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首页> 外文期刊>Environmental Science and Pollution Research >Azolla pinnata, Aspergillus terreus, and Eisenia fetida for fasterrecycling of nutrients from wheat straw
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Azolla pinnata, Aspergillus terreus, and Eisenia fetida for fasterrecycling of nutrients from wheat straw

机译:Azolla pinnata,aspergillus terreus,和艾森尼亚·弗莱蒂达,从小麦秸秆中养殖营养素

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摘要

A vast amount of surplus wheat straw/stubble (a carbon-rich bioresource) is wasted every year by burning. Harmful gases and residue matter released due to burning cause harmful effects on the environment and human health. Therefore, there is a strong need to recycle this bioresource in a sustainable manner. In the present study, wheat straw (W) was spiked with cattle dung (C), Azolla pinnata (A), and Aspergillus terreus (F) to make eight different treatments (1 kg each), viz. W (1 kg), WC (666 g + 334 g), WA (980 g + 20 g), WF (980 g + 20 ml), WCF (666 g + 314 g + 20 ml), WCA (666 g + 314 g + 20 g), WFA (960 g+ 20 ml + 20 g), and WCFA(666 g + 294 g + 20 ml + 20 g), and subjected to vermicomposting (Vcom) and aerobic composting (Acom). A comparison was made for the time required for degradation and nutrient profile of the products. The fastest recycling of wheat straw/stubble (120 days) was observed in WCA and WCFA, but the nutrient quality of WCA was better (N 18.67, P 3.88, K 38.84 g/kg). In the Acom group, longer time was required for degradation of various mixtures, but in this group also, WCA was degraded first of all (138 days) and yielded a product with the best nutrient quality (N 14.77, P 2.56, K 28.80 g/kg). Maximum growth of E. fetida and maximum number of hatchlings were observed in WCA while the highest cocoon production was observed in WCFA. It was observed that azolla enhanced conversion of wheat straw into a nutrient-rich product for agronomic use. Thus its use will reduce the amount of cattle dung in the mixture and the bulk to be handled by the farmers for ecosafe disposal of surplus straw/stubble. Therefore, this technology can be adopted as an alternative to burning.
机译:每年通过燃烧每年浪费大量的剩余小麦秸秆/茬(富含碳富碳的Bioresource)。由于燃烧而释放的有害气体和残留物造成对环境和人类健康的有害影响。因此,有强有力需要以可持续的方式再循环这种生物源。在本研究中,小麦秸秆(W)被牛粪(C),Azolla Pinnata(A)和Aspergillus Terreus(F)掺入,以制造八种不同的治疗(每次1公斤),viz。 W(1kg),Wc(666g + 334g),Wa(980g + 20g),Wf(980g + 20ml),WCF(666g + 314g + 20ml),WCA(666g + 314g + 20g),WFA(960g + 20ml + 20g)和WCFA(666g + 294g + 20ml + 20g),并进行蛭酯(vcom)和有氧堆肥(Acom)。对产品的降解和营养素所需的时间进行了比较。在WCA和WCFA中观察到小麦秸秆/茬(120天)的最快再循环,但WCA的营养质量较好(N 18.67,P 3.88,K 38.84g / kg)。在ACOM组中,各种混合物的降解需要更长的时间,但在该组中,WCA首先(138天)首先降解,并产生具有最佳营养质量的产品(N 14.77,P 2.56,K 28.80g /公斤)。在WCA中观察到E. Fetida和最大幼龟数的最大生长,而在WCFA中观察到最高茧产量。观察到,Azolla将麦秸转化为富含营养素的产品,用于农艺用途。因此,它的使用将减少混合物中的牛粪的数量,并通过农民处理剩余秸秆/茬的生态处理的农民处理。因此,这种技术可以作为燃烧的替代品。

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