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秸秆在微生物菌种、净化剂等的作用下,转化成植物生长所需的二氧化碳、热量、抗病孢子、酶、有机和无机养料,进而实现作物高产和优质。应用形式有三种:内置式、外置式和内外置结合式。以秸秆替代化肥,植物疫苗替代农药,这种栽培技术成本低、易操作、资源丰富、投入产出比大,环保效应显著。一、秸秆生物反应堆技术的理论依据植物产量高低是由二氧化碳、水、光三要素和微量矿质元素决定的,这三要素中,主要制约因素是气体二氧化碳。没有它植物就会饥饿而死。目前大
The straw is transformed into carbon dioxide, heat, disease-resistant spores, enzymes, organic and inorganic nutrients needed by plant growth under the action of microbial species and purifying agents to achieve high crop yield and quality. There are three types of applications: built-in, external and internal combined with external. Substituting fertilizers with straw and plant vaccines instead of pesticides have the advantages of low cost, easy operation, abundant resources, large input-output ratio and significant environmental effects. First, the theoretical basis of straw bio-reactor technology Plant production level is determined by the three elements of carbon dioxide, water, light and trace mineral elements, the three elements, the main constraint is the gas carbon dioxide. Without it, plants will starve to death. Currently large