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Agricultural soil testing provides analytical information about soil chemistry, nutrient-related characteristics, salinity and other conditions that can support land, crop and soil-management decisions.

PBR Laboratories provides agricultural soil testing support from Edmonton for growers, agricultural businesses, consultants and land-management projects throughout Alberta, Western Canada and Canada.

PBR's documented soil chemistry capabilities relevant to agricultural soil include:

  • pH;
  • electrical conductivity;
  • total nitrogen;
  • total phosphorus;
  • total potassium;
  • total sulfur;
  • sodium adsorption ratio;
  • cation exchange capacity;
  • total organic carbon;
  • major anions and cations.

The appropriate testing program depends on the soil, sampling depth, land use, management question and decision the analytical results need to support.

What Is Agricultural Soil Testing?

Agricultural soil testing measures selected chemical characteristics of soil to help characterize conditions relevant to crop production, land management and soil-quality decisions.

Testing may help answer questions such as:

  • Is the soil acidic or alkaline?
  • Are salinity conditions elevated?
  • Is sodicity a concern?
  • What nutrient-related characteristics are present?
  • What is the soil's organic carbon content?
  • How do results differ between fields, zones or time points?
  • Should additional soil characterization be completed?

A laboratory result should be interpreted in the context of soil type, sampling location, sampling depth, season and management objective.

Soil pH Testing

Soil pH indicates whether the submitted soil sample is acidic, neutral or alkaline under the applicable analytical method.

pH can influence:

  • nutrient availability;
  • microbial activity;
  • chemical behaviour;
  • metal mobility;
  • soil-management decisions.

What does a soil pH result mean?

The result provides a measured pH for the submitted sample.

It should be interpreted alongside the soil type, field conditions and management objective rather than as a standalone value.

Electrical Conductivity & Soil Salinity

Electrical conductivity provides information related to the soluble ionic content of the soil extract.

It is commonly used to evaluate salinity-related conditions.

Why does salinity matter?

Elevated soluble salts can affect soil behaviour and plant performance.

The significance of an electrical conductivity result depends on:

  • soil type;
  • crop;
  • sampling depth;
  • land use;
  • field conditions.

Electrical conductivity does not describe sodicity, so it should not be used as a substitute for sodium adsorption ratio.

Sodium Adsorption Ratio

Sodium adsorption ratio provides information about the relative amount of sodium compared with calcium and magnesium.

It can support assessment of sodicity-related soil conditions.

What is the difference between salinity and sodicity?

Salinity relates to soluble salts.

Sodicity relates to the relative dominance of sodium in the soil system.

They are related but different conditions, which is why electrical conductivity and sodium adsorption ratio answer different analytical questions.

Related Resource: Soil pH, Electrical Conductivity, SAR & Salinity Explained →

Nitrogen Testing

PBR's current soil chemistry capabilities include total nitrogen.

Nitrogen testing can contribute to soil characterization and agricultural or environmental assessment.

The result should be interpreted in relation to the analytical method, sampling depth and management objective.

Phosphorus Testing

PBR's documented soil chemistry capabilities include total phosphorus.

Testing may support:

  • soil characterization;
  • field comparison;
  • environmental assessment;
  • agricultural decision-making.

A total phosphorus result does not automatically provide a complete agronomic fertilizer recommendation.

Potassium Testing

PBR's current soil testing information includes total potassium.

The result can contribute to soil characterization and comparison between fields or samples.

Interpretation should reflect the test method and intended use of the result.

Sulfur Testing

PBR also documents total sulfur among its soil chemistry capabilities.

Sulfur results can support selected agricultural and environmental soil-characterization objectives.

Cation Exchange Capacity

Cation exchange capacity provides information related to the soil's ability to retain positively charged ions.

It may help characterize soil properties relevant to:

  • nutrient retention;
  • soil-management decisions;
  • reclamation;
  • comparison between soil types.

Does a higher cation exchange capacity always mean "better" soil?

Not necessarily.

The result describes one soil property and should be interpreted in the context of soil texture, chemistry and management objectives.

Total Organic Carbon

Total organic carbon measures carbon associated with organic material in the submitted soil sample under the applicable analytical method.

