A Summary Catalogue of Microbial Drinking Water Tests for Low and Medium Resource Settings
Abstract
:1. Introduction
- (1) To define, in reference to resource settings and the purposes of testing, important characteristics which should be considered when selecting a test for faecal indicator bacteria in drinking-water.
- (2) To collate information on these characteristics for available water tests and assess their suitability based on the resources available in a given setting.
2. Methods
2.1. Identifying Characteristics for Inclusion in the Assessment
Low resource | Medium resource | High resource |
---|---|---|
No laboratory. Clean space without electricity or by the water source. | Basic laboratory or clean space with electricity within 24 hours. | Modern laboratory within 24 hours, including vacuum, distilled water, fume hood and a cold supply chain. Reliable electricity. |
Type | Definition | Information needed | ||
---|---|---|---|---|
Indicator 1 | Quantification | Regulatory Approval | ||
Compliance or Surveillance | Compliance monitoring is conducted by water service providers to demonstrate that water meets the regulatory standards | As regulated | As regulated | Required |
Surveillance monitoring is conducted by an independent agency to ensure water is safe | Health based, Usually TC and/or EC | Desirable, ideally with range depending on health risk | ||
Operational | The monitoring of operational parameters to ensure treatment is functioning | Operational parameter, often TC | Desirable | Desirable |
Other | Examples include research into water treatment efficacy testing, educational and awareness-raising or controlling for water quality as part of a study | Varies | Varies, though often desirable | Desirable |
2.2. Finding and Assessing Tests
- (1) The tests are in common use or widely known to be in the latter stages of development.
- (2) The tests are relatively inexpensive (<$10 per test and <$5,000 for specialized equipment).
- (3) They detect faecal indicator bacteria typically used for drinking-water analysis, namely Escherichia coli (E. coli), total coliforms, thermotolerant coliforms, or hydrogen sulphide (H2S) producing bacteria.
- (4) The volume of the sample is least 1 mL, providing a lower detection limit of ≤100 indicator organisms per 100 mL.
3. Results
3.1. Characteristics Included in the Assessment
Characteristic | Definition |
---|---|
Cost per test 1,2 | These costs are based on the purchase of 400 to 500 tests. They do not include delivery or importation costs. |
Cost of specialized equipment 1 | Equipment which is needed for this particular test which would not typically be available in a laboratory. The cost is based on a single unit of each piece of durable equipment or in the case of glassware, the quantity typically used for a single analysis. |
Analysis time 3 | Time taken to conduct a single test, excluding the time required for transport and incubation. This includes preparation of media, interpretation of results and appropriate disposal. |
Trained technician | A trained technician is required if training is at least one day, for example if standard microbiological techniques are needed. |
Controlled incubation | Required if specified in the standard procedure for the test. |
Ultraviolet light | Required for the detection of fluorogenic substrates. |
Sterilization/disinfection | Required unless the test contains an integral disinfectant. |
Deionised water | Required for some tests, especially membrane filtration where water samples may require dilution. |
Cold storage | Required if the test needs to be stored below room temperature. |
Transport | Required if tests cannot be conducted at the water source or if tests require a vehicle |
Disposal 2 | Amount of waste generated by each test, including sample collection vessels. |
