Many studies have shown that magnesium modified biochar (MgBC) can recover nutrients from wastewater and be applied as an excellent slow-release fertilizer in farmland. However, the recovery products (NP-loaden MgBC), represented by struvite or magnesium phosphate, have a high degree of self-alkalinity, which may significantly increase the ammonia (NH) volatilization in farmland. In this study, the optimal adsorption parameters, self-alkaline regulation process and co-adsorption mechanism of MgBC for ammonium ion (NH) and phosphate ion (PO) were studied through batch experiments. A field experiment was conducted with three treatments, including local conventional fertilization (NB) and the application of 5 t·ha or 10 t·ha NP-loaden MgBC in combination with local conventional fertilization (NB and NB, respectively), to determine the impact of NP-loaden MgBC on NH volatilization, surface water c(NH-N) and pH. The results indicated that the maximum NH and PO synergistic recovery of MgBC under the optimal adsorption parameters (dosage of 0.6 g·L; initial NH and PO concentrations of 120 and 60 mg·L and pH of 8) were 59.96 and 98.60 mg·g, respectively. Self-regulating alkaline MgBC maintained pH suitable for struvite, and precipitation mechanism controlled the adsorption. The presence of NP-loaden MgBC raised the pH levels in surface water during the basal fertilization stage and increased c(NH-N) in surface water during the topdressing stages. This, in turn, led to a significant increase in NH volatilization loss during the entire rice-growing period, with NB and NB experiencing a 23.87 % and 48.91 % increase respectively, compared to NB. Therefore, it is imperative to take into account the adverse impact of NP-laden MgBC on NH loss in paddy fields when considering its application in future field studies.

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http://dx.doi.org/10.1016/j.scitotenv.2023.166575DOI Listing

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