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Proper Waste Disposal
  • 00:04Overview
  • 01:07Principles of Proper Waste Disposal
  • 02:00Procedure for Waste Handling
  • 04:08Summary

Élimination appropriée des déchets

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Overview

Robert M. Rioux et Taslima A. Zaman, Pennsylvania State University, Pennsylvania, PA

utilisateurs sont responsables de l’élimination appropriée des déchets générés au cours de leur travail. Une mauvaise élimination des déchets pourrait compromettre gravement la santé publique ou l’environnement. La manipulation des déchets dangereux doit être réglée dès le moment de production jusqu’à leur élimination dans son usine de destination finale hors site. Un système de gestion des déchets doit être élaboré avant le début des travaux sur toute activité de laboratoire. Les utilisateurs doivent être conformes aux règles et règlements de leur Institut ' s bureau hygiène et sécurité (EHS), qui développe et met en œuvre des systèmes de gestion des déchets appropriée répondant à diverses réglementations et normes, telles que celles imposées par la Occupational Safety and Health Administration (OSHA).

Principles

Procedure

1. waste Management utilisateurs devrait faire un effort pour réduire au minimum les déchets. La meilleure façon de le faire est de réduire l’ampleur de l’opération, ce qui réduit au minimum la quantité de déchets produits. Lorsque cela est possible, les produits chimiques utilisés devraient être remplacés par des produits chimiques moins dangereux. Quantités chimiques devraient être réduites au minimum. Stocker uniquement ce qui sera utilisé dans le court terme En plus d…

Applications and Summary

In this document, a basic guideline for laboratory waste disposal is provided. Users must work and comply with their institute's EHS office to determine the proper method for waste disposal satisfying diverse regulations and standards. The laboratory user should be cognizant of what waste material is being generated and hazards present should be carefully assessed to determine proper waste disposal, which may otherwise put public health or the environment in danger. No matter how small or large a waste quantity is handled, proper PPE must be worn.

Contaminant Maximum Contaminant Level, mg/L
1,1-Dichloroethylene 0.007
1,1,1-Trichloroethane 0.2
1,1,2-Trichloroethane 0.005
1,2-Dibromo-3-chloropropane (DBCP) 0.0002
1,2-Dichloroethane 0.005
1,2-Dichloropropane 0.005
1,2,4-Trichlorobenzene 0.07
2,4-D 0.07
2,4,5-TP (Silvex) 0.05
Alachlor 0.002
Antimony 0.006
Arsenic 0.010 as of 01/23/06
Asbestos (fiber > 10 micrometers) 7
Atrazine 0.003
Barium 2
Benzene 0.005
Benzo(a)pyrene (PAHs) 0.0002
Beryllium 0.004
Bromate 0.01
Cadmium 0.005
Carbofuran 0.04
Carbon tetrachloride 0.005
Chloramines (as Cl2) 4
Chlordane 0.002
Chlorine (as Cl2) 4
Chlorine dioxide (as ClO2) 0.8
Chlorite 1
Chlorobenzene 0.1
Chromium (total) 0.1
cis-1,2-Dichloroethylene 0.07
Cyanide (as free cyanide) 0.2
Dalapon 0.2
Di(2-ethylhexyl) adipate 0.4
Di(2-ethylhexyl) phthalate 0.006
Dichloromethane 0.005
Dinoseb 0.007
Dioxin (2,3,7,8-TCDD) 0.00000003
Diquat 0.02
Endothall 0.1
Endrin 0.002
Ethylbenzene 0.7
Ethylene dibromide 0.00005
Fluoride 4
Glyphosate 0.7
Haloacetic acids (HAA5) 0.06
Heptachlor 0.0004
Heptachlor epoxide 0.0002
Hexachlorobenzene 0.001
Hexachlorocyclopentadiene 0.05
Lindane 0.0002
Mercury (inorganic) 0.002
Methoxychlor 0.04
Nitrate (measured as Nitrogen) 10
Nitrite (measured as Nitrogen) 1
o-Dichlorobenzene 0.6
Oxamyl (Vydate) 0.2
p-Dichlorobenzene 0.075
Pentachlorophenol 0.001
Picloram 0.5
Polychlorinated biphenyls (PCBs) 0.0005
Selenium 0.05
Simazine 0.004
Styrene 0.1
Tetrachloroethylene 0.005
Thallium 0.002
Toluene 1
Total Trihalomethanes (TTHMs) 0.08
Toxaphene 0.003
trans-1,2-Dichloroethylene 0.1
Trichloroethylene 0.005
Vinyl chloride 0.002
Xylenes (total) 10

