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Article

Development of Nationwide Excess Lifetime Cancer Risk Evaluation Methods with Comprehensive Past Asbestos Exposure Reconstruction

1
Department of Preventive and Occupational & Environmental Medicine, Medical College, Pusan National University, Yangsan 50612, Korea
2
Department of Occupational and Environmental Medicine, Pusan National University Yangsan Hospital, Yangsan 50612, Korea
3
Environmental Health Center of Asbestos, Pusan National University Yangsan Hospital, Yangsan 50612, Korea
4
Medical Research Institute, Pusan National University, Yangsan 50612, Korea
*
Author to whom correspondence should be addressed.
Int. J. Environ. Res. Public Health 2021, 18(6), 2819; https://doi.org/10.3390/ijerph18062819
Submission received: 2 February 2021 / Revised: 5 March 2021 / Accepted: 8 March 2021 / Published: 10 March 2021

Abstract

:
Although exposure to asbestos via various routes has been acknowledged, comprehensive exposure and risk assessment methods have not been developed at the national level. We conducted a study to reconstruct comprehensive past asbestos exposure estimations and to suggest a method to calculate the Excess Lifetime Cancer Risk (ELCR) of Koreans. The past occupational exposure reconstruction was conducted by rebuilding the previous general population job-exposure matrix (JEM). The para-occupational and household exposure estimation was based on the pooled analysis of data from other countries as well as Korea. The neighborhood exposure from occupational sources by distance was estimated by the exponential decay model. As a result, 141 JEM exposure groups across four periods including ~79, the 80s, 90s, 2000s with a ratio of 2.0:1.0:0.5:0.05 were reconstructed. The para-occupational and household exposures were 11% and 1% of the JEM respectively. The environmental exposure source concentration from outside occupational exposure was 2.5% of the inside concentration. The ratio of the concentration of environmental exposure source (C0) to distance d (Cd) was e x p k d   with a decay constant k of 6.834. The mean concentrations (f/cc) were 2.28 × 10−3 for outdoor, 4.65 × 10−5 for indoor, 1.95 × 10−2 for transportation activity, 4.44 × 10−2 for agricultural activity, and 4.68 × 10−2 for daily life activity in naturally occurring asbestos areas. Indoor and outdoor asbestos concentrations from living in a slate roof house were 1.73 × 10−6 and 2.70 × 10−8, respectively. For improved generalizability, validity, and applicability of the proposed method, further studies on each route with real assessments and experiments are required.

1. Introduction

All forms of asbestos are well known to cause asbestos-related diseases (ARDs) including benign diseases such as asbestosis and pleural plaques (thickening), and malignant cancers such as malignant mesothelioma (MM), lung cancer (LC), laryngeal cancer, and ovarian cancer [1]. The exposure routes to asbestos via various sources including occupational, para-occupational, neighborhood, and household have been acknowledged since the 1960s [2,3,4]. The major sources of occupational asbestos exposure are asbestos mines, asbestos cement and textile factories, and workplaces handling asbestos products including shipyards and construction sites. Indirect occupational (para-occupational) exposure could occur among workers who do not directly deal with asbestos. Asbestos emission from occupational sources could result in neighborhood exposure for people living close to the sources. Naturally occurring asbestos (NOA) and living in an area having an asbestos slate roof are contemporary asbestos exposure situations [5]. As occupational exposure can also cause household exposure to families from the asbestos-contaminated working clothes of exposed workers, occupational exposure assessment may be the starting point to estimate neighborhood and household exposures.
Because ARDs have long latency periods from at least 10 years to as long as 50 years [6], it is necessary to reconstruct previous exposure routes to establish their link with current ARDs. The job-exposure matrix (JEM) is one way to estimate past occupational exposure with limited information on the general working population [7]. Although the reconstruction of the Korean JEM extended to combinations of industrial and occupational groups [8], the missing information in each cell and period before 1979 needs to be filled to function as starting points for other exposure estimations. The neighborhood exposure estimation of the general population at the country level requires information regarding nationwide environmental exposure sources [9]. While the emission from inside to the outside of an exposure source could be checked by a simultaneous assessment of both sides, it is hard to find such a study. When the ambient air concentration of a neighborhood exposure source point is known, dispersion to the surrounding area could be estimated by a mathematical model such as the exponential decay by distance model or modeling using meteorological data [10,11]. Nationwide comprehensive asbestos exposure estimation needs tremendous effort including the collection of data and exposure reconstructions via various exposure routes.
Exposure assessment and estimation are used for epidemiological studies and compensation purposes. While the reference dose leading to benign ARDs has not been suggested so far, exposure estimations for increasing cancer risk could be useful. While the Helsinki criteria indicated a doubling of lung cancer risk, with a cumulative exposure dose of 25 fiber-years/cc [12], recent studies lowered the cumulative exposure dose for lung cancer risk [13]. As the Helsinki criteria mainly suggested a cut-off value, quantitative risk assessment methods such as Excess Lifetime Cancer Risk (ELCR) of asbestos proposed by the US Environmental Protection Agency (EPA) give more information to the public [14]. We conducted a study to reconstruct past asbestos exposure estimations from various exposure routes and to suggest a method for calculating the Korean ELCR.

