Soil Neutral Xylanase(S-NEX) Activity Assay Kit
Micro method
- Product Code: 125062
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Density: | Storage Condition: | 2-8℃, avoid light |
Product Description:
The Soil Neutral Xylanase (S-NEX) Activity Assay Kit is primarily used to measure the activity of neutral xylanase enzymes in soil samples. This is particularly important in agricultural research, where understanding the enzyme's activity helps assess soil health and organic matter decomposition. By quantifying xylanase activity, researchers can evaluate the efficiency of soil microorganisms in breaking down hemicellulose, a key component of plant biomass. This information is crucial for optimizing composting processes, improving soil fertility, and enhancing crop productivity. Additionally, the kit is valuable in environmental studies to monitor the impact of land management practices on soil microbial activity and nutrient cycling. Its application extends to industrial settings as well, where it aids in the development of bio-based products and biofuels by studying enzyme efficiency in lignocellulosic biomass degradation.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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100.000 | 10-20 days | ฿10,692.00 |
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Soil Neutral Xylanase(S-NEX) Activity Assay Kit
The Soil Neutral Xylanase (S-NEX) Activity Assay Kit is primarily used to measure the activity of neutral xylanase enzymes in soil samples. This is particularly important in agricultural research, where understanding the enzyme's activity helps assess soil health and organic matter decomposition. By quantifying xylanase activity, researchers can evaluate the efficiency of soil microorganisms in breaking down hemicellulose, a key component of plant biomass. This information is crucial for optimizing composting processes, improving soil fertility, and enhancing crop productivity. Additionally, the kit is valuable in environmental studies to monitor the impact of land management practices on soil microbial activity and nutrient cycling. Its application extends to industrial settings as well, where it aids in the development of bio-based products and biofuels by studying enzyme efficiency in lignocellulosic biomass degradation.
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