Inorganic Chemicals Industry ›› 2024, Vol. 56 ›› Issue (8): 74-82.doi: 10.19964/j.issn.1006-4990.2023-0501
• Research & Development • Previous Articles Next Articles
ZHAO Leilei1,2(), SHU Yizhou1,3, QI Zenglian4, LIU Dandan2, KUANG Jialing1,3, HUANG Chengdong4, WU Jiaxiang1, PU Zhengxian1(
)
Received:
2023-10-18
Online:
2024-08-10
Published:
2024-09-26
Contact:
PU Zhengxian
E-mail:zhaoleilei@stu.ynu.edu.cn;249281740@qq.com
CLC Number:
ZHAO Leilei, SHU Yizhou, QI Zenglian, LIU Dandan, KUANG Jialing, HUANG Chengdong, WU Jiaxiang, PU Zhengxian. Effect of different addition amount of ammonium polyphosphate on granulation performance of compound fertilizer[J]. Inorganic Chemicals Industry, 2024, 56(8): 74-82.
Table 1
Design scheme of disc granulation test"
方 案 | 聚合磷质 量分数/% | 原料质量分数/% | ||||||
---|---|---|---|---|---|---|---|---|
APP | MAP | DAP | 尿素 | K2SO4 | 硼砂 | 七水硫酸锌 | ||
I | 0 | 0.00 | 21.41 | — | 54.37 | 21.00 | 3.00 | 0.22 |
20 | 7.05 | 15.38 | — | 53.35 | 21.00 | 3.00 | 0.22 | |
40 | 14.25 | 9.29 | — | 52.24 | 21.00 | 3.00 | 0.22 | |
60 | 21.61 | 3.20 | — | 50.97 | 21.00 | 3.00 | 0.22 | |
70 | 25.16 | 0.00 | — | 50.62 | 21.00 | 3.00 | 0.22 | |
II | 0 | 0.00 | — | 23.96 | 51.82 | 21.00 | 3.00 | 0.22 |
20 | 6.98 | — | 17.40 | 51.40 | 21.00 | 3.00 | 0.22 | |
40 | 14.04 | — | 10.54 | 51.20 | 21.00 | 3.00 | 0.22 | |
60 | 21.16 | — | 3.72 | 50.90 | 21.00 | 3.00 | 0.22 | |
70 | 25.16 | — | 0.00 | 50.62 | 21.00 | 3.00 | 0.22 |
Table 2
Effect of different amounts of APP on compound fertilizer composition and granulation performance"
方案 | w(聚合磷)/ % | 原料复配性能 | 造粒成粒性能 | |||||
---|---|---|---|---|---|---|---|---|
pH | 混配过程现象 | 造粒过程现象 | 干燥后不同粒径物料的质量分数/% | |||||
<2 mm | 2~4.75 mm | >4.75 mm | ||||||
I | 0 | 3.81 | 存在严重结块现象 | 易成大颗粒,颗粒粘连 | 9.88 | 73.06 | 17.06 | |
20 | 5.65 | 存在轻微结块现象 | 易成粒,物料潮湿,颗粒分散 | 15.03 | 69.17 | 15.80 | ||
40 | 6.11 | 混合均匀,复配良好 | 易成粒,颗粒分散 | 19.98 | 67.63 | 12.39 | ||
60 | 6.44 | 混合均匀,复配良好 | 较易成粒,小颗粒较多 | 22.80 | 66.80 | 10.40 | ||
70 | 6.82 | 混合均匀,复配良好 | 物料干燥,较难成粒 | 26.86 | 66.27 | 6.87 | ||
II | 0 | 7.13 | 有吸湿,但未结块 | 易成大颗粒,颗粒粘连 | 9.82 | 79.83 | 10.35 | |
20 | 7.08 | 存在轻微结块现象 | 易成粒,物料潮湿,颗粒分散 | 14.14 | 77.38 | 8.48 | ||
40 | 7.07 | 混合均匀,复配良好 | 易成粒,颗粒分散 | 16.25 | 76.30 | 7.45 | ||
60 | 7.08 | 混合均匀,复配良好 | 较易成粒,小颗粒较多 | 23.01 | 69.57 | 7.42 | ||
70 | 6.82 | 混合均匀,复配良好 | 物料干燥,较难成粒 | 26.68 | 66.80 | 6.52 |
1 | 何福多,原一帆,周小厚,等.湿法磷酸原位酸解废弃羽毛制备含氨基酸磷酸一铵[J].无机盐工业,2023,55(10):100-105. |
HE Fuduo, YUAN Yifan, ZHOU Xiaohou,et al.Preparation of monoammonium phosphate containing amino acid from waste feat⁃ | |
hers by in situ acid hydrolysis of wet process of phosphoric | |
acid[J].Inorganic Chemicals Industry,2023,55(10):100-105. | |
