al New York.d 1720-1905. 1906......... 1907......... 1008......... 1909......... 1910......... 1119)1112.............. 1913......... 1914......... 1915......... 1916......... 1917......... 1918......... Short tons. Short tuns. Short tons. 2.081.836 7,332,915 313,886 90,860 404,746 313,588 99,801 413,380 205,552 101,012 396,564 329,751 117,158 440,909 328,954 141,318 470,272 331,1132 .Till, 646 155,947 141,24* 486,970 4HO, KIM 3:10,593 131,807 462, 400 383,903 158, 219 542,122 388,594 101,461 650,055 403,610 167,515 571,134 422,266 188, 503 010,769 429,732 210,463 640,L95 Short tons. Short i<jns.\ShoTi tons. 0,032,3K3 1,300,532 330,200 28,803 39,743 352,381 24,041 36,967 311,000 11,509 '73,389 352,839 21,754 72,310 375, 402 18,065 76.805 301.905 10,704 84,220 302, 517 11,572 70.805 411,878 13,223 37,359 512,794 7,039 21,089 507,020 9,581 33,448 552,228 0,085 12,821 548,450 15,872 46.447 539.905 15,334 84,956 $0,057 .053 .042 .043 .044 .045 .045 .044 .039 .047 .069 .086 .071 0,862,195 3,047,208 2,191,739 $034,403,000 40.141.000 43,819,000' 33.311.000 38.434.000 41.384.000 43.828.000 43.280.000 40.096.000 < 42.286.000 4 61.705.000 78.817.000 | 105.052.000 ] 90.908.000 ] 1,334,064,000 j October.............................. ............................................................... November...........T.T ., .......................................................... Doccrabor................................................................................................. t thf nabl? giveI\ above all secondary In the following table, which shows the m antimomal lead, and bullion of domestic an quantity at smelters and refineries and in load proilucod at smoltors treating ore is no therefore, are not comparable with those give Ihe table below shows the narrow margin o and the larger quantities of lead and bulli freight congestion in the early part of the lead given as stocks were of course not fre commitment or under allotment. Lead, antimonial lead, and bullion produced and in sto . tons. Production during month. Month. Domes tic re fined. Foreign Antirefined. monlal Domestio bul lion. Fore bulli a Desilverized soft lead Is Included; for quantity see pngo 942. t> Antimonlol lead Is excluded; for quantity see page 943. c Desilverized soft lead Is excluded, d For 1917 and 1918, average sales price. ; January,........................... 44,721 February........................... : March................................ 40,415 43,618 . April.................................. ' May.................................. f June.................................. [ July.................................... I August.................................... 40,473 47.703 47,929 46,460 47,890 [ -September.............................. 47,239 S October................................. * 63,193 [November................. ;___ 48,269 i Deoetnber.......................... 44.704 4,249 5,835 7,222 9,922 8,292 9,107 8,938 8,101 8,327 8,990 8,748 9,770 1,483 1,099 2,779 3,305 1,746 1,346 485 2,420 1,126 2,182 1,950 1,868 29,270 26,763 26,145 27,100 29,409 24,964 26,098 25,250 23,370 24,433 23,653 24,958 2,4 2,9 4,2 2,8 6,5 6,9 6,1 6.7 4,1 3,7 4,6 6,7 940 MINERAL RESOURCES, 1018----PART 1. Lead antimonial lead, and bullion produced arul in slock, in 19IX, by months, in short ' tons--Continued. Slocks at refineries at end of monlli. Lead in transit at end of month. Month. Lead in Domes- Foreignlie rollon.fined. Refined rofined. nni. sep arated . Anilmenial. Domostic iml- Foreign bullion. process and by prod ucts. Domes(io refinod. Foreign refined Domostlc bul lion. Foreign bullion. January -- February... March.......... April........... May............. June............. July............ August........ Septemlwr October___ Novemlicr. Decemlwr. 