Sample volume meeting WHO Guidelines | The test is able to satisfy the sample volume aspect of the WHO guidelines “none detected in 100 mL”. |
Undiluted range 4 | The lower and upper detection limit for the concentration of bacteria when no dilution is performed and the maximum sample volume is analysed. |
Precision 5 | Relative assessment of the precision of quantitative estimates over the range. |
Indicator | The indicator bacteria used to identify fecal contamination of drinking-water. |
Sanitary significance 6 | Relative assessment of the relationship of the indicator to E. coli. |
Standard or approved 7 | Whether the test has been approved by the U.S. EPA, is included in the Standard Methods for the Examination of Water and Wasterwater or is an International Organization for Standardisation standard. |
Time to result | The minimum incubation time stated to obtain the final results from a test. A range is given for devices where incubation time varies, for example depending on the concentration of bacteria in the sample or the incubation temperature. |
Shelf life | Shelf life from manufacture, based on dehydrated media where available. |
Storage temperature | Recommended long-term storage temperature of test or medium. |
3.2. Summary Assessment
Type | Product | Resources required | Information provided | Other | Settings | ||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Cost per test 1 | Cost of specialist equipment 2 | Analysis time (min) | Trained technician | Controlled incubation | Ultraviolet light | Sterlisation/disinfection | Deionised water | Cold storage | Transport | Disposal | Sample volume meeting WHO Guideline (100mL) | Undiluted range (Per 100 mL) | Precision | Indicator | Sanitary significance | Standard or approved | Time to result (hrs) | Shelf-life (mths) | Temperature (°C) | Low resource | Medium resource | High resource | |||
Presence Absence | Hydrogen sulphide | PathoScreenTM | $0.60 | $0 | <5 | x | S | - | >5 | N/A | H2S | + | 24–72 | 12 | RT | ||||||||||
LTEK H2S 20 mL | $0.80 | $0 | <5 | x | S | - | >5 | N/A | H2S | + | 24–72 | 24 | RT | ||||||||||||
HiWaterTM | $2.40 | $100 | <5 | x | M | + | >1 | N/A | H2S | + | 24–72 | 24 | RT | ||||||||||||
LTEK H2S 100 mL | $1.50 | $0 | <5 | x | M | - | >5 | N/A | H2S | + | 24–72 | 12 | RT | ||||||||||||
Local manufacture | ∆ | $0 | <5 | x | S | ∆ | ∆ | N/A | H2S | + | 24–72 | ∆ | RT | ||||||||||||
Total | Lamotte® Coliform | $1.20 | $0 | <5 | x | S | - | >10 | N/A | TC | + | 44–48 | 24 | RT | |||||||||||
Coliform | Rapid HiColiformTM | $0.80 | $100 | <5 | x | x | x | M | + | >1 | N/A | TC | + | 24 | 36 | 2-8 | |||||||||
E. coli and Total coliform | Colilert® 10 mL | $1.50 | $100 | <5 | x | x | x | x | S | - | >10 | N/A | TC&EC | +++ | x | 24 | 12 | 4–30 | |||||||
Colilert® 100 mL | $5.00 | $100 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | x | 24 | 12 | 4–30 | ||||||||
Colisure® | $5.00 | $100 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | x | 24 | 12 | 2–25 | ||||||||
Colilert® 18 | $5.00 | $100 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | x | 18 | 15 | 2–25 | ||||||||
Modified ColitagTM | $4.50 | $100 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | x | 16 | 22 | 4–30 | ||||||||
WatercheckTM [BWB] 3 | $5.00 | $2,700 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | 24 | 36 | 2–30 | |||||||||
Readycult® | $3.00 | $100 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | x | 24 | 36 | 15–25 | ||||||||
E*Colite | $3.00 | $100 | <5 | x | x | x | M | + | >1 | N/A | TC&EC | +++ | x | 28 | 12 | RT | |||||||||
EC Blue 100P | $3.70 | $100 | <5 | x | x | x | x | M | + | >1 | N/A | TC&EC | +++ | 24 | 12 | RT | |||||||||
AquaCHROMTM | $2.60 | $0 | <5 | x | x | x | M | + | >1 | N/A | TC&EC | +++ | 18 | 24 | 15–30 | ||||||||||
HiSelectiveTM E. coli | $2.20 | $0 | <5 | x | x | x | M | + | >1 | N/A | TC&EC | +++ | 24–48 | 12 | 2–8 | ||||||||||