2 | 汪家铭.新型肥料聚磷酸铵的发展与应用[J].杭州化工,2009,39(4):1-4,11. |
WANG Jiaming.Development and application of new fertilizer ammonium polyphosphate[J].Hangzhou Chemical Industry,2009,39(4):1-4,11. | |
3 | MCBEATH T M, LOMBI E, MCLAUGHLIN M J,et al.Polyphosphate⁃fertilizer solution stability with time,temperature,and |
pH[J].Journal of Plant Nutrition and Soil Science,2007,170(3):387-391. | |
4 | 熊子怡,邱烨,郭琳钰,等.聚磷酸铵在土壤中有效性的变化及其影响因素[J].植物营养与肥料学报,2020,26(8):1473-1480. |
XIONG Ziyi, QIU Ye, GUO Linyu,et al.The availability of ammonium polyphosphate in soil and the impacting factors[J].Journal of Plant Nutrition and Fertilizers,2020,26(8):1473-1480. | |
5 | 张汉卿,付学伟,余赟,等.聚磷酸铵复合肥对包菜生长发育及产量的影响[J].磷肥与复肥,2023,38(2):48-51. |
ZHANG Hanqing, FU Xuewei, YU Yun,et al.Effects of APP compound fertilizer on growth and yield of cabbage[J].Phosphate & Compound Fertilizer,2023,38(2):48-51. | |
6 | 战威名.聚磷酸铵配施改良材料对滨海盐渍土磷形态及大豆生长的影响[D].泰安:山东农业大学,2023. |
ZHAN Weiming.The effects of ammonium polyphosphate combined with improved materials on phosphorus form and soybean growth in coastal saline soil[D].Tai′an:Shandong Agricultural University,2023. | |
7 | 王箫璇.不同磷肥施用对砂姜黑土和红壤磷库转化及作物磷素吸收利用的影响[D].合肥:安徽农业大学,2022. |
WANG Xiaoxuan.Effects of different varieties of phosphate fertilizers application on soil phosphorus pool transformation and phosphorus uptake and utilization of cereal crops[D].Hefei:Anhui Agricultural University,2022. | |
8 | 普正仙,宗世荣,陈泽新,等.聚磷酸盐替代部分正磷酸盐增产作用研究[J].磷肥与复肥,2023,38(1):48-51. |
PU Zhengxian, ZONG Shirong, CHEN Zexin,et al.Effect of polyphosphate replacing partial orthophosphate on increasing production[J].Phosphate & Compound Fertilizer,2023,38(1):48-51. | |
9 | 甘浩天,廖欢,郝海波,等.不同滴灌磷肥对棉田土壤磷含量及磷肥利用率的影响[J].中国土壤与肥料,2022(11):24-32. |
GAN Haotian, LIAO Huan, HAO Haibo,et al.Effects of different drip irrigation phosphorus fertilizer on soil phosphorus content and phosphorus utilization rate in cotton field[J].Soil and Fertilizer Sciences in China,2022(11):24-32. | |
10 | ZHAO Yanan, LI Ruike, HUANG Yufang,et al.Effects of various phosphorus fertilizers on maize yield and phosphorus uptake in soils with different pH values[J].Archives of Agronomy and Soil Science,2022,68(12):1746-1754. |
11 | 赵文,高进华,解学仕,等.聚磷酸铵合成工艺评述及产品农用研究进展[J].磷肥与复肥,2019,34(10):25-27,31. |
ZHAO Wen, GAO Jinhua, XIE Xueshi,et al.Review of ammonium polyphosphate production process and research progress in agricultural application of product[J].Phosphate & Compound Fertilizer,2019,34(10):25-27,31. | |
12 | 袁太艳,严正娟,黄成东,等.聚磷酸铵在紫色土壤中的吸附-解吸特征[J].浙江农业学报,2023,35(2):403-416. |
YUAN Taiyan, YAN Zhengjuan, HUANG Chengdong,et al.Adsorption⁃desorption characteristics of ammonium polyphosphate in purple soils[J].Acta Agriculturae Zhejiangensis,2023,35(2):403-416. | |