9,725 1,732 10,010 7,617 2,021 7,330 0,730 739 3,609 2,258 1,253 2,045 2,700 530 2,813 2,275 277 1,720 2,340 222 1,450 2,243 1,187 3.617 446 744 2,430 7(59 I2,510 10,314 i6.i" 1,092 4,513 l,0Gf> 1,572 598 2,498 1,868 1,041 424 899 445 199 605 1,303 1,842 1,373 7,482 6,316 6,785 0.347 6,290 4,193 4,401 1,983 2,250 6,135 80 30 954 10,341 12,013 13,209 9,782 10,111 8,201 7,103 4,045 2,924 19,235 19,992 19,973 25,195 24,061 26,403 29,900 34,465 30,540 34,379 34,035 35,717 12,038 13,475 12,407 9,377 10,380 8,428 11,095 11,925 11,340 12,855 It), 573 5,932 81 10,993 16,741 532 10,053 426 0,181 137 9,100 800 8,728 880 8,408 10,037 11,870 i 12,289 iiV 9, 700 8,797 13,017 12,258 9,807 7,330 8.009 0,058 5,803 ' 6,015 4,087 5.222 4,549 0,190 PRODUCTION BY STATES. The production of refined lead can with difficulty be apportioned according to sources of ore, owing to the fact that lead refiners treat products already smelted, whose origin may, as m custom refining, be unknown to them, because the identity of the ore is preserved only os far as the smelter. Accordingly, the following table, is com piled, so far as possible, from smelter figures. It includes pig lead reported by all known smelters running on Mississippi Valley or southern lead ores and "work lead" produced at all other lead smelters in this country. The greater part of the product reported by smelters operated in conjunction with refineries is stated in terms of refined lead. A like part of the antimonial lead is thus elimi nated from the "work lead" produced and appears only m the figures of production of antimonial lead. . ,, In addition to the domestic lead ores smelted in this country, small quantities of domestic lead ore have been exported to smelters in Canada. In 1012 soft lead amounting to 02 tons was smelled from Wisconsin ores at Canadian smelters, and in 1913 soft lead amount ing to 37 tons from Wisconsin ores and desilverized lead amounting to 98 tons from Idaho and Washington ores were smelted at Cana dian smelters. The desilverized lead smelted in Canada from Wash ington ores amounted to 31 tons in 1914, to 137 tons in 1915, and to 2 001 tons in 191(i. In 1917 silver-lead ores from Idaho and Montana smelted in Canada produced 4,570 tons of lead. Ores from Washington yielded 1,388 tons of lead at Canadian smelters in 1918. P rim a ry lead smelted or refined in the United States, I9C T .i? A n 942 MINERAL RESOURCES, 1U18--PART I. SOFT LEAD. The lead ores of the Mississippi Valley arc almost free from silver and the lead produced from them is known as "soft lead." A little lean ore of this kind is also mined in Washington and other Western States, but this ore has been generally smelted by plants treating argentiferous lead ore, and thus the resulting lead has notbeen distinguished from the desilverized product of those plants. With two exceptions, the smelters running exclusively on these soft-lead ores do not desilverize their product. Their output is shown in the column headed "Soft lead" in the table on pnge 938, giving the pro duction of refined lead for 1720-1918. However, considerable softlead ore has been annually smelted and some purchased soft pig lead has been desilverized by the silver-lead smelters. Sinco 1004 tho St. Louis Smelting & Refining Co. has regularly desilverized its product. In 1915 the St. Joseph Lead Co. installed desilverizing kettles, and a part of its product has sinco been desilverized. This desilverized soft lead, for the years prior to 1906, has not been recorded separately from tho lead produced from silver-lead ores, though the lead content of the soft-lead ores so smelted and desilver ized nas been recorded since 1894. Since 1906 the quantity of soft lead produced by each State has been recorded, as shown in part in thepreceding table. In thofollowing table the undesilverized output of the soft-lead smelters is given in the first column and the refined lead output from soft-lead ores smelted and desilvorized is given in the second column. The figures