PROJECT-SPECIFIC THERMAL SYSTEM

Do not treat a reactor name or daily capacity as a complete project specification.

Bahan baku, preparation, operating continuity, condensation, gas safety, product handling, kontrol lingkungan, utilities and local delivery scope must be configured together.

A

Approved small-scale reference

YSX-F1 to YSX-F5 denote 1, 2, 3, 4 lan 5 t/day skid or modular planning references for tire, plastic or oily-sludge trials.

B

Material balance

Oil, gas, solids and metal-bearing outputs require representative feedstock, stable-run data and an agreed sampling boundary.

C

Commercial boundary

Prices, operating costs, product value and return require dated quotations and local market evidence.

Source control: approved YOTO group product register. Final parameters are issued on the project-specific technical agreement.

The HTP-1000 name is retained as a project reference. Stable throughput, dryer duty, reactor configuration, gas treatment, controls and price require representative sludge analysis and a written quotation.

  • Sistem kasebut nduweni kapasitas produksi taunan kira-kira 2,000 ton arang pirolitik, sing nduweni nilai pasar sing signifikan. Salajengipun, liwat pemulihan energi lan proses fiksasi karbon, iku nyuda karbon dioksida emisi dening bab 1,500 ton saben taun, sing nggayuh tujuan koordinasi ekologis lan ekonomi.

  • 1000 kgh Lini Produksi Pirolisis Lumpur

    Apa bedane efisiensi antarane sistem pyrolysis terus-terusan lan intermiten?

    Ing solusi pyrolysis kanggo proyek perawatan sludge kotamadya, rute proses pyrolysis beda langsung impact efficiency operasional lan kualitas produk. Ing antarane iki, sistem pyrolysis terus-terusan lan kumpulan makili rong mode operasi khas, saben duwe ciri teknis unik lan skenario sing bisa ditrapake.

    Perbandingan Sistem Pyrolysis Terusan lan Batch

    Sistem pirolisis intermiten utamane beroperasi ing batch. Sawise ngrampungake saben batch pangolahan, iku perlu kanggo mbusak ampas, feed materi anyar, lan miwiti maneh siklus sabanjure. Kaluwihan kasebut kalebu struktur sing prasaja, investasi peralatan kurang, lan gampang commissioning, sing cocok kanggo pangolahan skala cilik.

    Ing kontras, sistem pyrolysis terus nggunakke conveyors meneng kanggo dipakani endhot terus, supaya reaksi pirolisis lumaku ing kahanan konstan. Nalika desain sistem luwih rumit, iku Ngartekno nambah kapasitas Processing lan stabilitas operasional, sing cocok kanggo proyèk perawatan sludge medium nganti gedhe.

    Sistem pirolisis terus-terusan menehi kaluwihan sing signifikan babagan panggunaan energi. Ana kurang panas mundhut amarga suhu reaksi bisa tetep ing sawetara relatif stabil. Ing wektu sing padha, panas ampas saka pyrolysis bisa njaga suhu reaksi, supaya bisa mujudake swasembada energi.

    Nalika ing sistem intermiten, saben siklus pemanasan lan pendinginan nyebabake fluktuasi energi sing signifikan, nyebabake mundhut panas sing jelas. Mulane, yen ora ana mekanisme pemulihan panas sampah sing komprehensif, konsumsi energi kanggo nambani unit endhot bakal luwih.

    Sistem pirolisis terus-terusan ngaktifake kontrol paramèter sing stabil kayata suhu, wektu panggonan, lan atmosfer, supaya kualitas produk pyrolysis bakal luwih konsisten. Fluktuasi suhu lan atmosfer ing sistem batch relatif cetha, dadi angel entuk kontrol sing tepat. Iki bisa nyebabake kahanan sing durung mesthi kanggo proses pemulihan sumber daya sabanjure. Ing tangan liyane, sistem intermiten nawakake operasi fleksibel, lan nggampangake optimalisasi paramèter proses, sing cocok kanggo pangolahan eksperimen saka macem-macem bahan mentah.

    Kita ora mung fokus ing perawatan pirolisis endapan, nanging uga duwe pengalaman ekstensif babagan pemulihan sumber sampah, kayata sistem pirolisis ban sampah lan pabrik pirolisis sampah plastik. Hubungi kita langsung kanggo ngatur dhewe sistem manajemen sampah elektronik.

    YUSHUNXIN
    YUSHUNXIN THERMAL CONVERSION

    Drilling waste, tank-bottom sludge, refinery sludge and marine oily residues differ in water, padatan, hydrocarbons, salt, sulfur and metals. They should not share an assumed standard configuration.