13 | 王雅洁,张兵兵,袁盼,等.黄棕壤和酸紫砂土施用不同磷肥对油菜产量的影响[J].中国油料作物学报,2022,44(1):147-157. |
WANG Yajie, ZHANG Bingbing, YUAN Pan,et al.Effects of different phosphate fertilizer on Brassica napus cultivars grown with yellow⁃brown earth and acid purplish sandy soil[J].Chinese Journal of Oil Crop Sciences,2022,44(1):147-157. | |
14 | 陶金铭,刘烁然,司艳玲,等.聚磷酸铵溶液在春玉米上的施用效果研究[J].玉米科学,2021,29(1):146-153. |
TAO Jinming, LIU Shuoran, SI Yanling,et al.Study on the application effect of ammonium polyphosphate on spring corn[J].Journal of Maize Sciences,2021,29(1):146-153. | |
15 | 亢龙飞,王静,朱丽娜,等.不同形态磷酸盐及施用方式对石灰性土壤磷移动性和有效性的影响[J].植物营养与肥料学报,2020,26(7):1179-1187. |
KANG Longfei, WANG Jing, ZHU Lina,et al.Mobility and availability of phosphate under different phosphate sources and application methods in calcareous soils[J].Journal of Plant Nutrition and Fertilizers,2020,26(7):1179-1187. | |
16 | 柴冠群,刘桂华,罗沐欣键,等.叶面喷施聚磷酸铵对辣椒产量、品质及吸收转运Cd的影响[J].河南农业科学,2022,51(8):107-116. |
CHAI Guanqun, LIU Guihua, LUO Muxinjian,et al.Effects of spraying ammonium polyphosphate on yield,quality,absorption and transport of Cd in pepper[J].Journal of Henan Agricultural Sciences,2022,51(8):107-116. | |
17 | 燕子红,范东升,赵彦梁,等.全水溶聚磷酸铵-稀土缓释肥的研制及其对蔬菜的施用效果[J].中国农业科技导报,2022,24(1):157-163. |
YAN Zihong, FAN Dongsheng, ZHAO Yanliang,et al.Development of fully water⁃soluble ammonium polyphosphate⁃rare earth slow⁃release fertilizer and its application effect to vegetables[J].Journal of Agricultural Science and Technology,2022,24(1):157-163. | |
18 | 王婷婷,杨恒哲,李元峰,等.聚磷酸铵复合肥对设施番茄的肥效研究[J].农学学报,2020,10(9):33-37. |
WANG Tingting, YANG Hengzhe, LI Yuanfeng,et al.The fertilizer efficiency of ammonium polyphosphate compound fertilizer on tomato in greenhouse[J].Journal of Agriculture,2020,10(9):33-37. | |
19 | 范东升.聚磷酸铵稀土肥生产工艺及阿托伐醌和膦配体合成研究[D].喀什:喀什大学,2022. |
FAN Dongsheng.Study on the production process of ammonium polyphosphates rare earth fertilizer and synthesis of atorvastone and phosphine ligands[D].Kashi:Kashi University,2022. | |
20 | 亢龙飞,褚贵新.聚磷酸铵肥料生产工艺及其关键性状表征[J].磷肥与复肥,2018,33(9):13-18. |
KANG Longfei, CHU Guixin.Manufacturing process of APP fertilizer and its key properties characterization[J].Phosphate & Compound Fertilizer,2018,33(9):13-18. | |
21 | 郝青.复合肥料的造粒技术及颗粒特性研究[D].临汾:山西师范大学,2012. |
HAO Qing.Resarch on compound fertilizer granulation technology and particles′ morphological characters[D].Linfen:Shanxi Normal University,2012. | |
22 | 舒艺周,马航,匡家灵,等.含聚合磷水溶肥料微粒化造粒试验研究[J].肥料与健康,2023,50(3):35-38. |
SHU Yizhou, MA Hang, KUANG Jialing,et al.Experimental study on micronized granulation of water⁃soluble fertilizer containing polyphosphates[J].Fertilizer & Health,2023,50(3):35-38. | |
23 | 张春艾.水分对磷酸二铵产品的影响探微[J].化工管理,2015(36):23. |
