The Experts below are selected from a list of 3 Experts worldwide ranked by ideXlab platform
Rio Ricardi - One of the best experts on this subject based on the ideXlab platform.
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characteristics of vacuum freeze drying with utilization of internal Cooling and condenser waste heat for sublimation
Theory of Computing Systems \ Mathematical Systems Theory, 2013Co-Authors: Muhammad Idrus Alhamid, Nasruddin Yusuf, Indra Teuku Meurah Mahlia, Engkos Ahmad Kosasih, Muhamad Yulianto, Rio RicardiAbstract:Vacuum freeze drying is an excellent drying method, but it is very energy-intensive because a relative ly long drying time is required. This research investigates the ut ilization of condenser waste heat for sublimation a s a way of accelerating the drying rate. In addition, it also investigates the effect of internal Cooling combine d with vacuum Cooling in the pressure reduction process. Jelly fish tenta cles were used as the specimen, with different conf igurations for condenser heat waste and internal Cooling Valve ope ning. The results show that heating with condenser heat waste can accelerate the drying rate up to 0.0035 kg/m 2 .s. In addition, pre-freezing by internal Cooling p revents evaporation until the mass of the specimen is 0.47 g and promotes tra nsition of the specimen into the solid phase.
Muhammad Idrus Alhamid - One of the best experts on this subject based on the ideXlab platform.
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characteristics of vacuum freeze drying with utilization of internal Cooling and condenser waste heat for sublimation
Theory of Computing Systems \ Mathematical Systems Theory, 2013Co-Authors: Muhammad Idrus Alhamid, Nasruddin Yusuf, Indra Teuku Meurah Mahlia, Engkos Ahmad Kosasih, Muhamad Yulianto, Rio RicardiAbstract:Vacuum freeze drying is an excellent drying method, but it is very energy-intensive because a relative ly long drying time is required. This research investigates the ut ilization of condenser waste heat for sublimation a s a way of accelerating the drying rate. In addition, it also investigates the effect of internal Cooling combine d with vacuum Cooling in the pressure reduction process. Jelly fish tenta cles were used as the specimen, with different conf igurations for condenser heat waste and internal Cooling Valve ope ning. The results show that heating with condenser heat waste can accelerate the drying rate up to 0.0035 kg/m 2 .s. In addition, pre-freezing by internal Cooling p revents evaporation until the mass of the specimen is 0.47 g and promotes tra nsition of the specimen into the solid phase.
Nasruddin Yusuf - One of the best experts on this subject based on the ideXlab platform.
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characteristics of vacuum freeze drying with utilization of internal Cooling and condenser waste heat for sublimation
Theory of Computing Systems \ Mathematical Systems Theory, 2013Co-Authors: Muhammad Idrus Alhamid, Nasruddin Yusuf, Indra Teuku Meurah Mahlia, Engkos Ahmad Kosasih, Muhamad Yulianto, Rio RicardiAbstract:Vacuum freeze drying is an excellent drying method, but it is very energy-intensive because a relative ly long drying time is required. This research investigates the ut ilization of condenser waste heat for sublimation a s a way of accelerating the drying rate. In addition, it also investigates the effect of internal Cooling combine d with vacuum Cooling in the pressure reduction process. Jelly fish tenta cles were used as the specimen, with different conf igurations for condenser heat waste and internal Cooling Valve ope ning. The results show that heating with condenser heat waste can accelerate the drying rate up to 0.0035 kg/m 2 .s. In addition, pre-freezing by internal Cooling p revents evaporation until the mass of the specimen is 0.47 g and promotes tra nsition of the specimen into the solid phase.
Indra Teuku Meurah Mahlia - One of the best experts on this subject based on the ideXlab platform.
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characteristics of vacuum freeze drying with utilization of internal Cooling and condenser waste heat for sublimation
Theory of Computing Systems \ Mathematical Systems Theory, 2013Co-Authors: Muhammad Idrus Alhamid, Nasruddin Yusuf, Indra Teuku Meurah Mahlia, Engkos Ahmad Kosasih, Muhamad Yulianto, Rio RicardiAbstract:Vacuum freeze drying is an excellent drying method, but it is very energy-intensive because a relative ly long drying time is required. This research investigates the ut ilization of condenser waste heat for sublimation a s a way of accelerating the drying rate. In addition, it also investigates the effect of internal Cooling combine d with vacuum Cooling in the pressure reduction process. Jelly fish tenta cles were used as the specimen, with different conf igurations for condenser heat waste and internal Cooling Valve ope ning. The results show that heating with condenser heat waste can accelerate the drying rate up to 0.0035 kg/m 2 .s. In addition, pre-freezing by internal Cooling p revents evaporation until the mass of the specimen is 0.47 g and promotes tra nsition of the specimen into the solid phase.
Engkos Ahmad Kosasih - One of the best experts on this subject based on the ideXlab platform.
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characteristics of vacuum freeze drying with utilization of internal Cooling and condenser waste heat for sublimation
Theory of Computing Systems \ Mathematical Systems Theory, 2013Co-Authors: Muhammad Idrus Alhamid, Nasruddin Yusuf, Indra Teuku Meurah Mahlia, Engkos Ahmad Kosasih, Muhamad Yulianto, Rio RicardiAbstract:Vacuum freeze drying is an excellent drying method, but it is very energy-intensive because a relative ly long drying time is required. This research investigates the ut ilization of condenser waste heat for sublimation a s a way of accelerating the drying rate. In addition, it also investigates the effect of internal Cooling combine d with vacuum Cooling in the pressure reduction process. Jelly fish tenta cles were used as the specimen, with different conf igurations for condenser heat waste and internal Cooling Valve ope ning. The results show that heating with condenser heat waste can accelerate the drying rate up to 0.0035 kg/m 2 .s. In addition, pre-freezing by internal Cooling p revents evaporation until the mass of the specimen is 0.47 g and promotes tra nsition of the specimen into the solid phase.