2. Materials and Methods

2.1. Korean Asbestos JEM Reconstruction

Two methods were used to fill in the blanks of the recent Korean asbestos JEM containing 141 combinations (exposure groups) of industries and occupations over three decades (the 80s, 90s and 2000s). The first was to apply a decreasing trend from decade to decade using a ratio directly involving the production of asbestos contacting material (ACM) or dealing in ACMs, which was suggested by a previous study [15]. Data reanalysis using the available data without blanks from all three decades was conducted to build ratios between decades, and blanks were filled with the value computed using the ratio between the adjacent decades. Since almost all studies assessing the ambient asbestos concentration were conducted after the 1980s, the data before 1979 was estimated at double that of the 1980s which was a conservative value arrived at by the previous study for past exposure estimation [16]. The second method was to apply the same or constant values for the jobs (exposure groups) assuming the same working conditions through the decades under consideration, which in turn were related to asbestos-contaminated talc, processes using insulating felt or friction material, and working under/beside ACMs such as slate roofs.

2.2. Para-Occupational Exposure Estimation

A meta-analysis was performed on literature from Korea and the databases of other countries to determine the concentrations due to para-occupational exposure. A pooled analysis of studies until 2016 was conducted using PubMed and the Research Information Sharing Service (RISS, Daegu, Korea) with the terms of (asbestos) and (para-occupational or concentration or assessment or exposure or indirect exposure or air or lung cancer or malignant mesothelioma or asbestosis or diffuse pleural thickening or colleague at work or co-worker). From the 4260 articles selected using the search terms “asbestos” and (para-occupational or colleague at work or co-worker), 17 studies were included for the pooled analysis (Appendix A). Literature lacking asbestos concentration values (mean and standard deviation) was excluded from the pooled analysis.

2.3. Neighborhood Exposure from Occupational Asbestos Exposure Sources Using JEM

Only one study which conducted a simultaneous assessment of the inside and outside (by distance) of a factory was found despite an elaborate literature review [11]. Korea had no valid nationwide meteorological and geographic data before the 1990s. Therefore, we could not use simulation tools that needed specific meteorological data for past neighborhood exposure reconstruction from point environmental sources. Hence, we applied an exponential decay by distance model to formulate the required equations.

2.4. Neighborhood Exposure from NOA and Living under the Slate Roof House

Because NOA exposure estimations need specific location and exposure situations including agricultural activities, vehicle use, and other activities, previous studies regarding activity-based sampling (ABS) in NOA areas in Korea were pooled and analyzed. A total of 2194 articles located using the search terms (asbestos mine or naturally occurring asbestos) in RISS and Google Scholar until December 2019 were reviewed and 16 articles were shortlisted for analysis. Also, pooled analysis of living under slate roofs and non-occupational roof renovation activities were conducted. A total of 419 articles were identified using the search term “asbestos slate” in RISS, and Google Scholar until December 2019 and eight were selected after review.

2.5. Household Exposure from Occupationally Exposed Family Members

A pooled analysis of 3156 articles with studies until 2016 was conducted using PubMed and RISS with the terms of (asbestos) and (home or house or concentration or assessment or exposure or indirect exposure or secondhand or laundry or the wash or washing or family or familial or wife). The final 11 studies were included in the pooled analysis (Appendix B).

2.6. ELCRs

The airborne asbestos inhalation exposure algorithm was based on the 1992 PTI HRA [17]:
EC = (Ca × ET × EF × ED)/AT
where, EC = Chronic Exposure Concentration (averaged over a 70-year lifetime) [f/mL], Ca = Asbestos Concentration in fibers per cubic centimeter (f/cc), ET = Exposure Time in hours/day, EF = Exposure Frequency in days/year, ED = Exposure Duration in years, AT = Average Time of 24 h/day × 365 days/year × 70 years (lifetime).
The ELCRs calculations were made using the equation described in EPA risk assessment guidance document [18].
ELCR = EC × URF
where, ELCR = Excess Lifetime Cancer Risk, URF = Unit Risk Factor for inhalation of asbestos [0.23 (f/mL)−1].

3. Results

3.1. Korean Asbestos JEM Reconstruction

Results from the data reanalysis without blanks in any of the 3 decades of the recent Korean asbestos JEM are shown in Table 1. The mean concentrations (f/cc) 80s, 90s, and 2000s were 1.41, 0.57, and 0.06 with ratios of 1.00, 0.40, and 0.05 respectively.
To make conservative and simple calculations with the ratio of asbestos concentrations between the 80s and ~1979 as 1.0 vs. 2.0, we used the ratios of ~1979:80’:90’:2000~ as 2.0:1.0:0.5:0.05. Filling of the jobs (exposure groups) directly involved in the production of ACMs in the recent Korean asbestos JEM was done using the decreasing ratio by decades. Other jobs (exposure groups) were filled with the same data as adjacent values. The final reconstructed Korean asbestos JEM is shown in Appendix C (reconstructed Korean asbestos JEM).

3.2. Para-Occupational Exposure Estimation

Eleven percent of the direct occupational exposure was the para-occupational exposure level as shown by the pooled analysis. When the JEM of the directly exposed job (exposure group) was known, then 11% for indirect exposure in the same workplace during the period could be applied.