Most Probable Number | Most Probable Number | Compartmentalised bag test | $1.00 | $0 | <5 | S | + | 1–43 | + | EC | +++ | 24–72 | 6–9 | RT | |||||||||||
$1.00 | $0 | <5 | S | + | 1–43 | + | H2S | + | 24–72 | 6–9 | RT | ||||||||||||||
AquatestTM | $4.00 | $100 | 5 | x | x | M | + | 1–230 | + | EC | +++ | 24 | 24 | RT | |||||||||||
ColiplateTM | $7.50 | $200 | 10 | x | x | x | x | x | L | - | 5–2400 | +++ | TC&EC | +++ | 24 | 36 | 2–30 | ||||||||
EC BlueQuant | $5.80 | $100 | 5 | x | x | x | x | x | L | + | 1–1610 | ++ | TC&EC | +++ | 24 | 12 | RT | ||||||||
Multiple tube (LTB/EC-MUG) | $3.50 | $200 | 30 | x | x | x | x | x | x | S | ∆ | ∆ | ∆ | EC | +++ | x | 48 | 36 | RT | ||||||
Multiple tube (LTB/BGLB) | $2.10 | $200 | 30 | x | x | x | x | x | S | ∆ | ∆ | ∆ | TC | + | x | 36 | 36 | RT | |||||||
Colitag/iMPN1600 | $5.77 | $0 | 10 | x | x | x | x | x | L | + | 1–1600 | ++ | TC&EC | +++ | ? | 16 | 22 | 4–30 | |||||||
Colilert/Quanti-Tray® | $5.50 | $4,100 | 10 | x | x | x | x | x | L | + | 1–200 | +++ | TC&EC | +++ | x | 18/24 | 12 | 2–25 | |||||||
Colilert/Quanti-Tray® 2000 | $6.00 | $4,100 | 10 | x | x | x | x | x | L | + | 1–2419 | +++ | TC&EC | +++ | x | 18/24 | 12 | 2–25 | |||||||
Colony Count | Plate Methods | PetrifilmTM E.coli/coliform | $1.30 | $100 | <5 | x | x | x | x | S | - | 100–5000 | +++ | TC&EC | +++ | 24 | 18 | ≤8 | |||||||
PetrifilmTM Aqua Coliform | $0.70 | $100 | <5 | x | x | x | x | S | - | 100–5000 | +++ | TC | + | 24 | 18 | ≤8 | |||||||||
CHROMagarTM ECC | $0.80 | $100 | 15 | x | x | x | x | S | - | 100–5000 | +++ | TC&EC | +++ | 24 | 36 | 15–30 | |||||||||
Compact Dry ECTM | $1.50 | $0 | <5 | x | x | x | S | - | 100–5000 | +++ | TC&EC | +++ | 24 | 24 | 1–30 | ||||||||||
Gel based | Coliscan Easygel | $2.20 | $0 | 5 | x | x | x | x | x | M | - | 20–1000 | +++ | TC&EC | +++ | x | 24 | 12 | <0 | ||||||
ColiGel/PathoGel 6 | $3.50 | $100 | 5 | x | x | x | M | + | 1–100 (TC) 1–25 (EC) | +++ | TC&EC | +++ | 28 | 12 | RT | ||||||||||
Colony Count | Membrane Filtration 4 | Portable kit/LSB 5 | $0.50 | $2,700 | 20 | x | x | x | x | x | S | ∆ | ∆ | +++ | TC/TTC | ++ | 24 | 48 | RT | ||||||
Portable kit/m-coliblue 24TM | $2.50 | $4,000 | 15 | x | x | x | x | x | x | M | ∆ | ∆ | +++ | TC/TTC | +++ | x | 24 | 12 | 2–8 | ||||||
m-Coliblue 24TM | $2.50 | $2,500 | 15 | x | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | x | 24 | 12 | 2–8 | ||||||
Coliscan MFTM | $2.20 | $2,500 | 15 | x | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | 24 | 12 | <0 | |||||||
m-Endo | $1.50 | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TC | + | x | 24 | 48 | RT | |||||||
m-FC | $1.50 | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TTC | ++ | x | 24 | 48 | RT | |||||||
CHROMagarTM Liquid ECC | $1.10 | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | 24 | 36 | 15-30 | ||||||||
CHROMagarTM ECC | $1.30 | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | 24 | 36 | 15-30 | ||||||||
MI Agar | $1.70 | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | x | 24 | 36 | RT | |||||||
Chromocult | $1.20 | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | x | 24 | 60 | RT | |||||||
Rapid E.coli | ? | $2,500 | 15 | x | x | x | x | x | M | ∆ | ∆ | +++ | TC&EC | +++ | 24 | ? | ? |
Symbol | Meaning |
---|---|
? | Value not known |
N/A | Not applicable |
x | Equipment or resource required |
S | Small |
M | Medium |
L | Large |
∆ | Varies |
- | No/Poor |
+ | Yes/Moderate |
++ | Good |
+++ | Best |
TC | Total Coliforms |
H2S | Hydrogen sulphide production |
EC | Escherichia coli |
TTC | Thermotolerant coliforms |
RT | Room temperature |
Suitable for resource setting | |
Not ideal for resource setting | |
Not suitable for resource setting |
Type | Product | Manufacturer | Website |
---|---|---|---|
Colony Count | CHROMagar™ ECC | CHROMagar | www.chromagar.com |
CHROMagar™ Liquid ECC | CHROMagar | www.chromagar.com | |
Chromocult | EMD Chemicals | www.emdchemicals.com | |
