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Paddy Husk and Pressmud as Renewable and Ecof riendly Bioinoculant Carriers

机译:Paddy Husk和Pressmud作为可再生和Ecof友善的生物杀菌剂载体

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摘要

The lignite and peat are the traditional carriers used in biofertiliser industry. They are non-renewable, costly, non ecofriendly and their reservoirs limited in India. Therefore, the present work was undertaken to check and evaluate whether the agroindustry by-products viz., peanut shell, corn cob, sawdust, paddy husk, and pressmud can be used as carriers alternative to the traditional ones. Evaluation of the carriers was done by studying the survival of Burkholderia gladioli and Bacillus circulans at 28, 37 and 45℃ respectively for a period of three months on a weekly basis by the viable plate count method. Physico-chemical characteristics of the agroindustry by-products showed that pressmud and paddy husk have pH 6.62 and 6.66, ash content 0.23 and 0.32% (w/w), potassium content 0.034 and 0.037% (w/w) respectively. The water-holding capacity was high in the agroindustry by-products corn cob, sawdust, peanut shell and pressmud, which was 87.09, 60.27,70.30,52.98% (w/w) respectively. Pressmud and paddy husk both were found to be very rich in the macro and microelements such as CaO, MnO, V, Cu, Rb, Mo, Ag, Sn, Sb, I, Ba, Hf, Hg, Ti, Th, Co, Rb, Ag, Hg, Bi and Th in comparison to Lignite. The viable count at 28℃ of Burkholderia gladioli was highest in pressmud which was 2.347×10~5cfu/g and in case of Bacillus circulans. It was highest in paddy husk which was 2.381 × 10~5 cfu/g. The viable count of Burkholderia gladioli and Bacillus circulans was also better at 37℃ and 45℃ in the agroindustry by-products in comparison to Lignite. Thus, pressmud and paddy husk were found to be as alternate carriers to lignite, which will be cheaper, renewable, ecofriendly, more easily available and use of them is a clean technology. Since these are the by-products of the agroindustry, their use as carrier will give a value-added product and also protect the bacterial cells from desiccation.
机译:褐煤和泥炭是生物肥料工业中使用的传统载体。它们是不可再生,昂贵,不环保的,其水库在印度受到限制。因此,目前的工作是检查和评估农用副产品,即花生壳,玉米芯,木屑,稻壳和压榨泥土是否可以用作替代传统农作物的载体。通过活板计数法,每周一次研究剑兰伯克霍尔德氏菌和圆形芽孢杆菌在28、37和45℃下三个月的存活期,以评估携带者。农副产品的理化特性表明,press泥和稻壳的pH分别为6.62和6.66,灰分分别为0.23和0.32%(w / w),钾含量为0.034和0.037%(w / w)。农用副产品玉米芯,木屑,花生壳和压泥的保水能力较高,分别为87.09、60.27、70.30、52.98%(w / w)。发现泥和稻壳的宏观和微量元素都非常丰富,例如CaO,MnO,V,Cu,Rb,Mo,Ag,Sn,Sb,I,Ba,Hf,Hg,Ti,Th,Co,与褐煤相比,Rb,Ag,Hg,Bi和Th在28℃下,兰伯克氏菌的活菌数在压泥中最高,为2.347×10〜5cfu / g;稻壳中最高,为2.381×10〜5 cfu / g。与褐煤相比,农用副产物在37℃和45℃下剑兰伯克霍尔德氏菌和圆形芽孢杆菌的存活数也更好。因此,发现press煤和稻壳是褐煤的替代载体,褐煤将更便宜,可再生,生态友好,更容易获得,并且它们的使用是一种清洁技术。由于这些是农用工业的副产品,因此将其用作载体将提供高附加值的产品,还可以保护细菌细胞免于干燥。

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