3.3. Neighborhood Exposure from Occupational Asbestos Exposure Sources by Distance

Mean air concentrations inside and outside a factory were 2.4003 f/cc and 0.0601 f/cc (SD 0.03454 f/cc), and outside concentration was 2.5% (SD 1.1%) of the inside reading. The exponential decay by distance model was recalculated using the previous study and was based on the equation below [11]. The constant k was 6.834 with 95% confidence interval of 3.466~10.222 (R2 = 0.81) (Figure 1):
C d =   C 0 × e x p k d
C d / C 0 =   e x p k d
where, d: the distance (km), Cd: the asbestos concentration at distance d (f/cc), C0: the asbestos concentration at distance 0 (f/cc), k: the overall fiber decay constant = 6.834.
When the inside concentration of a specific place at a specific time was known, the C0 would be estimated as 2.5% of the inside concentration, and Cd might be estimated by the above exponential decay equation. When the inside concentration was unknown, the revised JEM could be used.

3.4. Neighborhood Exposure from NOA and Living under the Slate Roof House

When the specific location and activities of a person in the NOA areas were known, the specific concentrations acquired by this study could be applied. Otherwise, the representative value of pooled analysis could be applied. The mean concentrations (f/cc) were 2.28 × 10−3 for outdoor, 4.65 × 10−5 for indoor, 1.95 × 10−2 for transportation activity, 4.44 × 10−2 for agricultural activity, and 4.68 × 10−2 for daily life activity in the NOA area. Estimated data according to the hours of staying home and by age could be applied to the person who had lived in the NOA area or under a slate roof house. Indoor and outdoor asbestos concentrations from living in a slate roof house were 1.73 × 10−6 and 2.70 × 10−8, respectively.

3.5. Household Exposure from an Occupationally Exposed Family Member

One percent of the occupational exposure from exposed family members was the household exposure level as per the pooled analysis. When the JEM of the exposed family member and the cohabitant period were known, then the 1% level during the period could be applied.

3.6. Cancer Risk Calculation and Risk Grade Determination

The ELCRs calculations were made using below equation.
E L C R = i = 1 6 [ ( E P C i × T W F i ) × I U R i ]
where, EPC = Exposure Point Concentration, TWF = Time Weight Factor, IUR = Inhalation Unit Risk [0.23 (f/mL)−1], i = 1 (occupational exposure), 2 (para-occupational exposure), 3 (neighborhood exposure from occupational exposure sources by distance) 4 (neighborhood exposure from naturally occurring asbestos, NOA), 5 (neighborhood exposure living under the slate roof house), 6 (household exposure from an occupationally exposed family member).
Final risk might be divided into four groups (with ELCRs) of very high (1.0 × 10−4 ≤ ELCR), high (1.0 × 10−5 ≦ ELCR < 1.0 × 10−4), moderate (1.0 × 10−6 ≦ ELCR < 1.0 × 10−5), and low (ELCR < 1.0 × 10−6).

4. Discussion

The mean concentrations of JEM in 1980’, 1990’, and 2000~ of this study were 1.41, 0.57, and 0.06, which were comparable with the results of previous studies [7,15,19]. The occupational exposure in Korea decreased sharply around the years 1990, 1997, and 2006, when asbestos was added to the list of designated special chemicals, a ban was imposed on the use of amosite and crocidolite, and a total ban on asbestos was imposed. Hence the grouping of 4 decades could be termed reasonable. Although Korea had produced asbestos since 1930’, no exposure data including from unpublished sources was found before 1984. We estimated a two-fold higher occupational exposure before 1979 as compared to 1980’ based on a previous study which estimated occupational exposure concentration as 11.0~92.4 f/cc in 1975 which was 1.8~5-fold higher than that of 1995 [16]. Also considering the suggestion of −6.5~−7.7% annual percentage change from retrospective occupational asbestos exposure estimation studies, a two-fold estimation of ~1979 compared to 1980‘ in this study may be a conservative estimate [20]. As there was a sharp decrease in occupational exposure related to the primary asbestos industry which dealt directly with raw asbestos or produced ACMs [15], we estimated the value to remain constant to fill in the missing data for exposure under/around ACMs.
We could not perform pooled analysis for the estimation of environmental asbestos dispersion because only a few studies were conducted on environmental ambient asbestos concentration by distance from occupational exposure sources and that too without simultaneous assessment of both the inside and outside concentrations [21,22,23]. Previous studies were conducted over different periods with different atmospheric conditions in countries like Germany, Taiwan, and Indonesia. Due to the plausible meteorological differences between those studies and Korean conditions, it was not possible to use that data in the pooled analysis. The Ministry of Environment of Korea has conducted health risk assessments for the neighborhoods around former asbestos mines including NOA areas, factories including shipyards, and dense slate roof areas [24]. Hence exposure estimations of neighborhood exposure from NOA and slate roofs are available. However, the NOA and weathering situation of slate roofs may be different depending on land use and the local atmospheric conditions. Hence, we have used Korean data only for neighborhood exposure from NOA and slate roof.
The first limitation of this study is its generalizability. Due to the sparsity of data, the analysis was limited to the few available studies and the results cannot be generalized. This problem is specific to the neighborhood exposure estimation by distance from occupational exposure sources. The estimation of emission and dispersion from occupational sources to the neighborhood environment requires simultaneous exposure assessments, strong motivation, and support from the central and municipal governments and academics in the areas of both occupational and environmental health. The fact that until 2019 sixty-six countries had banned the production, use, and trade of asbestos makes further studies difficult. In addition to the above, the availability of data from only a small number of countries makes it difficult to apply this result to countries other than Korea, which is unique in having NOA and slate roofs. The second limitation is the validity issue. While this study was aimed at developing a methodology for assessment, it could not be validated. This is the first attempt to the best of the author’s knowledge, at this kind of comprehensive past exposure estimation. Hence, validity tests using various data including real assessment or experimental studies, and matching with patient or compensation data is necessary. The third limitation is applicability. Comprehensive past exposure reconstructions need a foundation of comprehensive databases (DB) including JEM and national exposure sources. Not many countries would attempt to build this DB. Also, the use of historical addresses and mobile exposure sources would need complicated calculation processes involving matching the geographical information system (GIS) and the above DB, which in turn will need the development of an appropriate computerized program.
This is one of the very few attempts that have been made to estimate the past asbestos exposure via almost all the possible routes. Identifying occupational, para-occupational, neighborhood, residence in an NOA area or under a slate roof, and household exposures might not only be used for epidemiologic purposes and compensation but will also help the public to focus on future risk prevention. The study results suggest the need and direction for further research to overcome the limitations stated above. This study also shows the need for a total ban on asbestos by describing the possible routes of exposure for ordinary people who did not directly deal in or with asbestos.

