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154 lines
6.2 KiB
Python
154 lines
6.2 KiB
Python
from pathlib import Path
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import pandas as pd
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from data_pipeline.etl.base import ExtractTransformLoad
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from data_pipeline.score import field_names
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from data_pipeline.utils import get_module_logger
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from data_pipeline.utils import unzip_file_from_url
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logger = get_module_logger(__name__)
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class EPARiskScreeningEnvironmentalIndicatorsETL(ExtractTransformLoad):
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"""Class for 2019 Census Tract RSEI Aggregated micro-data
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Data source overview: Page 20 in this document:
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https://www.epa.gov/sites/default/files/2017-01/documents/rsei-documentation-geographic-microdata-v235.pdf
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Disaggregated and aggregated datasets for 2019 is documented here:
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https://github.com/usds/justice40-tool/issues/1070#issuecomment-1005604014
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"""
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def __init__(self):
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self.AGGREGATED_RSEI_SCORE_FILE_URL = "http://abt-rsei.s3.amazonaws.com/microdata2019/census_agg/CensusMicroTracts2019_2019_aggregated.zip"
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self.OUTPUT_PATH: Path = self.DATA_PATH / "dataset" / "epa_rsei"
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self.EPA_RSEI_SCORE_THRESHOLD_CUTOFF = 0.75
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self.TRACT_INPUT_COLUMN_NAME = "GEOID10"
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self.NUMBER_FACILITIES_INPUT_FIELD = "NUMFACS"
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self.NUMBER_RELEASES_INPUT_FIELD = "NUMRELEASES"
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self.NUMBER_CHEMICALS_INPUT_FIELD = "NUMCHEMS"
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self.AVERAGE_TOXICITY_INPUT_FIELD = "TOXCONC"
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self.SCORE_INPUT_FIELD = "SCORE"
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self.POPULATION_INPUT_FIELD = "POP"
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self.CSCORE_INPUT_FIELD = "CSCORE"
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self.NCSCORE_INPUT_FIELD = "NSCORE"
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# References to the columns that will be output
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self.COLUMNS_TO_KEEP = [
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self.GEOID_TRACT_FIELD_NAME,
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field_names.EPA_RSEI_NUMBER_FACILITIES_FIELD,
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field_names.EPA_RSEI_NUMBER_RELEASES_FIELD,
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field_names.EPA_RSEI_NUMBER_CHEMICALS_FIELD,
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field_names.EPA_RSEI_AVERAGE_TOXICITY_FIELD,
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field_names.EPA_RSEI_SCORE_FIELD,
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field_names.EPA_RSEI_CSCORE_FIELD,
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field_names.EPA_RSEI_NCSCORE_FIELD,
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field_names.EPA_RSEI_POPULATION_FIELD,
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field_names.EPA_RSEI_SCORE_THRESHOLD_FIELD,
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field_names.EPA_RSEI_SCORE_FIELD
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+ field_names.PERCENTILE_FIELD_SUFFIX,
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]
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self.df: pd.DataFrame
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def extract(self) -> None:
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logger.info("Starting 2.5 MB data download.")
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# the column headers from the above dataset are actually a census tract's data at this point
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# We will use this data structure later to specify the column names
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input_columns = [
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self.TRACT_INPUT_COLUMN_NAME,
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self.NUMBER_FACILITIES_INPUT_FIELD,
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self.NUMBER_RELEASES_INPUT_FIELD,
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self.NUMBER_CHEMICALS_INPUT_FIELD,
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self.AVERAGE_TOXICITY_INPUT_FIELD,
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self.SCORE_INPUT_FIELD,
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self.POPULATION_INPUT_FIELD,
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self.CSCORE_INPUT_FIELD,
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self.NCSCORE_INPUT_FIELD,
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]
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unzip_file_from_url(
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file_url=self.AGGREGATED_RSEI_SCORE_FILE_URL,
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download_path=self.get_tmp_path(),
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unzipped_file_path=self.get_tmp_path() / "epa_rsei",
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)
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self.df = pd.read_csv(
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filepath_or_buffer=self.get_tmp_path()
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/ "epa_rsei"
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/ "CensusMicroTracts2019_2019_aggregated.csv",
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# The following need to remain as strings for all of their digits, not get
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# converted to numbers.
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low_memory=False,
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names=input_columns,
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)
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def transform(self) -> None:
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logger.info("Starting transforms.")
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score_columns = [x for x in self.df.columns if "SCORE" in x]
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# coerce dataframe type to perform correct next steps
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self.df[score_columns] = self.df[score_columns].astype(float)
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self.df.rename(
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columns={
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self.TRACT_INPUT_COLUMN_NAME: self.GEOID_TRACT_FIELD_NAME,
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self.NUMBER_FACILITIES_INPUT_FIELD: field_names.EPA_RSEI_NUMBER_FACILITIES_FIELD,
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self.NUMBER_RELEASES_INPUT_FIELD: field_names.EPA_RSEI_NUMBER_RELEASES_FIELD,
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self.NUMBER_CHEMICALS_INPUT_FIELD: field_names.EPA_RSEI_NUMBER_CHEMICALS_FIELD,
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self.AVERAGE_TOXICITY_INPUT_FIELD: field_names.EPA_RSEI_AVERAGE_TOXICITY_FIELD,
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self.SCORE_INPUT_FIELD: field_names.EPA_RSEI_SCORE_FIELD,
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self.CSCORE_INPUT_FIELD: field_names.EPA_RSEI_CSCORE_FIELD,
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self.NCSCORE_INPUT_FIELD: field_names.EPA_RSEI_NCSCORE_FIELD,
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self.POPULATION_INPUT_FIELD: field_names.EPA_RSEI_POPULATION_FIELD,
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},
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inplace=True,
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)
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# Please note this: https://www.epa.gov/rsei/understanding-rsei-results#what
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# Section: "What does a high RSEI Score mean?"
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# This was created for the sole purpose to be used in the current
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# iteration of Score L
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self.df[
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field_names.EPA_RSEI_SCORE_FIELD
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+ field_names.PERCENTILE_FIELD_SUFFIX
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] = self.df[field_names.EPA_RSEI_SCORE_FIELD].rank(
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ascending=True,
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pct=True,
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)
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# This threshold was arbitrarily chosen.
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# It would make sense to enrich this with facilities, industries, or chemical
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# that would enable some additional form of sub-stratification when examining
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# different percentile ranges that are derived above.
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self.df[field_names.EPA_RSEI_SCORE_THRESHOLD_FIELD] = (
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self.df[
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field_names.EPA_RSEI_SCORE_FIELD
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+ field_names.PERCENTILE_FIELD_SUFFIX
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]
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>= self.EPA_RSEI_SCORE_THRESHOLD_CUTOFF
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)
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expected_census_tract_field_length = 11
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self.df[self.GEOID_TRACT_FIELD_NAME] = (
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self.df[self.GEOID_TRACT_FIELD_NAME]
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.astype(str)
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.apply(lambda x: x.zfill(expected_census_tract_field_length))
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)
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if len(self.df[self.GEOID_TRACT_FIELD_NAME].str.len().unique()) != 1:
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raise ValueError(
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f"GEOID Tract must be length of {expected_census_tract_field_length}"
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)
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def load(self) -> None:
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logger.info("Saving CSV")
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self.OUTPUT_PATH.mkdir(parents=True, exist_ok=True)
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self.df[self.COLUMNS_TO_KEEP].to_csv(
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path_or_buf=self.OUTPUT_PATH / "usa.csv", index=False
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)
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