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tSi-jWb FOR DU'^MT USE ONLY CCt HASKELL LABORATORY AR226-2913 E. M. SCHULZ TEXTILE FIBERS GENEVA DEPARTMENT January 13, 1984 _(H_a_s_k_eI1N1 TRS 5. Labbra eotly m.ANfJS AHft..GE orfe N6. 2^-84^ SUMMARY fodff Industrial hygiene dveys emission ah heat-setting operation were done at th roe customer plants: Richards Ltd. in Aberdeen, Scotland; W & J Kftojt fibers, Ltd. at Kilbirnie, Scotlan^ and at Qrnafcax ijt Kirkrade, Netherlands. In addition, bothJBvj1^! ere monitored at Uentrop Werk in Sermany TheUfJsamples at thei three heat-setting plants cannot be considered to be "brsathihg zone" sfiBipies as defined in Du Pont engineering Standard S-12-lT; but^ with the exception of two samples at Knox, they were placed at approximatl^y nose level in locations where people .nominally worked, ThefBjsamples were in the range 0.3-1.5 flifl/in , fhieh is wellbelj&w the 5 mg/m AEL. These samples should approximate breathing zone concentrations, At Uentrop Werk threejtypes of samples were tak< misl formed when fiber containing a newly applied finishj IHMMSJHHBHBBH"1^0]6 90B b6nd over a guide: {jjJBIpumes, Total and respTrabre-fiarfeAculates, ana fraetions of particulates less than 10 urn. Th(f|eoncntrations ^ar the finish mist were in the range 0.8T0frog/a Total patticulates were approximately 24 mg/m of {which about 4-6% were less than 5 ;nn. ,a.W>.l..tc.n>ai,,TSCACW The impactor sampling for'fractions shows a mass median aerodynamic diameter of S'^im. Hone of the Uentrop Work samples were considered to be in the breathing zone of workers. They are expected to give higher results then breathing zone samples due to close proximity to sources of emissions. BACKGROUND s uaed ^lis p in re s formul ent a^ at a i on co s nf e of aiT j^^^ iTnani rn ie fo^rrmmeeddaass a thnermal deggrraaddaattion product re subjected to heat-setting. formulations when It was desired SoehAi^acterize the exposure of workers near t^Jl^t-^eMeS-_toUB^i several custoroer plants in the United Kingdom and the Netherlands Additionally; a requesJ^jEa^made to mpnj.fcor_near a spinning m(chinne which was applying cftfllHl ne thetptal and cespiraoT^^ thef----lbncentration and the particle size distributior SAMPLING AND ANALYSIS METHODS C--1 A jfB^am naallyyttical pMlienthgodafnlld^<--!in--al--^Bis)i . ,w6re. n----^ d a one mpl per es/^ e Ba re skell take n La u bora sing t o D r u y Font Model P-200A sample pumps* Samplerfeubes were SKC Tenax* 100/50 ag tubes with glalle sealed erids^(j6ai#226-35-03. Lot 203). Plow rates were in the l0< aL/minuto riling^. The pumps were calibrated before and aft6r each sample (except samples -028 and -029) with a Kurz Flowmettir Model 541S, which itse^^as^^^ i(|HHII|my calibrat?<3 *" bubb^ meter prior to cine survey ana^uS^were^caffl^^Bc^wIrecti^wTcn a bubble meter at Dentrop. Sampling details for all samples are on individual industrial hygiene data forms in thefj^fl^SHwEile, ^MIBHB Analysis of theff^almples was done at Haskell Laboratory using the solvent de^orpti'on/gas chromatogjraphy method described A blank sample was submitted with each batch of saniplesrrom the various ajttes. ^BBj j In1 al & Respirable, Particulatea *-^^^^^^r~ ^M'.t-^_ '.' Total and respirableffHparticulafces were collected using filter cassettes (Mill ipdeje Grav imet r ic Pvg 5-03700) and Du Ponfe P-2500A pumps. The P-2500A pumps were calibrated using the Kurz 541S