Soil Hydroxylamine Reductase(S-HR) Activity Assay Kit
Micro method
- Product Code: 67131
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Density: | Storage Condition: | 2-8℃, avoid light |
Product Description:
The Soil Hydroxylamine Reductase (S-HR) Activity Assay Kit is primarily used to measure the activity of hydroxylamine reductase in soil samples. This enzyme plays a critical role in the nitrogen cycle, specifically in the reduction of hydroxylamine to ammonia, which is an essential process for soil fertility and nutrient availability. By assessing S-HR activity, researchers and agricultural scientists can evaluate the efficiency of nitrogen transformation in soils, which is vital for optimizing crop production and managing soil health. The kit is particularly useful in environmental studies to monitor the impact of agricultural practices, such as fertilizer application, on soil microbial activity. Additionally, it aids in understanding the effects of pollutants or contaminants on soil enzyme functions, contributing to better soil management and remediation strategies. Its application extends to ecological research, where it helps in studying microbial communities and their role in biogeochemical cycles.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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100.000 | 10-20 days | ฿26,082.00 |
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Soil Hydroxylamine Reductase(S-HR) Activity Assay Kit
The Soil Hydroxylamine Reductase (S-HR) Activity Assay Kit is primarily used to measure the activity of hydroxylamine reductase in soil samples. This enzyme plays a critical role in the nitrogen cycle, specifically in the reduction of hydroxylamine to ammonia, which is an essential process for soil fertility and nutrient availability. By assessing S-HR activity, researchers and agricultural scientists can evaluate the efficiency of nitrogen transformation in soils, which is vital for optimizing crop production and managing soil health. The kit is particularly useful in environmental studies to monitor the impact of agricultural practices, such as fertilizer application, on soil microbial activity. Additionally, it aids in understanding the effects of pollutants or contaminants on soil enzyme functions, contributing to better soil management and remediation strategies. Its application extends to ecological research, where it helps in studying microbial communities and their role in biogeochemical cycles.
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