5. Conclusions

A nationwide past asbestos exposure assessment method for Korea was developed. The past occupational exposure reconstruction was conducted by rebuilding the previous general population JEM. Para-occupational and household exposure estimation were based on the pooled analysis of data from other countries as well as Korea. Because of meteorological differences, exposure from NOA and slate roof were estimated by a pooled analysis of Korean data only. The neighborhood exposure from occupational sources by distance was estimated by the exponential decay model. For improved generalizability, validity, and applicability of the proposed method, further studies on each route with real assessments and experiments are required. Further research on comparisons of this comprehensive estimation via various routes with other types of data including patient data and compensations is also required.

Author Contributions

Conceptualization, D.K. and S.H.L.; Data curation, D.K. and S.H.L.; Formal analysis, Y.J.K. and J.Y.K.; Methodology, D.K.; Project administration, D.K.; Supervision, Y.K. and D.K.; Visualization, Y.J.K. and T.K.K.; Writing—original draft, D.K. and S.H.L.; Writing—review & editing, Y.K. All authors have read and agreed to the published version of the manuscript.

Funding

This research was funded by The Ministry of Environment of Korea, grant number 2019100E667.

Institutional Review Board Statement

Not applicable.

Informed Consent Statement

Not applicable.

Acknowledgments

This research was supported by a grant from the Ministry of Environment of Korea titled “Estimation method development of asbestos exposure intensity in Korea”.

Conflicts of Interest

The authors declare no conflict of interest.

Appendix A. Flow of the Selection Process of Studies for Pooled Analysis of Para-Occupational Exposure

Ijerph 18 02819 g0a1

Appendix B. Flow of Selection Process of Studies for Pooled Analysis of Household Exposure from Occupationally Exposed Family Members

