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The terms and definitions, product classifications, requirements, test methods, inspection rules, packaging, identifications, transportation and storage of the microbial inoculants in agriculture, that is, the microbial agents, are stipulated by this standard. This standard applies to agricultural microbial inoculants products.
This standard specifies the terms and definitions, product classification, requirements, test methods, inspection rules, packaging, marking, transportation, storage of microbial inoculants in agriculture (i.e., microbial inoculants). This standard applies to microbial inoculum products in agriculture.
This document provides the comprehensive list of Chinese National Standards - Category: GB, GB/T Series of year 2006.
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This document provides the comprehensive list of Chinese National Standards and Industry Standards (Total 17,000 standards).
This document provides the comprehensive list of Chinese National Standards - Category: GB; GB/T, GBT.
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This document provides the comprehensive list of Chinese National Standards - Category: GB Series.
In recent decades, agrochemicals have enhanced crop productivity to meet increasing global food requirements. However, prolonged and extensive use of agrochemicals has resulted in contamination that persists in the soil system which can be biomagnified in the food chain. Furthermore, toxic chemicals adversely affect important soil microbial biota, the key drivers of biogeochemical cycles. This concern has raised the need to develop environmentally friendly and cost-effective nano- and micro-biotechnology strategies to minimize the adverse impact of agrochemicals and pesticide residues on soil microbiota, soil fertility, and their biomagnification in food crops. Nano-bioinoculants - the combination of nano-compounds and bioinoculants - have been increasingly used as soil amendments. They can improve agri-potential and soil health by maintaining soil physico- and biological properties, microbial diversity, and the nutrient-solubilizing microbial population. They also aid in improving crop yields and reducing agrochemical and pesticide residues. Nano-bioinoculants are more efficient than other methods for removing contaminants due to their small size, high reactivity, and catalytic activities. Several types of nano-compounds (chitosan, zeolite, gypsum, and silicon dioxide) have been used in conjunction with beneficial microbes (bacteria fungi, actinomycetes & endophytic bacteria) as nano-bioinoculants.
Plants play a key role in purifying the biosphere of the toxic effects of industrial activity. This book shows how systematic application of the results of investigations into the metabolism of xenobiotics (foreign, often toxic substances) in plants could make a vastly increased contribution to planetary well-being. Deep physiological knowledge gained from an accumulation of experimental data enables the great differences between the detoxifying abilities of different plants for compounds of different chemical nature to be optimally exploited. Hence planting could be far more systematically adapted to actual environmental needs than is actually the case at present. The book could form the basis of specialist courses in universities and polytechnics devoted to environmental management, and advanced courses in plant physiology and biochemistry, for botany and integrative biology students. Fundamental plant physiology and biochemistry from the molecular level to whole plants and ecosystems are interwoven in a powerful and natural way, making this a unique contribution to the field.