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UNIVERSITY OF CAMBRIDGE Department of Geography LABORATORY RISK ASSESSMENT FORMExperiment or Procedure (include a brief description & reaction conditions i.e. temperature, solvent, work up procedures
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How to fill out loss-on-ignition analyses of soil

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How to fill out loss-on-ignition analyses of soil

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Step 1: Collect a representative soil sample from the desired area.
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Step 2: Dry the soil sample in an oven at a temperature of 105-110 degrees Celsius until it reaches a constant weight. This ensures that all excess moisture is removed.
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Step 3: Weigh the dried soil sample accurately and record the weight.
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Step 4: Place the dried soil sample into a crucible and heat it in a furnace at a temperature of 550-600 degrees Celsius for a specified time period (typically 2-4 hours). This will cause the organic matter in the soil to burn off, leaving behind only inorganic components.
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Step 5: Allow the crucible to cool to room temperature in a desiccator.
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Step 6: Weigh the crucible with the remaining residue and record the weight.
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Step 7: Calculate the loss on ignition (LOI) by subtracting the weight of the residue from the weight of the dried soil sample, and then dividing the result by the weight of the dried soil sample. Multiply by 100 to express the LOI as a percentage.
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Step 8: Record the calculated LOI value and any relevant observations or notes.
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Step 9: Repeat steps 3-8 for each soil sample that needs to be analyzed.
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Step 10: Compile and analyze the results to draw conclusions about the organic content and decomposition of the soil samples.

Who needs loss-on-ignition analyses of soil?

01
Loss-on-ignition analyses of soil are important for various professionals and researchers involved in soil science, environmental science, agricultural research, and geology.
02
Agricultural scientists and researchers can use LOI analyses to determine the organic matter content in soil samples, which is crucial for assessing soil fertility and nutrient availability for crop growth.
03
Geologists can utilize LOI analyses to study the decomposition and transformation of organic matter in soil, providing insights into the history and formation processes of different geological formations.
04
Environmenta listss can benefit from LOI analyses as it helps in monitoring and assessing the impact of pollutants, such as heavy metals or organic contaminants, on soil quality and environmental health.
05
Soil conservationists and land managers can use LOI analyses to evaluate the effectiveness of different soil management practices and assess the potential for soil erosion or degradation.
06
Ultimately, anyone working with soil samples and interested in understanding their organic composition and dynamics can benefit from loss-on-ignition analyses.

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Loss-on-ignition analyses is a method used to determine the organic and inorganic content of soil by measuring the weight lost when it is heated.
Researchers, scientists, and environmental consultants are typically required to file loss-on-ignition analyses of soil.
To fill out loss-on-ignition analyses, one must follow standardized procedures for sample preparation, heating, and weight measurements.
The purpose of loss-on-ignition analyses is to assess the soil's organic matter content, which is important for understanding soil fertility and carbon cycling.
The results of the weight loss after heating the soil, along with any relevant details about the sampling location and methodology, must be reported.
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