do not give the total quantity of lead recovered from soft-lead ores, for the lead recovered in the form of pigments, which are made principally from soft-lead ores, should be taken into account. The lead content of pigments smelted directly from ore in 1918 is given in tho fourth column, and the total output of soft lead in the fifth column. The percentage which the total production of soft lead makes of the total domestic production of lead, composed of refined domestic lead plus lead in pigments and lead in antimonial lead, is shown in the last column. As will be noted, tho percentage ranges from 37 to nearly 50 in the period under review. A littlo foreign lead is incorporated in tho lead content of the leaded zinc pigment, but as it is difficult to determine just what quantity is involved it has been disregarded. Soft lead produced in the United Slates, 1907-1918, in short tons. Yoar. Soft pig load. 8 ofMosul recovered Total Undesil* Uosilver- Total verlxed. ized. pig lead. In pig* meuts. soil load. load .<* Soft load percent* ago of total domestlo lead. 1007.... 1908... 1909... 1910... 1911... 1012... 1913... 1914. - 1915... 1916... 1917... 1918... 99,801 101,012 117,158 141,318 155*947 141,248 131,867 158,219 16l' 461 167'515 188,503 210,463 29,829 29,809 32,532 27,952 35,007 29,789 29,433 43,500 44,001 68,244 56,268 47,418 129,630 130,881 149,690 169,270 191,614 171,037 161,300 201,725 205,462 235,759 244 , 771 257,881 0,574 7,377 7,292 7,003 7,678 10,323 10,993 11,914 12,782 13,252 12,870 13,093 130,204 138,258 156.982 170,873 199,292 181,360 172.298 213,639 218,244 249,011 257,641 270,974 305,506 326,657 367,303 391,543 407,767 410,159 435,343 537,676 536,312 580,225 .574,338 502,218 37 42 43 45 49 44 40 40 41 43 45 48 a Includes domestic reilned lead, domestic load In antimonial lead, and domestic lead Jn pigments. LEAD. ANTIMONIAL LEAD. I lie production of by-product antimonial lead from lead ores derived from all sources, as reported by all le operating in this country, is shown for the period 1871years hem# estimated from the output of desilverized lea in tho chapter on lead in Mineral Resources, 1914. Th later years arc given in the table below. Since 1909 pro been asked to distinguish between the by-product an derived from ore and oullion of foreign origin and that fr ores. Inasmuch as the antimonial skimmings are w hatches, tho output of antimonial lead in any one year d essarily correspond strictly to tho bullion rofinod durin hence thooutput of antimonial lead is distributed as betw and foreign in proportion to the lead refined from domes foreign bullion during the year. Tho total antimonial le during tho period 1907-1918 was equal to 5.13 per cen lead refined from domestic and foreign bullion during By-product antimonial lead produced in the United Slates, 1907 Year. Antimonial lead. Tleontdal roflncd from baso bullion (short Ions). Torrent- ogoofhy- product From antf- domostlc monial ore lead. (short tons). From foreign ore (short Quan tity (short tons). Tola . Antim cont Short tons. 1907.... 283,759 1008.... 1909.... 265,683 297,219 1910.... 301,002 1911................. ! 295^365 1912................. j 309,857 1913................. 301,160 1914................. 1 340,307 1915................. 1 344,593 1916................. | 335,375 1917................. ' 365,998 1918................. : 382,314 Averago. 