Table 1. Table of Regulated Drinking Water Contaminants. Obtained from US Environmental Protection Agency website at https://www.epa.gov/ground-water-and-drinking-water/table-regulated-drinking-water-contaminants

References

  1. Occupational Health and Safety [OSHA] (Standard – 1910.1450 App A). at https://www.osha.gov/pls/oshaweb/owadisp.show_document?p_table=STANDARDS&p_id=10107
  2. Princeton University Environmental Health Safety Empty Chemical Container Management at https://ehs.princeton.edu/environmental-programs/waste-management/empty-chemical-container-management
  3. US Environmental Protection Agency Table of Regulated Drinking Water Contaminants at https://www.epa.gov/ground-water-and-drinking-water/table-regulated-drinking-water-contaminants

Transcript

Hazardous waste, whether chemical, medical or radioactive, is generated in many laboratories and requires regulated disposal to ensure safety of public health and the environment.

The regulation of hazardous waste handling must be enforced from the moment of generation until its disposal at an offsite final destination facility.

Prior to commencing any laboratory activity, a waste management system must be devised. This is often established by an institute’s Environmental Health and Safety, or EH&S, office, which enforces guidelines imposed by the Occupational Safety and Health Administration, or OSHA.

This video will illustrate the principles and typical laboratory procedures of proper waste disposal.

Efficient waste management is an important aspect of proper waste disposal. This can be accomplished by using the minimal amount of chemicals possible, by reusing surplus materials, and by recycling waste.

The generated waste must be labeled, segregated according to chemical compatibility, and stored in a fume hood or other well ventilated area. Other laboratory waste, such as sharps and glass, must be disposed with care in appropriate containers.

Now that we have discussed the principles of proper waste disposal, let’s look at an actual procedure.

If applicable, keep chemical waste to a minimum by reducing the scale of operation. Furthermore, substitute chemicals with less hazardous reagents whenever possible.

In addition to minimizing the scale of operation, store only chemical quantities that will be used in the near term. You can also reduce chemical waste by recycling solvents like acetone, using a distillation.

Wear proper personal protective equipment including a lab coat, goggles, and gloves, as well as long pants and closed-toed shoes, whenever handling any chemical waste.

Collect chemical waste in suitable containers such as plastic carboys or glass bottles, and store near the point of generation in a designated satellite accumulation area.

Affix labels to the waste containers as soon as chemicals are added. Write on the labels the full names of the chemicals and their approximate compositions.

Additionally, use separate containers for halogenated, nonhalogenated, and aqueous waste to avoid potential heat or gas formation. When the containers are filled to capacity, carefully move them to a designated central accumulation area, from which they will be removed for disposal.

Dispose of chemically contaminated needles, syringes and razor blades, collectively known as sharps, inside of a sharps waste container.

For broken glass, used pipettes or test tubes, use a specialized glass waste container. If desired, empty bottles can be reused after triple rising with acetone, water, and again acetone.

You’ve just watched JoVE’s introduction to proper waste disposal. You should now understand waste management, how to collect chemical and sharps waste, and how to store it for disposal. Thanks for watching!

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JoVE Science Education Database. JoVE Science Education. Proper Waste Disposal. JoVE, Cambridge, MA, (2023).