    Reference three-dimensional layout of a continuous thermal conversion line
    01 / CONNECTED PROCESS

    Follow the material, vapor, cair, gas and solid paths

    The reactor is one part of the line. Commercial operability depends on how each stream is prepared, transferred, controlled and discharged.

    1. 01Material characterization
    2. 02Feed preparation and sealed transfer
    3. 03Controlled thermal conversion
    4. 04Vapor separation and staged condensation
    5. 05Non-condensable gas safety and reuse
    6. 06Solid cooling, discharge and product handling
    02 / MATERIAL-SPECIFIC DESIGN

    Configuration questions that change the proposal

    The following points should be resolved before selecting a capacity or preparing a commercial quotation.

    Conditioning and dewatering

    High water content changes feeding stability and energy demand; pumping, mixing, dewatering or screw feeding may be required.

    Fouling and corrosion

    Salt, fine solids and heavy fractions influence reactor cleaning, metallurgy and condensation-system maintenance.

    Recovered phases

    Separate the project basis for recovered oil, water and treated solids, including sampling and permitted downstream use.

    Hazardous-waste boundary

    Licensing, residue classification, worker protection and emissions monitoring must be defined for the project jurisdiction.

    03 / OPERATING MODEL

    Make utilities and product outlets visible before investment

    A useful feasibility review connects the mass balance, energy balance, operating schedule and local product route.

    Operating schedule

    Define planned hours per day, shutdown windows, cleaning strategy, labor model and feedstock storage capacity.

    Energy integration

    Evaluate non-condensable gas reuse, startup fuel, electrical loads, cooling demand and optional downstream energy use as one balance.

    Quality control

    Set sampling points for incoming material, condensate fractions, recovered solids, wastewater and exhaust gas.

    Commercial boundary

    Budgetary results remain conditional until the feedstock, situs, product route and local compliance requirements are confirmed.

    KONFIGURASI REFERENSI

    Terjemahake fakta proyek menyang dhaptar peralatan.

    Matriks referensi iki nuduhake logika keputusan. Jumlah pungkasan, model lan antarmuka kalebu ing proposal project disetujoni.

    Blok sistemLingkup khasBasis konfigurasi
    Receiving and conditioningSampling, mixing, screening, dewatering or pumpable-feed preparationWater, padatan, salts and viscosity
    Controlled feedingAgitated buffer, pumps or screws, seals and isolationPhase stability and hazardous-waste controls
    Thermal treatmentReactor, heating, fouling management and cleanout accessHydrocarbon range, solids and corrosion basis
    Phase recoveryVapor separation, oil-water handling and treated-solid coolingSampling and permitted downstream routes
    Environmental and residueGas treatment, banyu limbah, residue containment and monitoringLocal licensing and acceptance tests
    PATH-GATED KEPUTUSAN PATH

    Maju proyek mung nalika bukti sing dibutuhake kasedhiya.

    Saben gapura ngowahi informasi customer menyang output technical utawa komersial ditetepake kanggo kaputusan sabanjuré.

    01

    Waste characterization

    Sample water, lenga, padatan, salts, belerang, metals and hazardous properties.

    OutputRepresentative waste profile
    02

    Conditioning trial

    Verify mixing, dewatering, pumping or screw-feeding requirements.

    OutputStable feed-preparation route
    03

    Output controls

    Define recovered phases, treated residue, wastewater and sampling methods.

    OutputPermitted output-management plan
    04

    Facility integration

    Confirm licensing, containment, utilitas, monitoring and acceptance.

    OutputSite-specific technical boundary
    FAQ PROYEK

    Pitakonan sing kudu diatasi sadurunge konfigurasi.

    Jawaban nemtokake wates engineering; padha ora ngganti testing materi wakil utawa review selaras lokal.

    What determines the continuous pyrolysis equipment list?

    Feedstock form, komposisi, lembab, contamination, planned operating schedule, recovered-product route, site utilities and permit requirements determine the configuration.

    Can tires, plastics and oily sludge use exactly the same line?

    Ora. They may share thermal-conversion principles, but their preparation, feeding, corrosion, condensation, solid handling and environmental controls differ materially.

    Can recovered oil performance be guaranteed from a general material description?

    Ora. Representative analysis and an agreed sampling method are required before recovered-liquid quantity, quality or downstream use can be evaluated.

    What should be included in acceptance testing?

    Define feedstock, run duration, mass balance, operating stability, sampled outputs, utilitas, safety interlocks and the applicable emissions or residue tests.

    TINJAUAN TEKNIK PROYEK

    Nemtokake materi sadurunge milih peralatan.

    Nuduhake deskripsi materi sing perwakilan, volume kasedhiya, status situs lan output target. YUSHUNXIN bakal nggunakake fakta kasebut kanggo nyiapake watesan proses lan diskusi konfigurasi sing cocog.

    Mulai Review Proyek