flowmeter or directly with a bubble meter. Plow rates were in the 1.8 Lpm range. Thei filter cassettes were weighed before and after sampling at Haskjell Laboratory and were desic.oated 16-24 hours before each weighing. ; ?' RtMnpahy Sanitized. Does not contain TSCA W' The respirable particulate sample train had a cyclone separator ahead of the filter cassette. The cyclone/filter cassette assembly constitutes the Bendix BOX 99 Respirable Cyclone Dust Collector. Thi following table shows the percentages of particles of various aerodynapic diameters which pass through the cyclone and tnfeo the filter' cassette. The particles passing through tpis cyclone are <sbnsidered to be the respirable fraction. Aerodynamic Diameter in Micrometers < 2.0 2.5 3.5 5.0 10.0 Percentage Passing Through _^ Cyclone_______ 90 75 50 25 0 After the filter substrates for the total and respirable parciculates were weighed, (they were sent to Or. Eric Kissa (Jackson Laboratory, Chambers Works) for f tutor ine analysis. Particulate Fractions j A Model 2110 ten stage :3ierra cascade Afflpactor with a cyclone pre-separator (10 pm cutoff) was used to diafeermine the particle size distribution of the finish mist. Alt^l^w through the impactor at 3.4 Lpm was generated by a vactiuin pump. The Kurz 541S mass flowmeter was used in-line with' tile impactor and vacuum pump to measure the airflow!. The Kurz flpsroeter was calibrated before and after the impactpr run with a BulSble meter on site. The collecci^. substrates fpr each of the t^n stages were C-220 GF-Type A glass fiber filter papers which ^fre desiccated and pre-weighed on site. After; sampling the filters were again desiccated, weighed and__senfc__di^efely_^_C^'.I Sric Kissa for -- : w RESULTS ; Tables 1, 2 and 3 show |Lhef||^mpnitorig results at Richards, Knox and Ornatex. AH Samples ware well below the Acceptable Exposure Limit ofc 5 rng/m3. Table 4 shows the location and type of sampling done at Uentrop Work and Tables 5 &| 6 show the results of the analyses of the samples at that Site. {Table 7 shows t^e method or determining the percent respirable particl'ea in the Sierra impactor test. Table 8 shows the resultsC,oS; the fluorine analysis on the respirable and total parttcuiate samples. The fluorine analyses on the impactor fracti'phs are shown in Table 9. 3 - ,w^ , ,-((ntfsor pompanySanitized. Does not contain TSf^ r*w DISCUSSION & RECOMMENDATIONS mission at tie customer plants seem to be under A spot checi for emissions at the heat'setters should be performed approximately every two years or whenever conditions such as he it-setting temperature, throughput, number .of machines or' venttlatlori change so as to increase the|^^|rreelleasedd*, ! The test for particultes at Oentrop Iterk using the BDX sampler resulted in ai apparent respirabia portion of 4-6%, while the respirable portion calculated from the Sierra impactor study was approximately ll't* Fli-iorine analysis by pr. Eric Kiss^i on the total and respirable particular? samples (-0^2, -023, -03Q^nd. -031) indicate the total thpaatrtitchuelarteeis?piraacbe leappporortxiiomnatiesly 6424-6Q6.J^fJy{ while Preliminary testing for fluorine On the impactor fractions show iiat the particles ta tfee O.S^iS^ pm size range consist of approximately 20- Report by: wJKayser .ISlisultant - 3:nllistrial Hygiene JMK/dar Approved by: ^taphen W. Dixon Section Supervisor Indsus trial Hygiene laskell Laboratory Repor wr 29-94 Attachments: Tables 1-9 i Number of pages in th.s report': 13 . company Sanitized. Does notconiam TSCA C8( TABLE I iONITORING AT RtCgARljS W,,t AggRPEEN, SCOTLAND Nylon staple spun from Antfon* Plus Type 309A heat-set ;:u-ierba equipment. Heat-stting temperature was 132'C and tt --ure was fSC. Saof'le date! October 4, 1983. on dryer Sample Number H-83-38-001 H-83-38-002 H-83-38-003 H-83-38-004 H-83-38-005 H-83-38-006 H-83-38-007 Locafeion Iof. Sjiftple Sample TiSe ..