Department of Advanced Material Technologies, Faculty of Chemistry, Wroclaw University of Science and Technology, Gdanska 7/9, 50-344 Wroclaw, Poland.
Mansinhbhai Institute of Dairy & Food Technology (MIDFT), Mehsana-384002, Gujarat State, India.
Waste Manag. 2019 Mar 15;87:612-620. doi: 10.1016/j.wasman.2019.02.048. Epub 2019 Mar 4.
This work describes the possibility of utilization of ash originated from the incineration of sewage sludge from the wastewater treatment plant with the 3rd stage of biological treatment, and spent mushrooms substrate (SMS) as a raw material for the production of the substrate for agriculture and horticulture with the property of slow-releasing of phosphorus via solubilization process. Ash was mixed with SMS in different ratios (1, 5 and 10%), where SMS was used as a substrate/medium - the source of nutrients necessary for the growth of bacteria Acidithiobacillus ferrooxidans (A. ferrooxidans), while the ash was used as a source of phosphorus. Solubilization of phosphorus from ash via solubilization process was conducted for 50 days. During this time pH, conductivity, as well as the concentration of available forms of phosphorus were monitored. Obtained results were compared with the control group deprive inoculation by A. ferrooxidans. The concentration of available to plants phosphorus (express as PO) was an average 1.5 times higher in the SMS inoculated with A. ferrooxidans in all considered groups. Observation confirms the possibility of utilization of treated SMS as a substrate in agriculture and horticulture as the utilitarian properties (weight and length of plant/root) of plants obtained in germination test were higher when compared with the control group where SMS without inoculation was used.
本工作描述了利用来自具有生物处理第 3 阶段的废水处理厂的污水污泥焚烧灰,以及用过的蘑菇基质 (SMS) 作为农业和园艺用基质的原料的可能性,该基质具有通过溶解过程缓慢释放磷的特性。灰分与 SMS 以不同的比例(1、5 和 10%)混合,其中 SMS 用作细菌嗜酸氧化亚铁硫杆菌 (A. ferrooxidans) 生长所需的基质/介质-营养源,而灰分则用作磷源。通过溶解过程对灰分中的磷进行溶解处理,持续 50 天。在此期间,监测 pH 值、电导率以及有效磷的浓度。将获得的结果与不接种 A. ferrooxidans 的对照组进行比较。在所有考虑的组中,接种 A. ferrooxidans 的 SMS 中的植物有效磷(以 PO 表示)浓度平均高 1.5 倍。观察结果证实了经过处理的 SMS 可作为农业和园艺用基质的可能性,因为与使用未接种 SMS 的对照组相比,在发芽试验中获得的植物的实用性质(植物/根的重量和长度)更高。