3.5 5.1 4.3 4.7 4.8 54..54 4.0 6.7 7.2 5.1 4.9 7,780 9,274 8,889 30,140 9,636 8,549 14,667 16,475 19,371 17,246 15,279 10,777 2,130 4,355 4,007 3,929 4,442 5,003 1,908 1,1D2 3,853 6,792 3J67 7,793 9,910 13,629 12,806 14,069 14,078 J1f3l.,f5lf5W2 16.607 23,224 24,038 18,646 18,570 SI 322 985 1 264 771 1 231 010 1 338 090 1 380 556 11 311 348 691 854 1 672 167 3 665 736 4 483 582 3 781 660 2 826 350 1,561 2,440 2,360 2,229 2,254 1,949 2,508 2,693 3,425 3,496 2,769 2,666 ---- -- __ .. _ _ __ Details of the production and consumption of antim United States are given in the chaptor on antimony Resources, 1918. LEAD PIGMENTS. PIGMENTS SMELTED DIRECTLY FROM ORE, In addition to leaded zinc oxide and zinc-lead oxide noted more particularly in connection' with the produc pigments, two other lead pigments are made direct namely, sublimed white lead and sublimed blue lead white lead consists of lead sulphate 75 per cent, lead o cent, and zinc oxide 5 per cent. Sublimed blue lead con sulphate 50 to 53 per cent, lead oxide 41 to 38 per cent N. 944 MINERAL RESOURCES, 1(118--PART I. proportions of lead sulphide, lead sulphite, and zinc oxide. Zinc- \ leaa oxide contains from 46 to 50 per cent of lead sulphate, from 52 i to 46 per cent of zinc oxide, and a small quantity of zinc sulphate. No zinc-lead oxide is made at present. Leaded zinc oxide may vary : from 4 to 20 per cent in lead sulphate, the remainder being zinc i oxide, with a small portion of zinc sulphate. ; The lead content of pigments smelted dircotly from oro is given in j the fourth column of the table on page 942. As there are but two pro- j ducers of sublimed lead or basic lead sulphate, the output may not ' be revealed. The production of leaded zinc oxide is given in the ' chapter on zinc. LEAD. MINE PRODUCTION. tablos ?ivo tho quantity of lead reco PIGMENTS MANUFACTURED FROM PIG LEAD. Manufactured leml -pigments sold in 1917-18. Pigment. 1917 1918 Quantity (sliorL' tons). Value. A verngo Quantity price (short por ton. tons). Valuo. Avnrago prlco por ton. Basic carbonate whlto lead: In oil..................................................... Dry....................................................... Rod lead..................................................... } Orange minoral......................................... Lithargo...................................................... 87,331 27,869 25,178 44,102 $17,608,007 4,920,804 5,523,018 8,011,074 184,780 36,603,923 $201.03 176.57 210.78 195.25 82,709 $17,224,480 20,089 3,542,368 30,000 5,928,597 48,874 8,825,724 181,831 35,521,169 $208.03 176.33 107.17 180.58 SECONDARY LEAD. Secondary lead is obtained mainly from skimmings, drosses, old metal, and alloys, such as babbitt, solder, and typo metal. The recovery of lead by refining these materials constitutes an integral part of the lead industry. This business is carried on mostly at small refineries scattered over the United States, but the large smelters and refineries working primary lead frequently find it advantageous to incorporate material from secondary sources. The f>roduct of such secondary refineries is of two classes--pig lead and cad in alloys. The lead in alloys may have been recovered in the form of pig lead and alloyed at the refinery, or it may havo been refined os an alloy, being brought to the desired composition by the addition of the requisite metal. Secondary lead recovered in the United States, 1V0V-191H, in short tons. MINE PRODUCTION, 1907-1918. The following table gives the output of lead since MissmmnSs fimt6 rink i^mlT^ ^-prod period, with IckSTn'll^^^ruthl" held fourth place until 1918 when Oklahoma wenj ^t 147oC6--m r 1918--p t . 1____60 . Year. Pig lead. Lead in alloys. Total re covered lead. Value. 1909. 1910. 11901112.. 1913. 1914. 1915. 1910. 1917. 1918. 18,360 29,492 27,389 30,206 33,104 29,337 30,400 50,700 45,100 41,146 23,327 25,930 20,895 30,002 39,730 31,725 42,500 39,000 48,400 55,954 41,087 55,422 54,284 07,108 72,834 01,002 78,900 90,300 93,500 97,100 S3,585,000 4.877.000 , 4.836.000 0,045,000 , 0,409,000 \ 4.763.000 i 7.416.000 i 13.289.000 ] 16.082.000 J 13.788.000 I M ine production o f lead by States, 1907-1918, in short tons. 946 MINERAL RESOURCES, 1018--PART I LEAD. MtNE PRODUCTION BY KINDS OP O The following table shows for each lCad-produ qua. ntit-y of .leaa-bbeeaarriinng ores produced and the of lead-bearing ore., T,he column