<mijJ>.) Three feet trom exit of 1?6 presteaner, !l2" above 176 belt near eonferol buttons 2' Cfa entry rollers, 6* ;fr6m edoe of yarn. I Two feet from exit of 167 dryer, 3* above bolt. 167 Attached to jyarn takeoff accumulator fsupport stand. ' Between dryejr and sefetihg 148 chamber* Sireetly over 178 and 2 1/2' above belt, Two feet hori^onfenily from exit ro Ller of setting chamber. ' Blank 0.4 0.4 0.6 0.5 Non-detectable HL 29-84 'Company Sanitized. Does not contain TSCA ^w 200C. TABLE 2 IONITORING AT BiNOX FIBSBS^ KILBIRNE, SCOTLAND Sampling dates [eat^set Oh Suassen equipment at 1983. Sample Number H-83-38-008 B-83-38-009 H-83-38-010 H-83-38-011 H-83-38-012 H-83-38-013 H-83-38-014 Locationjof Samplfl Saople Tinie <mte.) Blank Ovr wrapper neaf H7 entrance tojheat-setfcer. 148 Eighteen inches crom wrapper and ,'14'' frore bottom lip ^f exhaust hood. ' On poates eidher Side of 3.46 exit fron h^at-aetter. f45 Twelve to fifteen inches from eitherjaide of hood ft level of;bottoa lip of hood. i Immediately over <outSide) fi7 yarn masts at exit of 65 heat-better:(under exhaust hood). Concsee: ntrytiion (mg/iB^l Non-detectable 1.1 1.0 0.9 1.0 1.0 1.5 HL 29-84 ^^--------SCAW TABLE 3 AMPLING AT (&RNATg3^ KIRICRAl^ NETHERLANDS y----^f--------Qheat-set at 132C on Superba equipment. SampTing date: October lOjj 1983. Sample Number H-83-38-015 Location :of Sample Blank ! H-83-38-016 H-83-38-017 H-83-38-018 H-83-38-019 Above convevor b^lt at exit of heati-aetter. Samples werej 22" above the conveyor and 30" horizontally' from the exit. ; Directly above the entrance to jthe heatsetter. Sambles were 15" above ana either side of the ponveyor. H-83-38-020 3-83-38-021 On the me chtie (not running) adjicentto the one runn ng P185. Samples were opposite the exit of :he heatsetter. Pmnns from machine runn .ng P185 were wafting in the direction of the samples, which were 4 1/2" from the floor. Sajrople yi^e j(inia.) 1;63 161 154 151 .,/^ 147 147 Coincceennttrraatt-iion (fnliH^SP^^ Non-detectable 1.0 0.9 1.0 1.0 1.4 1.4 HL 29-84 Company SanTtized. Does not contain TSCA CBf Location TABLE 4 )B9^NO PARTICULATE SAMPLING AT UENTROP WERK LOCATIONAHDHPfir OP gAMPLES_____ of Samples ! Saaplingwasdone ate aCf SpiLnnnjing Machines 31 6 32. iwaa Usftefl at a fcwhrolughnpjL_fe__of:__J4__kg_/>_n_r. _ The yarn ran vc _Lc_a_ii_y _t_o_m_a_c_hi_no_ '32 position 01, chen horizontally 152 cm to machine 31 position 10^ ^n^n-^ertsically 46 cat down to the doffing gun. A visible ttist was fiana<3 as the yarn passed over the guide at 31-10. fhe Siiprra irtpac!tor preselector oriface was 36 cm diagonay^oho^a anrf t-n tpa rLghl; of the 31-10 guide. The samplers foryl^tfid plat-tioUlates were in a zone which was approximately 24 cm aoovefi 15 eft Co the ri^ht, and 18 cm behind the guide. I Sample Number fy^L sample H-33-38-022 RespiE-aple particulafee with BOX 99. H-83-38-023 H-83-38-024 H-83-38-025 Total pjairtiGUlate - Tenax tube. f flfJ- T nax feube. filter cassette. H-83-38-026 Respira?le fractions - Sierra impactor. H-83-38-027 Blank rnax tube. H-83-38-028 H-83-38-029 H-83-38-030 H-83-38-031 fflHy* ^^^ tube. f fl|r ^nax tube* Total p.irticulates - filter cassette. ReapiraDle particulafees with BOX 99. HL 29-84 8 - ^^,^..