Coliscan Easygel | Micrology labs | www.micrologylabs.com | |
Coliscan MF™ | Micrology labs | www.micrologylabs.com | |
Compact Dry EC™ | Nissui Pharma | www.nissui-pharm.co.jp | |
Portable Membrane Filtration | Delagua | www.delagua.org | |
Portable Membrane Filtration | ELE | www.ele.com | |
Portable Membrane Filtration | Wagtech | www.wagtech.co.uk | |
Portable Membrane Filtration | Merck Millipore | www.millipore.com | |
m-Coliblue 24™ | Merck Millipore | www.millipore.com | |
Petrifilm™ E.coli/Coliform Count | 3M | www.3m.com | |
Petrifilm™ Aqua Coliforms | 3M | www.3m.com | |
RAPID’E. coli | Bio Rad Labs | www.bio-rad.com | |
ColiGel/PathoGel | Charm Sciences | www.charm.com | |
Most Probable Number | Aquatest™1 | Aquatest consortium | www.bris.ac.uk/aquatest |
Colilert 10 mL | IDEXX | www.idexx.com | |
Coliplate™ | Bluewaterbiosciences | www.bluewaterbiosciences.com | |
Compartmentalised bag test 1 | University of North Carolina | www.unc.edu/sobseylab | |
Compartmentalised bag test 1 | University of North Carolina | www.unc.edu/sobseylab | |
EC BlueQuant | Nissui Pharma | www.nissui-pharm.co.jp | |
LaMotte Coliform test MPN | LaMotte | www.lamotte.com | |
Modified Colitag™/iMPN1600 1 | CPI | www.cpiinternational.com | |
Colilert/Quanti-Tray® 200 | IDEXX | www.idexx.com | |
Colilert/Quanti-Tray® 2000 | IDEXX | www.idexx.com | |
Presence/Absence | AquaCHROM™ | CHROMagar | www.chromagar.com |
Colilert® 10 or 100 mL | IDEXX | www.idexx.com | |
Colilert® 18™ | IDEXX | www.idexx.com | |
Colisure® | IDEXX | www.idexx.com | |
Modified Colitag™ | CPI | www.cpiinternational.com | |
E*Colite | Charm Sciences | www.charm.com | |
EC Blue 100P | Nissui Pharma | www.nissui-pharm.co.jp | |
H2S test 20 or 100 mL | LTEK | www.lteksystems.com | |
HiSelective™ E. coli | HiMedia | www.himedialabs.com | |
HiWater™ | HiMedia | www.himedialabs.com | |
LaMotte® Coliform | LaMotte | www.lamotte.com | |
PathoScreen™ | Hach | www.hach.com | |
Rapid HiColiform™ | HiMedia | www.himedialabs.com | |
Readycult® | EMD Chemicals | www.emdchemicals.com | |
Watercheck™ | Bluewaterbiosciences | www.bluewaterbiosciences.com |
4. Discussion
4.1. Matching Tests to Resource Settings
Standard 1 | Alternative 1 | Advantages | Limitations |
---|---|---|---|
Laboratory Incubator ($$$) | Ambient incubation (-) | Possibly acceptable in tropical climates [20] or potentially indoors | Recoveries for injured bacteria may be poor; increased and poorly defined incubation time; not applicable everywhere |
Low-cost electric incubators ($–$$) e.g., egg incubator | Good temperature control | Reliant on electricity, may not be available for higher temperatures (44.5°C for TTC) | |
Body incubation (-) | Readily available | Acceptability, health and safety issues and limited number of tests | |
Phase change incubator ($) | Good temperature control, only requires hot water | Requires heat source, can be bulky, particularly for many tests | |
De-ioniser ($$$) | Boiled water (-) | Readily available | May not inactivate all organisms; can concentrate chemical contaminants need to run blanks |
Steam distiller ($$) | Produces very pure water | Requires high-voltage and power; requires running water; fragile | |
Autoclave (see below) | May be available or has dual use (see below) | Turbid waters may not provide suitable dilution water, especially for membrane filtration | |
Membrane Filtration assembly & vacuum ($$$) | Portable MF assembly, including hand pump or MIT D-lab kit ($–$$) | Manual, portable | Time consuming procedure Separate incubator required |
Autoclave ($$) | Portable autoclave ($) | Portable | Requires heat source |
Pressure cooker ($) | Independent of electricity | Requires heat source | |
Bleach or disinfectant ($) | Readily available, good for disinfecting waste | Handling of cultures; care must be taken in reusing components to prevent false negatives due to residual disinfectant | |
