TY - JOUR
T1 - Preparation of light aggregate with photovoltaic sludge incineration ash
AU - Liu, Zhiying
AU - Xu, Xuexiao
AU - Kang, Zhijin
AU - Liu, Yang
AU - Ba, Li
AU - Xu, Yanhua
N1 - Publisher Copyright:
© 2017, Science Press. All right reserved.
PY - 2017/10/5
Y1 - 2017/10/5
N2 - This thesis is aimed at the difficult disposal situation of Industrial sludge incineration ash, preparing lightweight aggregate with photovoltaic sludge incineration ash as the main raw material. The lightweight aggregate has the best performance when dosage of clay is 70%, dosage of MgO is 5%, dosage of sludge incineration ash is 25%, preheated at 450℃ for 15 min and sintered at 1 050℃ for 10 min, whose compressive strength of the ceramic is 9.52 MPa, bulk density is 867 kg·m-3, loss on ignition is 0.12%, water absorption per hour is 1.94%.The lightweight aggregate has the characteristic of high-strength and low water absorption and the preparation method is in line with requirements of 'lightweight aggregate and test methods for the second part: lightweight aggregate test' (GB/T 17431.2-2010), which can provide theoretical guidance for resource recovery of photovoltaic sludge incineration ash.
AB - This thesis is aimed at the difficult disposal situation of Industrial sludge incineration ash, preparing lightweight aggregate with photovoltaic sludge incineration ash as the main raw material. The lightweight aggregate has the best performance when dosage of clay is 70%, dosage of MgO is 5%, dosage of sludge incineration ash is 25%, preheated at 450℃ for 15 min and sintered at 1 050℃ for 10 min, whose compressive strength of the ceramic is 9.52 MPa, bulk density is 867 kg·m-3, loss on ignition is 0.12%, water absorption per hour is 1.94%.The lightweight aggregate has the characteristic of high-strength and low water absorption and the preparation method is in line with requirements of 'lightweight aggregate and test methods for the second part: lightweight aggregate test' (GB/T 17431.2-2010), which can provide theoretical guidance for resource recovery of photovoltaic sludge incineration ash.
KW - Light aggregate
KW - Photovoltaic industry
KW - Photovoltaic sludge incineration ash
KW - Resource recovery
UR - http://www.scopus.com/inward/record.url?scp=85039974017&partnerID=8YFLogxK
U2 - 10.12030/j.cjee.201611131
DO - 10.12030/j.cjee.201611131
M3 - 文章
AN - SCOPUS:85039974017
SN - 1673-9108
VL - 11
SP - 5671
EP - 5676
JO - Chinese Journal of Environmental Engineering
JF - Chinese Journal of Environmental Engineering
IS - 10
ER -