Depending on the application, it may support:

  • soil characterization;
  • comparison between fields;
  • reclamation;
  • land-management decisions;
  • environmental investigations.

Organic carbon results should be interpreted with the soil type and project objective in mind.

Major Anions & Cations

PBR's existing Soil Chemical Testing services also identify major anions and cations among the available analytical parameters.

These measurements can provide additional information relevant to:

  • salinity;
  • soil chemistry;
  • irrigation-related investigations;
  • reclamation;
  • environmental or agricultural characterization.

The appropriate ion panel should be based on the question being investigated.

Agricultural Soil Testing vs Environmental Soil Testing

Agricultural and environmental soil testing may use some of the same analytical parameters, but they support different decisions.

Agricultural Soil Testing Environmental Soil Testing
Focuses on soil condition and land-management questions Focuses on contamination and environmental investigation
pH, EC, nutrients, SAR, CEC, organic carbon Hydrocarbons, metals, contaminants, chemistry
Supports agricultural characterization Supports site assessment and remediation
Often compares fields or management zones Often compares source, background and impacted areas

A project can involve both where agricultural land also has an environmental concern.

Related Service: Environmental Soil Contamination Testing →

Soil Sampling for Agricultural Testing

The usefulness of agricultural soil results depends strongly on how the samples are collected.

Important factors include:

  • field or management zone;
  • sampling depth;
  • number of sampling points;
  • timing;
  • variability across the field;
  • prior land use;
  • irrigation or drainage patterns;
  • sample labelling.

A single grab sample may not adequately represent a large or variable field.

PBR's decision framework emphasizes representative sampling when analytical results are used to support broader land or lot-level decisions.

Ask PBR about sample requirements before collecting agricultural soil samples.

Composite Soil Samples

Composite sampling can be useful in agricultural applications where the objective is to obtain an average representation of a defined field or management zone.

However, the composite should only combine samples that genuinely belong to the same decision area.

When can compositing create a problem?

Combining soil from:

  • different soil types;
  • visibly different zones;
  • different management areas;
  • different depths;
  • potentially contaminated locations

can obscure meaningful differences.

The sampling plan should therefore match the management decision.

How Often Should Agricultural Soil Be Tested?

There is no universal testing interval that applies to every field.

The appropriate frequency depends on:

  • soil variability;
  • crop or land use;
  • management changes;
  • irrigation;
  • reclamation status;
  • previous results;
  • the decision the testing supports.

Testing should be scheduled around a defined management question rather than performed only because a fixed number of years has passed.

Comparing Soil Results Over Time

Trend comparison can be useful when:

  • monitoring salinity;
  • evaluating reclamation;
  • comparing management zones;
  • tracking soil chemistry changes.

For meaningful comparison, try to keep:

  • sampling depth;
  • location or zone;
  • timing;
  • analytical method;
  • sample handling

consistent where possible.

Changing several variables at the same time can make trend interpretation difficult.

What Does an Unexpected Agricultural Soil Result Mean?

An unexpected result does not automatically mean the laboratory value is wrong.

The investigation may need to consider:

  • sampling location;
  • sampling depth;
  • field variability;
  • soil moisture conditions;
  • management history;
  • irrigation;
  • fertilizer or amendment history;
  • analytical method;
  • previous results.

The correct next step depends on the parameter and management question.

Does PBR Provide Fertilizer Recommendations?

The PBR material used for this page supports analytical soil testing, including pH, conductivity, nutrient-related parameters, sodium adsorption ratio, cation exchange capacity, organic carbon and major ions.

It does not establish a broad agronomic fertilizer-recommendation service.

Therefore, PBR should position this service as providing analytical data that can support agricultural decisions, while crop-specific fertilizer recommendations should be made using the appropriate agronomic expertise where required.

This distinction protects technical accuracy and keeps PBR within its verified scope.

Agricultural Soil Testing for Reclamation

Agricultural chemistry parameters can also be useful in reclamation and land-restoration projects.

Relevant testing may include:

  • pH;
  • electrical conductivity;
  • sodium adsorption ratio;
  • cation exchange capacity;
  • organic carbon;
  • selected nutrients.

