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钙在生物炭形成过程中增强磷回收:机制及在稻田土壤中作为磷肥的潜在应用

Calcium enhances phosphorus reclamation during biochar formation: Mechanisms and potential application as a phosphorus fertilizer in a paddy soil.

作者信息

Nan Hongyan, Yang Fan, Li Deping, Cao Xinde, Xu Xiaoyun, Qiu Hao, Zhao Ling

机构信息

School of Chemical Engineering, Zhengzhou University, Henan 450001, China; School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

School of Environment and Architecture, University of Shanghai for Science and Technology, Shanghai 200093, China.

出版信息

Waste Manag. 2023 May 1;162:83-91. doi: 10.1016/j.wasman.2023.03.018. Epub 2023 Mar 21.

Abstract

Transformation of phosphorus (P) species during pyrolytic production of biochar from P-rich biowastes with a subsequent soil amendment is important to P reclamation. Aiming at increasing the content of plant-available P and restraining the formation of easily mobile P in pyrolysis product, this study used exogenous calcium ions (20 wt% CaCl) addition prior to pyrolysis to regulate the pyrolytic transformation of P chemical fractions from sewage sludge and bone dreg. Results showed that active Ca catalyzed the decomposition of organic P to transform into inorganic orthophosphate. Based on Hedley's sequential extraction method, this study found that addition of Ca ions remarkably reduced the content of soluble P, exchange P, Fe/Al bound P, and occluded P in biochar, while increased Ca bound P from 78 to 85% to 85-96%. Liquid P NMR indicated that exogenous Ca induced the crack of the P-O-P bond in pyrophosphate to become orthophosphates. It also explained why new orthophosphates including chlorapatite (Ca(PO)Cl) and calcium hydroxyapatite (Ca(PO)(OH)) appeared in the Ca-composite biochar compared to pristine biochar. Combined with rapid P-release test in paddy soil (pH 6.27) and 30-days rice seedling growth test under flooded condition (10 wt% biochar addition ratio), it was confirmed that compared to pristine biochar, Ca-composite biochar released more P in paddy soil, but also promoted more P to be taken in by rice root and stalk. These results suggested that pretreating biowaste with Ca ion was a friendly approach to enhance P reclamation during biochar formation, making it a promising P fertilizer.

摘要

从富磷生物废弃物热解制备生物炭并随后进行土壤改良过程中磷(P)形态的转化对磷的回收利用很重要。为了提高热解产物中植物有效磷的含量并抑制易迁移磷的形成,本研究在热解前添加外源钙离子(20 wt% CaCl)来调节污水污泥和骨渣中磷化学组分的热解转化。结果表明,活性钙催化有机磷分解转化为无机正磷酸盐。基于Hedley连续提取法,本研究发现添加钙离子显著降低了生物炭中可溶性磷、交换性磷、铁/铝结合磷和闭蓄态磷的含量,而钙结合磷的含量从78%至85%增加到了85%至96%。液体磷核磁共振表明,外源钙诱导焦磷酸盐中P-O-P键断裂生成正磷酸盐。这也解释了为什么与原始生物炭相比,钙复合生物炭中出现了包括氯磷灰石(Ca(PO)Cl)和羟基磷灰石(Ca(PO)(OH))在内的新的正磷酸盐。结合水稻土(pH 6.27)中的快速磷释放试验以及淹水条件下(生物炭添加比例为10 wt%)30天的水稻幼苗生长试验,证实与原始生物炭相比,钙复合生物炭在水稻土中释放了更多的磷,同时也促进了水稻根系和茎秆吸收更多的磷。这些结果表明,用钙离子预处理生物废弃物是一种在生物炭形成过程中加强磷回收利用的友好方法,使其成为一种有前景的磷肥。

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