ZHANG Chun′ai.Discussion on the influence of moisture on diammonium phosphate products[J].Chemical Enterprise Management,2015(36):23. | |
24 | 韩林沛.电解锰渣基缓释肥的制备及其性能研究[D].绵阳:西南科技大学,2023. |
HAN Linpei.Study on preparation and properties of electrolytic manganese residue⁃based slow⁃release fertilizers[D].Mianyang:Southwest University of Science and Technology,2023. | |
25 | 吴玉坤.中低品位磷矿酸解法制备复混肥工艺开发[D].郑州:郑州大学,2021. |
WU Yukun.Technological development of preparing compound fertilizer by acid hydrolysis of middle and low grade phosphate rock[D].Zhengzhou:Zhengzhou University,2021. | |
26 | 郎江华.磷酸一铵制备聚磷酸铵新工艺开发[D].武汉:武汉工程大学,2019. |
LANG Jianghua.A novel process for synthesis of ammonium polyphosphate by ammonium phosphate[D].Wuhan:Wuhan Institute of Technology,2019. | |
27 | 张伟.复合肥料吸湿和结块性能及防止研究[D].上海:华东理工大学,2012. |
ZHANG Wei.Study on moisture absorption and caking and their prevention of compound fertilizer[D].Shanghai:East China University of Science and Technology,2012. | |
28 | 茹铁军,王金铭,乔荣广.复合肥料的吸湿性及其影响因素[J].磷肥与复肥,2010,25(4):50-51. |
RU Tiejun, WANG Jinming, QIAO Rongguang.Study on the hygroscopicity of compound fertilizer and its influence factors[J].Phosphate & Compound Fertilizer,2010,25(4):50-51. | |
29 | 许洪兴.从生产角度谈复混肥配方技术[J].磷肥与复肥,2004,19(2):47-49. |
XU Hongxing.Discussion on formulation technique for compound fertilizer from viewpoint of production[J].Phosphate & Compound Fertilizer,2004,19(2):47-49. | |
30 | 刘续.聚磷酸铵微波合成工艺及其水溶特性研究[D].郑州:郑州大学,2021. |
LIU Xu.Study on the microwave synthesis technology and water solubility characteristics of ammonium polyphosphate[D].Zhengzhou:Zhengzhou University,2021. | |
31 | 徐思思.水溶性聚磷酸铵及淀粉聚磷酸酯的制备研究[D].武汉:湖北工业大学,2018. |
XU Sisi.Preparation of water⁃soluble ammonium polyphosphate and starch polyphosphate[D].Wuhan:Hubei University of Technology,2018. | |
32 | 宋洁,朱晓斌,牛育华,等.KHA/PPA缓释控肥料的制备及性能[J].应用化工,2021,50(1):117-121. |
SONG Jie, ZHU Xiaobin, NIU Yuhua,et al.Preparation and properties of KHA/PPA slow release controlled fertilizer[J].Applied Chemical Industry,2021,50(1):117-121. |
[1] | LI Yongxiang, YANG Xiaolong, LU Zhonghai, MA Hang, WAN Banglong, LI Yundong. Research progress of flame retardant application of ammonium poly-phosphate [J]. Inorganic Chemicals Industry, 2024, 56(5): 20-30. |
[2] | XU Miao, XU Dehua, SHOU Zhixin, YANG Wengong, WANG Xinlong. Study on preparation process of magnesium ammonium polyphosphate [J]. Inorganic Chemicals Industry, 2024, 56(12): 88-93. |
[3] | Yan Bo,Xie Tian,Zhu Huacheng,Yang Fengming,Wang Fengxia,Chen Yong. Study on process of synthesizing ammonium polyphosphate by microwave heating [J]. Inorganic Chemicals Industry, 2020, 52(7): 42-45. |