Testing can help compare soil characteristics across locations or time points as part of a broader reclamation program.

Related Application: Remediation & Reclamation Soil Testing →

Who Needs Agricultural Soil Testing?

  • Farmers & Growers
    For soil characterization and comparison between fields or management zones.
  • Agricultural Consultants
    For analytical soil data supporting agronomic or land-management decisions.
  • Feed & Crop Producers
    Where soil chemistry information contributes to production-management questions.
  • Landowners
    For baseline or ongoing soil characterization.
  • Irrigated Agriculture
    Where salinity, sodicity or major ions are relevant to the soil-management question.
  • Reclamation Professionals
    For soil chemistry assessment during land-restoration or reclamation programs.
  • Municipalities & Public-Sector Projects
    For agricultural land-management and environmental monitoring programs.

Agricultural Soil Testing in Edmonton & Alberta

PBR Laboratories provides agricultural soil testing support from Edmonton, Alberta.

PBR can support Alberta agricultural and land-management projects requiring laboratory data for:

  • pH;
  • electrical conductivity;
  • sodium adsorption ratio;
  • nutrients;
  • cation exchange capacity;
  • organic carbon;
  • related soil chemistry.

Alberta's agricultural landscapes can vary significantly, making representative field sampling and clear management zones important when interpreting analytical results.

Agricultural Soil Testing Across Western Canada

PBR supports agricultural, reclamation and land-management projects throughout Western Canada with soil chemistry testing selected around the matrix and management objective.

The testing program should focus on the parameters that answer the actual soil question rather than using a large generic panel without purpose.

Agricultural Soil Testing Across Canada

PBR supports Canadian clients requiring analytical soil information for agricultural, land-management and reclamation applications.

The PBR decision pathway is:

define the field or management question → collect representative samples → test relevant soil parameters → interpret results in context → make the appropriate land-management decision

Frequently Asked Questions

What does agricultural soil testing measure?

Depending on the objective, agricultural soil testing may measure pH, electrical conductivity, sodium adsorption ratio, total nitrogen, phosphorus, potassium, sulfur, cation exchange capacity, total organic carbon and major ions.

Can PBR test soil nutrients?

Yes. PBR's documented soil chemistry capabilities include total nitrogen, phosphorus, potassium and sulfur.

What does soil pH tell me?

Soil pH indicates whether the submitted sample is acidic or alkaline and can influence nutrient availability, chemical behaviour and other soil processes.

What does electrical conductivity measure?

Electrical conductivity provides information related to soluble salts and is commonly used in evaluating salinity-related conditions.

What is sodium adsorption ratio?

Sodium adsorption ratio evaluates the relative amount of sodium compared with calcium and magnesium and is used in assessing sodicity-related conditions.

Is soil salinity the same as sodicity?

No. Salinity relates to soluble salts, while sodicity relates to sodium dominance. Electrical conductivity and sodium adsorption ratio provide different information.

What is cation exchange capacity?

Cation exchange capacity is a measure related to the soil's ability to retain positively charged ions. It is one part of broader soil characterization.

Can one soil sample represent an entire field?

Not necessarily. Large or variable fields usually require a sampling plan designed around the field or management zone being evaluated.

Should agricultural soil samples be composited?

Composite sampling can be appropriate where multiple increments represent the same management zone, but samples from meaningfully different soils, depths or conditions should not automatically be combined.

Does PBR provide fertilizer recommendations?

The verified PBR material supports laboratory soil analysis but does not establish a broad crop-specific fertilizer recommendation service. PBR can provide analytical soil results for use in agricultural decision-making.

Does PBR provide agricultural soil testing outside Alberta?

Yes. PBR supports clients throughout Alberta, Western Canada and Canada.

Need Agricultural Soil or Nutrient Testing?

Tell PBR:

  • What land, field or management zone are you evaluating?
  • What sampling depth is being used?
  • Which soil characteristics need to be measured?
  • Are salinity or sodicity concerns involved?
  • Is the project agricultural, reclamation or land-management related?
  • What decision will the analytical results support?

PBR can discuss available soil chemistry testing and sample requirements before submission.