Ijerph 18 02819 g0a2

Appendix C. Reconstructed Korean Asbestos Job Exposure Matrix

Exposure Group
(EG)
Industry (KSIC, 2007)Occupation (KSOC, 7th)Concentration (f/cc)
CodeNameCodeName~19791980s1990s2000s
EG107290Mining of Other Non-metal Ores n.e.c.91002Mining Laborers0.470000.235000.117500.01175
EG207290Mining of Other Non-metal Ores n.e.c.83121Chemical Material Grinding and Mixing Machine Operators5.880002.940001.470000.14700
EG307290Mining of Other Non-metal Ores n.e.c.78412Quarrymen0.006000.006000.006000.00600
EG410301Processing and Preserving of Fruit and Vegetables, Pickled Food71052Side Dish Makers0.013000.013000.013000.01300
EG513102Spinning of wool8211Textile Processing Machine Operators0.740000.740000.740000.74000
EG613213Weaving of Man-Made Fiber Fabrics82211Weaving Machine Operators1.520001.520001.520001.52000
EG713993Manufacture of Special Yarns and Tire Cord Fabrics8211Textile Processing Machine Operators0.07300 0.073000.073000.07300
EG815219Manufacture of Other Footwear721Textile and Leather Related Workers0.025800.025800.025800.02580
EG917129Manufacture of Other Paper and Paperboard89132Paper Machine Operators0.809700.809700.009400.00470
EG1017129Manufacture of Other Paper and Paperboard8914Paper products production machine perators1.610001.610001.610001.61000
EG1117221Manufacture of Paper Sacks and Paper Bags84219Painting Machine Operators n.e.c.0.112500.112500.112500.11250
EG1217222Manufacture of Paperboard Boxes and Containers89141Box and Envelope Making Machine Operators0.451800.451800.451800.45180
EG1317222Manufacture of Paperboard Boxes and Containers84219Painting Machine Operators n.e.c.1.510001.510001.510001.51000
EG1417902Manufacture of Sanitary Paper Products89144Sanitary Paper Products Machine Operators0.11560 0.115600.115600.11560
EG1517909Manufacture of Other Articles of Paper and Paperboard n.e.c.89190Wood and Paper Related Machine Operators n.e.c.3.544003.544003.544003.54400
EG1620111Manufacture of Basic Organic Petrochemicals83219Chemical Products Production Machine Operators n.e.c.0.010300.010300.010300.01030
EG17424Interior and Building Completion7824Construction Carpenters0.464000.232000.116000.01160
EG182030Manufacture of Synthetic Rubber and of Plastics in Primary Forms8312Chemical Material Processing Machine Operators0.112800.112800.112800.11280
EG1920302Manufacture of Synthetic Resin and Other Plastic Materials83121Chemical Material Grinding and Mixing Machine Operators1.060001.060001.060001.06000
EG2020302Manufacture of Synthetic Resin and Other Plastic Materials83124Chemical Material Distiller and Reactor Operators0.730000.73000 0.730000.73000
EG2120302Manufacture of Synthetic Resin and Other Plastic Materials84219Painting Machine Operators n.e.c.0.689400.68940 0.689400.68940
EG2220302Manufacture of Synthetic Resin and Other Plastic Materials83239Plastic Products Production Machine Operators n.e.c.1.722000.86100 0.043100.04310
EG2320421Manufacture of General Paints and Similar Products83121Chemical Material Grinding and Mixing Machine Operators0.618800.61880 0.618800.61880
EG2420431Manufacture of Surface-Active Agents83213Detergents Production Machine Operators2.450002.45000 2.450002.45000
EG2520493Manufacture of Adhesives and Gelatin83121Chemical Material Grinding and Mixing Machine Operators0.054500.05450 0.054500.05450
EG2620499 (20111)Manufacture of All Other Chemical Products n.e.c.83219Painting Machine Operators n.e.c.0.01030 0.01030 0.010300.01030
EG2721300Manufacture of Pharmaceutical Goods Other Than Medicaments83211Pharmaceutical Products Production Machine Operators0.016000.01600 0.016000.01600
EG28221Manufacture of Rubber Products83239Plastic Products Production Machine Operators n.e.c.0.109700.10970 0.109700.10970
EG2922111Manufacture of Tires and Tubes83221Tire Production Machine Operators0.658000.65800 0.658000.65800
EG3022191Manufacture of Industrial Un-vulcanized Rubber Products83229Tire and Rubber Products Production Machine Operators n.e.c.0.960500.96050 0.960500.96050
EG3122199Manufacture of Other Rubber Products n.e.c.83222Rubber Products Production Machine Operators0.011700.01170 0.011700.01170
EG3220301Manufacture of Synthetic Rubber 83222Rubber Products Production Machine Operators0.468400.46840 0.468400.46840
EG3322232Manufacture of Packaging Plastics and Shipping Containers83231Plastic Catapulting Machine Operators0.007500.00750 0.007500.00750
EG3422250Manufacture of Foamed Plastic Products83239Plastic Products Production Machine Operators 5.12000
EG3522299Manufacture of Other Plastic Products n.e.c.83239Plastic Products Production Machine Operators n.e.c.0.012000.01200 0.012000.01200
EG3620302Manufacture of synthetic resin and
other plastic materials
83239Plastic Products Production Machine Operators n.e.c.1.724000.86200 0.043100.04310
EG3723199Manufacture of All Other Glass and its Products n.e.c.84319Glass and Glass Products Machine Operators n.e.c.0.006500.00650 0.006500.00650
EG3823211Manufacture of Pottery and Ceramic Household or Ornamental Ware84321Pottery and Porcelain Products Production Machine Operators0.006400.00640 0.006400.00640
EG3923229Manufacture of Other Refractory Ceramic Products84319Glass and Glass Products Machine Operators n.e.c.0.064000.06400 0.064000.06400
23229Manufacture of Other Refractory Ceramic Products84322Brick and tile molding machine operators0.064200.06420 0.064200.06420
23229Manufacture of Other Refractory Ceramic Products84399Nonmetal Products Related Production Machine Operators n.e.c.0.069000.06900 0.069000.06900
EG4023239Manufacture of Other Structural Non-refractory Clay and Ceramic Products8432Clay Products Production Machine Operators0.003700.00370 0.003700.00370
EG4123324Manufacture of Cellulose Fiber Cement Products84331Cement and Lime Production Related Machine Operators0.013400.01340 0.013400.01340
EG4223325Manufacture of Concrete Roofing Tiles, Bricks and Blocks84322Brick and Tile Production Machine Operators0.059000.05900 0.059000.05900
EG432391Cutting, Shaping and Finishing of Stone78230Construction Stonemasons1.180001.18000 1.180001.18000