----o"a"TSCAC" I Sample Number H-83-38-022 H-83-38-023 H-83-38-030 H-83-38-031 TABI.B 5 D PARTtCUkATg W?LINO AT OENTROP WBRK ggsbltg^^i^^,______ yinif (iftt:ft,.). 365 363 114 1^4 filSS^^ (56ftcerti^ftoh -,.,.,.^^ l*^^ 2^.N'. 25.-5S.' .a Particulate Type Respirable Total Total Respirable Sample Nmafegg H-83-38-024 H-83-38-625 H*83*38*027 a-83-39-02e H-83-38-029 concentration j. (mo/tt3) 0.9 0.9 Don-detectable 0.8 1.0 HL 29-84 - 9 - s.nn^.o.^"-----'^01" jCenipany TAfiLE 6 SIERRA IMPA<tTOR SAMPLING - DENTROP Vi.-'RK PARTICLE SIZE DETERMINATION Mass median diameter = G.S.D. =3 8 inn - 10 - ^ipgny %am^. 1M^ tNr con^^ TABLE 7 RESPIRABLg PARTICLES IN SIERRA IMPACTOR Impactor Stage Particle Diameter JMass, igg t Comparable feo 8^X-99* S^t Reapirable, gg 1 ! 3,0 2 ,' 6.1 3 6.4 : 14.1 4 3.8 ! 6*6 5 2.4 2-5 6 1.4 1.3 7 8 0.8 ! 0,5 0.5 0.4 9 0.' ! 0.2 10 i 0.1 0 0 25 50 75 100 IflO mo 100 100 Total 0.0 0.0 ^.5 3.3 1.9 1.3 0.5 0.4 0.2 0.1 11.2 mg Total Particulates * % Respirable 10l! mg (ft-oft separate H.^Z/lOl X 100 s H j total dust samplers) *The cyclone pre-Seiectlon for particles than doea the 1^&X-99 the Sle^^; impactor passes larger whose selection characteristics are shown in the Cable on page 3. The pat-tides which pass through the BDX-99 are C(Bsi4ered to be |he respirable fraction. This column estimates fcho percfenta^B of particulates on each stage that would have paiised the &DX-99 aftd thus would have been respirable. The total pirticulafees are calculated as an average of the two total particu.afce samples. HL 29-84 Sanitized. Does not contain TSCA CBT pompany 11 I 1 I TWe a FLUORINE ANAWIS Of PARTICULATE Og.TtO) tejS Sample Number H-83-38-022 Respirable H-83-38-023 Total H-83-38-030 Total H-83-38-031 Respirable A Partieulat .ea Weioht, B>?, .83 15.22 8.61 ..?a B Pluorifle W0,iq^fe, Tng .22 2*70 1.51 .Ot C ff) [ v-sigftt, mg (Br0.4) .55 D f------percentage or Total (CTA) 66 6.75 446 3.78 .18 44t 62 i ' e-65 r Blank .OON C56 0028 ' Blank i ^ The tesplrable par^icu Ultes are 62'-66%|j1(while the total ' parfciculatea are 44%l|f| > ' . ,, ^^^^^l^fl^analyseabYD e^ffi^^Kissa, Jackson Laboratory, 11/15/83, 9--"- HL 29-84 1 ' ' . 1i :'1' , 1 , p^MyS.nni^W"""'"3111'6'''"''" ! ; T/\B^ 9 FLUORINE ANALYSIS OF SXKNA (MPACTOR FRACTIONS ; 1 UBNfR^ WERK ! Sample Number H-83-38-026 Stage 1 Stage 2 Stage 3 Stage 4 Stage 5 Stage 6 Stage 7 Stage 8 Stage 9 Stage 10 Blank Blank Blank A Particulafee a Weight, iaa 3, 2 6. 1 , 14. 1 6, 6 2. 5 1. 3 0. 5 1 00*. 42 1 0. 1 i { i B c i D 1 f -- YU Fluorine Wiaht,3BJ3 ^. ' . jS^"' 9ight, mg '.'::(B 4 0,4) JPetrcentage ; f Total ! (C T A) w. 999 1. 4??, , 919 1 123 2 498 3 698 2 298 35 41 1 26 35 ; * 404 IN iV 168 176 01^5 1 010 40 ; 275 21 See footnote 2. See footnote 2. SB^ footnote 2. See footnote 2. See footnote 2. See footnote 2 See footnote 2. See footnote 2* , 219 145 ''' ^CTI - /'..- - f .- l.4t,,,. -.; ; X The average blank value Ofi0171 mg was subtracted from the fluorine wfe of the samples. ! . ' 2Weight "f "uorine particulate weight in to blanks w. s too Urge <0.171 mg) make'an accurate calculation of compared Y^HH|) to total HL 29-84 - 13 - ^n^0' ^^5notcon ^empaw^