he-a--d--e--d "A--ll oo copper ore, copper-load ore, and dry or siliceou protluccd in Colorado contained 8,638 short to Nevada, 2,914 tons. This lead, as in other State from parts of the ore from certain counties, ho distributed through the whole of the ."All oth Colorado and Arizona; The total crude ore y silver, copper, lead, or zinc is given for each lead that a comparison may be made of the relative ex operations in these States, of which the is the best measure. As shown by the table, Misso mg position in the production of crude lead or 70 per cent of the crude lead ore mined in the Un Oklahoma raised nearly 40 per cent of the crude in 1918. Missouri, which for many years had he output of crude ore carrying any or all of the fiv gave way to Arizona, Utah, and Michigan with tion of low-grade copper ore. The table gives the quantity of lead contained each State m 1918 and the lead content of each ore. Ihe percentage of lead contained in the lea ore, and the zinc ore of each State is also given. lead ore, in States haying a considerable produ 32.3 per cent in Washington down to 3.3 per ce average for all the States was 6.2 per cent. The much less rich in lead than the lead ores, averagi average lead content of the zinc ores was 0.1 per mine production of lead in 1918, a quantity co per cent was derived from lead ores, 26.2 per cent 0.2 per cent from zinc ores, and 2.6 per cent from figures of mmo production of lead are taken fro gold silver, copper, lead, and zinc in the various in the prefatory note. 948 M IN E R A L RESOURCES, 1918---- PAR T I. Mine production of lead in the United States in 1918, by States and hinds of ore, in short tons. Lead ores. _. Lead-zinc ores. J Zinc ores. All other ores. Total. State. Lead content. Lead content. Crude ore. Quantity Per centage Crude ore. Quantity ,|ce^^e Crude ore. Lead content. Crude ore. Quantity. Per centage Lead con- -Crudeore. tent, i Lead con tent. Arizona................................................................. 79, SI 1 Colorado.............................................................. Idaho.................................................................. 3$, : *( 1S3,274 1,420,.STS 5,710 6,247 16.578 131,446 Missouri.............................................................. Utah ............................................................ 5,532. 00-. 31,423 48,169 17,945 43 2 357 49 527,759 8,125 181,302 3,269 6,436 3,068 29 1 27 13 56,759 2,624 Percentage of total lead derived from each 7,389,181 413,679 71.1 7.2 13,043 16.1 9.0 9.3 291.196 490,917 280,900 1,025,400 3.3 10.4 13.5 17.3 67.4 50.0 7.6 26.5 10.8 32.3 3,614.209 1,090,955 23,246 75 13,933 5,754,700 32,217 428,985 25,908 2,377.300 5.2 15.462,975 ! 404 j 3.i 7,002 15,803 2,273 7,252 12,783 15,240 2 203 ' 30 569 56,097 2.4 3.2 .3 .3 1.4 9.5 40.0 4.1 1.0 1,705 25,571 815 4,533 152,280 5.3 6.6 3.1 .2 1.0 2,129 37,000 17.349 60.350 5,506 a 3,150 1,873 10,977 110.213 40,850 13 120 29 862 90 1 55 2 5SS,742 1,849 . 3 .....................I 8S9.98S 1,180 O.S .3 o 1.4 1.6 .1 .5 .2 . 2,817,624 574 i 2,817,624 IS, 943,503 123 19,033,486 ........ . 37,000 2,447,316 410 ; 2,503,411 1,780,070 8,538 : 2,314,890 174,313 9 2,091,619 ........ 280,900 ... . ' 1,025,400 O') 185 ' Si 150 6.699,716 58 ! 7iS23,907 6,390,187 2,914 ! 6,472,579 4,607,693 530 ! 4,749,784 126,679 . 1,782,206 529.012 50.543 13,747,125 130,7S6 4 i 'l26i6Sl 1.171 14,705,713 12 . 138,911 5C4 0,252 120 C.6S6 32.9S0 147,348 2,273 7,252 185 194,175 13.568 11,658 30 4,199 29 50,097 5 27 1,705 13 S3,504 815 2.636 4,533 .1 60,220.773 14.515 | S4.I6S.922 581,654 25.2 .2 100.0 Estimated. b By-product from unknown quantity of fluorspar ore. OB / 3P (5 mEL OrCf-l J3 Offlg g = & J2r- =X.-s^-s c*, p- c^ oC+-^cgp^"^,xo. ---S*oC~ p -s pg cCt - (eprs<5* 'fP<0*c30--o*-0pSg22t1f3S3?l . Wz H0d00w d ZO w rsg Os;fflg^ 3o 3*0^ ap"*0 c&r- i-- -p Crc8,0 PpH * P- O e OH*CH-O( J