EG4423911Manufacture of Stone Products for Construction84341Mineral Ore and Stone Processing Machine Operators0.460000.46000 0.740000.14500
EG4523919Manufacture of Other Stone Products 78230Construction Stonemasons0.399500.39950 0.399500.39950
EG4623992Manufacture of Abrasive Articles84392Brightener Production Machine Operators0.807000.80700 0.807000.56000
EG477121Quarrying of Monumental and Building Stone84341Mineral Ore and Stone Processing Machine Operators0.912000.91200 0.912000.91200
EG4823994Manufacture of Asbestos, Mineral Wools and Other Similar Products821, 8221Textile Production and Processing Machine Operators14.960007.48000 2.550000.14000
EG4923994Manufacture of Asbestos, Mineral Wools and Other Similar Products83121Chemical Material Grinding and Mixing Machine Operators0.060000.06000 0.060000.06000
EG5023994Manufacture of Asbestos, Mineral Wools and Other Similar Products84159Metal Processing Machine Operators n.e.c.0.025000.02500 0.025000.02500
EG5123994Manufacture of Asbestos, Mineral Wools and Other Similar Products84322Brick and Tile Production Machine Operators0.030000.03000 0.030000.03000
EG5223994Manufacture of Asbestos, Mineral Wools and Other Similar Products8433Cement and Mineral Products Production Machine Operators3.400001.70000 0.780000.01800
EG5323999Manufacture of Other Unclassified Non-metallic Minerals n.e.c.84399Nonmetal Products Related Production Machine Operators n.e.c.0.069000.06900 0.069000.06900
EG5424119 (24111)Manufacture of Other Basic Iron and Steel (Manufacture of Basic Iron)84141Ore and Metal Furnace Operators0.008200.00820 0.008200.00820
EG5524121Manufacture of Hot Rolled, Drawn and Extruded Iron or Steel Products84151Rolling Mill Operators0.040000.04000 0.040000.04000
EG562431Cast of Iron and Steel84110Metal Casting Machine Operators3.080001.54000 0.770000.07700
EG5725119Manufacture of Other Structural Metal Products84213Metal Product Painting Machine Operators0.211300.21130 0.211300.21130
EG5825911
(25999)
Manufacture of Powder Metallurgic Products84159Metal Processing Machine Operators n.e.c.0.112000.05600 0.028000.00280
EG5925912
(24)
Forging of Metal/Manufacture of Basic Metal Products74130Forge Hammer smiths and Forging Press Workers0.008000.00800 0.008000.00800
EG6025913Manufacture of Metal Pressed and Stamped Products84151Rolling Mill Operators0.006700.00670 0.006700.00670
EG6125921Heat Treatment of Metals84155Metal Heat Treatment Furnace Operators0.033700.03370 0.033700.03370
EG6225923Coating and Similar Treatment of Metals84229Plating and Metal Spraying Machine Operators n.e.c.0.117100.11710 0.117100.11710
EG6325934Manufacture of Saws, Saw Blades and Interchangeable Tools74110Die and Mold Makers0.008600.00860 0.008600.00860
EG6426299Manufacture of Other Electronic Valves, Tubes and Electronic Components n.e.c.86321Electronic Parts Production Equipment Operators0.010600.01060 0.010600.01060
EG652642Manufacture of Broadcasting and Wireless Telecommunication Apparatuses86409Electrical, Electronic Parts and Products Assembler n.e.c.0.028000.02800 0.028000.02800
EG6626529Manufacture of Other Sound Equipment86402Audio-Visual Equipment Assemblers0.022000.02200 0.022000.02200
EG6727216Manufacture of Industrial Process Control Equipment76224Electrical Control Unit Fitters and Mechanics0.001000.00100 0.001000.00100
EG6827216Manufacture of Industrial Process Control Equipment85101Lathe Machine Operators0.002000.00200 0.002000.00200
EG6928111Manufacture of Electric Motors and Generators86401Electrical Equipment Assemblers0.014300.01430 0.014300.07180
EG7028119Manufacture of Other Electric Motors, Generators and Transformers85109Metal Work Machinery Operators n.e.c.0.064600.06460 0.064600.07540
EG7128119Manufacture of Other Electric Motors, Generators and Transformers8610, 86311Power Generation and Distribution Equipment Operators, Electrical Parts Production Equipment Operators0.004000.00400 0.004000.00400
EG7228302Manufacture of Other Insulated Wire and Cable86402Audio-Visual Equipment Assemblers0.357900.35790 0.357900.35790
EG7328303Manufacture of Insulated Codes Sets and Other Conductors for Electricity86401Electrical Equipment Assemblers0.124500.12450 0.124500.12450
EG7428410Manufacture of Electric Lamps and Electric Bulbs86312Electrical Products Production Equipment Operators0.203100.20310 0.203100.20310
EG7528422Manufacture of General Electric Lighting Fixture86401Electrical Equipment Assemblers0.019700.01970 0.019700.01970
EG7628519Manufacture of Other Domestic Electric Appliances86312Electrical Products Production Equipment Operators0.005000.00500 0.005000.00500
EG7729132Manufacture of Pumps and Compressors89904Air Compressor Operators0.005000.00500 0.005000.00500
EG7829133Manufacture of Taps, Valves and Similar Products8510Metal Work Machinery Operators0.556000.55600 0.556000.55600
EG7929169Manufacture of Other Work trucks, Lifting and Handling Equipment8544General Machinery Assemblers0.009000.00900 0.009000.00900
EG8029210Manufacture of Agricultural and Forestry Machinery83239Plastic Products Production Machine Operators n.e.c.0.002600.002600.002600.00260
EG8129210Manufacture of Agricultural and Forestry Machinery85442Agricultural Machinery Assemblers0.046300.046300.046300.04630
EG8229250Manufacture of Machinery for Food, Beverage and Tobacco Processing811Food Processing Related Machine Operators0.007800.007800.007800.00780
EG8329299Manufacture of Other Special Purpose Machinery, n.e.c.85441Industry Machinery Assemblers0.113300.113300.113300.11330
EG8430121Manufacture of Passenger Motor Vehicles85410Automobile Assemblers0.023300.023300.023300.02330
EG85303Manufacture of Parts and Accessories for Motor Vehicles and Engines74130Forge Hammersmiths and Forging Press Workers0.001100.001100.001100.00110
EG8630310Manufacture of Parts and Accessories for Motor Engines85421Automobile Engine Assemblers0.280000.140000.070000.00230
EG8730399Manufacture of Other Parts and Accessories for Motor Vehicles n.e.c.75105Automobile Paint Mechanics1.050001.050001.050001.05000
EG88303Manufacture of Other Parts and Accessories for Motor Vehicles n.e.c.85429Automobile Parts Assemblers n.e.c.0.180000.180000.180000.18000