[4] | Chen Yong,Yang Sanke,Xie Tian,Tao Shaocheng,Long Qinglan,Liu Xu. Research on preparation process of water-soluble ammonium polyphosphate with high polymerization rate [J]. Inorganic Chemicals Industry, 2020, 52(5): 50-52. |
[5] | Liu Xu,Tang Jianwei,Liu Yong,Hua Quanxian,Wang Baoming. Research and application progress of water-soluble agricultural ammonium polyphosphate [J]. Inorganic Chemicals Industry, 2020, 52(12): 7-11. |
[6] | Wang Yan,Wang Xinlong,Xu Dehua,Xu Dejun,Yang Jingxu. Effect of Mg2+ on hydrolysis of water soluble ammonium polyphosphate [J]. Inorganic Chemicals Industry, 2020, 52(10): 72-76. |
[7] | Chen Zhenbang, Yang Shousheng. Aging mechanism and life prediction of ammonium polyphosphate thermal-oxidative acceleration aging [J]. Inorganic Chemicals Industry, 2019, 51(3): 20-24. |
[8] | Ling Haohan,Wang Xinlong,Xu Dehua,Liang Wen,Xie Wenji. Effect of water soluble ammonium polyphosphate with different degree of polymerization on chelation of magnesium ion [J]. Inorganic Chemicals Industry, 2019, 51(12): 20-22. |
[9] | Liang Wen,Wang Xinlong,Chen Jianjun,Xie Wenji,Leng Xinke,Ling Haohan. Study on law of chelated Zn by water?鄄soluble ammonium polyphosphate [J]. Inorganic Chemicals Industry, 2019, 51(11): 20-22. |
[10] | Yang Shengdong,Xu Dehua,Wang Xinlong,Zhang Zhiye. Study on technology of preparing ammonium polyphosphate containing chelated magnesium by in?鄄situ method [J]. Inorganic Chemicals Industry, 2019, 51(11): 46-49. |
[11] | Xie Wenji,Wang Xinlong,Xu Dehua,Liang Wen,Ling Haohan,Leng Xinke,Yang Jingxu. Effect of different pH on hydrolysis of ammonium pyrophosphate [J]. Inorganic Chemicals Industry, 2019, 51(10): 28-31. |
[12] | FANG Fang, LIU Dai-Jun, CHEN Jian-Jun. Synthesis and characterization of ammonium polyphosphate with high degree of polymerization [J]. INORGANICCHEMICALSINDUSTRY, 2014, 46(7): 36-. |
[13] | YU Lin-Chun, DU Huai-Ming, YE Yu-Ling, HUANG Bin, ZHOU Gang. Preparation and crystalline form of APP with low water solubility [J]. INORGANICCHEMICALSINDUSTRY, 2014, 46(2): 27-. |
[14] | CUI Yi-Shun. Study on synthesis technology of environment-friendly ammonium polyphosphate fire retardant [J]. INORGANICCHEMICALSINDUSTRY, 2012, 44(4): 11-. |
[15] | HU Hong, XU De-Long, DUAN Yong-Hua, JIE Tian. Study on technologic conditions for production of P-Mg compound fertilizer with high Mg phosphate gangue in mixed phosphoric acid and sulfuric acid [J]. INORGANICCHEMICALSINDUSTRY, 2012, 44(2): 53-. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
|
Copyright © 2021 Editorial Office of Inorganic Chemicals Industry
Add:No.3 Road Dingzigu,Hongqiao District,Tianjin,China
E-mail:book@wjygy.com.cn 违法和不良信息举报电话: 022-26689297