Development of macro and micro-nutrient rich integrated Jeevamrutha bio-fertilizer systems using rural and commercial precursors

IF 8 Q1 ENERGY & FUELS
Udaratta Bhattacharjee , Ramagopal V.S. Uppaluri
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Abstract

Cow dung-based bio-fertilizers often requires additional organic amendments to demonstrate the nutritional necessities for field applications. Thereby, the present study validated the need for an integrated farming technique with the readily available rural and commercial precursors (such as vermicompost, neem cake, tea waste and water hyacinth) into the cow-excreta-based Jeevamrutha organic bio-fertilizer. Hence, physio-chemical, nutritional content and microbial characteristics were targeted. The ratios of Jeevamrutha and the above-mentioned precursors were varied as 1:4 for vermicompost, 1:3 for neem cake, 1:2 for tea waste and 1:3–1:4 for water hyacinth at an ambient temperature between 12 and 38ºC during winter and summer seasons respectively. The wide range of temperature was considered to accomodate the average temperatures of summer and winter seasons of Guwahati, India. Nutritional factors such as total Kjeldahl nitrogen (TKN), ammonium nitrogen (AN) and phosphate (P) was maximum for tea waste-integrated Jeevamrutha bio-fertilizer. These respectively varied as 1.94–3.22 %, 726.8–1076.4 mg/L and 0.57–0.65 % during the winter and summer seasons. Similar nutrient trend was followed by neem cake-integrated Jeevamrutha bio-fertilizer (TKN:1.78–2.24 %; AN:623.4–873.56 mg/L and P:0.64–0.71 %) during winter and summer seasons. Phytotoxicity assay shows that desired concentration of the optimal compositional set was 50 % (v/v) and 20 % (v/v) for the seasons. Cost analysis for the bio-fertilizer systems revealed a minimal expenditure associated for tea waste (Rs. 10.56/kg) followed by water hyacinth-integrated Jeevamrutha bio-fertilizer (Rs. 12.68/kg) in comparison with the conventionally used jaggery-based Jeevamrutha bio-fertilizer (Rs. 17.3/kg). Here, jaggery refers to the product obtained as a product in rural India.

Abstract Image

利用农村和商业前体开发富含宏观和微量营养的综合Jeevamrutha生物肥料系统
以牛粪为基础的生物肥料通常需要额外的有机修正,以证明田间应用的营养必要性。因此,本研究证实了将农村和商业前体(如蚯蚓堆肥、楝树饼、茶渣和水信子)纳入牛粪便基Jeevamrutha有机生物肥料的综合农业技术的必要性。因此,针对理化,营养成分和微生物特性进行了研究。在12 ~ 38℃的环境温度下,冬夏季节蚯蚓堆肥、印楝饼、茶渣和水葫芦的配比分别为1:4、1:3、1:2和1:3 - 1:4。广泛的温度范围被认为是为了适应印度古瓦哈蒂夏季和冬季的平均温度。总凯氏定氮(TKN)、铵态氮(AN)和磷素(P)等营养因子在茶渣组合的吉瓦木生物肥料中含量最高。冬、夏季分别为1.94 ~ 3.22%、726.8 ~ 1076.4 mg/L和0.57 ~ 0.65%。营养变化趋势相似的次之是印楝饼组合吉瓦木生物肥料(TKN:1.78 ~ 2.24%;冬、夏季节氮含量为623.4 ~ 873.56 mg/L,磷含量为0.64 ~ 0.71%。植物毒性试验表明,不同季节的最佳组合浓度分别为50% (v/v)和20% (v/v)。生物肥料系统的成本分析显示,与传统使用的jaggery基Jeevamrutha生物肥料(17.3卢比/公斤)相比,茶叶废物的成本最低(10.56卢比/公斤),其次是水葫芦集成Jeevamrutha生物肥料(12.68卢比/公斤)。在这里,jaggery指的是在印度农村获得的产品。
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来源期刊
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
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0
审稿时长
109 days
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