EG8930399Manufacture of Other Parts and Accessories for Motor Vehicles n.e.c.85429Automobile Parts Assemblers n.e.c.0.840000.420000.420000.03300
EG9031111Building of steel ships75220Ship Mechanics0.520000.260000.130000.13000
EG9131114Manufacture of Sections for Ships85432Ship Assemblers2.460001.230000.057300.03490
EG9231322Manufacture of Aircraft Parts and Accessories85433Aircraft Assemblers0.095000.095000.095000.09500
EG933320Manufacture of Musical Instruments73031Musical Instrument Makers and Repairers0.018500.018500.018500.02200
EG9433999Other Manufacturing n.e.c.83124Chemical Material Distiller and Reactor Operators0.835500.835500.835500.83550
EG953511Electric Power Generation8610Power Generation and Distribution Equipment Operators0.003600.003600.003600.00360
EG963511Electric Power Generation23519Machine Engineers and Researchers n.e.c.0.003600.003600.003600.00360
EG9736010Collection, Purification and Distribution of Water to Household8810Water Treatment Plant Operators0.066000.066000.066000.06600
EG9838120Hazardous Waste Collection8820Recycling Machine and Incinerator Operators0.003100.003100.003100.00310
EG9938120Hazardous Waste Collection91001Construction Laborers0.005000.005000.005000.00500
EG100382Waste Treatment Services8820Recycling Machine and Incinerator Operators0.016000.016000.016000.01600
EG10138220Disposal of Hazardous Waste88209Recycling Machine and Incinerator Operator n.e.c.0.013000.013000.013000.01300
EG10241224Installation of Environmental Hygience Treatment Appliances88209Recycling Machine and Incinerator Operator n.e.c.0.001800.001800.001800.00180
EG10341112Apartment Building Construction772Broadcasting and Telecommunications Equipment Related Fitters and Repairers0.039300.039300.039300.03930
EG10441229Other Civil Engineering Construction23123Building Construction Engineers0.004200.004200.004200.00420
EG10542110Wrecking and Demolition of Buildings and Other Structures78293Building Demolition Workers0.169600.084800.042400.00430
EG10642121Excavating and earthmoving78499Mining and Civil Engineering Related Workers n.e.c.0.000600.000600.000600.00060
EG10742132Steel Reinforcing and Reinforced Concrete Works7822Concrete Placers and Assemblers0.001000.001000.001000.00100
EG10842134Pavement Works7836Construction Painters0.001000.001000.001000.00100
EG10942137Scaffolding and Frame Works78291Scaffolders0.021000.021000.021000.02100
EG1104521Sale of Motor Vehicle New Parts and Accessories52129Store Salespersons n.e.c.2.840001.420000.710000.00000
EG111471Retail Sale in Non-Specialized Stores5211Owners and Supervisors of Small Stores0.000200.000200.000200.00300
EG11247119Retail Sale in Other Non-Specialized Large Stores5211Owners and Supervisors of Small Stores0.005300.005300.005300.00530
EG113501Sea and Coastal Water Transport8760Ship Workers and Related Workers
EG11450122Coastal freight water transport92101Freight Loading and Lifting Laborers
EG11552911Supporting, Railway Transport Activities31262Railway Transport Clerks0.008000.008000.008000.00290
EG11679211/
52911
Supporting, Railway Transport Activities7523Locomotive and Electric Train Mechanics0.072000.036000.018000.00180
EG11752911Supporting, Railway Transport Activities75232Railroad train mechanics1.484000.742000.371000.03710
EG11852915Operation of Vehicle Parking Facilities52132Passenger Ticket Salespersons0.003900.003900.003900.00390
EG11959141Motion Picture Exhibition28399Drama, Film and Video Related Workers n.e.c.0.006000.006000.006000.00600
EG1206022Broadcasting via Cable, Satellite and Other Broadcasting2250Telecommunication and Broadcast Transmissions Equipment Technicians0.005000.005000.005000.00500
EG12168211Residential Property Management85201Cooler and Heater Related Machine Operators0.002000.002000.002000.00200
EG12295119Other Maintenance and Repair Services of General Machinery75351Building Boiler Fitters and Mechanics0.221070.110540.055270.00553
EG12370129Research and Experimental Development on Other Engineering13114Engineering Research Managers0.119100.119100.119100.11910
EG12472122Environmental Consulting and Related Engineering Services15301Environmental Service Related Managers0.001000.001000.001000.00100
EG12574100Business Facilities Support Management Services12090Public and Business Administration Managers0.001500.001500.001500.00150
EG12675290Other Tourist Assistance and Reservation Services52132Passenger Ticket Salespersons0.010000.010000.010000.01000
EG12784213Regulation of Activities of Environment Affairs21125Astronomy and Space Science Researchers0.470500.470500.470500.47050
EG12885Education252School Teachers0.003800.000360.003000.00380
EG12985501General Subject Educational Institute25419Liberal Arts and Language Instructors n.e.c.0.007000.007000.007000.00700
EG1308610
86101
86103
Hospital Activities
General Hospitals
24302
24
General Nurses
Health, Social Welfare and Religion Related Occupations
0.004900.004900.004900.00490
EG13187210
85110
Child Day Care Services24720Child Care Teachers0.007200.007200.007200.00720
EG13290211Library and Archives Activities28221Librarians0.002400.002400.002400.00240
EG13390221Museum Operation28211Curators0.001500.001500.001500.00150
EG13491131Other Complex Sports Facility Operation28691Sports Instructors and Trainers0.006000.006000.006000.00600
EG13595119
(50130)
Other Maintenance and Repair Services of General Machinery75220Ship Mechanics0.460000.230000.006000.13800
EG13695119
(50130)
Other Maintenance and Repair Services of General Machinery79222Ship Plumbers0.488000.488000.488000.48800
EG13795119Other Maintenance and Repair Services of General Machinery75220Ship Mechanics0.062400.062400.062400.06240
EG13895211General Repair Services of Motor Vehicles75105Automobile Paint Mechanics0.880000.880000.880000.88000
EG13995212Repair Services of Motor Vehicles Specializing in Parts7510Automobile Mechanics1.860000.930001.050000.08000
EG14096121Saunas42234Bathing Attendants0.006500.006500.006500.00650
EG14196991Wedding Chapel Services42320Wedding Ceremony Workers0.004000.004000.004000.00400

