M. K. Khalil, D. Muhammad, S. Qureshi, Sultan Nawaz, Farooq Ishaq
{"title":"Impact of Phosphorite on pH, Electrical Conductivity and Water Soluble Phosphorous Extracted from Incubated Citrus Waste Compost","authors":"M. K. Khalil, D. Muhammad, S. Qureshi, Sultan Nawaz, Farooq Ishaq","doi":"10.11648/J.MC.20190704.14","DOIUrl":null,"url":null,"abstract":"Citrus waste having acidic reaction may have additional advantage over other organic residues as compost materials in alkaline calcareous soil but the process of its composting is very slow. In this study an attempt was made to access the release of P from RP added citrus waste during 180 of incubation and its effect on pH and EC of the composting media. Citrus waste consisting pulp, fruits skin and juice with total net weight of 500 g (fresh) were added with 0, 15, 30 and 60 g of RP (equivalent to 0, 3, 6 and 12%, respectively) and were incubated in oven at 36°C ± 2 for 180 days. All pots were also added with 20 mL water and 20 g FYM to optimize the moisture level and augment the microbial decay in pots. Results showed that RP mixed citrus waste had higher pH, EC and more water-soluble P as compared to non-treated citrus waste (control) at all incubation intervals of 0, 15, 30, 60, 120 and 180 d suggesting releases of salts and P from RP. These values of pH, EC and water-soluble P increased with increase in RP levels and passage of time which could be associated to neutralization of RP with organic acids of citrus and CO2 mineralization with time. It is concluded that addition of RP not only enhanced the quality of compost but could also promote the citrus waste decomposition process. Though the higher RP levels was best in our results, but other levels and their consequent effect on soil and crop yields should be assessed along with their environmental risks for wider and long-term recommendations.","PeriodicalId":18605,"journal":{"name":"Modern Chemistry & Applications","volume":"71 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2019-09-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Modern Chemistry & Applications","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.11648/J.MC.20190704.14","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
Citrus waste having acidic reaction may have additional advantage over other organic residues as compost materials in alkaline calcareous soil but the process of its composting is very slow. In this study an attempt was made to access the release of P from RP added citrus waste during 180 of incubation and its effect on pH and EC of the composting media. Citrus waste consisting pulp, fruits skin and juice with total net weight of 500 g (fresh) were added with 0, 15, 30 and 60 g of RP (equivalent to 0, 3, 6 and 12%, respectively) and were incubated in oven at 36°C ± 2 for 180 days. All pots were also added with 20 mL water and 20 g FYM to optimize the moisture level and augment the microbial decay in pots. Results showed that RP mixed citrus waste had higher pH, EC and more water-soluble P as compared to non-treated citrus waste (control) at all incubation intervals of 0, 15, 30, 60, 120 and 180 d suggesting releases of salts and P from RP. These values of pH, EC and water-soluble P increased with increase in RP levels and passage of time which could be associated to neutralization of RP with organic acids of citrus and CO2 mineralization with time. It is concluded that addition of RP not only enhanced the quality of compost but could also promote the citrus waste decomposition process. Though the higher RP levels was best in our results, but other levels and their consequent effect on soil and crop yields should be assessed along with their environmental risks for wider and long-term recommendations.
在碱性钙质土壤中,柑桔废弃物的酸性反应可能比其他有机残留物具有额外的堆肥优势,但其堆肥过程非常缓慢。在本研究中,试图了解RP添加柑橘废弃物在180孵育期间P的释放及其对堆肥介质pH和EC的影响。果肉、果皮和果汁净重500 g(新鲜)的柑橘废弃物分别添加0、15、30和60 g RP(分别相当于0、3、6和12%),在36℃±2的烘箱中孵育180天。所有花盆同时加入20 mL水和20 g FYM,以优化水分水平,增加花盆中的微生物腐烂。结果表明,在0、15、30、60、120和180 d的孵育时间内,RP混合柑橘废弃物的pH、EC和水溶性磷含量均高于未处理柑橘废弃物(对照)。pH、EC和水溶性P值随RP含量的增加和时间的延长而增加,这可能与RP被柑桔有机酸中和和CO2矿化有关。综上所述,添加RP不仅可以提高堆肥质量,而且可以促进柑橘废弃物的分解过程。虽然较高的RP水平在我们的结果中是最好的,但其他水平及其对土壤和作物产量的影响应与其环境风险一起评估,以获得更广泛和长期的建议。