Refrigerator or freezer ($$) | Storage at room temperature (-) | Independence from electricity | Shelf-life unclear for many media, particularly hydrated media; samples cannot be retained for subsequent analysis |
Sample transport on ice | Ambient temperature transport | Simple | Potential population increase or die-off of bacteria |
Insulated box (with cool water if available) | May be better than ambient | Change in bacterial population unknown, likely to be better than ambient |
4.2. Matching Tests to Applications
4.3. Limitations
5. Conclusions
Acknowledgments
Conflict of Interest
References
- Bain, R.E.S.; Gundry, S.W.; Wright, J.A.; Yang, H.; Pedley, S.; Bartram, J.K. Accounting for water quality in monitoring access to safe drinking-water as part of the Millennium Development Goals: Lessons from five countries. Bull. World Health Organ. 2012, 90, 228A–235A. [Google Scholar]
- Onda, K.; LoBuglio, J.; Bartram, J. Global access to safe water: Accounting for water quality and the resulting impact on MDG progress. Int. J. Environ. Res. Public Health 2012, 9, 880–894. [Google Scholar]
- UNICEFWHODrinking Water: Equity, Safety and Sustainability; UNICEF: New York, NY, USA, 2011; (accessed on 1 February 2010). Available online: http://www.unicef.org/wash/files/JMP_Report_DrinkingWater_2011.pdf.
- Guidelines for Drinking-Water Quality, 3rd edWorld Health Organization: Geneva, Switzerland, 2008; 1, Recommendations.
- Hunt, M.E.; Rice, E.W. Microbiological Examination. In Standard Methods for the Examination of Water and Wastewater, 21st; Eaton, A.D., Clesceri, L.S., Rice, W.R., Greenberg, A.E., Franson, M.A.H., Eds.; American Public Health Association: Washington, DC, USA, 2005. [Google Scholar]
- Guidelines for Drinking-Water Quality, 2nd edWorld Health Organization: Geneva, Switzerland, 1997; 3, Surveillance and control of community supplies.
- Manja, K.S.; Maurya, M.S.; Rao, K.M. A simple field test for the detection of faecal pollution in drinking water. Bull. World Health Organ. 1982, 60, 797–801. [Google Scholar]
- Rompre, A.; Servais, P.; Baudart, J.; de-Roubin, M.R.; Laurent, P. Detection and enumeration of coliforms in drinking water: Current methods and emerging approaches. J. Microbiol. Methods 2002, 49, 31–54. [Google Scholar]
- Center for Disease Control. Microbiological Indicator Testing in Developing Countries: A Fact Sheet for the Field Practitioner; Center for Disease Control: Druid Hills, GA, USA, 2010. Available online: http://sanitationupdates.files.wordpress.com/2010/11/microbiology2020.pdf (accessed on 1 February 2010).
- House, S.; Reed, B. Emergency Water Sources: Guidelines for Selection and Treatment; DfID: London, UK, 1997. [Google Scholar]
- Bartram, J.K.; Balance, R. Water Quality Monitoring. A Practical Guide to the Design and Implementation of Freshwater Quality Studies and Monitoring Programmes; E&FN Spon: London, UK, 1996. [Google Scholar]
- Oxfam. Water Quality Analysis in Emergency Situations; Oxfam: Cowley, Oxford, UK, 2006. Available online: http://www.oxfam.org.uk/resources/downloads/emerg_manuals/draft_oxfam_tech_brief_watertest.pdf (accessed on 1 February 2012).
- Davison, A.; Howard, G.; Stevens, M.; Callan, P.; Fewtrell, L.; Deere, D.; Bartram, J. Water Safety Plans: Managing Drinking-water Quality from Catchment to Consumer; World Health Organization: Geneva, Switzerland, 2005.
- Manafi, M. New developments in chromogenic and fluorogenic culture media. Int. J. Food Microbiol. 2000, 60, 205–218. [Google Scholar]
- Orenga, S.; James, A.L.; Manafi, M.; Perry, J.D.; Pincus, D.H. Enzymatic substrates in microbiology. J. Microbiol. Methods 2009, 79, 139–155. [Google Scholar]
- Bain, R.E.S.; McMahan, L. The future of low-cost wateWater and Health: Where Science meets Policyr quality testing. Chapel Hill, NC, USA, 3–7 October 2011. Presented at Water and Health: Where Science meets Policy.