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Figure 1. Exponential decay model of ratio C d / C 0 in ambient air by distance. Where, d: the distance (km), Cd: the asbestos concentration at distance d (f/cc), C0: the asbestos concentration at distance 0 (f/cc).
Figure 1. Exponential decay model of ratio C d / C 0 in ambient air by distance. Where, d: the distance (km), Cd: the asbestos concentration at distance d (f/cc), C0: the asbestos concentration at distance 0 (f/cc).
Ijerph 18 02819 g001
Table 1. Asbestos concentrations of exposure groups without blanks in any of the 3 decades of recent Korean asbestos job-exposure matrix (JEM).
Table 1. Asbestos concentrations of exposure groups without blanks in any of the 3 decades of recent Korean asbestos job-exposure matrix (JEM).
Exposure Group (EG)Industry (KSIC, 2007)Occupation (KSOC, 7th)Concentration (f/cc)
CodeName (KOR)CodeName (KOR)1980~891990~992000~09
EG917129Manufacture of Other Paper and Paperboard89132Paper Machine Operators0.80970.00940.0047
EG2220302Manufacture of Synthetic Resin and Other Plastic Materials83239Plastic Products Production Machine Operators n.e.c.0.86100.04310.0431
EG4423911Manufacture of Stone Products for Construction84341Mineral Ore and Stone Processing Machine Operators0.46000.74000.1450
EG4823994Manufacture of Asbestos, Mineral Wools and Other Similar Products821, 8221Textile Production and Processing Machine Operators7.48002.55000.1400
EG5223994Manufacture of Asbestos, Mineral Wools and Other Similar Products8433Cement and Mineral Products Production Machine Operators1.7000.78000.0180
EG8930399Manufacture of Other Parts and Accessories for Motor Vehicles n. e. c.85429Automobile Parts Assemblers n.e.c.0.42000.42000.0330
EG9131114Manufacture of Sections for Ships85432Ship Assemblers1.23000.05730.0349
EG12885Education252School Teachers0.00040.00300.0038
EG13595119
(50130)
Other Maintenance and Repair Services of General Machinery75220Ship Mechanics0.23000.00600.1380
EG13995212Repair Services of Motor Vehicles Specializing in Parts7510Automobile Mechanics0.93001.05000.0800
Mean (SD) 1.4120 (2.1890)0.5659 (0.7986)0.0641 (0.0573)
Ratio 1.00.50.05
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Kang, D.; Lee, S.H.; Kim, Y.J.; Kim, T.K.; Kim, J.Y.; Kim, Y. Development of Nationwide Excess Lifetime Cancer Risk Evaluation Methods with Comprehensive Past Asbestos Exposure Reconstruction. Int. J. Environ. Res. Public Health 2021, 18, 2819. https://doi.org/10.3390/ijerph18062819

AMA Style

Kang D, Lee SH, Kim YJ, Kim TK, Kim JY, Kim Y. Development of Nationwide Excess Lifetime Cancer Risk Evaluation Methods with Comprehensive Past Asbestos Exposure Reconstruction. International Journal of Environmental Research and Public Health. 2021; 18(6):2819. https://doi.org/10.3390/ijerph18062819

Chicago/Turabian Style

Kang, Dongmug, Seung Ho Lee, Yoon Ji Kim, Tae Kyoung Kim, Ju Young Kim, and Youngki Kim. 2021. "Development of Nationwide Excess Lifetime Cancer Risk Evaluation Methods with Comprehensive Past Asbestos Exposure Reconstruction" International Journal of Environmental Research and Public Health 18, no. 6: 2819. https://doi.org/10.3390/ijerph18062819

APA Style

Kang, D., Lee, S. H., Kim, Y. J., Kim, T. K., Kim, J. Y., & Kim, Y. (2021). Development of Nationwide Excess Lifetime Cancer Risk Evaluation Methods with Comprehensive Past Asbestos Exposure Reconstruction. International Journal of Environmental Research and Public Health, 18(6), 2819. https://doi.org/10.3390/ijerph18062819

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