- Cochran, W.G. Estimation of bacterial densities by means of the most probable number. Biometrics 1950, 6, 105–116. [Google Scholar]
- Garthright, W.E.; Blodgett, R.J. FDA’s preferred MPN methods for standard, large or unusual tests, with a spreadsheet. Food Microbiol. 2003, 20, 439–445. [Google Scholar]
- Crocker, J. Characterization and Cost-Analysis of Drinking Water Quality Monitoring in India and Jordan; University of North Carolina: Chapel Hill, NC, USA, 2011. [Google Scholar]
- Brown, J.; Stauber, C.; Murphy, J.L.; Khan, A.; Mu, T.; Elliott, M.; Sobsey, M.D. Ambient-temperature incubation for the field detection of Escherichia coli in drinking water. J. Appl. Microbiol. 2011, 110, 915–923. [Google Scholar]
- Leclerc, H.; Mossel, D.A.A.; Edberg, S.C.; Struijk, C.B. Advances in the bacteriology of the Coliform Group: Their suitability as markers of microbial water safety. Annu. Rev. Microbiol. 2001, 55, 201–234. [Google Scholar]
- Hunter, P.R.; Andersson, Y.; von Bonsdorff, R.M.; Chalmers, E.; Cifuentes, D.; Deere, D.; Endo, T.; Kadar, M.; Krogh, T.; Newport, L.; Prescott, A.; Robertson, W. Surveillance and Investigation of Contamination Incidents and Waterborne Outbreaks. In Assessing Microbial Safety of Drinking-water: Improving Approaches and Methods; Dufour, A., Snozzi, M., Koster, W., Bartram, J., Ronchi, E., Fewtrell, L., Eds.; IWA Publishing: London, UK, 2003; pp. 205–236. [Google Scholar]
- Sobsey, M.D.; Pfaender, F.K. Evaluation of the H2S Method for Detection of Fecal Contamination of Drinking Water; World Health Organization: Geneva, Switzerland, 2002. [Google Scholar]
- Wright, J.A.; Yang, H.; Walker, K.; Pedley, S.; Elliott, J.; Gundry, S.W. The H2S test versus standard indicator bacteria tests for faecal contamination of water: systematic review and meta-analysis. Trop. Med. Int. Health 2012, 17, 94–105. [Google Scholar]
- Clark, J.A. A presence–absence (P–A) test providing sensitive and inexpensive detection of coliforms, fecal coliforms, and fecal streptococci in municipal drinking water supplies. Can. J. Microbiol. 1968, 14, 13–18. [Google Scholar]
- Olstadt, J.; Schauer, J.J.; Standridge, J.; Kluender, S. A comparison of ten USEPA approved total coliform/E-coli tests. J. Water Health 2007, 5, 267–282. [Google Scholar]
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Bain, R.; Bartram, J.; Elliott, M.; Matthews, R.; McMahan, L.; Tung, R.; Chuang, P.; Gundry, S. A Summary Catalogue of Microbial Drinking Water Tests for Low and Medium Resource Settings. Int. J. Environ. Res. Public Health 2012, 9, 1609-1625. https://doi.org/10.3390/ijerph9051609
Bain R, Bartram J, Elliott M, Matthews R, McMahan L, Tung R, Chuang P, Gundry S. A Summary Catalogue of Microbial Drinking Water Tests for Low and Medium Resource Settings. International Journal of Environmental Research and Public Health. 2012; 9(5):1609-1625. https://doi.org/10.3390/ijerph9051609
Chicago/Turabian StyleBain, Robert, Jamie Bartram, Mark Elliott, Robert Matthews, Lanakila McMahan, Rosalind Tung, Patty Chuang, and Stephen Gundry. 2012. "A Summary Catalogue of Microbial Drinking Water Tests for Low and Medium Resource Settings" International Journal of Environmental Research and Public Health 9, no. 5: 1609-1625. https://doi.org/10.3390/ijerph9051609
APA StyleBain, R., Bartram, J., Elliott, M., Matthews, R., McMahan, L., Tung, R., Chuang, P., & Gundry, S. (2012). A Summary Catalogue of Microbial Drinking Water Tests for Low and Medium Resource Settings. International Journal of Environmental Research and Public Health, 9(5), 1609-1625. https://doi.org/10.3390/ijerph9051609